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  <title>[elecena] ±0.25°C Accurate, 16-Bit Digital SPI Temperature Sensor - zmiany ceny</title>
  <description>The ADT7320 is a high accuracy digital temperature sensor that offers breakthrough performance over a wide industrial temperature
range, housed in a 4 mm × 4 mm LFCSP package. It contains an
internal band gap reference, a temperature sensor, and a 16-bit analog-to-digital converter (ADC) to monitor and digitize the temperature to a resolution of 0.0078°C. The ADC resolution, by default, is set to 13 bits (0.0625°C). The ADC resolution is a user programmable mode that can be changed through the serial interface.

The ADT7320 is guaranteed to operate over supply voltages from
2.7 V to 5.5 V. Operating at 3.3 V, the average supply current is
typically 210 μA. The ADT7320 has a shutdown mode that powers down the device and offers a shutdown current of typically 2.0 μA at 3.3 V. The ADT7320 is rated for operation over the −40°C to +150°C temperature range.

The CT pin is an open-drain output that becomes active when the
temperature exceeds a programmable critical temperature limit.
The INT pin is also an open-drain output that becomes active when the temperature exceeds a programmable limit. The INT pin
and CT pin can operate in either comparator or interrupt mode.

PRODUCT HIGHLIGHTS

* Ease of use, no calibration or correction required by the user.

* Low power consumption.

* Excellent long term stability and reliability.

* High accuracy for industrial, instrumentation, and medical applications.

* Packaged in a 16-lead RoHS-compliant, 4 mm x 4 mm LFCSP package.

APPLICATIONS

* RTD and thermistor replacement

* Thermocouple cold junction compensation

* Medical equipment

* Industrial controls and test

* Food transportation and storage

* Environmental monitoring and HVAC

* Laser diode temperature controls

* Low power

Power saving 1 sample per second (SPS) mode

700 µW typical at 3.3 V in normal mode

7 µW typical at 3.3 V in shutdown mode

* Easy Implementation

Low Power

* SPI-compatible interface</description>
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