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Double Walled PVC Riser & L¡d Options
Poly Lid
(Static load bsbd to 5m0 bs)o Skid resistanæ surfaceo Available in green. Highæt level of W Proúection induded. lncludee a bam gasket br airtight and
wabrüght applicatiors. lncludes squere drÍve scrcu,s b disooumge
unauthorized erify. lnsulation panels achleve R-10 insulation natirE
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Standard
Orenco @ DunaFiber* Access Lids (FLD)
Not rccommended fur vehict¡larffic
24 and 3O Diamebrco Sol¡d, raein-infused fibeqlass consñ¡c'tion. 20,0OGlb heaking süongür. Standard gr€en or brown oolorsr Available with orwithout urclhane lid gasket. Available wlth carbon filhffono 4 stainless sþel f,aftead sodct cap screurs & hel(
keywrancft. lnsulated lids available-2'æ4|'
Double Walled PVC Riser
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Biotube@ ProPak Pump PackagetM
Orenco
60-Hz Series Pump Packages
Control panel
General
0renco's Biotube@ ProPaK" is a complete, integrated pump package for
filtering and pumping effluent from septic tanks. And its patented pump
vaull technology eliminates the need for separate dosing tanks.
This document provides detailed information on the ProPak pump vault
and filter, 4-in. (100-mm) 60-Hz turbine effluent pump, and control panel.
For more information on other ProPak components, see the following
0renco technical documents:
. Float Switch Assenblies (NSU-MF-MF-1)
. Discharge Assentblies (NTD-HV-HV-1 )
. Splice Boxes (NTD-SB-SB-1)
. Erternal Splice Box (NTD-SB-SB-1)
Applications
The Biotube ProPak is designed to filter and pump effluent to either
gravibT or pressurized discharge points. lt is intended for use in a septic
tank (one- 0r two-compartment) and can also be used in a pump tank.
The Biotube ProPak is designed to allow the effluent filter to be removed
for cleaning without lhe need to remove the pump vault or pump, simpli-
fying servicing.
Complete packages are available for on-demand or timed dosing sys-
tems with flow rates of 20, 30, and 50-gpm (1.3, '1.9, and 3.2 Vsec),
as well as wilh 50 Hz and 60 Hz power supplies.
Standard Models
BPP2ODD, BPP2ODD-SX, BPP3OTDA, BPP3OTDD-SX, BBPP5OTDA,
BPP5OTDD.SX
Product Gode Diagram
BPPTN
External splice box
(0ptional; internal splice
box comes standard.)
Riser lid
(not included)
Riser (not
included)
Discharge
assembly
Float
bracket
Support pipe
Pump vault
Float stem
Floats
Float collar
Vault inlet holes
4-in. (100-mm)
turbine eTfluent pump
Biotube@ filter
cartridge
I
I
I
I
Pump
liquid end
Pump motor
Standard optionsi
Blank = 57-in. (1448'mm) vault heÌght, internal
splice box, slandard dischärge assembly
68 : 68-¡n. (1 727-mm) vault heiqht
SX = external sfllice box
CW = cOld weather discharge assembly
DB = drainback discharqe assemblyQ = cam lock
l\4FV = nofl-rneIcuryfloat
Control panel applicat¡on:
DD = demand-dosirìg
TDA : limed-dos¡ng, ana¡og tinìer
TDD = limed dosing, digital timer, elapsed time
meter & counters
Biotube@ ProPakrM pump package components.Pump flow rate, nominal:
20 = 20gpm(1.3Usec)
30 = 30gpm(1.9Usec)
50 = 50spm(3.2Usec)
Bjotube" ProPak" pump vault
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grencg Systems@ lnc. , 814 A¡rway Ave., Sutherlin,0R 9747S USA . 8ffi-348-9843 . 541-459-4449 . www.orenco.com NÏD.BPP-1
Rev. I.2, @ 08/14
Page 1 of 4
Orenco
ProPak" Pump Vault Biotube@ Filter Cartridge
Materials of Construction Materials of Construction
Vault body Polyethylene Filter tubes Polyethylene
Support pipes PVC Cartridge end plates Polyurethane
Dimensions, in. (mm)Handle assembly PVC
A - Overall vault height 57 (1448) ot 68 (72n Dimensions, in. (mm)
B - Vault diameter 17.3 (439)A - Cadridge height 1B (4571
C - lnlet hole heighl 19 (475)B - Cartridge width 12 (305)
D - lnlet hole diameter (eight holes total)2 (50)Peñormance
E - Vaull top t0 support pipe bracket base 3 (76)Biotube@ mesh opening 0.125 in. (3 mm).
F - Vault bottom t0 filter cartridge base 41102)Total filter flow area 4.4 ft'¿ (0.4 n1
Total filter sudace area 14.5 ft' ('1 .35 m,)
Maximum flow rate 140 gpm (B.B Usec)
"0.062-in. (1.6-mn) f¡lter nesh ava¡lable
D
AC
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proPakrw pump vautt (shown with Biotube fitter and effluent pump) BiotubP filter cartridge (shown witlr float switch assembly)
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Rev.1.2, @ 08/14
Page 2 of 4
grenco Systems@ lnc.,814 A¡nyay Ave,, Sutherlin,0R 97479 USÀ . t00-348-9843 . 541-459-4449 . wwl¡v'orenco.com
Orenco
4-in. (100-mm) Turbine Effluent Pumps
Orenco's 4-in. (100 mm) Turbine Effluent Pumps are constructed of
lightweight, corrosion-resistant stainless steel and engineered plastics;
all are field-serviceable and repairable with common tools' All 60-Hz
PF Series models are CSA certified to the U.S. and Canadian safety
standards for effluent pumps, and meet UL requirements.
Power cords for Orenco's 4-in. (100-mm)turbine effluent pumps are
Type S00W 600-V motor cable (suitable for Class '1, Division 1 and 2
applications).
Materials of Construction
Discharge:Stainless steel or glass{illed polypropylene
Dischargebearing: Engineeredthermoplastic(PEEI()
Diffusers:Glassjilled PP0
lmpellers:Acetal (20-, 30-gmp), Noryl (50-gpm)
lntake screens:Polypropylene
Suction connection: Stainless steel
Drive shaft:300 series stalnless sleel
Coupling:Sintered 300 series slainless steel
Shell:300 series stainless steel
Lubricant:Deionized water and propylene glycol
Specifications
Pump Curves
Pump curves, such as those shown here, can help you determine
the best pump for your system. Pump curves show the relalionship
between flow (gpm or Usec) and pressure [DH), providing a graphical
representation of a pump's performance range. Pumps perform best
allhetr nominal flow rate, measured in gpm or Usec.
FIow in liters per second (Usec)
0.63 r.20 1.89 2.52 3.15 3.79 4.42
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31
30
24
r8
12
620
Nom. floW
Spm (Usec)
Lengüt
in. (mm)
Weight
lb (ks)
Discharge lmpellers
in., nominal I 10 20 30 40 50 60 70
FIow in gallons per ninute (gpn)
20 (1.3) 22.5 (572) 26 (11) 1,25 4
30 (1,e) 21.3 (541) 25 (11) 1,25 3
50 (3,2) 20.3 (516) 27 (12) 2.oo 2
Perlormance
Nom,flow hp (kW)
gpm {Usec)
Design
flow amps
Rated
cycleslday
Min liquid
level, in. (mm) 2
20 (].3) 0.5 {0.34 12.3 300 1B (457)
30 (1.e) 0.5 (0.34 11.8 300 20 (508)
50 (3.2) 0.5 (0.34 12j 3û0 24 (610)
1 D¡schaee is female NPT thrcaded, ll.S. nln¡nal size, to acconnodate qrencû discharce
hose and valve assemblies. C1nsúlt your )renc7 Dìstr¡but1r ab\ut fittings 10 c1nnect discharue
assenblies to metric-sized p¡ping.
2 Min¡num tiquid level is for single purnps when installed ¡n an 1rcnc|B¡otubæ ProPaktM Pump
Vault.
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Page 3 of 4
Orenco'
Gontrol Panel (Dema nd Dose)Gontrol Panel (Timed Dose)
Orenco's ProPaK' demand dose control panels are specifically engineered
for the ProPak pump package and are ideal for applications such as
demand dosing from a septic tank into a conventional gravity drainfield.
Orenco's ProPak timed dose control panels are specifically engineered for
the ProPak pump package and are idealfor applications such as timed
dosing from a septic tank into a pressurized drainfield or mound. Analog or
digital timers are available.
Materials of ConstructionMaterials of Construction
Enclosure UV-resistant fiberglass, UL Type 4X Enclosure UV-resistant fiberglass, UL Type 4X
Hinges Stainless steel Hinges Stainless steel
Dimensions, in. (mm)Dimensions, in. {mm)
A - Height 11.5 (290)A - Height 11.5 (2e0)
B - Widrh e.5 (240)B - Widrh e.5 (240)
C - Depth 5.4 (135)C - Depth 5.4 (135)
Specifications Specifications
Panel ratings 120U,314 hp (0.56 kW), 144, single phase,60 Hz Panel ratìngs
1 . Motor-start contactor 1 6 FLA, t hp (0.75 k\¡V), 60 Hz; 2.5 million cycles
at FLA (10 million at 50% of FLA)
120V,314 hp CI.56 kW),144, single phase,60 Hz
Dual-mode Programmable for timed- or demand-dosing
(digital timed-dosing panels only)
1 20 V repeat cycle from 0,05 seconds t0 30
hours. SeparaÌe variable controls for 0FF and
0N time periods
120-V programmable logic unit with built-in LCD
screen and programming keys. Provides control
functions and timing lor panel operation
2. Motor-start contactor 16 FLA, t hp (0.75 kVT), 60 Hz; 2.5 million cycles
at FLA (10 million al 507o of FLA)
3. Circuit breakers 1 20 V 10 A, 0FF/0N swìtch. Single pole 1 20 V
4. Toggle Switch Singfe-pole, double-lhrow H0A switch, 20 A
5. Audio alarm 95 dB at 24 in. (600 mm), warble-tone sound, UL
Type 4X
6. Visual alarm 7l}-in. (22-nn) diameter red lens, "Push{o-sìlence",
I 20 V LED, UL Type 4X
Control panel, timed-dose (digital tímer model shown)
2. Circu¡t 120 V, 10 A, 0FF/0N switch, Single pole breakers
3. Toggle switch Single-pole, double-throw H0A switch, 20 A
4. Audio alarm 95 dB at 24 in. (600 mm), warble{one sound, UL
Type 4X
5. Audio alarm '120 V automatic reset, DIN rail mount silence
relay
6. Visual alarm 7/B-in. Q2-mm) diameter red lens, "Push{o-silence,"
1 20 V LED, UL Type 4X
Control panel, demand-dose
1a. Analog timer
(not shown)
1b. Dlgiial timer
(shown below)
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NÏD.BPP.1
Rëv. 1.2, @ 08/14
Page 4 of 4
0renco Systemso lnc, ,814 A¡rway Ave., Sutherlin, 0R 97479 USA . 800-348-9843 . 541-459-4449 . www.orenco.com
o I
PF Series 4-inch (1 00-lltm)
Submersible Etfluent Pumps
Applications
Our 4-inch (100-mm) Submersible Effluent Pumps are designed to
transport screened efflueni (with low TSS counts) from septic tanks or
separate dosing tanks. All our pumps are constructed of lightweight,
corrosion-resistant stainless steel and engineered plastics; all are field-
serviceable and repairable with common tools; and all 60-Hz PF Series
models are CSA certified to the U,S. and Canadian safety slandards for
effluent pumps, meeting UL requirements.
Orenco's Effluent Pumps are used in a variety of applications, including
pressurized drainfields, packed bed filters, mounds, aerobic units, effluent
inigation, effluent sewers, wetlands, lagoons, and more. These pumps
are designed to be used with a Biotube@ pump vault or after a secondary
treatment system.
-
Discharge Connection
-
Bypass 0rifice
Franklin
Liquid End
-
Suction Connection
Franklin
Super Stainless
Motor
Featu res/Specifications
To specify this pump for your installation, require the following:
. Minimum 24-hour run-dry capability with no deterioration in pump life
or performance*
. Patented lÆ-inch (3-mm) bypass orifice to ensure flow recirculation
for motor cooling and to prevent air bind
. Liquid end repair kits available for better long-term cost of ownershìp
. TRI-SEALTM floating impeller design on 10, 15, 20, and 30 gpm
(0.6, 1.0, 1,3, and 1,9 Usec) models; floating stack design on 50 and
75 gpm (3.2 and 4.7 Usec) models
. Franklin Electric Super Stainless motor, rated for continuous use and
frequent cycling
. Type S00W 600-V motor cable
. Five-year warranty 0n pump or retrofit liquid end from date of manu-
faclure against defects in materíals or workmanship
. Not applicable f1r 5-hp (3.73 kW madels
Standard Models
See specifications chart, pages 2-3, for a list of standard pumps. For
a complete list of available pumps, call Orenco.
