TMP468

ACTIVO

Sensor de temperatura local y remoto multicanal de ±0.75 °C y alta precisión

Detalles del producto

Local sensor accuracy (max) 0.35 Type Remote Operating temperature range (°C) -40 to 125 Interface type I2C, SMBus Features ALERT Supply current (max) (µA) 375 Temp resolution (max) (bps) 13 Remote channels (#) 8 Addresses 4 Rating Catalog
Local sensor accuracy (max) 0.35 Type Remote Operating temperature range (°C) -40 to 125 Interface type I2C, SMBus Features ALERT Supply current (max) (µA) 375 Temp resolution (max) (bps) 13 Remote channels (#) 8 Addresses 4 Rating Catalog
DSBGA (YFF) 16 3.24 mm² (— mm × — mm) VQFN (RGT) 16 9 mm² (3 mm × 3 mm)
  • 8-Channel Remote Diode Temperature Sensor Accuracy: ±0.75°C (Maximum)
  • Local and Remote Diode Accuracy: ±0.75°C (Maximum)
  • Local Temperature Sensor Accuracy for the DSBGA Package: ±0.35°C (Maximum)
  • Temperature Resolution: 0.0625°C
  • Supply and Logic Voltage Range: 1.7 V to 3.6 V
  • 67-µA Operating Current (1 SPS, All Channels Active)
  • 0.3-µA Shutdown Current
  • Remote Diode: Series Resistance Cancellation,
    η-Factor Correction, Offset Correction, and Diode Fault Detection
  • Register Lock Function Secures Key Registers
  • I2C or SMBus™ Compatible Two-Wire Interface With Pin-Programmable Address
  • 16-Bump DSBGA and 16-Pin VQFN Packages
  • 8-Channel Remote Diode Temperature Sensor Accuracy: ±0.75°C (Maximum)
  • Local and Remote Diode Accuracy: ±0.75°C (Maximum)
  • Local Temperature Sensor Accuracy for the DSBGA Package: ±0.35°C (Maximum)
  • Temperature Resolution: 0.0625°C
  • Supply and Logic Voltage Range: 1.7 V to 3.6 V
  • 67-µA Operating Current (1 SPS, All Channels Active)
  • 0.3-µA Shutdown Current
  • Remote Diode: Series Resistance Cancellation,
    η-Factor Correction, Offset Correction, and Diode Fault Detection
  • Register Lock Function Secures Key Registers
  • I2C or SMBus™ Compatible Two-Wire Interface With Pin-Programmable Address
  • 16-Bump DSBGA and 16-Pin VQFN Packages

The TMP468 device is a multi-zone, high-accuracy, low-power temperature sensor using a two-wire, SMBus or I2C compatible interface. Up to eight remote diode-connected temperature zones can be monitored simultaneously in addition to the local temperature. Aggregating the temperature measurements across a system allows improved performance through tighter guard bands and can reduce board complexity. A typical use case is for monitoring the temperature across different processors, such as MCUs, GPUs, and FPGAs in complex systems such as servers and telecommunications equipment. Advanced features such as series resistance cancellation, programmable non-ideality factor, programmable offset, and programmable temperature limits are included to provide a robust thermal monitoring solution with improved accuracy and noise immunity.

Each of the eight remote channels (and the local channel) can be programmed independently with two thresholds that are triggered when the corresponding temperature is exceeded at the measured location. In addition, there is a programmable hysteresis setting to avoid constant toggling around the threshold.

The TMP468 device provides high accuracy (0.75°C) and high resolution (0.0625°C) measurement capabilities. The device supports low voltage rails (1.7 V to 3.6 V), common two-wire interfaces, and is available in a small, space efficient package (3 mm × 3 mm or 1.6 mm × 1.6 mm) for easy integration into computing systems. The remote junction supports a temperature range from –55°C to +150°C.

The TMP468 device is a multi-zone, high-accuracy, low-power temperature sensor using a two-wire, SMBus or I2C compatible interface. Up to eight remote diode-connected temperature zones can be monitored simultaneously in addition to the local temperature. Aggregating the temperature measurements across a system allows improved performance through tighter guard bands and can reduce board complexity. A typical use case is for monitoring the temperature across different processors, such as MCUs, GPUs, and FPGAs in complex systems such as servers and telecommunications equipment. Advanced features such as series resistance cancellation, programmable non-ideality factor, programmable offset, and programmable temperature limits are included to provide a robust thermal monitoring solution with improved accuracy and noise immunity.

Each of the eight remote channels (and the local channel) can be programmed independently with two thresholds that are triggered when the corresponding temperature is exceeded at the measured location. In addition, there is a programmable hysteresis setting to avoid constant toggling around the threshold.

The TMP468 device provides high accuracy (0.75°C) and high resolution (0.0625°C) measurement capabilities. The device supports low voltage rails (1.7 V to 3.6 V), common two-wire interfaces, and is available in a small, space efficient package (3 mm × 3 mm or 1.6 mm × 1.6 mm) for easy integration into computing systems. The remote junction supports a temperature range from –55°C to +150°C.

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Descargar la versión más reciente en inglés Fecha
* Hoja de datos TMP468 9-Channel (8-Remote and 1-Local), High-Accuracy Temperature Sensor datasheet (Rev. B) PDF | HTML 16/06/2017
Nota sobre la aplicación How to Read and Interpret Digital Temperature Sensor Output Data (Rev. A) PDF | HTML 21/01/2025
Nota sobre la aplicación Remote Temperature Transistor Sensor Selection Guide PDF | HTML 24/03/2021
Nota sobre la aplicación How to Boost Your CPU, GPU, and SoC Performance Through Thermal Accuracy PDF | HTML 22/09/2020
Nota sobre la aplicación Optimizing Remote Diode Temperature Sensor Design (Rev. A) 18/12/2019

Diseño y desarrollo

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Placa de evaluación

TMP468EVM — Placa de evaluación TMP468EVM de sensor de temperatura de 8 canales remotos y 1 local

El dispositivo TMP468 es un sensor de temperatura remoto de 8 canales, de alta precisión y baja potencia, con un sensor de temperatura local incorporado. Los sensores de temperatura remotos suelen ser transistores NPN o PNP discretos de bajo costo, o transistores térmicos o diodos de sustrato que (...)

Guía del usuario: PDF
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Soporte de software

SBOC479 — TMP468EVM Software

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Modelo de simulación

TMP468 IBIS Model (Rev. A)

SBOMAC6A.ZIP (42 KB) - Modelo IBIS
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Herramienta de cálculo

SBOC594 — Remote Temperature Sensor Calibration Tool

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Encapsulado Pines Símbolos CAD, huellas y modelos 3D
DSBGA (YFF) 16 Ultra Librarian
VQFN (RGT) 16 Ultra Librarian

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