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Microelectronics

Sensor Instrumentation

Honeywell high-temperature electronic components are useful for sensor instrumentation in extreme temperature environments.

Overview
Several Honeywell high temperature electronic components are useful for sensor instrumentation in extreme temperature environments including:

• The HT1104 quad operational amplifier an excellent choice for amplifying/scaling a variety of small output sensor signals such as pressure strain gauges (0-30mV full scale), temperature sensors, linear voltage differential transducer (LVDT) and proximity sensors.
• The HTOP01 can be used with high precision analog signals.
If several sensor signals are required in your system:
• The low leakage HT1204 quad analog switch or 16:1 or 8:2 multiplexers (HT506/HT507) may be used to gate sensor signals through a common signal conditioning block.
• Applications with even smaller sensor signal outputs such as ultra-high temperature photo-diodes or accelerometers may require the extremely low leakage (a few pA at 250°C) of the HT1104Z high impedance quad operational amplifier.
Specifications

Performance

  • Key Benefits
    • Applications with even smaller sensor signal outputs such as ultra-high temperature photo-diodes or accelerometers may require the extremely low leakage (a few pA at 250°C) of the HT1104Z high impedance quad operational amplifier
    • The HTOP01 can be used with high precision analog signals

Performance

  • Key Benefits
    • Applications with even smaller sensor signal outputs such as ultra-high temperature photo-diodes or accelerometers may require the extremely low leakage (a few pA at 250°C) of the HT1104Z high impedance quad operational amplifier
    • The HTOP01 can be used with high precision analog signals
  • Key Benefits : Applications with even smaller sensor signal outputs such as ultra-high temperature photo-diodes or accelerometers may require the extremely low leakage (a few pA at 250°C) of the HT1104Z high impedance quad operational amplifier|The HTOP01 can be used with high precision analog signals
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