Product Gode Diagram
PF -r
II Cord lenqlh,
Blank = 1030 =30
ft (m):r
(3)
(e)
20 : 20 {6\
50 = 50 (15)
Voltage, namsplate:
1 = 115- 200 = 2002-230t 4 =460
Frequency:
1 = single-phase 60 Hz
3 = three-phase 60 Hz
5 = single-phase 50 Hz
Horsepower (k\.{4:
03 = 7s hp (0.25)
07=%hp(0.56)
15 = 1-%hp(1.11)
30 = 3hp(2.24)
Nominal flow, gpm (Usec):
10 = 10(0.6) 15 = 15(1.0)
20 - 20 (1.3) 30 = 30 (1.9)
50 = 50 (s.2) 75 - 75(4.7)
Pump, PF Series
. /, hp (0.37kW) only
ì220 volts for 50 Hz pumps
ÌNote: 20J001 cords are âvailable only for single-phase pumps l¡lr0ugh 1 % hp
t5 -- lzhp (0.31
10 = t hp(0.75)
20 = 2 hp (1.50)
50 = 5hp(3.73)
.@:,
LFt80980
LFì2053496
Powered by
Franklin Electnic
Qrenco Systems@ lnc. ,814 Airway Ave., Sutherlin, 0R 97479 tlSA . 8@-3¿18-9843 . 541-459-4449 . www.orenco.tom NTD-PU.PF.1
Reu.2.2,@ 09114
Page 1 of 6
Orenco
Specifications,60 Hz ı
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Pump Model
pF oosl r 10 (0.6) 0.50 (0.34 1 115 120 12.7 12.7 6 1 Y+in.GFP 23.0 (660) 16 (406) 26 (12) 300
PFl 0051 2 10 (0.6) 0.50 (0.37)1 230 240 6.3 6.3 6 1 /+ in. GFP 23.0 {660) 1 6 (406) 26 (12) 300
PFl0053200 10 (0.6) 0,50 (0,37)3 200 208 3.8 3.8 6 1 1¡+ in. GFP 23.0 (660) 16 (406) 26 (12) 300
PFl00712 4'5 10 (0.6) 0.75 (0,56)1 230 240 8.3 8.3 B 1 % in. GFP 25.9 (658) 17 (432) 30 (14) 300
PFl0073200 4,5 10 (0.6) 0.75 (0.56)3 200 208 5.1 5.2 I 1 % in. GFP 25.4 (645) 17 (4s2) 31 (14) 300
PF101012 t6 10 (0.6) 1.00 (0.75)1 230 24a 9.6 9.6 I 1 % in. GFP 27 .9 V09) 18 (454 33 (1 5) 1 00
PFl 0103200 5 6 10 (0.6) 1 .00 (0.75)3 200 208 5.5 5.5 I 1 % in. GFP 27,3 (693) 1B (457) 37 (17) 300
pF1020125.6'7'B 10(0.6) 2.00(1.49)1 230 240 12j 12.1 18 1 lz¿ in. SS 39.5 (1003) 22 (559) 48 (221 100
pF1020325,6,s 10(0.6) 2.00(1.49) 3 230 240 7.5 7.6 '18 1%in.SS 37,9(963) 20(508) 44(20) 300
pF10203200 5,6,8 10 (0.6) 2.00 (1.49) 3 200 208 8,7 8.7 18 1 % in. SS 37.9 (963) 20 (508) 44 (20) 300
PF1 5031 1 15 (1 .0) 0.33 (0.25) 1 1 15 120 8.7 B.B 3 '1 /¿ in. GFP 19,5 (495) 15 (380) 23 (10) 300
PF 1 5031 2 15 (1.0) 0.33 (0.25) I 230 240 4.4 4.5 3 1 % in. GFP i9.5 (495) 15 (380) 23 (10) 300
PF20051 1 20 (1.3)0,50 (0.37) I 115 120 12.3 12,5 4 1lsin.GFP 22.3 (s66) 18 (45R 25 (11) 300
PF20051 2 20 (1.3)0.s0 (0 37) 1 230 240 6.4 6.5 4 1 % in. GFP 225 (572) 18 (4s7) 26 (12) 300
PF20053200 20 (1.3)0.50 (0.37) 3 200 208 3,7 3.8 4 1 lq in. GFP 22.3 (566) 1B (457) 26 t12) 300
PF2oloi2 4'5 20 (1.3) 1,00 (0.75)1 230 240 10.5 1 0.5 7 1 % in. GFP 28.4 (721) 20 (508) 33 (15) 100
PF201 03200 4 5 20 (1 .3) 1 .00 (0.75)3 200 208 5.8 5.9 7 1 % in. GtP 27 .B V06) 20 (508) 33 (15) 300
PF201512 4'5 20 (1.3) 1.50 (1.11)1 230 240 12.4 12.6 9 1 % in. GFP 34.0 (864) 24 (610) 4'1 (19) 100
PF20153200 d5 20 (1.3) 1.50 (1.11)3 200 208 7 ,1 7 .2 I 1 % in. GFP 30.7 (iB0) 20 (508) 35 (16) 300
PF30051 1 30 (1.e) 0.50 (0,37)I 115 120 11.8 11,8 3 1%in.GtP 21.3(541) 20(508) 28(13) 300
PF30051 2 30 (1,e) 0.50 (0.37)1 230 240 6.2 6.2 3 1 % in. GFP 21.3 (541) 20 (508) 25 (11) 300
PF30053200 30 (1.9) 0,50 (0,37)3 200 208 3.6 3,6 3 1 % in. GFP 21.3 (541) 20 (508) 25 (1 l) 300
PF30071 2 30 (1.9) 0.75 (0.56)1 230 240 8.5 8.5 5 1 % in. GFP 24.8 (630) 21 (533) 29 (13) 300
PF30073200 30 (1.9) 0.75 (0.56)3 200 208 4.9 4.9 5 1 % in. GFP 24.6 (625) 21 (533) 30 (14) 300
PF30101 2 4 30 (1 .9) 1 .00 (0.75)1 230 24a 10,4 10.4 6 1 % ¡n. GFP 27.0 (686) 22 (55e) 32 (15) 100
PF30103200 4 30 (1,9) 1.oo (0.75)3 200 208 5.8 5,8 6 1 1z¿ in. GFP 26.4 (671) 22 (559) 33 (15) 300
PF301 51 2 4.5 30 (1 .9) 1 .50 (1 .1 I )1 230 240 12.6 12.6 B I /¿ in. GFP 32.8 (833) 24 (610) 40 (18) 100
PF30153200 d 5 30 ('r .9) 1 .50 (1 .1 1)3 200 208 6.9 6.9 B 1 1z¿ in. GFP 2s.B(757) 22(559) 34 (15) 300
PF301 534 4's 30 (1 .9) 1 ,50 (1 .1 1)3 460 480 2.8 2.8 B 1 % in. GFP 2e.5 (685) 22 (559) 34 (15) 300
PF302A125'6'7 30 (1.9) 2.00 (1.49) 1 230 240 11,0 11.0 10 I /q in. SS 3s.5 (902) 26 (660) 44 (20| 100
PF30203200 s,6 30 (1.9)2.00 (1 .49) 3 200 208 9.3 9.3 10 1 l/¿ in' SS 34 0 (864) 24 (61 0) 41 (1 9) 300
PF303012 5,6,7.8 30 (1.9)3.00 (2,23) 1 230 240 16.8 16.8 14 I lz¿ in' SS 44.5 (1130) 33 (B3B) 54 e$l 100
PF303032 5,6'B 30 (1.9)3.00 (2.23) 3 230 240 10,0 10.1 14 'l % in. SS 44,3 (1125) 27 (686) 52 Q4l 300
PF305012 5,6,7,8 30 (1.9)5.00 (3.73) 1 230 240 25,6 25.8 23 1 % in. SS 66,5 (1689) 5s (1 346) 82 (37) 100
pF305032 5'6 8 30 (1.9) 5.00 (3,73)3 230 24A 16.6 16.6 23 1 l/¿ in. SS 60.8 (1544) 48 (1219) 66 (30) 300
PF30503200 5'6,8 30 (1.9) 5.00 (3.73)3 200 208 18.7 18.7 23 1 % in. SS 60.8 (1544) 48 (1219) 66 (30) 300
PF50051 1 50 (3.2) 0.50 (0.34 '1 115 120 12j 12j 2 2 in. SS 20.3 (516) 24 (610) 27 (12) 300
PF50051 2 50 (3.2) 0.50 (0.3R 1 230 240 6.2 6.2 2 2 in. SS 20,3 (516) 24 (610) 27 (12j 300
PF500532 50 (3.2) 0.50 (0.37)s 230 240 3.0 3.0 2 2 in. SS 20.3 (516) 24 (6]0) 28 (13) 300
PF50053200 50 (3.2) 0.50 (0.37)3 200 208 3.7 3.7 2 2 in. SS 20.3 {516) 24 (610) 28 (13) 300
PF500534 50 (3.2) 0.50 (0.34 3 460 480 1 .5 1 .5 2 2 in. SS 20.3 (516) 24 (610) 28 (13) 300
PFs0071 2 50 (3.2)0.75 (0.56) 1 230 240 8.5 8.5 3 2 in, SS 23.7 (602) 25 (635) 31 (14) s00
PFs00732 50 (3.2) 0.75 (0.56) 3 230 24A 3.e 3.9 3 2 in. SS 23.7 (602) 25 (635) 32 (15) 300
PF50073200 50 (3.2)0.75 (0.56) 3 200 208 4.e 4.e 3 2 ìn. SS 23.1 (587) 26 (660) 32 (15) 300
NTD.PU-PF-1
Rev.2.2, @ 09/14
Page 2 of 6
grenco Systems@ lnc. ,814 Ainivay Ave., Sutherl¡n, 0R 97479 USA . 800-348-9843 . 541-459-4449 . www.orenco.com
Orenco
Specifications, 60 Hz (continued)
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.3
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ËF
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=¡5Ë
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=Model
(3.2) 0.75 (0.56) 3 460 .B 3 2 in. SS 34,8 (BB4) 25 {635) sl
PF501 01 2 50 (3,2) 1.00 (0.75)1 230 240 10.1 '10.1 4 2 in. SS 27.0 (686) 26 (660) 35 (16) 100
PF50103200 50 (¡.2) 1.00 (0.75)3 200 208 5.7 5.7 4 2 in, SS 26.4 (671) 26 (660) 3s (18) 300
PFs0l 034 50 {3.2) 1,00 (0.75)3 460 480 2.2 2,2 4 2 in. SS 26.4 (671) 26 (660) 39 (18) 300
PF5015124 50 (3.2) 1,50 (1.11)1 230 240 12.5 12.6 5 2 in. SS 32.5 (826) 30 (762) 41 (1e) 100
PF501532004 50 (3.2) 1.50 (1.11)3 200 208 7 ,a 7 .0 5 2 in. SS 293 I44) 26 (660) 35 (16) 300
PF503012 4,5,i,8 50 (3.2) 3.00 (2.23)1 230 240 17 .7 17 .7 B 2 in. SS 43,0 (1092) s7 (940) 55 (25) 100
PF50303200 4,5 8 50 (3.2) 3.00 (2.23)3 200 208 13.1 13.1 B 2 in, SS 43.4 (1102) 30 (762) 55 (25) 300
PF503034 4,5'8 50 (3.2) 3,00 (2.23)3 460 480 5.3 5.3 B 2 in. SS 40.0 (1016) 31 (787) 55 (25) 300
PF505012 5,6'7'8 50 (3.2) 5.00 (3.73)1 230 240 26,2 26/ 13 2 in. SS 65.4 (1661) 5s (1394 64 (29) 300
PF505032 5,6,7,8 50 (3,2) 5.00 (3.73)3 230 240 16.5 16.5 13 2 in. SS 59.3 (1506) 49 (1245\ 64 (29\ 300
PF751A12 75 (4.7) r.oo (0.75)1 230 240 9.9 10.0 3 2 in, SS 27.0 (686) 27 (686) 34 (1 5) 1 00
PF751512 75(4.n 1.50 (1.1r)1 230 240 12j 12.3 4 2 in. SS 33.4 (B4B) 30 (762) 44 (20) I Û0
$pecifications, S0 Hz
Model
1o (0.6) o,5o (0.37) 1 4.1 6 1 % in. GFP 23,0 (584) 17
PF.100752 4,5 10 (0.6)0.75 (0.56) 1 220 230 6,2 6,2 I 1lqin.GFP 26.8 (658) 17 (432) 30 (14) 300
PF]0i 552 s,6 1 0 (0.6) 1 .50 (1 .1 1)1 220 230 10.5 11 .4 18 1 /a in. SS 39.5 (l0Û3) 22 (559\ 46 Q1) 300
PF300552 30 (1.e) 0.50 1 220 230 4,1 4.1 4 1 /+ in. GFP 22.5 (572) 19 (483) 26 (12j 300
PF300752 30 (1.9) 0,75 (0.56)1 220 230 6.1 6.1 5 1 /¿ in. GFP 24.8 (630) 1S (483) 29 (13) 300
PF301 052 30 (1.e) 1,00 (0.75)1 220 230 7.4 7 .4 7 1 la in. GFP 28.4 V21) 20 (508) 32 (1 5) 1 00
PF3015524,5 30 (1.9) 1,50 (1.11)1 220 230 9.3 e.3 B 1 % in, GFP 35.4 (899) 24 (610) 40 (18) 100
PF500552 50 (3.2) 0.50 (0.3¿1 220 230 4.0 4,0 2 2 in. SS 20.3 (516) 25 (635) 29 (13) 300
PF540752 50 {3.2) 0.75 (0.56)1 220 230 6.3 6.4 3 2 in. SS 23.7 (602) 25 (635) 31 (14) 300
PF501052 50 (3.2) 1 .00 (0.75) 1 220 230 7.3 7 .4 4 2 in. SS 27 0 (686)26 (660) 35 (16) 100
PF50r552 50 (3,2) 1.50 (1.11)1 220 230 9.1 9.1 5 2 in. SS 32.5 (826) 30 (762) 42 (1s) 100
PF751052
D¡str¡but1r about fitlíngs t0 clnnect h\se and valve assefibliæ t0 nelric'sízed piping.
qrenco for nore ¡nfomntion.
3 Weight ¡ncludes cart1n and 10-ft (3-m) cord.
4 Hiqh'pressure discharge a$enbly required.
5 Do n1t use can-ljck opt¡on (Q) on discharge assenbly.
6 Cust1m tlischarye assembly required for these pumps. C)ntact }rencj.
7 Capacitor pac| (s}ld sepatately 0r installed ¡n a custom control pane| requ¡red for th¡s pump. Contact )renco,
8 T1tque l1cks are available f1r all punps, aßd arc supplied w¡th 3-hp and
'-hp
pumps.
I'¡TD-PU.Pf.1
Rev.2.2, @ 09/14
Page 3 of 6
75 ß.2) 1.00 (0.75) 1 220 230 7 .3 7 .3 4 2 in. SS 30.0 (762) 27 (686]1 34 (15) 100
orenco Systems@ |nc.,814 AiMay Ave., Sutherlin,0R S7479 USA . 800-348-9843 r 541-¡159-¿1449 . ru¡Íw.orenco.com
Orenco
Materials of Construction
Discharge Glassjilled polypropylene or stainless steel
Dìschargebearing Engineeredthermoplastic(PEEI()
Dilfusers Glassjilled PPO (Noryl GFN3)
lmpellers Celcon@ acelal copolymer 0n 10-, 20, and 30-gpm models; 50-gpm impellers are Noryl GFN3
lntake screen Polypropylene
Suct¡onconnection Stainlesssteel
Drive shaft 7/16 inch hexagonal stainless steel,300 series
Coupling Sintered stainless steel, 300 series
Shell Stainless steel, 300 series
Motor Franklin motor exterigr cgnstructed of stainless steel. Motor filled with deionized water and propylene glycol for constant lubrication, Hermetically
sealed mo{or housing ensures mo¡stureJree windings. All thrusl absorbed by Kingsbury-type thrust bearing. Raled for continuous duty. Single-
phase motors and 200 and 230 V 3-phase motors equ¡pped with surge aneslors for added securiiy. Single-phase motors lhrough 1.5 hp
(1.11 k\,14 have built-in thermal overloacl protection, which trips a|203-221" F (95-105'C).
Using a Pump Curve
A puntp cu¡e helps you determine the best pump for your system. Pump curves show the relationship between flow (gpm or Usec) and pressure
(total dynamic head, orTDH), providing a graphical representation of a pump's optimal performance range. Pumps perform best at their nominal
flow rate - the value, measured in gpm, expressed by the firsi two numerals in an Orenco pump nomenclature. The gtaphs in this section show
optimal pump operation ranges with a solid line. Flow flow rates outside of these ranges are shown with a dashed line. For the most accurate
pump specification, use 0renco's PumpSelect"' software,
Pump Gurves, 60 Hz Models
140
(¡)
- tt¡
s 120
fl roo
È(Èq¡ 80
(5
Èþu\:40
tE
Ê
20
800
700
o)
o¡
s 600
f soo
È3 ¿oo.È
()
$ soo
\ì zoo(È
.o
100
tprroa
PF10 Series,60 H2.0.5 - 2.0 hp
\
lFFrmr
lrr ruu,
lprroos
rr¡¡r:ìj,.
PF1005-FC
wl th" llow
controller
PFî5 Series,60 Hz.0.3
r60
0a2468101214
FIow in gallons per ninute (gpm)
36912151821
Flow in gallons per minute (gpm)
16 0 24
NID-PU.PF-1
Rev.2.2, @ {Xli14
Page 4 of 6
orenco Systems@ lnc. , 814 Airway Ave., Sutherlin, 0R 97479 USA . 800-348-9S43 . 541 -459-4449 . wwworenco'com
l-PF20 Series,60 H2,0.5 - 1.5 hpL
\
400
350
(¡)es 300s
fl zso
È
E zoo€
(l
Ft*
-.ì roo
tÈ
-è
50
900
800
q¡* zoo
È*o
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t¡¡€c¡ 400
(Ès 300
È'
s 200
.Ê
90
q¡e80
s70s\60È
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€50(¡'È 40
sÈ30
EzoÈ
t0
450
400
tt¡* ¡so
ì eoost
È 250tÈ
tut^o
I rso\È$ roo
.s
60 Hz Models (continued)
5101520253035
Flow in gallons per minute (gpm)
50
PF50 Series,60 Hz, 0.5 - 5.0 hpU
"-1..
li-
'
I
i
10 20 30 40 50 60 70 80
Flow in gallons per minute (gpm)
5 10 t5 20 25 30 35 40 45
FIow in gallons per ninute (gpm)
PFIS Sedes,60 Hz,1.0 - 1.5 hp
l
I J
10 20 30 40 50 60 70 80
Flow in gallons per minute (gpn)
90 100
00
0
400
0
100
0
900 0
PF30 Series,6{l H2,0.5 - 5.0 hp
PF30t5
PF3010 ¡lu:f
\ò ¡\
$renco Systemso lnc. ,814 Airway Ave,, SutheÌl¡n,0R 9747S USA . 8{Xl-3¡18-9843 . 541-459r-4449 . www.orenco.com ¡tT0-Pu-PF-l
Rev. ?.2, @ 09/14
Page 5 of 6
Orenco
lFl
PFl0 Se¡ies,50 H¿ 0.37 - 1.11
Li..
