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具有多增益和 AB 类模拟输出的 ±1.5°C 温度传感器
Local sensor accuracy (Max) (+/- C) 1.5
Operating temperature range (C) -50 to 150
Supply voltage (Min) (V) 1.5
Supply voltage (Max) (V) 5.5
Supply current (Max) (uA) 8.1
Interface type Analog output
Sensor gain (mV/Deg C) -5.5 to -13.6
Rating Catalog
Features Selectable gain setting, UL recognized
  • LM94022/-Q1 is AEC-Q100 Grade 0 qualified and
    is Manufactured on an Automotive Grade Flow
  • Low 1.5-V to 5.5-V Operation With Low 5.4-μA
    Supply Current
  • Push-Pull Output With ±50-μA Source Current Capability
  • Four Selectable Gains
  • Very Accurate Over Wide Temperature Range of
    ?50°C to +150°C:
    • ±1.5oC Temperature Accuracy for 20oC to
      40oC Range
    • ±1.8oC Temperature Accuracy for –50oC to
      70oC Range
    • ±2.1oC Temperature Accuracy for –50oC to
      90oC Range
    • ±2.7oC Temperature Accuracy for –50oC to
      150oC Range
  • Output is Short-Circuit Protected
  • Extremely Small SC70 Package
  • For the Similar Functionality in a TO-92 Package,
    See LMT84, LMT85, LMT86, or LMT87
  • Footprint Compatible With the Industry-Standard
    LM20 Temperature Sensor

The LM94022/-Q1 device is a precision analog output CMOS integrated-circuit temperature sensor with selectable linear negative temperature coefficient (NTC). A class-AB output structure gives the LM94022/-Q1 strong output source and sink current capability for driving heavy transient loads such as that presented by the input of a sample-and-hold analog-to-digital converter. The low 5.4-μA supply current and 1.5-V operating voltage of the LM94022/-Q1 make it ideal for battery-powered systems as well as general temperature-sensing applications.

The Gain Select 1 (GS1) and Gain Select 0 (GS0) logic inputs select one of four gains for the temperature-to-voltage output transfer function: ?5.5 mV/°C, ?8.2 mV/°C, ?10.9 mV/°C, and ?13.6 mV/°C. Selecting –5.5 mV/°C (GS1 and GS0 both tied low), allows the LM94022/-Q1 to operate down to 1.5-V supply while measuring temperature over the full range of ?50°C to +150°C. Maximum temperature sensitivity, –13.6 mV/°C, is selected when GS1 and GS0 are both tied high. The gain-select inputs can be tied directly to VDD or Ground without any pullup or pulldown resistors, reducing component count and board area. These inputs can also be driven by logic signals allowing the system to optimize the gain during operation or system diagnostics.