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86-050A-R

86-050A-R

  • 厂商:

    HUMIREL(泰科)

  • 封装:

    Cylinder

  • 描述:

    SENSOR

  • 数据手册
  • 价格&库存
86-050A-R 数据手册
te.com 86 Compensated SPECIFICATIONS      Features      O-Ring Mount -40ºC to +125ºC Operating Temperature Range Up to ±0.1% Pressure Non Linearity 1.0% Interchangeable Span (provided by gain set resistor) Solid State Reliability Applications       Medical Instruments Process Control Fresh & Waste Water Measurements Partial Vacuum Gas Measurement Pressure Transmitters Tank Level Systems (RV & Industrial) 316L SS Pressure Sensor Small Profile 0 - 100mV Output Absolute and Gage Temperature Compensated The 86 compensated is a small profile, media compatible, piezoresistive silicon pressure sensor packaged in a 316L stainless steel housing. The 86 compensated is designed for o-ring mounting and OEM applications where compatibility with corrosive media is required. The sensing package utilizes silicon oil to transfer pressure from the 316L stainless steel diaphragm to the sensing element. A ceramic substrate is attached to the package that contains laser-trimmed resistors for temperature compensation and offset correction. An additional laser trimmed resistor is included which can be used to adjust an external differential amplifier and provide span interchangeability to within ±1%. Please refer to the 86 uncompensated and constant voltage datasheets for more information on different features of the 86. CLICK HERE › CONNECT WITH A SPECIALIST TE CONNECTIVITY SENSORS /// 86C REVA 10/2021 Page 1 86 Digital Output Pressure Sensor Specifications Unless otherwise specified, Supply Current: 1.5mA; Ambient Temperature: 25°C PARAMETERS Span ≥015PSI 005PSI MIN TYP MAX MIN TYP MAX UNITS NOTES 50 100 150 75 100 150 mV 1 Zero Pressure Output -2.0 0 2.0 -1.0 0 1.0 mV 2 Pressure Non Linearity -0.2 - 0.2 -0.1 - 0.1 %Span 3 Pressure Hysteresis -0.10 ±0.02 0.10 -0.05 ±0.02 0.05 %Span Repeatability - ±0.02 - - ±0.02 - %Span Input Resistance 2.5K 5.0K 6.5K 2.0K 3.5K 5.8K Ω Output Resistance 4.0K - 7.0K 4.0K - 6.0K Ω Temperature Error – Span -1.0 - 1.0 -0.75 - 0.75 %Span 4 Temperature Error – Offset -1.5 - 1.5 -0.50 - 0.50 %Span 4,5 Thermal Hysteresis – Span -0.25 ±0.05 0.25 -0.25 ±0.05 0.25 %Span 4 Thermal Hysteresis – Offset -0.25 ±0.05 0.25 -0.25 ±0.05 0.25 %Span 4 Long Term Stability – Span - ±0.10 - - ±0.10 - %Span/Year Long Term Stability – Offset - ±0.25 - - ±0.10 - %Span/Year Supply Current 0.5 1.5 2.0 0.5 1.5 2.0 mA 6 Output Load Resistance 5M - - 5M - - Ω 7 Insulation Resistance (50Vdc) 50M - - 50M - - Ω 8 Output Noise (10Hz to 1KHz) - 1.0 - - 1.0 - µV p-p Response Time (10% to 90%) - 0.1 - - 0.1 - ms Pressure Overload - - 3X - - 3X Rated Pressure Burst - - 4X - - 4X Rated Compensated Temperature 0 - 50 -20 - 85 °C Operating Temperature -20 - 70 -40 - 125 ºC 10 Storage Temperature -50 - 125 -50 - 125 ºC 10 Media – Pressure Port 9 Liquids and Gases compatible with 316/316L Stainless Steel Notes 1. For amplified output circuits, 3.012V ±1% interchangeability with gain set resistor. See application schematic. 2. Measured at vacuum for absolute (A), ambient for gage (G). 3. Best fit straight line. 4. Over the compensated temperature range with respect to 25°C. 5. 15psi range sensors have a temperature error – offset of ±0.75% (max). 6. Guarantees output/input ratiometricity. 7. Load resistance to reduce measurement errors due to output loading. 8. Between case and sensing element. 9. The maximum pressure that can be applied to a transducer without rupture of either the sensing element or transducer. 10. Maximum temperature range for product with standard cable and connector is -20 to +105°C. 11. Standard Gage Units are not recommended for vacuum applications. For vacuum applications below1/2 atmosphere, consult factory. 12. Device marking: Each part shall be identified with Model Number, Pressure Range, Type, lot Number, Serial number and Date Code. 13. Shipping/Packaging requirements: The stainless steel diaphragm is protected by a plastic CAP. Each unit will be packaged individually in a plastic vial with anti-static foam. 14. Direct mechanical Contact with diaphragm is prohibited. Diaphragm surface must remain free of defects (scratches, punctures, dents, fingerprints, etc) for device to operate properly. Caution is advised when handling parts with exposed diaphragms. Use protective cap whenever devices are not in use TE CONNECTIVITY SENSORS /// 86C REVA 10/2021 Page 2 86 Digital Output Pressure Sensor DIMENSIONS Dimensions are in inches mm TE CONNECTIVITY SENSORS /// 86C REVA 10/2021 Page 3 86 Digital Output Pressure Sensor RECOMMENDED MOUNTING DIMENSIONS APPLICATION SCHEMATIC TE CONNECTIVITY SENSORS /// 86C REVA 10/2021 Page 4 86 Digital Output Pressure Sensor ORDERING INFORMATION Part Number 86 – 030 G – C T Pressure Range [psi] Vent G A Tube No Tube T [Blank] 005 015 030 050 100 300 500 Electrical Ribbon cable Cable W Connector Solder Pads R C P Pressure Type Gage Absolute CLICK HERE › CONNECT WITH A SPECIALIST NORTH AMERICA Tel +1 800 522 6752 EUROPE Tel +31 73 624 6999 ASIA Tel +86 0400 820 6015 te.com/sensors TE Connectivity, TE, TE Connectivity (logo) and Every Connection Counts are trademarks. All other logos, products and/or company names referred to herein might be trademarks of their respective owners The information given herein, including drawings, illustrations and schematics which are intended for illustration purposes only, is believed to be reliable. However, TE Connectivity makes no warranties as to its accuracy or completeness and disclaims any liability in connection with its use. TE Connectivity‘s obligations shall only be as set forth in TE Connectivity‘s Standard Terms and Conditions of Sale for this product and in no case will TE Connectivity be liable for any incidental, indirect or consequential damages arising out of the sale, resale, use or misuse of the product. Users of TE Connectivity products should make their own evaluation to determine the suitability of each such product for the specific application. © 2021 TE Connectivity Corporation. All Rights Reserved. Version A7 02/2021 TE CONNECTIVITY SENSORS /// 86C REVA 10/2021 Page 5
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