I al l
lPr qt
II u \\
l
l w/6mmllow
conlroller
ì\
\\
Pump Gurves, 50 Hz Models
FIow in gallons per minute (gpn), nominal1.6 32 43 63 7^9 S5 11 13
0.1 0.2 03 0.4 0.5 0.6 0.7 0.8
Flow in liters per second (Usec)
nominals63
Series,50 Hz, 0.37 - Lll kW
-
l
PF50t05¿
l
....1
I
\
m 12l
l'.. i'...\
-.:
FIow in gallons per minute (gpmJ, nominal63 13 19 ?5 32
0.4 0,8 12 1.8 2.0
FIow in liters per second (Usec)
Flow in gallons per minute {gpn), noninal1019n384851677686
0.6 1.2 ',r.8 L4 3.0 3.6 4.2 48 54
FIow in liters per second (Usec)
180
45
120
r00q
q¡
q¡
.s 80
a
ìsol¡€
(l.:
E¿o\È
6
.G¡
20
s25 \e
459 è
ssc $
sze Èa
zsz ìq¡€
rsr'S
|È
rer È
G
-Þ66F
1
ec¡f
q¡
Èll\r
!(È
q¡€(¡
(È:È
.È
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60
40
20
00
80
60
40
20
0
tù
Þ
Q¡
Q¡
=ßt
È(!o€ê
G\l!
G
Ê
267
151
66
89-GÈ
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ssËo¡
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49 c,ÈÈ
ssÊ(t
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30
27
(â
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,ì 21
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ô.0
FIow in gallons per minute7.9 16 24 n 40
bpn),
48
40
6
Sss
's soÈa
-25ÈGq¡s20
LI'=È.-Ètþ\È'
SroÊ
5
0
0 0.5 r.0 r.5 2.0 L5 3.0 3.5 4.0 4.5
Flow in líters per second (Usec)
PF3ll Series, 50 Ha 0.37 - l.1l kW
l
i
l
l""1......
I
t'. -
' 1"'-."t'.,,.
lPHm0552l4"!rf;;,
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PFJ5 Series,50 H¿ 0.75 kW
I'ITD-PU-PF-l
ßeu,2.2,@ggl14
Page 6 of 6
0r€nco Systemso lnc, ,814 A¡rway Ave., Sutherlín,0R 97479 USA . 800-348-9843 r 541-459-4449 o www.orenco.com
This article may describe design criteria that was in effect at the time the article was written. FOR CUfuRENT DESIGN
CNTERIA, call Orenco Systems, Inc. at l-800-348-9843.
0renco Automatic Distr¡hut¡ng
Valve Assemblies
â-.,
ãÉ
€
Orenco Sf6temô'
lncorporated
1'800-:t48-9843
For Wastewater Effluent Systems
Introduction
Orenco's automatic distributing valve assemblies, pressurized with small high-head effluent
pumps, are useful for distributing effluent to multiple zones. These zones can be segments
of sand filter manifolds, drainfields, or other effluent distribution systems. Distributing
valve assemblies can substantially simplify the design and installation of a distribution sys-
tem and reduce installation costs. This is particularly true where a distributing valve assem-
bly is used instead of multiple pumps and/or electrically operated valves. Additionally, a
reduction in long term operation and maintenance costs is realized due to a reduced size
andlor number of pumps. More even distribution can be achieved on sloping sites by zoning
laterals at equal elevations. This eliminates drainback to lower lines and the unequal distrib-
ution of effluent that occurs at the beginning of a cycle.
Valve Operation
The valve itself has only a few moving parts, requires no electricity, and alternates automati-
cally each cycle. Refer to Figure i for the following valve operation description. The flow
of the incoming effluent forces the rubber flap disk O to seat against the valve bottom Ø.
The opening @ in the rubber flap disk aligns with an opening in the valve bottom to allow
flow to only one valve outlet. The stem G) houses a stainless steel spring which pushes the
rubber flap disk away from the valve bottom after the flow of efiluent stops. The stem acts
as a cam follower and rotates the rubber flap disk as the stem is raised and lowered through
the cam @. The force from the flow of effluent pushes the stem down through the cam and
the stainless steel spring pushes the stem back up through the cam when the flow of effluent
stops. Each linear motion of the stem allows the rubber flap disk to rotate half the distance
necessary to reach the next outlet. When there is no flow, the rubber flap disk is in the "up"
position and is not seated against the valve bottom.
Figure 1:
60fXl Series Valve
NTP-VA.1
Rev. l¿, @ l1l03
0renco Systemso, lnc.
Page 1 of 6
o
lnlet
--..->
o
o
ø
0utlets
o
I,t
Figure 2:
0renco Distributing Valve Assembly (6000 Series Valve)
The Distributing Valve Assembly
The Orenco Automatic Distributing Valve Assembly combines the distributing valve itself and sever-
al other components to give a complete preassembled unit that is easy to install, monitor, and main-
tain. Figure 2 shows a complete assembly. Because distributing valves with several outlets can be
difficult to line up and glue together in the field, the discharge lines in the assemblies are glued in
place at Orenco. The unions (1) allow removal and maintenance of the valve. The clear PVC pipe
sections (2) give a visual check of which discharge line is being pressurized. The inlet ball valve (3)
allows a quick, simple method to test for proper valve cycling. The ball valve also stops the flow of
effluent in case the pump is activated unexpectedly during maintenance or inspection. Check valves
may be necessary on the discharge lines. Use of check valves is discussed in the valve positioning
section.
Valve Assembly Hydraulics
Liquid flowing through the valve assembly must pass through fairly small openings and make several
changes in direction. Because of this, headlosses through the valve assembly are fairly high. Table 1
gives the headloss equations for several different assemblies and Figure 3 shows the graphical repre-
sentations of these equations. Orenco recommends that high-head turbine pumps be used to pressur-
ize the valve assemblies to ensure enough head is available for proper system operation. High-head
turbine pumps are also recommended because the use of a distributing valve usually requires more
frequent pump cycling. The high-head turbine pumps are designed for high cycling systems and will
outlast conventional effluent pumps by a factor of l0 or more in a high cycling mode. Furthermore,
the high-head turbine pump intake is 12 inches or more above the boffom of the pump and tends to
prevent any settled solids from being pumped into the distribution valve and obstructing its opera-
tion. A minimum flow rate through the distributing valve is required to ensure proper seating of the
rubber flap disk. Minimum flow rates for the various models are given in Table 1.
NÏP.VA.1
Rev.1.2, @ l1103
Orenco Syslems", lnc.
Page 2 of 6
Thbte 1. Automatic DÍstributing ValveAssembþ Headloss Equations
ModelSeries Equation OperatingRange(æm)
v44mA HL:0.085 xql'45 10-40
V4é00A, H¡:0.085 xql'58 n-25
v64004 Hl:0.0045*t'+:.Sx(1-e0'06q ß-70
v66004 H¡:0.0&19 x q2 + s.s x (l - e0'1$ ls - 70
,ì
o
Ëo{,
at
co,foL-cF.
at)
U'oJ
E(ú
(¡)T
35
30
25
20
15
10
5
0
v66004
.J -
/
VEOOA
v46004 -/
v44004l-.¿
-/Ja'J ¿tl
-/4
.1 -J -t,
0510152025303540455055606574
Flow (gpm)
Figure 3:
Automatic distributing valve assembly headloss curves
The Pumping System
Although the distributing valve was designed for the irrigation industry it has started to gain fairly
wide acceptance in the effluent pumping industry. However, because of the mechanical movements
of the valve, it is necessary to take steps to prevent solids from reaching the distributing valve that
may impede the operation of the valve. Orenco Biotube@ Pump Vaults - when properly sized and
installed - provide the necessary protection to prevent valve malfunction. The Biotube* pump vault
accepts effluent only from the clear zone between a tank's scum and sludge layers and then filters
this effluent through a very large surface area screen cartridge. Without this protection in effluent
systems, the valve has very little chance of reliable long-term operation.
Í{TP-VA-t
Rev.1.2, @ lUoil
orenco Systems', lnc.
Page 3 of 6
Valve Positioning
The physical position of the valve in relation to the pump and the discharge point is very important
for proper valve operation. The most reliable operation occurs when the valve is placed at the high
point in the system and as close to the pump as possible. The transport line between the pump and
valve should be kept full if possible. If the line is empty at the beginning of each cycle, pockets of
air during filling can cause random rotation of the valve. The valve is particularly vulnerable to this
erratic rotation with empty lines that are long and not laid at a constant grade. An ideal valve loca-
tion is shown in Figure 4.
If the final discharge point is more than about 2 feet above the valve and the system does not drain
back into the dosing tank, check valves should be installed on the lines immediately following the
valve and a pressure release hole or line should be installed just prior to the valve. This pressure
release hole or line can go into a return line to the dosing tank or to a "minidrainfield" near the valvc.
In order for the valve to rotate reliably, no more than about 2 feet of head should remain against the
valve to allow the rubber flap disk to retum to its up position. In many cases, it may take from one
minute to several minutes for the pressure in the valve to be lowered enough for proper rotation to
occur. Special care should be taken when installing systems controlled by programmable timers to
ensure cycling does not occur too rapidly. Figure 5 illustrates a valve assembly using check valves.
Pumping downhill to the valve should be avoided unless the transpott line is very short and the ele-
vation between the discharge line out of the tank and the valve is less than about 2 feet. If the valve
is located many feet below the dosing tank, random cycling may occur while the transport line drains
through the valve at the end of the cycle. A pressure sustaining valve located just before the distrib-
uting valve may overcome this problem in some instances.
Valve Assembly
D¡scharge Lât6Els
Trãnsport L¡ne
Dos¡ng Tánk
Figure 4:
ldealvalve location
ilTP-VA-1
Rev.1.2" @ lll03
otenco Systemso, lnc,
Page 4 of 6
System Startup
Refer to the Hydrotek Valve bookiet that is provided with the distributing valve assembly for the
sequencing of the valve outlets. The transport line should always be flushed with clean water before
installing the valve. Any sand, gravel, or other foreign objects that may have been in the pipe during
installation can easily become lodged in the distributing valve, causing malfunction.
With the pump running, alternately close and open the ball valve on the distributing valve assembly
to check proper rotation of the valve. (Note: If check valves are used on the lines after the distribut-
ing valve, the pump may need to be turned on and off to allow the pressure to be released from the
valve.) If visual operation of which zone is operating is not possible, watch the clear pipe on each
line for indication of which zone is operating.
Disharge Laterals
Prêssurê Rêlease
Line f h>2L0"
Valv6 ¡f h>210"
Valv€ Asssmbly
Transpgrt L¡ne
Dosing Tank
Figure 5;
Valve assembly below final dischatge point
Maintenance
Annually check for proper operation by following procedures listed in the Hydrotek Valve booklet
and system starlup procedures listed above.
Troubleshooting
1. PROBLEM: Valve does not change or cycie to next zone or outlet
CAUSE:The stem and disk assembly is not rotating when water flow is tumed off and then
back on.
SOLUTION 1: Ensure that there is no debris inside the cam. Clean and carefully reinstall the cam.
SOLUTION 2: If fewer than the maximum number of outlets are being used, check the installation
of the cam. Ensure that the stem and disk assembly is not being held down by an
improperly installed cam. Refer to the cam replacement instructions.
f{TP-VA-1
Rev.1.2, @ 11Æ3
ofenco Systsmso, ltrc,
Page 5 of 6
SOLUTION 3
SOLUTION 4:
SOLUTION 5:
SOLUTTON 6:
Remove the valve top and check for proper movement of stem and disk assembly.
Check for and remove any debris or foreign objects that may jam or retard the
movement of the disk.
Check for freedom of movement of stem and disk assembly up and down over the
center pin in bottom of valve. Scale deposits may build up on the pin and hold stem
and disk assembly down. Clean pin and again check for freedom of movement.
Be sure that all operating outlets are not capped and that the flow to operating zones
is not restricted in any manner. This would cause pressure to build up in the valve
and lock the stem and disk assembly in the down position.
The backflow of water from uphill lines may be preventing the valve from cycling
properly. This can happen when the valve is placed too far below an elevated line.
If the valve cannot be placed close to the high point of the system, a check valve
should be installed near the valve in the outlet line that runs uphill from the valve
and a drain line installed just prior to the valve to relieve the pressure.
2. PROBLEM: Water comes out of all the valve outlets
CAUSE: Stem and disk assembly not seating properly on valve outlet
SOLUTION 1: Check for sufficient water flow. A minimum flow rate is required to properly seat
the disk as shown in Table 1.
SOLUTION 2: Remove the valve top and check the inside walls to ensure that nothing is interfering
with the up and down movement of the stem and disk assembly inside the valve.
SOLUTION 3: Make sure that the operating outlets are not capped and that the flow to the operat-
ing zones are not restricted in any manner.
3. PROBLEM: Valve skips outlets or zones
CAUSE Pumping into an empty transport line - especially downhill - may cause the valve
to skip outlets from pockets of air allowing the rubber flap disk to raise during a
cycle.
SOLUTION 1: Keep the transport line full.
SOLUTION 2: If the line must remain empty between cycles, use a larger diameter hansport line
laid at a constant grade to prevent air pockets from forming-
CAUSE: The stem and disk assembly is being advanced past the desired outlet
SOLUTION 1: Ensure that the coffect cam for the desired number of zones is installed and that the
outlet lines are installed to the correct outlet ports of the valve as indicated by the
zone numbers on the top of the cam.
NTP.VA.l
Rev.12, @ ltlÍ¡:¡
Orenco Systemso, lnc.
Page 6 ot 6
1ì¡.-,ñt
€Distribut¡ng Valves Submittal
Data Sheet OrêncoSy¡toms'
lncorporaled
1-8m-348-9843
Applications
Automatic Distributing Valve Assemblies are used to pressurize
multipfe zone distribution systems including textile filters, sand
filters and drainfields.
coupling
dilribut¡ng valve
union
clear pipe
Top View
General
0renco's Automatic Distributing Valve Assemblies are
mechanically operated and sequentially redirect the
pumps flow to multiple zones or cells in a distribution
field. Valve actuation is accomplished by a combination
of pressure and flow. Automatic Distributing Valve
Assemblies allow the use of smaller horsepower pumps
on large sand filters and drainfields. For example, a large
community drainfield requiring 300 gpm can use a six-line
Valve Assembly to reduce the pump flow rafe requirement
lo only 50 gpm.
Orenco only warrants Automatic Distributing Valves when
used in conjunction with High-Head Effluent Pumps with
Biolube' Pump Vaulis to provide pressure and flow
requirements, and to prevent debris from fouling valve
operation, An inlet ball valve and a section of clear pipe
and union for each outlet are provided for a complete
assembly that is easy to maintain and monitor. ldeal
valve location is at the high point in the system. Refer to
Automatic Distributing Valve Assemblies (NTP-VA-1) for
more information.
