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JIP IW with internal thread and welded connection and T handle

Ball valves, JIP-IW, Reduced Bore, PN 40, DN 20, Internal thread / Welded

065N0908

JIP-IW DN 20 PN40 T lo

Product specifications

Characteristic
Value
Ambient temperature [°C] [min]-40 °C
ApplicationHeating and cooling
Approval standardEN 12266 part 1 P10-P11-P12 & part 2 F20PED Directive 97/23/EEC Modul H1
Basic Data Text TemplateDanfoss Kugelhahn Typ JIP 140.13, DN20,<br>PN40, einerseits Innengewinde,<br>andererseits Schweißende, Knebelgriff
Body materialWeldable steel #20 or similar CE PED approved material
China RoHS complianceOut of scope
Cone /seat sealing materialPTFE+C
Connection sizeRp 3/4
Connection typesInternal thread / Welded
Contain batteriesNo
DG Indicator ProfileNot relevant for dangerous goods
DescriptionJIP-IW DN 20 PN40 T lo
Differential pressure range [bar] [Max]40.00 bar
EU RoHS complianceOut of scope
FunctionOn/off
Kvs values [m³/h]15.00 m³/h
Leakage rate [% Kvs]Leakage rate A
Length [mm]160 mm
Material DescriptionJIP-IW DN 20 PN40 T lo
Media pH [Max]10
Media pH [Min]7
Characteristic
Value
Media temperature [°C] [Max]180 °C
Media temperature [°C] [Min]0 °C
Medium alternativeGlycolic water up to 50%
Mounting orientationAll
Number of ports2
Operation typeT handle
Permissible mediaDistrict heating/cooling circulation water
Pressure classPN 40
Product TypeJIP-IW
Product groupBall valves
Product lineDistrict Energy Controls
REACH Candidate List substancesLead (CAS no. 7439-92-1)
Rotation angle [°]90 °
Stem sealing materialPTFE/Graphite
Storage temperature [°C] [Min]-40 °C
Valve ball materialStainless steel
Valve body materialWeldable steel #20 or similar CE PED approved material
Valve sizeDN 20
Valve stem materialStainless steel e.g. X2CrNi19-11 (EN10272) / Mat. no. 1.4306
Valve typeReduced Bore
Welding ends materialWeldable steel #20 or similar CE PED approved material

General specifications

Characteristic
Value
Gross weight0.748 Kilogram
Net weight0.73 Kilogram
Characteristic
Value
EAN/UPC5702421654897
Proposition 65Cancer and Reproductive Harm