LM60QIM3X/NOPB

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LM60QIM3X/NOPB

Automotive Grade, ±2°C Analog Output Temperature Sensor

Packaging

Package | PIN: DBZ | 3
Temp: Q (-40 to 125)
Carrier: Cut Tape
Qty Price
1-9 $0.95
10-24 $0.84
25-99 $0.78
100-249 $0.67
250-499 $0.62
500-749 $0.50
750-999 $0.40
1000+ $0.36

Features

  • AEC-Q100 Qualified for Automotive Applications
    • Device Temperature Grade 1: –40°C to +125°C AmbientOperating Temperature
    • Device HBM ESD Classification Level2
  • Calibrated Linear Scale Factor of 6.25 mV/°C
  • Rated for Full −40°C to +125°C Range
  • Suitable for Remote Applications
  • Available in SOT-23 Packages
  • Key Specifications
    • Accuracy at 25°C: ±2°C and ±3°C (Maximum)
    • Accuracy for −40°C to +125°C: ±4°C (Maximum)
    • Accuracy for−25°C to +125°C: ±3°C (Maximum)
    • Temperature Slope: 6.25mV/°C
    • Power-Supply Voltage Range: 2.7 V to 10 V
    • CurrentDrain at 25°C: 110 µA (Maximum)
    • Nonlinearity: ±0.8°C(Maximum)
    • Output Impedance: 800 Ω(Maximum)

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Texas Instruments  LM60QIM3X/NOPB

The LM60-Q1 device is a precision integrated-circuit temperature sensor thatcan sense a −40°C to +125°C temperature range while operating from a single 2.7-V supply. Theoutput voltage of the device is linearly proportional to Celsius (Centigrade) temperature (6.25mV/°C) and has a DC offset of
424 mV. The offset allows reading negative temperatures without the need for a negativesupply. The nominal output voltage of the device ranges from 174 mV to 1205 mV for a −40°C to+125°C temperature range. The device is calibrated to provide accuracies of ±2°C at roomtemperature and ±3°C over the full −25°C to +125°C temperature range.

The linear output of the device, 424-mV offset, and factory calibration simplify externalcircuitry required in a single supply environment where reading negative temperatures is required.Because the quiescent current of the device is less than 110 µA, self-heating is limited to a verylow 0.1°C in still air in the SOT-23 package. Shutdown capability for the device is intrinsicbecause its inherent low power consumption allows it to be powered directly from the output of manylogic gates.