Standard Models
v4402A, V4403A, V44044, V4ó054, V4ó0ó4, Vó4024, Vó4034,
Vó404A, Vóó054, VóóOóA.
Nomenclafure
l A
Ttn,ti"ut..assembly
Numbe¡ of active outlets
Model series:
¿14 = 4400 series (2-4 outlets)
46 : 4600 series (5-6 outlets)
64 : 6400 series (2-4 outlets)
66 = 6600 selies(5-6outlets)
Distributing valve
ball valve
elbow
Side View
elbows
Bottom View
I
Specifications
Maþdals of Consûuction
AllFittings:
Unions:
BallValve:
Clear Pipe:
V4XXX Distributing Valves:
VóXXX Distributing Valves:
Sch. 40 PVC per ASTM specification
Sch.80 PVC perASTM specification
Sch. 40 PVC per ASTM specification
Sch.40 PVC perASTM specification
High-strength nonconosive ABS polymer and stainless steel
High-strength noncorrosive ABS polymen stainless steel, and die cast metal
ilsu-sFvA-1
Rev.3.0, @ 4í13
Page 1 of 2
D istributing Valves (continued)
-35!"
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v66004
vE$04
v46004
v44004l-¿
-¿
Þ ,2
051015mÃ$35404550556066m
Flow(gpm)
Model lnle* Size (in.) Oudeús Size How MaxHead Min. Enclosurc
170 2171.25 10-40
v44034 1.25 1.25 10-40 170 v81211
v44044 1.25 1.25 10-40 170 v81211
v4ó05A 1.25 1.25 10 -25 170 RR2418
v4ó0óA 1.25 1.25 10-25 110 RR2418
Vó4024 1.5 1.5 15 - 100 345 RR2418
Vó4034 1.5 1.5 15 - 100 345 RR2418
Vó4CI14 1.5 1.5 15 - 100 345 RR2418
VóóO5A 1.5 1.5 15 - 100 345 RR2418
VóóOéA 1.5 1.5 15 - 100 345 RR241B
frsu-st-vA-l
Rev.3.0, @ 4lï3
Page2otZ
13Sh€ot 1 of lby: DFHINFILTRATORff2214436INFILTRAÎOR SYSTEMS INC.4 Bus¡ness Park Rd. Old Saybrook, CT 06475QUICK4 PLUS STANDARDLOW PROFILE CHAMBERPRODUCT SPECIFICATIONñd 10INFILTRATOR SYSTEMS INC.QUICK4 PLUS STANDARDLOW PROFILE CHAMBERPRODUCT SPECIFICATION(NOT TO SCALE)TOP VIEWQUICK4 PLUS ALL-IN.ONE END CAP1 0,4" EFFECTIVE LENGTH-INSPECTION PORT8"3.3" INVERTl-*'-J1 3,3' EFFECTIVE LENGTH-QUICK4 PLUS ENÐ CAP4.5'ÊFFECTIVE LENGTH-BUT_I3.3- INVERT -J[- ''t" *loSIDE VIEWEND VIEW48'(EFFECïVE LENGTH)B"34"-ALL VIEWS = INSTALLED LENGTHS
Quick4@ PIus Standard Low Profile Chambers
Pressure Distribution Systems lnstallation lnstructions 4#i,ç,,HT'-
BeforeYou Begin
Quick4 Plus Standard Low Profile (LP) Chambers can only be
installed according to state and/or local regulations. Soil and site
conditions must be approved prior to installation, Conduct a
thorough site evaluation to determine proper s¡zíng and s¡t¡ng of
the system before installat¡on.
lnstalling the Chambers and End Caps
1. To allow pressure laterals to drain after each dose, drill a hole ¡n the
bottom of the pipe at the end of the pressure line. Place the snap-off
sptash plate or a pâving block at the botlom of the trench to protect the
¡nf iltrative surface from erosion.
1" PRESSURË LATERAL
2" PRESSURE LATERAL (TYP)
1" OR 2" TRENCH BOTTOM
PIPE PLACEMENT
2. With a hole saw drill out the
appropriate diameter hole to
accommodate ihe pressure lat-
eral pipe.
3. lnsert the pressure lateral pipe
into the end cap's dr¡lled opening
and slide it into the manifold
pipe. Glue the pressure lateral
pipe to the manifold pípe.
Drill pressure pipe hole.
4. With the pressure lateral pipe through the end cap, place the back
edge of the end cap over the inlet end of the first chamber. Be sure lo
line up the locking pins on the top of both the chamber and end cap.
Materlals and Equipment Needed
n Quick4 Plus Standard LP
Chambers
tr Qu¡ck4 Plus All-in-One or Q4
Plus Endcaps
tr PVC Pipe and Couplings
D Backhoe
n Laser, Trans¡t or Level
û Tape measure
E Shovel and Rake
n Utility Kn¡fe
tr 1 1/4-inch Drywall Screws*
t Screw Gun*
t Small Valve-cover Box*
n 4-inch Cap lnspect¡on Port
- Optional
These guidelines for construction machinery must be
followed during ¡nstallat¡on:
tr Avoid direci contact with chambers when using construclion
equipment. Chambers require a 12-inch minimum of compacted cover
to support a wheel load rating of 16,000 lbs/axle or equivalent to an
H-10 AASHTO load rating.
E Only dr¡ve across the trenchês when necessary. Never dríve
wheeled machinery over chambers.
E Avoid stones larger than 3 inches ¡n diameter in backfill. Remove
stones this size or larger that are in conlact with chambers.
Note: Health departments may
require a wet-run pressure check
to be done prior to ehamber
installation when the pipe is lay-
ing on the ground. Check with
your local hea¡th department for
the proper procedure.
Place end cap over inlet end.
5. (Method A) Secure the pres-
sure lateral pipe to the top of the
first chamber with a plastic pipe
strap at the outlet end of the unit.
Slide the strap up through a slot
in the chamber top, down through
the other slot, and cinch the two
ends around the pipe.
6. (Method B) With the holes
point¡ng up, stabilize the pressure
lateral pipe on the ground to
prevent it from moving.
7, Lift and place the next Secure pressure pipe.
chamber onto the previous one al a 4s-degree angle, L¡ne up thê
chamber end between the connector hook and locking pin at the top of
lhe first chamber. Lower it to the ground to engage the interlocks.
8. (Method A) Secure the lateral pipe to the top of the next chamber
once in place. Follow the same method in Step 5.
9. Continue interlocking chambers and securing the pipe until the lrench
is compleled.
10. Before attach¡ng the final end cap, ¡t may be necessary to remove
the tongue of the connector hook on the last chamber wilh a pair of
pliers depending on your pipe diameter.
11. lnsert the pressure lateral
p,pe through the hole in the final
end cap and slide the end cap
toward the lãst chamber. L¡ft the
end cap over the modified con-
nector hook and push straight
down to secure ¡t to the chamber.
Note: lf cleanout extensions are
required, use a hole saw to êut a
hale in the top of rhe Quick4
Plus All-in-One Endcap so the
pressure lateral pipe w¡th an
elbow can extend to the ground
surface. For cleanout access,
use the "lnstalling Optional
lnspection Ports" section ¡n the
ge neral i n stal lation i nstruct¡on s.
Lateral pipe through end cap.
12, lf installing multiple rows of
chambers, follow Steps 1-9 to lay
the next row of chambers
parallel to the first. Keep a
minimum separation distance
between each row of chambers
as required by local code.
Faiture to comply wìth these ¡nstallation instructlons may invalidate the warcanty'
Contact lnfiltralor Systems'Techn¡cal Services Deparlment for assistance al 800'221'4436.
Advantages of Method A
. Pipe and orifice placed closer to the chamber dome offer
improved distribution.
. Pipe positioned at the top of the chamber places it well above
effluenl.
. Plastic p¡pe hanger easily secures pipe in place.
Advantage of Method B
. Pipe resting on lhe trench bottom allows easy installation and
maintenance.
. Stabilizing "T's" keep pipe level.
. System promol€s efficient pressure checks.
. Pipe resting on the trench bottom allows easier inspections if
monitoring ports are ¡nstalled.
PRESSURE PIPE WTH
HOLESAT 12 O'CLOCK STABILIZE OR "T EVERY ,IO'TO
{MAY BE INSTALLED PIPE ROTATION AND
EtTHER StDÉ)MAINTAIN PROPER PIPE POSITION
ALL WEATHER PLASÍC
PIPF STRAP WITH 120 POUNDS
TENSÍLE STRENGTH AI EVÊRY
CHAMBER CONNECTION
PRESSURË PIPE WTH
HOLESAT I2 O'CLOCK
(MAY BE INSTALLED ON
OUICK4 PLUS
STANDARD LP CHAMBER QUICK4 PLUS
STANDARD LP CHAMBER
EITHER SIÞÊ)
lnfiltrator Systems, lnc. Limited Warranty
(a) The structural integrity of each chamber, end cap and other accessory manufaclured by lnfiltrator ("Units"), when installed and operated in a leachfield of an onsite
date that the sept¡c permit is issued for the sept¡c system containing the Units; provided, however, that ¡f a septic permit ¡s not required by applicable law the warranty perod
Limited Warranty. lnfiltrator's liabilily spêcifically excludes the cosl of removal and/or installat¡on of the Units.
(b) THE LIMITED WARRANTY AND REMEDIES IN SUBPARAGRAPH (a) ARE EXCLUSIVE- THERE ARF NO OTHER WARRANTIES WTH RESPECI TO THE UNITS,
INCLUDING NO IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
(c) This Lim¡ted Warranty shal¡ be vo¡d if any part of the chamber syslem is manufactured by anyone other lhan lnfiltrator. The Limited Warranty does not extend to inc¡den-
tal, consequentiã|, special or indirect damages. lnf¡ltrator shall not be liable for penalties or l¡quidated damages, including loss of production and prof¡ts, labor and
materials, overhead costs, or other losses or expenses ¡ncurred by the Holder or any thkd party. Specif¡cally excluded from Limited Warranly coverage are damage to the
Units due to ordinary wear and tear, alteration, accident, m¡suse, abusê or neglect of the Un¡ts; the Units being subjected to vehicle traffic or other conditions wh¡ch are not
system containing the Units; fa¡lure of the Units or the septic system due to ¡mproper siting or impropsr s¡zing, excessive water usage, improper greaso disposal, or improp-
Further, in no event shall lnfiltrator be respons¡ble for any loss or damage to the Holder, the Units, or any third party resulting from Ínstallation or
sh¡pment, ôr from any product liability cla¡ms of Holder or any thkd party. For this Limited Wârraniy to apply, the Units must be installed ¡n
accordance wilh all s¡te condit¡ons required by State and local codes; all other applicable laws; and lnf¡llrator's ¡nslallation ¡nstruct¡ons.
(d) No representative of lnfiltrator has the authority to change or extend this Limited Warranty. No warranty applies lo any party other than lhe original Holder.
The above represents the standard Lim¡ted Warranty oTfered by lnf ¡ltratoÍ. A l¡mited number ol Stâtes and couniies have different warranty
requ¡rements. Any purchaser of Units should contact lnfiltrator's Corporate Headquarters in Old Saybrook, Connecticut, prior to such purchase,
to obtain a copy of the applicable warranty, and should carefully read that warranty pr¡or to the purchase of Units.
Distributed By:
IN FILTRATOR'
systems inc.
6 Business Park Road . P.O, Box 768
Old Saybrook, CT 06475
860-577-7000 . FAX 860-577-7001
1-800-221-4436
www. inf i ltratorsystems.com
Ouick4 are registered lrademarks of ln'filtøtor Systems lnc, lnfiltrator is â registered lradema* in Fræce. lnfiltElor Syslems Ìrc, is a regÌstered lradema.k in Mexico.
@ 2oos lnfiltr;tor Systero lnc. AI rights reæruéd. Rinted in u.S.A - PLUso3o7ogAG-o
$
0rifice Shields
Orenco
Applications
Orenco@ Orifice Shields are used in a pressurized distributi0n system
to protect the orifices from bacKill debris that might cause orifice
blockage.
ùrifrce shield installed on lateral pipe, standard configuration
Shield
0riïice
Cutaway vieq standard configuration
0rilice
Shield
Cutaway view, cold weather configuration
General
Orenco Orifice Shields snap{it onto laterals, They may be placed on
top 0f or beneath a laleral, depending on the location of The orifice.
Orifice shields are covered by method-of-use patenl # 5,360,556.
Standard Models
0s075, 0s1 00, 0s1 25, 0s1 50, 0s200
Product Code Diagram
Lateral pipe s¡ze, nomlnal:
075 = A.75 in. (20 mm)
\
0s
100 = 1.00 in
'125 = 1.25 in
150 = 1.50 in
200 = 2,00 in
(25 mm)
(32 mm)
(40 mm)
(50 mm)
ûrifice shield
Material of Gonstruction
PVC perASTM D-1784
Physical Specifications
Model Shield 0.0.
in. (mm)
Lateral pipe 0.0.
in. (mm)
0s075 3.5 (Be)1.05 en
0st 00 3.5 (89)1.315 (33)
0s1 25 3.s (Be)1.66 (42)
0s1 50 4.5 (114)1,90 (48)
0s200 4.5 (114)2.375 (60)
grenco Systemso lnc. ,814 Airway Ave., Sutherlin,0R 97479 USA . 8{lG3¡18-9843 . 541-¡15S4{{$ o ¡¡rvw.6¡g¡çs.sstn I'ITD-SF-0S-1
ßev. 1.1, @ 09/14
Page I of f
Item#
SEK.Orenco@ Flushing Assemblies
Flushinq Assqmblies
Orenco@ flushing assembties provide easy
access for lateral maintenance. Flushing
assembly kits include a PVC sweep with ball
valve and a polyethylene valve box enclosure.
Orenco@ flushing assemblies are available in the
following sizes:. L" diameter. L.25" diameter. 1.5" diameter. 2" diameter
Valve Boxes
Orenco@ valve boxes are used to provide access
to flushing assemblies. Constructed of
polyethylene.
