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MAX31855 Datasheet PDF

Part Series:
MAX31855 Series
Category:
Temperature Sensor ICs
Description:
MAXIM INTEGRATED PRODUCTS MAX31855KASA+T Temperature Sensor IC, Thermocouple, Digital, ± 2℃, -200℃, 1350℃, NSOIC, 8Pins
Updated Time: 2023/01/13 01:21:39 (UTC + 8)

MAX31855 Temperature Sensor ICs Datasheet PDF

MAX31855 Datasheet PDF Temperature Sensor ICs

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MAXIM INTEGRATED PRODUCTS MAX31855KASA+T Temperature Sensor IC, Thermocouple, Digital, ± 2℃, -200℃, 1350℃, NSOIC, 8Pins
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MAXIM INTEGRATED PRODUCTS MAX31855SASA+ Temperature Sensor IC, Digital, ± 2℃, -50℃, 1600℃, NSOIC, 8Pins
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Evaluation Kit To Evaluate The Cold-Junction Compensated Thermocouple-Todigital Converter
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MAXIM INTEGRATED PRODUCTS MAX31855PMB1# Evaluation Module, Sensing, Temperature, Thermocouple to Digital Converter, K-type, 14Bit

MAX31855KASA+T Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
8 Pin
Supply Voltage (DC)
3.00V (min)
Case/Package
SOIC-8
Supply Current
900 µA
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MAX31855KASA+T Function Overview

The MAX31855KASA+T is a cold junction compensated thermocouple to digital converter with built-in 14bit analogue to digital converter in 8 pin NSOIC package. The device contains cold junction compensation sensing and correction, digital controller, SPI compatible interface and associated control logic. It is designed to work in conjunction with an external microcontroller (µC) in thermostatic, process control or monitoring applications. The MAX31855K performs cold junction compensation and digitizes the signal from K type thermocouple with measuring temperature range of -200°C to +1350°C. The Thermocouple temperature gain and offset error ((41.276µV/°C nominal sensitivity)) is ±2°C at T (thermocouple) = -200°C to +700°C, TA = -20°C to +85°C) The data outputs in a signed 14bit, SPI compatible read only format.
Supply voltage range from 3V to 3.6V
Serial clock frequency of 5MHz
Integration reduces design time and lowers system cost
Detects thermocouple shorts to GND or VCC and open thermocouple
14bit, 0.25°C resolution converter
Power supply current is 900µA
Thermocouple input bias current is 100nA
Temperature conversion time is 70ms and thermocouple conversion power-up time is 200ms
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