SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Product information Brief introduction Monosilicon pressure transmitter SMP858-NST monosilicon pressure transmitter is the best hygienic pressure transmitter meticulously designed by LEEG Instrument, with the world's most advanced silicon pressure sensor technology and patent encapsulation process.SMP858-NSF adopts full isolation seal structure to eliminate the humidity effects, suitable for severe wet cleaning occasion; double diaphragm overload protection structure to achieve the highest overload pressure 24MPa, suitable for severe pressure overload situations; strong transient voltage resistance to meet the standards of level 4 (Differential mode voltage: 2000V, common mode voltage: 4000V), suitable for severe surge voltage occasion; seven temperature regions, 20 linearity points and 160 pressure calibration points, suitable for severe temperature change occasion. Those leading manufacturing technologies redifine the best quality of hygienic pressure transmitter. Main parameters Pressure and level measurement Measuring medium The fluid which compatible with wetted parts Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 1SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Technical Specifications Measuring range and limit Square root output accuracy is 1.5 times linear output accuracy Note 1: TD is Turn down when | URV | a | LRV | , TD=URL/ | URV | when | URV | s | LRV | , TD = URL/ | LRV | Ambient temperature effects Within the range -20-80C total impact Vibration effects Output signal Two wire 4-20 mA output with digital communications, linear or square root output programmable, HART protocol is superimposed on the 4-20mA signal. Disclaimer: all the data used in the product description...
Open the catalog to page 2SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Technical Specifications Damping time Total damping time constant: equal to the sum of damping time of amplifer and sensor capsule Damping time of amplifer : 0-100S adjustable Diaphragm capsule (isolated diaphragm and silicon oil filling) damping time: S0.2S Startup after power off : s6S Normal services after data recovery:£31S Power supply Power supply and load requirements Net weight: about 2.9kg( T ri-clamp process connection, without mounting brackets) Environment condition * Please consult engineers for details Disclaimer:...
Open the catalog to page 3SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter EMC environment Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 4SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Menu function Transmission module type Quick menu Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 5SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Product selection instruction Electrical connection select instruction Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 6SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Product selection instruction Process connection select instruction Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 7SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitterProduct selection instruction Process connection select instruction Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 8SMP858-NST Monosilicon differential pressure transmitter SENSING TOMORROW Drawing and dimension with display (C) (unit: mm) Drawing and dimension without display (A) (unit: mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2016.11.V1.0
Open the catalog to page 9SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Product drawing and dimension Fixed mounting bracket (B4) drawing and dimension (unit: mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 10SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Product drawing and dimension Process connection (H01, H05-H06) (unit: mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 11SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Product drawing and dimension Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 12SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Ordering information chapter Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 13SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitter Ordering information chapter Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
Open the catalog to page 14SENSING TOMORROW SMP858-NST Monosilicon differential pressure transmitterOrdering information chapter Note 1: Measuring range: 10kPa-1 MPa. If the min measuring range is 10kPa, the single-end capillary length can not be more than 1m. Less than 1 m need to confirm with engineers. Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve
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