Valve Bax,7-in diameter round enclosure
Note: Kits includeVBT valve box enclosure
,a--
*
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UAttEV
PRECAST,tnc
Water &
Wastewater. Systems. Products. Service
(7Ls) 3ss-6764 3:8:ffiHtv Road 317
Faxz (719) 395-3727 Buena Vista', co 81211
Website: http://valleyprecast.com/
Email: frontdesk@valleyprecast.com
Item #
loooT-2cP-Hll
IOOO Gallon Top $eam
ñro Gompartment
wlth Htgh Head Pump
11
'-¡¿i
Top
Menr
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(Bþ lloþlJde *l,j r\
11 \/
Rtåber MhfnmHoþm
Wtccb
Boot
Sec'tion
View 6l l"
5l
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T¡nlcfmGASTt C4ÍIf ¡W
lncludlng Glt+l.O0 þr r¡¡llllltt
conn¡6l¡r 60(Xlpelæncrúo Delhrcred æmplúrvlüt lnbmal plplng
Ssryþe æntacr¡. avalffile for rmfuHrltæ
Pump:o Lot{era TSS and lmplot¡es elllrcnt
quallVbllelde Easleûtn¡mpsytbmbmalnhlnon
the marloto Gornplete lnshlhüon trldng, panel,
mourüng and dart+p pmcedume)o Cornptrtewrranty
DNgdútp.c. r lilrüt Dhnnþn¡
l¡r¡ü , lrUldüt tlttiltt
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llf Ofr¡lf
lnlct$dc O¡üet$dt Td
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ll'lor¡xTltllldc ldd
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xfrhu*T.¡* TdI
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Wabr&
Wasûeriãter
¡ Systems
¡ Produ6
(zf 9) 395t76¡l 2flXI5Co' Rd 317
P.O. Bo(æ5
Fax fl19l*gftsgÏn Btsnvlsb' @81211
Webclþ: www.valle¡ryracast æm
Emll : noilUeek@valleypmcastærtWrrlc. oseMoe
Double UUalled PVG Riser & Lid Options
Poly Lid
(Static load þebd to 5(Xn bs)I Skid resistance surfaæo Available in green. Highest levelof UV Proûoction induded. lndudes a fuam gasket br airlight and
waÞrti ght appl ications. lncludæ squar€ drive scr€wrs b disoourage
unauthorized enüy. lnsulation panels acfiieve R-10 insulation nating
? of lnsulaüon
Sûandald
Orenco @ DuraFibern Access Lids (FLD)
Not recommended fur vehicr¡lar haff c
24'and 30'Diamebrco Solid, resin-infused fiberglass consürJc-tion. 20,0üÞlb breaking süertgüt. Standard graen or brcrvn ælors. Available with orwithout urethane lid gasket. Available with carbon filffiono 4 stainlees sbel f,aüead socket cap scrêrñrs & hel(
key wrcncfr. lnsulabd lids available - 2'or4'
Double Walled PVC Riser
. Available in24'and 30" Diamebr. Cut b ¡engür. Sold in +l-2" incrernenb. Must be ct¡t bottreerr ribe
M,
Wür&m¡ürwtr
o Systemg
oPrcducûs
InG. oSerulæ
frrq goı{?rt 2trþ&' ru'fl7
P.O.Bo(æ5
Fæ fir9) efÆ{Jrar B'HE\frb,@812ít1
Wcb.lb: rww.valle¡prccasû.æm
Emdl: tonUæf@ttallqnr€d.@m
Biotube@ ProPak Pump PackagerM
Orenco
60-Hz Series Pump Packages
Control panel
General
0renco's Biotube@ ProPaK" is a complete, integrated pump package for
filtering and pumping effluent from septic tanks, And its patented pump
vault technology eliminates the need for separate dosing tanks.
This document provides detailed informaiion on the ProPak pump vault
and filter, 4-in. (100-mm) 60-Hz turbìne effluent pump, and control panel.
For more information on other ProPak components, see the following
0renco technical documents:
. Float Switch Assemblies (NSU-MF-MF-I)
. Discharge Assemblies (NTD-HV-HV-1 )
. Splice Eoxes (NTD-SB-SB-1)
. External Splice Box (NTD-SB-SB-.1)
Applications
The Biotube ProPak is designed to filter and pump effluent to either
gravity or pressurized discharge points. lt is intended {or use in a septic
tank (one- 0r two-compartment) and can also be used in a pump tank,
The Biotube ProPak is designed to allow the effluent filter to be removed
for cleaning without the need to remove the pump vault or pump, simpli-
fying servicing.
Complete packages are available for on-demand or timed dosing sys-
tems with flow rates of 20, 30, and 50-gpm (1.3, 1,9, and 3.2 Usec),
as well as with 50 Hz and 60 Hz power supplies.
Standard Models
BPP2ODD, BPP2ODD-SX, BPP3OTDA, BPP3OTDD-SX, BBPPSOTDA,
BPPSOTDD-SX
Product Code Diagram
BPP nI- [f
External splice box
(Optional; internal splice
box comes standard.)
Riser lid
(not included)
R¡ser (not
included)
Discharge
assembly
Float
bracket
Support pipe
I
I
i
Pump vault
Float stem
Floats
Float collar
Vault inlet holes
4-in. (100-mm)
turbine effluent pump
Biotube@ filter
cartridge
Pump
liquid end
Pump motor Control panel applicationì
DD = demand dosing
TDA = timed-dos¡ng,
TDD = limed dosing,
meter & counters
Pump flow rate, nominal:
20 = 20gpm(l.3Usec)
30 - 30 gpm {1.9 Usec)
50 = 50gpm{3.2usec)
options;
57-in. (1448-mm) vault height, internal
splice box, standard discharge assembly
68 ¡n. (1727-mm) vault height
exlernal splice box
cold weather discharge assembly
drainback discharge assembly
can lock
non-mercury floât
analog iinrer
digital timer, elapsed time
-r
I
I Standard
Blank =
68SX:
CW=DB=0-
Biotube@ ProPakrM pump package components.
Biolube* ProPak"' pump vault
orenco Systems@ 1nc.,814 Airway Ave., Sutherlin,0R 97479 USA . 8ffi-3rt8-9843 o 541-459-4449 . wwworenco'com NTD-BPP.1
Rev.1.2, @ 08/14
Page f of 4
Orenco
ProPak" Pump Vault Biotube@ Filter Cartridge
Materials of Construclion Materials of Construction
Vault body Polyethylene Filter tubes Polyethylene
Support pipes PVC Cartridge end plates Polyurethane
Dimensions, in. (mm)Handle assembly PVC
A - Overall vault height 57 (1448) or 68 (1727)Dimensions, in. (mm)
B - Vault diameter 17.3 (4391 A - Cartridge height 1B (4571
C - lnlet hole height 19 (475)B - Cafiridge width 1 2 (305)
D - lnlel hole diameter (eìght holes total)2 (50)Performance
E - Vault top t0 suppofi pipe bracket base s 16)
F - Vault bOttom t0 filter cartridge base 4 (102)
D
AC
T-
E
B
ProPakrM pump vault (shown with Biotube fllter and effluent pump)
Biotube@ mesh opening 0.125 in mm).
Total filler flow area 4.4 t( (0.4 m'z)
Total filter surface area 14.5 ft, ('1 .35 m,)
Maximum flow rate 140 gpm (B.B Usec)
"0.062 ¡n. (1.6-nn) lilter ntesh available
F_ B __l
BiotubP filter cartridge (shown with float switch assembly)
E
T
A
NTD-BPP-1
Rev. 1.2, @ 08/14
Page 2 tt 4
orenco Systems@ |nc.,814 Airway Ave., Sutherlin, 0R 97479 USA . 800-348-9843 . 541-459-4449 . www,orenco.com
Orenco
4-in. (100-mm) Turbine Effluent Pumps
Orenco's 4-in. (100 mm) Turbine Effluent Pumps are constructed of
lightweight, corrosion-resislant stainless steel and engineered plastics;
all are field-serviceable and repairable with common tools. All 60-Hz
PF Series models are CSA cerTified to the U.S. and Canadian safety
standards for effluent pumps, and meet UL requirements.
Power cords for 0renco's 4-in. (100-mm) turbine effluent pumps are
Type S00W 600-V motor cable (suitable for Class 1, Division 1 and 2
applications).
Materials of Construction
Dìscharge:Stainless steel or glass{ìlled polypropylene
Dischargebearing: Engineeredthermoplast¡c(PFE[ç
Ditfusers:Glassjilled PPO
lmpellers:Acetal (20-, 30-gmp), Noryl (50-gpm)
lntake screens:Polypropylene
Suclion connection Slainless steel
Drive shaft:300 series stainless steel
Coupling:Sintered 300 series slainless steel
Shell:300 series stainless sleel
Lubricant:Deionized water and propylene glycol
Specifications
Pump Curves
Pump curves, such as those shown here, can help you deiermine
the best pump for your system. Pump curves show the relaiionship
between flow (gpm or Vsec) and pressure [DH), providing a graphical
representation of a pump's performance range. Pumps pedorm best
aïlhetr nominal flow rate, measured in gpm or Usec.
FIow in liters per second (Usec)
0.63 1.26 1.89 2,52 3.15 3.79 4.42
20
140
oe 120
Ë'*
È(q
9eo
g'=
Eoo\È
G
-o {u
43
31
30
24
6
0¡
c¡
=Þ
ÈG!¡+(¡'=
G\È
G
Ê
6
Nom. fow,
gpm (usec)
Lengttr
in. (mm)
Weight
lb (ks)
Discharge lmpellers
in., nominal 1
10 2B 30 40 50 60 7A
Flow in gallons per minute (gpn)
20 (1.s) 22.5 (572) 26 (11) 1.25 4
30 (1.e) 21.3 (541) 25 (11) 1.25 3
50 (3.2) 20.3 (516) 27 (12) 2.00 2
Performance
Nom. fow
gpm (Usec)
Design
flow amps
Rated
cycles/day
Min liquid
level, in. (mm) 2
hp (kW)
20 (1,3) 0.5 {0.37) 12.3 300 18 (457)
300 20 (508)
300 24 (610)
1 Сscharge is fenale NPT threaded, IJ.S. non¡nal size, to acc1nn1date )rencde d¡scharge
hose and valve asseiltblies. C1nsult y)ur qreuc7 Distr¡but1r ab1ut fittings t0 c1nnect d¡schàrge
assenblies t0 metr¡c-sized piping.
' Minlnum l¡quid level is for single pumps when installed ¡n an qrencoBi1tubæ Pr1PakrM Pump
VâulÍ.
30 (1.S) 0.5 (0.37) 1l.B
50 (3.2) 0.5 (0.37) 12j
.';,
i
\
\
\
PF 50051 1
\
\
\
\\
Qrenco Systems@ ¡nc, , 814 Airway Aye,, Sulherlin,0R 97479 USA . 800-348-9843 . 541-¿¡59-4449 . www,orenco.com IITD.BPP-1
Rev.'1.2, @ 08/14
Page 3 of 4
Orenco
Control Panel (Deman d Dose)Gontrol Panel (Timed Dose)
0renco's ProPaK" demand dose control panels are specifically engineered
for lhe ProPak pump package and are ideal for applicaiions such as
demand dosing from a septic tank into a conventional gravity drainfield.
0renco's ProPak timed dose control panels are specifically engineered for
the ProPak pump package and are idealfor applications such as limed
dosing from a septic tank into a pressurized drainfield or mound. Analog or
digital timers are available.
Materials of ConstructionMaterials of Construclion
Enclosure UV-resistanl fiberglass, UL Type 4X Enclosure UV-resistant fiberglass, UL Type 4X
Hinges Stainless steel Hinges Stainless steel
Dimensions, in. (mm)Dimensions, in, (mm)
A - Height 1r.5 (2S0)A - Height 11.5 (290)
B - Widrh 9.5 (240)B - Widrh 9.5 (240)
C - Depth 5.4 (135)C - Deplh 5.4 (135)
Specifications Specifications
Panel ratings 120U,314 hp (0.56 kW), 144, single phase,60 Hz Panel ratìngs 120V,314 hp (0.56 k\t!,144, single phase,60 Hz
1 . Motor-start contactor I 6 FLA, t hp (0.75 kW), 60 Hz; 2.5 million cycles
at FLA (10 million at 50% of FLA)
2. Circuit 120 V, 10 A, 0FF/0N switch, Single pole breakers
3. Toggle switch Single-pole, doubleìhrow HOA switch, 20 A
4. Audio alarm 95 dB at 24 in. (600 mm), warble{one sound, UL
Type 4X
5. Audio alarm 120 V automalic reset, DIN rail mount silence
relay
6. Visual alarm 7l}-in. Q?-nm) diameter red lens, "Pushlo-sìlence,"
1 20 V LED, UL Type 4X
Control panel, demand-dose
Dual-mode Programmable for timed- or demand-dosing
(digital timed-dosing panels only)
120 V repeat cycle from 0.05 seconds to 30
hours. Separale variable controls for OFF and
0N time periods
120-V programmable logic unit with bu¡li-¡n LCD
screen and programming keys. Provides control
functions and timing for panel operati0n
2. Motorstart contactor 16 FLA,1 hp (0.75 kVû,60 Hz; 2.5 million cycles
at FLA (10 million at 50% of FLA)
3. Circuit breakers 120 V 10 A, 0FF/0N switch. Single pole 1 20 V
4. Toggle Swìtch Single-pole, double-throw HOA switch, 20 A
5. Audio alarm 95 dB at 24 in. (600 mm), warblelone sound, UL
Type 4X
6. Visual alarm 7 I B-in. Q?-nm) diameter red lens, "Push{o-silence",
1 20 V LED, UL Type 4X
Control panel, timed-dose (digital timer model shown)
1a. Analog timer
(not shown)
1b. Digital timer
(shown below)
o
@
o
ffio
NTD.BPP.l
Bev.1.2, @ 08/14
Page 4 of 4
()renco Systems@ lnc. ,814 A¡rway Ave., Sutherlín, 0R 97479 USA . 800-348-9843 . 541-459-4449 . wwworenco,com
a I
PF Series 4,-inch (1 00-lTlm)
Submersible Etfluent Pumps
Applications
Our 4-inch (100-mm) Submersible Effluent Pumps are designed to
transport screened effluent (with low TSS counts) from septic tanks or
separate dosing tanks, All our pumps are constructed of lightweighi,
corrosion-resistant stainless steel and engineered plastics; all are field-
serviceable and repairable with common tools; and all 60-Hz PF Series
models are CSA certified to the U.S. and Canadian safety slandards for
effluent pumps, meeting UL requirements.
Orenco's Effluent Pumps are used in a variety of applications, including
pressurized drainfields, packed bed filters, mounds, aerobic units, effluent
irrigation, effluent sewers, wetlands, lagoons, and more. These pumps
are designed to be used with a Biotube@ pump vault or after a secondary
trealment system.
-
Discharge Connection
-
Bypass Orifice
Franklin
Liquìd End
-
Suction Connection
Franklin
Super Stainless
Motor
Features/Specif ications
To specifu this pump for your installation, require the following:
. Minimum 2{-hour run-dry capability with no deterioration in pump life
or performance*
¡ Patented lÆ-inch (3-mm) bypass orifice to ensure flow recirculation
for motor cooling and to prevent air bind
. Liquid end repair kits available for better long-term cost of ownership
. TRI-SEALrM floatìng impeller design on 10, 15, 20, and 30 gpm
(0,6, 1,0, 1.3, and 1,9 Usec) models; floating stack design on 50 and
75 gpm (3.2 and 4.7 Usec) models
. Franklin Eiectric Super Stainless m0t0r, rated for continuous use and
frequent cycling
. Type S00W 600-V motor cable
. Five-year warranty 0n pump or retrofit liquid end from date of manu-
facture against defects in materials or workmanship
' Not applicable for 5-hp (3.73 kW m1dels
Standard Models
See specifications chart, pages 2-3, for a list of standard pumps. For
a compleïe list of available pumps, call Orenco.
