SP38H Pressure sensor
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SP38H Pressure sensor - 1

SENSING TOMORROW SP38H Monosilicon pressure sensor Product introduction The core sensing elements of SP38H adopts high reliability monosilicon technology, and the sensitive element has a built-in temperature sensitive element, which greatly improves the temperature performance of the sensitive element. It is a comprehensive digital and intelligent sensitive element. It is resistant to high pressure and high static pressure, the static pressure can reach 40MPa. It can be used in various harsh environments, and the working temperature range is as high as -40-85°C. It also has the characteristics of high measurement accuracy, high stability, strong output signal, and good long-term stability. Features Three-diaphragm overload structure High long term stability <±0.05%F.S./year Extremely low pressure and temperature hysteresis Built-in temperature sensitive element Various of isolating diaphragm to meet a wide range of anti-corrosion requirements Rugged construction with little effect of repackaging stress Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 2

SENSING TOMORROW SP38H Monosilicon pressure sensor Product introduction Measuring range and limit Nominal Value *: The above parameters are: The pressure range is based on 0 pressure value, the unit is kPa, the output signal range is measured in mV at 4V. Temperature diode output mV value Temperature Electrical performance Power supply: 2.5-12VDC Electrical connection: 110mm silicone rubber soft wire/Kovar Pins Common mode voltage output: 50% of input(typical) Bridge resistance: 6kΩ±0.5kΩ Response time(10%-90% ): <2ms Insulation resistance: >100MΩ@500VDC Insulation strength: <5mA/500VAC...

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SP38H Pressure sensor - 3

SENSING TOMORROW SP38H Monosilicon pressure sensor Product introduction Working temperature Storage temperature Output voltage at span Temperature effect at zero Temperature hysteresis Pressure hysteresi Long term drift Non-linearity error Static pressure effect Nominal value Diaphragm material Mechanical connection for housing Process connection H structure, double flanges, process connection 1/4-18NPT(F) ,drain valve on the rear end of flange, material SS 316, mounting thread: M10*1.5(F) H structure, double flanges, process connection 1/4-18NPT(F) ,drain valve on the rear end of flange,...

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SP38H Pressure sensor - 4

SENSING TOMORROW SP38H Monosilicon pressure sensor Product introduction Process connection selection Code Item H structure, double flanges, process connection 1/4-18NPT(F) ,drain valve on the rear end of flange, material SS 316, mounting thread: M10*1.5(F) H structure, double flanges, process Flange/ connection 1/4-18NPT(F) ,drain valve on Drain the rear end of flange, material SS 304, Valve mounting thread: M10*1.5(F) H structure, double flanges, process connection 1/4-18NPT(F) ,drain valve on the rear end of flange, material SS 316, mounting thread: 7/16-20UNF Female Outside...

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SP38H Pressure sensor - 5

SENSING TOMORROW SP38H Monosilicon pressure sensor Electrical connection Black Red Yellow Blue White Brown Wiring definition Color of lead wire Definition of lead wire Optional terminal pin number Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 6

SENSING TOMORROW SP38H Monosilicon pressure sensor Electrical connection Socket opening size of PCB for wiring (6 PIN) Dimension drawing of PCB socket Left view Main view Vertical view Wiring plug dimension (6 PIN) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 7

SENSING TOMORROW SP38H Monosilicon pressure sensor Electrical connection Application example Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 8

SENSING TOMORROW SP38H Monosilicon pressure sensor Housing connection (2) drawing and dimension (mm) Housing connection (4) drawing and dimension (mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 9

SENSING TOMORROW SP38H Monosilicon pressure sensor Housing connection (K) d rawing and dimension (mm) Housing connection (5) drawing and dimension (mm) Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 10

SENSING TOMORROW SP38H Monosilicon pressure sensor Packing size Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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SP38H Pressure sensor - 11

SENSING TOMORROW SP38H Monosilicon pressure sensor Selection Table Monosilicon pressure sensor Detailes specifications as following Welded structure Range code Parameters Model ( * )Fast delivery available Diaphragm material Silicone oil filling, temperature limit: -45-205℃ Inert oil, temperature limit: -20-160℃ H structure, double flanges, process connection 1/4-18NPT(F) , * drain valve on the rear end of flange, material SUS 316, mounting thread: M10*1.5(F) * H structure, double flanges, process connection 1/4-18NPT(F) , drain valve on the rear end of flange, material SUS 304, mounting...

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SP38H Pressure sensor - 12

SENSING TOMORROW SP38H Monosilicon pressure sensor SENSING TOMORROW Shanghai LEEG Instruments Co.,Ltd scan & follow LEEG wechat check website for more info ADD: No.99 Duhui Road, Minhang District, Shanghai China Postcode: 201109 Tel: (86) 21-31261976 Fax: (86) 21-31261975 E-mail: sales@leegsensor.com info@leegsensor.com Web: www.leegsensor.com Disclaimer: all the data used in the product description is not legally binding. Relevant technical details may be changed due to further improve 2023.08.V1.0

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