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Order XFM47S-VDN6-A2-3HD-40-SS by Aalborg XFM Digital Mass Flow Meter Steel - US Mega Store

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Attributes

Brand name, Manufacturer name, ManufacturerAalborg
Attribute00, Attribute20EMC Compliance with 89/336/EEC as amended. Emission Standard: EN 55011:1991, Group 1, Class A Immunity Standard: EN 55082-1:1992
Attribute01, Attribute21Circuit board have built-in polarity reversal protection, 300 mA resettable fuse provide power input protection
Attribute02, Attribute22Deviation of up to 1% from stated accuracy, after re-zeroing
Attribute03, Attribute23Up to 70%
Attribute04, Attribute2432 F to 122 °F (0 °C to 50 °C). 14 °F to 122 °F (-10 °C to 50 °C) - Dry gases only
Attribute05, Attribute25600 ms time constant; approximately 2 seconds to within ±2% of set flow rate for 25% to 100% of full scale flow
Attribute06, Attribute260.01% of full scale/psi (6.895 kPa) or better
Attribute07, Attribute270.15% of full scale/ °C or better
Attribute08, Attribute28±0.25% of full scale
Attribute09, Attribute29±1% of FS at calibration temperature and pressure
Attribute10, Attribute30Installation Level II; Pollution Degree II
Attribute11, Attribute31Performed at standard conditions [14.7 psia (101.4 kPa) and 70 °F (21.1 °C)]
Attribute12, Attribute32Please note that XFM Mass Flow Meters are designed to work only with clean gases. Never try to measure flow rates of liquids with any XFM
Attribute13, Attribute33Stainless Steel
Attribute14, Attribute34Viton-A
Attribute15, Attribute353/8" Compression
Attribute16, Attribute36No Display
Attribute17, Attribute37Universal 11 to 26 VDC
Attribute18, Attribute380-5 VDC
Attribute19, Attribute39RS232
AttributeKey00, AttributeKey20CE Compliance
AttributeKey01, AttributeKey21Transducer Input Power
AttributeKey02, AttributeKey22Attitude Sensitivity
AttributeKey03, AttributeKey23Relative Gas Humidity
AttributeKey04, AttributeKey24Gas ans Ambient Temperature
AttributeKey05, AttributeKey25Flow Response Time
AttributeKey06, AttributeKey26Flow Pressure Coefficient
AttributeKey07, AttributeKey27Flow Temperature Coefficient
AttributeKey08, AttributeKey28Repeatability
AttributeKey09, AttributeKey29Flow Accuracy
AttributeKey10, AttributeKey30Environmental (PER IEC 664)
AttributeKey11, AttributeKey31Calibrations
AttributeKey12, AttributeKey32Flow Medium
AttributeKey13, AttributeKey33Material
AttributeKey14, AttributeKey34Seals
AttributeKey15, AttributeKey35Fittings
AttributeKey16, AttributeKey36Display
AttributeKey17, AttributeKey37Power
AttributeKey18, AttributeKey38Output Signal
AttributeKey19, AttributeKey39Digital Interface
CategoryL1Process Control & Automation
CategoryL2Controllers
CategoryL3Flow
CategoryL4Aalborg XFM47S-VDN6-A2-3HD-40-SS
ConditionNEW
Extra Product NameOrder XFM47S-VDN6-A2-3HD-40-SS by Aalborg XFM Digital Mass Flow Meter Steel - US Mega Store
moq, multiple, tierMinQty11
MPN, SKUXFM47S-VDN6-A2-3HD-40-SS
qtyInStock2 Weeks Factory Lead Time
snippet<p><strong>Aalborg, XFM47S-VDN6-A2-3HD-40-SS, XFM Digital Mass Flow Meter Stainless Steel, Viton-A Seals, 3/8" Compression, No Display, Universal 11 to 26 VDC, 0-5 VDC, RS232, Hydrogen H2 0-60, L/Min, 14.7 psia Metering Pressure, 21.1 Deg C / 70 Deg F Temperature </strong> </p> <p><strong>Principle of Operation </strong> </p> <p>The stream of gas entering the Mass Flow transducer is split by shunting a small portion of the flow through a capillary stainless steel sensor tube. The remainder of the gas flows through the primary flow conduit. The geometry of the primary conduit and the sensor tube are designed to ensure laminar flow in each branch. According to principles of fluid dynamics, the flow rates of a gas in the two laminar flow conduits are proportional to one another. Therefore, the flow rates measured in the sensor tube are directly proportional to the total flow through the transducer. In order to sense the flow in the sensor tube, heat flux is introduced at two sections of the sensor tube by means of precision-wound heater sensor coils. Heat is transferred through the thin wall of the sensor tube to the gas flowing inside. As gas flow takes place, heat is carried by the gas stream from the upstream coil to the downstream coil windings. The resultant temperature dependent resistance differential is detected by the electronic control circuit. The measured temperature gradient at the sensor windings is linearly proportional to the instantaneous rate of flow taking place. An output signal is generated that is a function of the amount of heat carried by the gases to indicate mass molecular based flow rates. </p>
tierPrice11531

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usmegastore.comXFM47S-VDN6-A2-3HD-40-SS12 Weeks Factory Lead Time11 @ $1531.00
MegadepotXFM47S-VDN6-A2-3HD-40-SS111 @ $1531.00
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