Product Code Diagram
PF t _tt l -r
I
I Cord lenoth,
Blank = 1030 =30
fr (m)J(3) 20 = 20 (6)(9) 50 = 50 (1 5)
Voltage, nameplate:
1 - 115. 200 = 2002=2301 4 =460
Frequency:
1 = single-phase 60 Hz
3 = three-phase 60 Hz
5 = single-phase 50 Hz
Horsepower (kl.U):
03 = %hp(0.25)
07 = %hp(0.56)
I5 = 1-lzzhp(1.11)
30 = 3hp(2.24)
05 = Y' ¡P ¡9.3,l0=1hp(0./5)
20 = 2hp(1.50)
50 - 5hp(3,73)
Nom¡nal flow, 0pm (Usec);
10 = 10
20=20
50=50
(0.6)
(1.3)
(3.2)
15 = 15 (1.0)
30 = 30 (1.9)
75 = 75(4.7\
"@;.LF80S80
LFì2053496
Powered by
Franklin ElecËric Pump, PF Series
. /¡hp {0.37kW) only
1220 volts for 50 Hz pumps
rNote: 20J00t c0rds are ava¡lallie only for sìngle-phase pumps through I -/, hp
orenco Sys{ems@ lnc. , 814 Airway Ave., Sutherlin,0R 97479 USA . 800-348-9843 . 541-459-4449 . www.orenco'com NTD-PU.PF.1
Rev.2.2, @ 09/14
Page 1 of 6
Orenco
Specifications,60 Hz G
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Pump Model
PF10051 1 10 (0.6) 0.50 (0.34 1 115 120 12.7 12.7 6 1 /+ in. GFP 23.0 (660) 16 (406) 26 (12) 300
PFl 0051 2 I0 (0.6) 0.50 (0.34 1 230 240 6.3 6.3 6 1 lzq in. GFP 23.0 (660) 16 (406) 26 (12\ 300
PF10053200 10(0.6) 0.50(0.37) 3 200 208 s,B 3,8 6 1%in.GFP 23.0(660) 16(406) 26(12) 300
PF1007124,s 10 (0.6) 0.7s (0.56) 1 2s0 240 8.3 8.3 B 1 % in. GFP 25.9 (658) 17 (432) 30 (14) 300
PF1 0073200 4.5 1 0 (0.6) 0,75 (0.56) 3 200 208 5.1 5.2 B 1 % in, GFP 25.4 (645) 17 (432) 31 (1 4) 300
PF10101216 10(0.6) 1.00(0.75) 1 230 240 9.6 9.6 I 1%in.GFP 27.9(709) 1B(45n 33(15) 100
PF101032005'6 10(0.6) 1.00(0.75) 3 200 208 5.5 5,5 9 1lqin.GFP 27.3(693) 18(454 37fin 300
PF1020125,67.8 10(0.6) 2,00(1.49) 1 230 240 12.1 12j 18 1/¿in,SS 39.5(1003) 22(559) 48(22) 100
PF-102032 5,6,8 10 (0.6)2,00(1,49) 3 230 240 7.5 7.6 18 1lz¿in,SS 37,9(963) 20(508) 44(20) 300
pFj 0203200 5,6.8 1 0 (0,6) 2.00 (1 .49) 3 200 208 8.7 8.7 1 B 1 t/¿ in. SS 37.9 (963) 20 (508) 44 (20) 300
PFl 5031 1 15 (1.0)0.33 (0.25) 1 I 15 120 8.7 8.8 3 1 /¿ in. GFP 19.5 (495) 15 (380) 23 (10) 300
PFl 5031 2 l5 (1.0) 0.33 (0.25) 1 230 240 4.4 4.5 3 1 % in. GFP 19.5 (¿95) i5 (380) 23 (10) 300
PF20051 1 20 (1.3) 0.50 (0.37) 1 115 120 12.3 12.5 4 1Y+in.GtP 22.3 (566) 18 (45n 25 (11) 300
PF200sl 2 20 (1 .3) 0,50 (0.37) 1 230 240 6.4 6.5 4 1 lq in. GtP 22.s (572) 18 (45n 26 fiz) 300
30(1,9) 0.50(0,37) 1 115 120 1l,B l1,B 3 11/qin.GtP 21.3(541) 20(508) 28(13) 300
PF20053200 20(1.3) 0.50(0.37) 3 200 208 3.7 3.8 4 1lqin.GFP 22.3(566) 18(457) 26(12) 300
PF2A1U245 20(1.3) 1.00(0.75) 1 230 240 10,5 10.5 / 1l+in.GFP 28.4(721) 20(508) 33(15) 100
PF20103200 4,s 20 (1 .3) 1 .00 (0.75) 3 200 208 5.8 5.9 7 1 % in. GtP 27 .8 V06) 20 (508) 33 (1 5) 300
PF2Aß124'5 20 (1.3) 1.50 (1.11) I 230 240 12.4 12.6 I 11/¿in.GFP 34,0 (864) 24 (610) 4l (19) 100
PF201532004s 20(1.3) 1.50(1.11) 3 200 208 7.1 7.2 9 1%in.GFP 30.7(780) 20(508) 35(16) 300
PF30051 1
PF30051 2 30 (1.e) 0.50 (0.37) 1 230 240 6.2 6.2 3 1 % in. GFP 21,3 (541) 20 (508) 25 (11) 300
PF30053200 30 (1,9) 0.50 (0 3n 3 2oo 208 3.6 3.6 3 1 % in. GFP 21.3 (541) 20 (508) 25 (11) 300
Pt300712 30 (1.9) 0.75 (0.56) 1 230 240 8.5 8.5 5 1 1z¿ in. GFP 24.8 (630) 2l (533) 29 (13) 300
2.00(1.49) 1 230 24t 11.0 11,0 10 llz¿in.SS 3s.5(902) 26(660) 44(20j 100
PF30073200 3û (1.9) 0.75 (0.56) 3 200 208 4.9 4.9 5 'l % in. GFP 24.6 (625\ 21 (533) 30 (14) 300
PF301012 4 30 (1 .9) 1 .00 (0.75) 1 230 240 10.4 10,4 6 1 /¡ in. GFP 27.0 (686) 22 (559) 32 (1 5) 100
PF30103200 4 30 (1 .9) 1 .00 (0.75) 3 200 208 5.8 5,8 6 1 % in. GFP 26,4 (671) 22 (559) 33 (1 s) 300
PF3015124,5 30(1.9) 1.50(1.11) 1 230 240 12.6 12.6 B i /¿in.GFP 32.8(833) 24(610) 40(18) 100
PF30153200 4 5 30 (1 ,9) 1 .50 (1 ,1 1) 3 200 208 6.9 6.9 B 1 lq in. GFP 2S.B (757) 22 (559) 34 (15) 300
PF301534 4'5 30 (1 9) 1.50 (1.11) 3 460 480 2.8 2.8 B 1 % in. GFP 29.5 (685) 22(559) 34 (15) 300
PF3020125.6,1 30(.ì.9)
PF30203200 s,6 30 (1 9) 2.00 (1.49)3 200 208 9.3 9.3 10 1 /+ in. SS 34.0 (864) 24 (610) 41 (19) 300
PF3030l 2 5' 6' 7, B 30 (1 .9) 3.00 Q.23)1 230 240 16.8 16.8 14 1 % in. SS 44,5 (1130) 33 (B3B) 54(24) 100
PF3030325'6.s 30(1.9) 3.00(2.23) 3 230 240 10.0 10,1 14 1%in.SS 44.3(1125) 27(680) 52(24) 300
PF30501256'78 30(1.9) 5.00(3.73) 1 230 240 25.6 25.8 23 1%in.SS 66.5(1689) 53(1346) 82ßn 100
PF305032 5'6'B 30 (1.9) 5.00 (3,73) 3 230 240 16.6 16.6 23 1 % in. SS 60.8 (1544) 48 (1219) 66 (30) 300
PF30503200 5,6.8 30 (1.9) 5.00 (3.73) 3 200 208 18J 18.7 23 I % in. SS 60.8 (1544) 48 (1219) 66 (30) 300
PF50051 1 50 (3.2) 0.50 (0.37) 1 I '15 120 12.1 12.1 2 2 in. SS 20.3 (51 6) 24 (61 0) 27 (12) 300
PF50051 2 50 (3,2) 0.50 (0.37) 1 23a 240 6.2 6.2 2 2 in. SS 20.3 (516) 24 (610) 27 (12) 300
PF500532 50 (3.2) 0,50 (0.37) 3 230 240 3.0 3.0 2 2 in. SS 20.3 (516) 24 (610) 28 (13) 300
PF50053200 50 (3.2)0.50 (0.37) 3 200 208 3.7 3.7 2 2 in. SS 20.3 (516) 24 (610) 2B (13) 300
PF500534 50 (3.2)0,50 (0,37) 3 460 480 1 .5 1.5 2 2 in. SS 20,3 (516) 24 (610) 28 (13) 300
PF540712 50 (3.2)0.75 (0.56) 1 230 240 8.5 8.5 3 2 in. SS 23.7 (602) 25 (635) 31 (14) s00
PF500732 50 (3.2)0.75 (0.56) 3 230 240 3.9 3,9 3 2 in. SS 23.7 (602) 25 (63s) 32 (15) s00
PF50073200 50 (3.2) 0.75 (0.56)3 200 208 4.9 4.9 3 2 in. SS 23j {587} 26 (660) 32 (15) 300
NTD.PU-PF1
Rev.2.2, @ 09/14
Page 2 of 6
0renco Systems@ lnc, ,814 Airway Ave., Sutherlirt,0R 9747S USA . 800-348-9843 . 541-459-4449 . www.orenco.com
Orenco
Specifications, 60 Hz (continued)É
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Model
50 (3.2) 0.75 (0.56) 3 460 1 (14) 300
PF501 û1 2 50 (3.2) 1.00 (0.75)1 230 240 10.1 10.1 4 2 in. SS 27.0 (686) 26 (660) 35 (16) 100
PF50103200 50 (3.2) 1.00 (0.75)3 200 208 5.7 5.7 4 2 in, SS 26,4 (671) 26 (660) 3s (18) 300
PF501034 50 (3.2) 1 ,00 (0.75) 3 460 480 2.2 2.2 4 2 in. SS 26.4 (671) 26 (660) 39 (18) 300
75 (4.7) 1 ,00 (0,75) 1 230 240 e.e 10.0 3 2 in, SS 27.0 (686) 27 (686) 34 (1 5) 1 00
PF5015124 50 (3.2) 1.50 (1.11) 1 230 240 12.5 12.6 5 2 in. SS 32.5 (826) 30 (762) 41 (19) 100
PF501532004 50 (3.2) 1.50 {1.11) 3 200 208 7.0 7.0 5 2 in. SS 25.3V44\ 26 (660) 35 (16) 300
PF503012 4'5'7'8 50 (3.2) 3.00 (2.23) 1 230 240 17.7 17.7 B 2 in. SS 43.0 (1092) 37 (940) 55 (25) 100
PF50303200 4,5.8 50 (3.2) 3.00 e..23) 3 200 208 13.1 13.1 I 2 in. SS 43.4 (1102) 30 (762) 55 (25) 300
PF503034 4,5,8 50 (3.2) 3.00 (2,23) 3 460 480 5.3 5.3 B 2 in. SS 40.0 (1016) 31 (787) 55 (25) 300
PFb0501 2 5,6,7's 50 (3.2) 5.00 (3.73) 1 230 240 26.2 26.4 13 2 in. SS 65,4 (1661) 55 (1394 64 (29) 300
PF505032 5'6'7,s 50 (3.2) 5.00 (3.73) 3 230 240 1 6.5 16.5 13 2 ìn. SS 59.3 (1506) 49 (1245) 64 (29\ 300
Pt751012
PF751512 75 Wn 1 .50 (1 .1 1) 1 230 240 12.1 12.3 4 2 in. SS 33,4 (848) 30 (762) 44 (20) 100
Specifications, S0 Hz
Pump Model
PF100s52 10 (0.6) 0.50 (0,3n 1 220 230 3.e 4.1 ti Y4 in. GFP 23.0 (584) 17 (432) 26 (12) s00
PFl00752 4,5 10 (0,6) 0.75 (0.56)1 220 230 6.2 6.2 I 1 % in. GFP 26.8 (658) 17 (4321 30 (14) 300
PF101552 5.6 10 (0.6) 1.50 (1.11)1 220 230 10.5 11.4 .lB 112¿in.SS 39.5(1003) 22(5591 46(21) 300
PF300552 30 (1,e) 0.s0 {0,37)1 220 230 4.1 4.1 4 1 % in. GFP 225 (572) 19 (483) 26 (12) 300
PF300752 30 (1.e) 0,75 (0.56)1 220 230 6.1 6.1 5 1 l/¿ in. GFP 24.8 (630) 19 (483) 29 (13) 300
PF301052 30 (1.9) 1.00 (0.75)1 220 230 7.4 7.4 7 1 Yq in. GFP 28.4 921) 20 (508) 32 (15) 100
PF30'1552 4,5 30 (1.9) 1.50 (1.11) 1 220 230 9,3 9.3 B 1 % in. GFP 35.4 (899) 24 (610) 40 (18) 100
PF500552 50 (3.2) 0.50 (0.37) 1 220 230 4.0 4.0 2 2 in. SS 20.3 (516) 25 (635) 29 (13) 300
PF500752 50 (3.2) 0.75 (0.56) 1 220 230 6.3 6.4 3 2 in, SS 23.7 (602) 25 (635) 31 (14) 300
PF501052 50(3.2) 1.00(0.75) 1 220 230 7.3 7.4 4 2in.SS 27,0(686) 26(660) 35(16) 100
PF501s52 50 (3,2) 1.50 (1,11) 1 220 230 9.1 e.] 5 2 in. SS 32.5 (826) 30 (762) 42 (19) 100
PF751052
Distr¡butor about f¡ttings to connect h1se and valve assemblies to netilc-sized píping.
Ûrenco for moÍe ¡nfornþtion.
3 We¡ght ¡ncludes cart1n and 10-ft (3-n) cord.
4 High-pressure d¡scharye a$ernbly rcqu¡red.
5 Do not use can-¡ock opt¡on (Q) on d¡scharge assembly.
6 Cust1n d¡scharge assenbly requircd f't these pumps. Contact qrcnca.
7 Capac¡t1r pack (sold separately or ¡nstalled ¡n a custom control panel) required f1r th¡s punp. Contact 0renco,
8 Torque locks are available Í0r all punps, and are suppl¡ed with s-hp añd 5-hp punps.
NÏD.PU.PF.1
ßev.2.2, @ 09/14
Page 3 of 6
75 (3.2j 1 .00 (0.75) 1 220 230 7.3 7 .3 4 2 in. SS 30.0 (762) 27 (686) 34 (15) 1 00
0renco Systems@ lnc. ,814 Airway Ave,, Sulherl¡n,0R 97479 USA . 800-348-984i1 . 541-¡159-¿1449 . www.orenco.com
Orenco
Materials of Construction
Discharge GlassJilled polypropylene or slainless steel
Dischargebearing Engineeredthermoplastic(PEE$
Diffusers Glassjilled PPO (Noryl GFN3)
lmpellers Celcon@ acelal copolymer on 10-, 20, and 30-gpm models; 50-gpm impellers are Noryl GFN3
Intake screen Polypropylene
Suct¡onconnertion Stainlesssteel
Drive shaft 7116 inch hexagonal stainless steel, 300 series
Couplìng Sintered stainless sleel, 300 series
Shell Stainless steel, 300 series
Motor Franklin motor exterior constructed of stainless steel. Motor filled with deìonized water and propylene glycol for constant lubrication. Hermetically
sealed motor housing ensures moistureJree windings, All thrust absorbed by Kingsbury-type thrust bearing. Rated for continuous dt¡ty, Single-
phase motors and 200 and 230 V 3-phase motors equipped with surge arrestors for added security, Single-phase moiors through 1.5 hp
(1 .1 1 kW) have built-ìn thermal overloacl protection, which trips aT 203'221" F (95-105" C).
Using a Pump Curve
A pump curue helps you determine the best pump for your system. Pump curves show the relationship between flow (gpm or Usec) and pressure
(toial dynamic head, orTDH), providing a graphical representation of a pump's optimal performance range. Pumps perform best at their nominal
flow rate - the value, measured in gpm, expressed by the first two numerals in an Orenco pump nomenclature. The graphs in this section show
optimal pump operalion ranges wilh a solid line. Flow flow rates outside of these ranges are shown with a dashed line. For the most accurate
pump specification, use 0renco's PumpSelect''' software.
Pump Curves, 60 Hz Models
160
140
(¡)
0¡
s 120
fl roo
È
EBo
o
F60\:40(È
Ê
20
800
700
AJ(¡¡
c 600
fl soo
È
E ¿oo
()
$ soo
\ì zoo
G
Ê
100
PF15 Series,60 Hz,0.3 hp
\.,.
002468101214
Flow in gallons per minute (gpm)
16 036912,l5182124
FIow in gallons per minute (gpn)
":'."
l;ffi PFî0 Series,60 Hz,0.5 - 2.0 hp
\
\PFl010
.. '.;;.
PFl007
PF'r00s
PF1005-FC
wllt"llow
controller
NTD.PU.PFl
Rev.2.2, @ ül/14
Page 4 of 6
0reneo Systems@ lnc. ,814 Airway Ave., Sutherlin, 0R 97479 USA . 800-348-9843 . 541-459-4449 . www.orenco.com
Orenco
900
800
$* roo
È*o
E 500
(¡)€t¡ 400
(Es 300
È.
.s 200.o
100
400
350
(¡¡
cr
s 300
f zso
È(È
ë 200
(5
$ rso
\I roo
|È
Ê
50
100
90
r¡¡e80
s70a\60ÈGe50
(J'È 40
EÈ30
Ê20È
10
450
400
(¡¡* sso
È sooa
È 250(Eq¡
ì zoo'È
E r¡o\È! roo
.G
50
60 Hz Models (continued)
5101520253035
FIow in gallans per minute (gpm)
PF20 Series,60 Hz,0.5 - 1.5 hp
.
L
"'..i..
I l
i
l
i
40
r0 20 30 40 50 60 70 80 90
FIow in gallons per minute (gpm)
PF30 Series,60 H2,0.5 - 5.0 hp
.':'..
l
I
E T
l
...i....\-].--'Ì\\
I
0 51015202530354045
Flow in gallons per minute (gpm)
r0 20 30 40 50 60 70 80 90 100
Flow in gallons per minutø (gpm)
00
0
0
PF50 Series, 60 H2,0.5 - 5.0
l
''.i,..
¡l.l
I
\
:j.."'i...,l l l
la-\\.
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L -.
PFIS Series,60 Hz,1.0 - 1.5 hp
0renco Systemso lnc, ,814 Airway Ave., Sutherl¡n,0R 97479 USA . 8{þ-3t18-984i1 r 541-459-4¡H9 . wwworenco.com fitïD-Pu-PF-1
nev,2.2,@ tgll+
Page 5 of 6
Orenco
PFlO - t.l kw
lP
l
i"'.,
.
I
t"'.
i \
a
l\
a
6mm flow
controller
Flow in gallons per minute63 13 19
(gpn), noninal?5 !¿
Pump Gurues,50 Hz Models
Flow in gallons per minute (gpn), nominal1.6 3.2 48 6.3 7.9 9.5 11 13
0.1 t.2 03 03 0.5 06 0J 0.8
Flow in liters pe¡ second (Usec)
0.4 0.8 1.2 1.6 2.0
Flow in liters pe¡ second (Usec)
32s.Ê
q
zoz $
=t¡
1s7 S.È(Eoso
131'È
E
È-
oo*È
00
ec¡
ql
.S sosı
GþU(¡¡€(¡
E¿o
È
aù
20
525 -E
oss SÈ
Þ\lr
394 e
ezs È
F
zoz !t¡¡È
rsr'3È
E
rsr È
È
-è66h
180
160
Qs 140
Q¡
.S tzoìa\rooÈ
Gt¡¡È80
C¡'=È
Soo\È
S40
Ê
20
120
00
0.90 L40
1.0 r.5 2.0 L5 3.0 3.5 4.0
Flow in literc per second (Usec)
Flow in gallons per minute (gpn), noninal1019n384851677686
0 0.6 1.2 1.8 Z4 3.0 3.6 4.2 4.8 5.4 6.0
FIow in liters per second (Usec)
þpn),
48
nominal56 63
FIow in gallons per minute7.9 t6 24 n 40
45
89-
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og ı'!¡
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ss€
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31 ì
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3:ì !.
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.è16h
40
e
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's ¡o
o
-25!Gq¡s20()'=ÈG.-Ètt\È
Sro
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12
I
6
3
0
450.5
PFflt Series,50 H2,0.37 - 1.1t
ñ
.,-.,i.
l
PFl50 $eries, 50 H2,0.37 - Lfl kW
L
ffi
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i
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f{TD-PU-PF1
Beu 2.2, O 09/14
Page 6 of 6
0rcnco Systems@ lnc. ,814 A¡Íway Ave., Sutherlin,0R 97479 USA . 800-3t18-9M3 . 541-459-4449 . w!Íworenco.com
Thß article may describe design criteria that was in effect øt the time the article was written. FOR CUfufuENT DESIGN
CRITENA, call Orenco Systems, Inc. at I-800-348-9843.
-_-,0renco Automatic Distr¡hut¡ng
Valve Assemblies
ñ-,ñt
€
Or€nco qTgterns'
lncorporated
1'800-348-9843
For Wastewater Effluent Systems
Introduction
Orenco's automatic distributing valve assemblies, pressurized with small high-head effluent
pumps, are useful for distributing effluent to multiple zones. These zones can be segments
of sand filter manifolds, drainfields, or other effluent distribution systems. Distributing
valve assemblies can substantially simplifu the design and installation of a distribution sys-
tem and reduce installation costs. This is particularly true where a distributing valve assem-
bly is used instead of multiple pumps and/or electrically operated valves. Additionally, a
reduction in long term operation and maintenance costs is realized due to a reduced size
and/or number of pumps. More even distribution can be achieved on sloping sites by zoning
laterals at equal elevations. This eliminates drainback to lower lines and the unequal distrib-
ution of effluent that occurs at the beginning of a cycle.
Valve Operation
The valve itself has only a few moving parts, requires no electricity, and alternates automati-
cally each cycle. Refer to Figure 1 for the following valve operation description. The flow
of the incoming effluent forces the rubber flap disk O to seat against the valve bottom Ø.
The opening @ in the rubber flap disk aligns with an opening in the valve bottom to allow
flow to only one valve outlet. The stem @ houses a stainless steel spring which pushes the
rubber flap disk away from the valve bottom after the flow of effluent stops. The stem acts
as a cam follower and rotates the rubber flap disk as the stem is raised and lowered through
the cam 9. The force from the flow of effluent pushes the stem down through the cam and
the stainless steel spring pushes the stem back up through the cam when the flow of effluent
stops. Each linear motion of the stem allows the rubber flap disk to rotate half the distance
necessary to reach the next outlet. V/hen there is no flow, the rubber flap disk is in the "up"
position and is not seated against the valve bottom.
Figure 1:
6llflfl Series Valve
NÏP-VA-1
Reu 12, @ 11/03
0renco Systems@, lnc.
Page I of 6
o
lnlet
----->
@
o
ø
o
,f
I ouu.tt
V
Figure 2:
Orenco Distributing Valve Assembly (6000 Series Valve)
The Distributing Valve Assembly
The Orenco Automatic Distributing Valve Assembly combines the distributing valve itself and sever-
al other components to give a complete preassembled unit that is easy to install, monitor, and main-
tain. Figure 2 shows a complete assembly. Because distributing valves with several outlets can be
diffrcult to line up and glue together in the field, the discharge lines in the assemblies are glued in
place at Orenco. The unions (1) allow removal and maintenance of the valve. The clear PVC pipe
sections (2) give a visual check of which discharge line is being pressurized. The inlet ball valve (3)
allows a quick, simple method to test for proper valve cycling. The ball valve also stops the flow of
effluent in case the pump is activated unexpectedly during maintenance or inspection. Check valves
may be necessary on the discharge lines. Use of check valves is discussed in the valve positioning
section.
Valve Assembly Hydraulics
Liquid flowing through the valve assembly must pass through fairly small openings and make several
changes in direction. Because of this, headlosses through the valve assembly are fairly high. Table 1
gives the headloss equations for several different assemblies and Figure 3 shows the graphical repre-
sentations of these equations. Orenco recommends that high-head turbine pumps be used to pressur-
ize the valve assemblies to ensure enough head is available for proper system operation. High-head
turbine pumps are also recommended because the use of a distributing valve usually requires more
frequent pump cycling. The high-head turbine pumps are designed for high cycling systems and will
outlast conventional effluent pumps by a factor of 10 or more in a high cycling mode. Furthermore,
the high-head turbine pump intake is 12 inches or more above the bottom of the pump and tends to
prevent any settled solids from being pumped into the distribution valve and obstructing its opera-
tion. A minimum flow rate through the distributing valve is required to ensure proper seating of the
rubber flap disk. Minimum flow rates for the various models are given in Table 1.
f{TP-VA-t
BeY.1.2, @ 11/03
0renco Systemso, lnc.
Page 2 of 6
Thble 1.. Automatic Distributing ValveAssembþ Headloss "Equations
Model Series Equation Operating Range lgtm)
v44ooA HL:0.085 x ql'4s 10 - 40
v46o0A HL:0.085 xql'ss ß-25
v6400A Hl:0.004sxd+3.5x(1-r409 ls -70
V66004 Hl:0.0049xd+5.5x(l-"-0'1q 15-70
ra|-
.>o
EoU'U'
so)5o¡-
!
t--
tt,ØoJ
E(go-
35
30
25
20
15
10
5
0
v66004
-
-/v64004
-/
v4400p.l-t/aJ'.-/.J/?-
-/zrt-¿
-/4 ----
,-J
-.1 -1 -t-
0510152025303540455055606570
Flow (gpm)
Figure 3:
Automatic distributing valve assembly headloss curves
The Pumping System
Although the distributing valve was designed for the irrigation industry, it has started to gain fairly
wide acceptance in the effluent pumping industry. However, because of the mechanical movements
of the valve, it is necessary to take steps to prevent solids from reaching the distributing valve that
may impede the operation of the valve. Orenco Biotubeo Pump Vaults - when properly sized and
installed - provide the necessary protection to prevent valve malfunction. The Biotube* pump vault
accepts effluent only from the clear zone between a tank's scum and sludge layers and then filters
this effluent through a very large surface area screen cartridge. Without this protection in eflluent
systems, the valve has very little chance of reliable long-term operation.
t{ÎP-VA-1
Bsv. t.2, @ l1lfXl
0renco Systemso, lnc,
Page 3 of 6
Valve Positioning
The physical position of the valve in relation to the pump and the discharge point is very important
for proper valve operation. The most reliable operation occurs when the valve is placed at the high
point in the system and as close to the pump as possible. The transport line between the pump and
valve should be kept full if possible. If the line is empty at the beginning of each cycle, pockets of
air during filling can cause random rotation of the valve. The valve is particularly vulnerable to this
erratic rotation with empty lines that are iong and not laid at a constant grade. An ideal valve loca-
tion is shown in Figure 4.
If the final discharge point is more than about 2 feet above the valve and the system does not drain
back into the dosing tank, check valves should be installed on the lines immediately following the
valve and a pressure release hole or line should be installed just prior to the valve. This pressure
release hole or line can go into a return line to the dosing tank or to a "minidrainfield" near the valve
In order for the valve to rotate reliably, no more than about 2 feet of head should remain against the
valve to allow the rubber flap disk to return to its up position. In many cases, it may take from one
minute to several minutes for the pressure in the valve to be lowered enough for proper rotation to
occur. Special care should be taken when installing systems controlled by programmable timers to
ensure cycling does not occur too rapidly. Figure 5 illustrates a valve assembly using check valves.
Pumping downhill to the valve should be avoided unless the transport line is very short and the ele-
vation between the discharge line out of the tank and the valve is less than about 2 feet. If the valve
is located many feet below the dosing tank, random cycling may occur while the transport line drains
through the valve at the end of the cycle. A pressure sustaining valve located just before the distrib-
uting valve may overcome this problem in some instances.
D¡stribut¡ng Valve A$embly
Discharge
Transport Line
Dosing Tank
Figure 4:
ldeal valve location
I{ïP-VA-r
Rev.1.2, @ 1ll03
0renco Systemto, lnc.
Page 4 of 6
System Startup
Refer to the Hydrotek Valve booklet that is provided with the distributing valve assembly for the
sequencing of the valve outlets. The transport line should always be flushed with clean water before
installing the valve. Any sand, gravel, or other foreign objects that may have been in the pipe during
installation can easily become lodged in the distributing valve, causing malfunction.
With the pump running, alternately close and open the ball valve on the distributing valve assembly
to check proper rotation of the valve. (Note: If check valves are used on the lines after the distribut-
ing valve, the pump may need to be tumed on and off to allow the pressure to be released from the
valve.) If visual operation of which zone is operating is not possible, watch the clear pipe on each
line for indication of which zone is operating.
Discharge Laterals
Pressure Release
L¡rc if h>2'4"
Valves if h>2L0"
Valve Assembly
lransport Line
Dosing Tânk
Figure 5:
Valve assembly below final discharge point
Maintenance
Annually check for proper operation by following procedures listed in the Hydrotek Valve booklet
and system startup procedures listed above.
Troubleshooting
1. PROBLEM: Valve does not change or cycle to next zone or outlet
CAUSE:The stem and disk assembly is not rotating when water flow is turned off and then
back on.
SOLUTION 1: Ensure that there is no debris inside the cam. Clean and carefully reinstall the cam.
SOLUTION 2: If fewer than the maximum number of outlets are being used, check the installation
of the cam. Ensure that the stem and disk assembly is not being held down by an
improperly installed cam. Refer to the cam replacement instructions.
t\tTP-vA-1
Rev.1.2, @ 1ll03
0rsnco Systomso, lne.
Page 5 of 6
SOLUTION 3:
SOLUTION 4:
SOLUTION 5
SOLUTION 6:
Remove the valve top and check for proper movement of stem and disk assembly.
Check for and remove any debris or foreign objects that may jam or retard the
movement of the disk.
Check for freedom of movement of stem and disk assembly up and down over the
center pin in bottom of valve. Scale deposits may build up on the pin and hold stem
and disk assembly down. Clean pin and again check for freedom of movement.
Be sure that all operating outlets are not capped and that the flow to operating zones
is not restricted in any manner. This would cause pressure to build up in the valve
and lock the stem and disk assembly in the down position.
The backflow of water from uphill lines may be preventing the valve from cycling
properly. This can happen when the valve is placed too far below an elevated line.
If the valve cannot be placed close to the high point of the system, a check valve
should be installed near the valve in the outlet line that runs uphill from the valve
and a drain line installed just prior to the valve to relieve the pressure.
2. PROBLEM: Water comes out of all the valve outlets
CAUSE: Stem and disk assembly not seating properly on valve outlet.
SOLUTION 1: Check for sufficient water flow. A minimum flow rate is required to properly seat
the disk as shown in Table 1.
SOLUTION 2: Remove the valve top and check the inside walls to ensure that nothing is interfering
with the up and down movement of the stem and disk assembly inside the valve.
SOLUTION 3: Make sure that the operating outlets are not capped and that the flow to the operat-
ing zones are not restricted in any manner.
3. PROBLEM: Valve skips outlets or zones
CAUSE Pumping into an empty transport line - especially downhill - may cause the valve
to skip outlets from pockets of air allowing the rubber flap disk to raise during a
cycle.
SOLUTION 1: Keep the transport line full.
SOLUTION 2: If the line must remain empty between cycles, use a larger diameter transport line
laid at a constant grade to prevent air pockets from forming.
CAUSE: The stem and disk assembly is being advanced past the desired outlet.
SOLUTION 1: Ensure that the correct cam for the desired number of zones is installed and that the
outlet lines are installed to the correct outlet ports of the valve as indicated by the
zone numbers on the top of the cam.
ITTP-VA.I
Rev.1.2, O IUo:l
ofenco Systemso, lnc.
Page 6 ol 6
ñ.-tñtGDistr¡hut¡ng Valves Submittal
Data Sheet OrencoSystcms'
lncorporated
t-800-348-9843
Applications
Automatic Distributing Valve Assemblies are used to pressurize
multiple zone distribution systems including textile filters, sand
filters and drainfields.
coupling
distributing valve
clear pipe
Top View
ball valve
elbow
Side View
elbows
Bottom Uiew
General
Orencos Automatic Distributing Valve Assemblies are
mechanically operated and sequentially redirect the
pump's flow to multiple zones or cells in a distribution
field. Valve actuation is accomplished by a combination
of pressure and flow. Automatic Distributing Valve
Assemblies allow ihe use of smaller horsepower pumps
on large sand filters and drainfields. For example, a large
community drainfield requiring 300 gpm can use a six-line
Valve Assembly to reduce the pump flow rate requirement
lo only 50 gpm.
Orenco only warrants Aulomatic Distributing Valves when
used in conjunction with High-Head Effluent Pumps with
Biotube' Pump Vaults to provide pressure and flow
requirements, and to prevent debris from fouling valve
operation. An inlet ball valve and a section of clear pipe
and union for each outlet are provided for a complete
assembly that is easy to maintain and monitor. ldeal
valve location is at the high point in the system. Refer to
Automatic Distributing Valve Assemblies (NTP-VA-1) for
more information.
Standard Models
v4402A, V4403A, V4404A, V4ó054, V4é0ó4, Vó4024, Vó4034,
Vó404A, Vóó05A, VóóOóA.
Nomenclature
l![A--r T| ¡Imlicates assemblv
IlNu¡nbe¡ of active outlets
Model series:
44 = 4400 series(2-4outlets)
46 : 4600 series(5-6outlets)
64 : 6400 serìes(2-4outlets)
66 = 6600 series(5-óoutlets)
Distributing valve
unr0n
l
Specifications
\/
Materials of Gonsfrr¡ction
AllFittings:
Unions:
BallValve:
Clear Pipe:
V4XXX DisÌributing Valves:
VóXXX Distributing Valves:
Sch. 40 PVC per ASTM specification
Sch. 80 PVC perASTM specification
Sch.40 PVC perASTM specification
Sch,40 PVC perASTM specification
High-strength noncorrosive ABS polymer and stainless steel
High-strength nonconosive ABS polymel stainless steel, and die cast metal
NSU-SF-VA-1
Rev.3.0, @ 4ñ13
Pago I ol 2
D ¡str¡buting Valves (continued )
36
àsost
gE
al,
EmEt
g{r
.Et-
3, t0ct
!tr.EJ
l¡,+
0
v66004
v6¡t{xtAv44004l-¿I
v46ülA
-/¿
¿
0510 15mE:n36{t{5flt5560667fr
Flow(gpml
Model lnletSize 0udeús Size How
v4403A 1.25 1.25
Max Head Min. Enclosurc
170 v8121710-40
v44044 1.25 1.25 10-40 170 v81217
v4ó054 1.25 1.25 10-25 170 RR2418
v4ó0óA 1.25 1.25 10 - 25 170 RR2418
Vó4024 1.5 1,5 15, 100 345 RR241B
Vó403A 1.5 1.5 15-1m 345 RR2418
Vó404A 1.5 1.5 15 - 100 345 RR241B
VóóOsA 1.5 1.5 15 - 100 345 RR241B
v6ó064 1.5 1.5 15- 1m 345 RR241B
ilsu-sF-vA-r
Rev.3.0, @ 4/03
Page? ol2
DMt î7t24t2013Shæl 1 of 1:heckodby: DFHtrMb¡ EMBìeþ:Norlo64É,'{rINFILTRATOR.INFILTRATOR SYSTEMS INC.4 Busìness Park Rd. Old Saybrook, CT 06475(8oo) 2214436QUICK4 PLUS STANDARDLOW PROFILE CHAMBERPRODUCT SPECIFICATIONINFILTRATOR SYSTEMS INC.QUICK4 PLUS STANÐARDLOW PROFILE CHAMBERPRODUCT SPECIFICATION{NOT TO SCALE)TOP VIEWQUICK4 PLUS ALL.INONE END CAP10.4- EFFECTIVE LENGTH*INSPECTION PORT8u3.3' INVERT rl-*- ru" *l1 3.3' EFFECTIVE LENGTH*QUICK4 PLUS END CAP4.5'EFFECTIVE LENGTH-53'8"é-ô r----\HåH,.r. ,*ua*, rl--- tt" *l6nSIDE VIEWEND VIEW48(EFFËCTIVE LENGTH)8"34"*ALL VIEWS = INSTALLED LENGTHS
Quick4' Plus Standard Low Profile Chambers
Pressure Distribution Systems lnstallation lnstructions ,-Qttick4."*
BeforeYou Begin
Quick4 Plus Standard Low Profile (LP) Chambers can only be
installed according to state and/or local regulations. Soil and site
conditions must be approved pr¡or to installation, Conduct a
thorough site evaluat¡on to determine proper sizing and siting of
the system before installation.
lnstalling the Ghambers and End Gaps
1, To allow pressure laterals to drain after each dose, drill â hole in the
bottom of the pipe at the end of the pressure line. Place the snap'off
splash plate or a paving block at the bottom of the trench to protect the
infiltrat¡ve surface from erosion.
1'PRËSSURE LATERAL
2" PRESSURE LATERAL (TYP.)
1" OR 2" TRENCH BOTTOM
PIPE PLACEMENT
2, W¡th a hole saw drill out the
appropr¡ate diameter hole to
accommodate the pressure lat-
eral pipe.
3. lnsert the pressure lateral pipe
into the end cap's drilled opening
and slide it into the manifold
pipe. Glue the pressure lateral
pipe to the manifold pipe.
Drill pressure pipe hole.
4. With the pressure lateral pipe through the end cap, place the back
edge of the end cap over the inlet end of the f¡rst chamber. Be sure lo
l¡ne up the locking pins on the top of both the chamber and end cap.
Materials and Equapment Needed
ü Quick4 Plus Standard LP
Chambers
E Quick4 Plus All-in-One or Q4
Plus Endcaps
t PVC Pipe and Couplings
n Backhoe
E Laser, Transit or Level
n Tape measure
Theee guidelines for construction machinery must be
followed dur¡ng installation:
tr Avoid direst contact w¡th chambers when using consîrucTion
equipment. Chambers require a l2-inch minimum of compacted cover
to support a wheel load rating ol 16,000 lbs/axle or equivalenl to an
H-10 AASHTO load rating.
B Only dríve across the trenches when necessary. Never dr¡ve
wheeled machinery over chambers.
tr Avoid stones larger than 3 inches in d¡ameler in backfill. Remove
$tones this s¡ze or larger that are in conlact with châmbers.
fl Shovel and Rake
tr Utility Knife
B 1 1/¿þinch Drywall Screws*
tr Screw Gun*
tr Small Valve-cover Box'
n 4-inch Cap lnspectíon Port
'Optional
Note: Health departments may
require a wet-run pressure check
to be done prior to chamber
installat¡on when the pipe is lay-
¡ng on the ground. Check with
your local health department for
the proper procedure.
Place end cap over inlet end.
5. (Method A) Secure the pres-
sure lateral pipe to the top of the
first chamber with a plastic pipe
strâp at the outlet end of the unit.
Slide the strap up through a slot
¡n the chamber top, down through
the other slot, and cinch the two
ends around the p¡pe.
6. (Method B) With the holes
po¡nting up, slabilize the pressure
lateral pipe on the ground to
prevent it from moving.
7, Lift and place the next Secure pressure pipe.
chamber onto the previous one at a 4s-degree angle. Line up the
chamber end between the connector hook and locking pin at the top of
the first chamber. Lower it to the ground to engage the intêrlocks.
8. (Method A) Secure thê lateral pipe io the top of the next chamber
once in place. Follow the same method in Step 5.
9. Continue interlocking chambers and securing the pipe until the trench
is completed.
10. Before attaching the final end cap, it may be necessary to remove
the tongue of the connector hook on the last chamber with a pair of
pliers depending on your pipe diameter.
11. lnsert the pressure latêral
p¡pe through the hole in lhe final
end cap and slide the end cap
toward the last chamber. Lift the
end cap over the modified con-
nector hook and push stra¡ght
down to secure it to the chamber.
Note: lf cleanout extensions are
required, use a hole saw to cut a
hole in the top of the Quick4
Plus AlLh-One Endcap so the
pressure lateral pipe w¡th an
elbow can extend to the ground
surface. For cleanout access,
use the "lnstalling Optional
Inspect¡on Ports" section ¡n the
g en era! i nstal lat¡on i nstruction s.
Lateral pipe through end cap.
12, lf installing multiple rows of
chambers, follow Steps 1-9 to lay
the next row of chambefs
parallel to the first. Keep a
minimum separation d¡stance
between each row of chambers
as required by local code.
Failure to comply wlth these instdllation ¡nstruet¡ons may invalidate the warranty.
Contacl lnl¡ltralor Systems'Techn¡cal Services Deparlment for assistance at 800-221-4436.
Advantages ot Method A
. Pipe and orif¡ce placed closer to the chamber dome offer
improved distribution.
. P¡pe positioned at the top of the chamber places it well above
effluênt.
. Plast¡c pipe hanger easily secures pipe in place.
Advantage ol Method B
. Pipe resting on the trench bottom allows easy installation and
maintenance.
. Stabilizing'T's" keep pipe level.
. Syslem promotes efficient pressure check6.
. Pipe resting on the trench bottom allows easier inspections if
monitoring ports are installed.
ALL WEAITIER PLASTIC
PIPE STRAP WffH 120 POUNDS
TENSILE STRENGTH AT EVËRY
CHAMBER CONNECTION
PRESSURE PIPE WTH
HOLËSAT I2 OCLOCK
{MAY BE INSTALLED ON
PRESSURE PIPE WITH
HOLES AT 12 O'CIOCK
(MAY BE INSTALLED ON
EITHER SIDE)
STABILIZE OR 'f" EVERY IO'TO
PIPE ROTATTON AND
MAINÍAIN PROPER PIPE POSITION
QUICK4 PLUS
OUICK4 PLUS
LP CHAMBER
LP CHAMEER
EITHER
lnfiltrator Systems, lnc. Limited Warranty
(a) The structural integr¡ty of each chamber, end cap and olher accessory manufaclured by lnfiltralor ("Units"), when installed and operated in â leachfield of an onsiïe
date that the septic permit is issued for the septic system containing the Units: provided, however, that ¡f a sept¡c permit is not required by applicable law, the warranty perod
Limited Warranty. lnfiltrâtois liabilily specifically excludes the cost of removal and/or installat¡on of the Unils.
(b) THE LÍMITÊD WARRANry AND RFMËOIES lN SUBPAFAGffAPH (a) ARË ËXCLUSIVE. THERE ARE NO OTHER WARRANIIES WTH RESPECI TO THE UNIÏS,
INCLUDING NO IMPLIED WAFRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTCULAR PURPOSE.
(c) This Limited Warranty shall be void if any part of the chamber system ¡s manufactured by anyone other than lnfiltrator. The Umited Wârranty does not extend to inciden-
tal, consequential, special or indirect damages. lnfiltrator shall not be liable for penalties or liquidated damages, including loss of production and protits, labor and
mâter¡als, overhead cosls, or other losses or expenses incurred by the Holder or any third party. Specifically €xcluded Trom Limited Warrânty coverage are damage to the
Units duê to ord¡nary weal and tear, alteration, accidenl, misuse, abuse or negloct of the Units; the Uníts being subjected to veh¡cle traffic or other condítions wh¡ch are not
system containing the Units; fa¡lure of the Units or the septic system due to improper s¡ting or improper sizing, excessive watêr usage, improper grease disposal, or improp-
Further, ¡n no event shall lnfiltrator be respons¡ble for any lÕss or damage to the Holder, tho Units, or any third party resulting from instalfat¡on or
shipment, or from any product liabil¡ty claims of Holder or âny third party. For th¡s Limited Warranty lo apply, the Un¡ts must be instâlled in
accordance with all site cond¡tions required by Stato and local codes; all olher applicable laws; and lnfillrator's installation ¡nslruct¡ons.
(d) No ¡epresentative oT lnfiltrator has lhe authorily to change or exlend this Lim¡ted Warranty. No warranty applies tô any party other than lhe original Holder.
Thé above represents the standard L¡mited Warranly olfered by lnf iltrator. A l¡miled number of States and counties have ditfêrent warranty
requirements. Any purchaser of Units shou¡d contact lnfiltrator's Corporate Headquarters in Old Saybrook, Connecticut, prior to such purchase,
to obtain a copy of the applicable warranty, and should care{ully read that warranty prior to the purchåse ol Un¡ts.
Dlstr¡buled By:
IN FI LTRATOR'
systems inc.
6 Business Park Road ¡ P.O, Box 768
Old Saybrook, CT 06475
860-577-7000 . FAX 860-577-7001
1-800-221-4436
www inf i ltratorsystems.com
Ou¡ck4 æ registered lBd€ma¡ks of lnfiltElor Systems lnc. lnl¡llrator is a registered lrademark in Fmæ. lnfltmtor Syslems |rc, is a reg¡stercd Ùademark iñ MqLÐ,
@ 2oo9lnfiftrãlor Syslem lnc. All rigtrls ræruéd. Pinted in U.S.A. - PLUS030709AG-O
#l=I
0rifice Shields
o
Applications
Orenco@ 0rifice Shields are used in a pressurized distribution system
to protect the orifices from bacKill debris that might cause orifice
blockage,
\
0rifrce shield installed on lateral pipe, standard configuntion
Shield
0rifice
Cutaway view standard configuntion
0rifice
Shield
Cutaway view cold weather configuntion
General
0renco 0rifice Shields snap{it onto laterals. They may be placed on
top 0f 0r beneath a lateral, depending on the location of the orifice.
Orifice shields are covered by method-of-use patenl # 5,360,556,
Standard Models
0s075, 0s1 00, 0s1 25, 0s1 50, 0s200
Product Code Diagram
Lateral pipe size, nominal
075 = 0.75 in. (20 mm)
\
0s
100 = 1.00
125 = 1.25
150 = 1.50
200 = 2.00
in. (25 mm)
in. (32 mm)
in. (40 mm)
¡n. (50 mm)
0r¡fice shield
Material of Gonstruction
PVC perASTM D-l784
Physical Specifications
Model Shield 0.D.
in. (mm)
Lateral pipe 0.D.
in.lmm)
0s075 3.5 (Be)1.05 (27)
0s1 00 3.5 (8e)1 .315 (33)
0s1 25 3.5 (8e)1.66 (42)
0s1 50 4.5 (114)1.e0 (48)
0s200 4.5 (1 14)2.375 (60)
0renco Systems@ lnc, ,8f4 Airway Ave., Sutherlin,0R 97479 USA . 8{10-3¿18-98¡ß o $tfl-tf$$-tltltf$ r www.orenco.com Nm-sF-0s-f
Rev.1.l, @ 09/14
Page I of I
Item#
SEK-Orenco@ Flushing Assemblies
Flushino Assemblies
Orenco@ flushing assemblies provide easy
access for lateral maintenance. Flushing
assembly kits include a PVC sweep with ball
valve and a polyethylene valve box enclosure
Orenco@ flushing assemblies are available in the
following sizes:. !" diameter. t,25" diameter. L.5" diameter. 2" diameter
Valve Boxes
Orenco@ valve boxes are used to provide access
to flushing assemblies, Constructed of
polyethylene.
Valve Box, 7-in. diameter round enclosure
Note: Kits include VB7 valve box enclosure,
*-.
*
€
UAttEY
PRECASTnc
Water &
Wastewater. Systems
r Products. Servíce
(7ts) 3ss-6764 3:3Ï"Î"åly Road 317
Fax: (719) 395-3727 Buena Vista' co 81211
Website: http://valleyprecast.com/
Email: frontdesk@valleyprecast.com