Product details

Local sensor accuracy (max) 0.75 Type Remote Operating temperature range (°C) -40 to 125 Supply voltage (min) (V) 1.7 Interface type I2C, SMBus Supply voltage (max) (V) 3.6 Features ALERT Supply current (max) (µA) 375 Temp resolution (max) (bps) 13 Remote channels (#) 4 Addresses 4 Rating Catalog
Local sensor accuracy (max) 0.75 Type Remote Operating temperature range (°C) -40 to 125 Supply voltage (min) (V) 1.7 Interface type I2C, SMBus Supply voltage (max) (V) 3.6 Features ALERT Supply current (max) (µA) 375 Temp resolution (max) (bps) 13 Remote channels (#) 4 Addresses 4 Rating Catalog
VQFN (RGT) 16 9 mm² 3 x 3
  • 4-Channel Remote Diode Temperature Sensor
  • Local and Remote Accuracy: ±0.75°C (Maximum)
  • Temperature Resolution: 0.0625°C
  • Supply and Logic Voltage Range: 1.7 V to 3.6 V
  • 43-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-pin VQFN Package
  • 4-Channel Remote Diode Temperature Sensor
  • Local and Remote Accuracy: ±0.75°C (Maximum)
  • Temperature Resolution: 0.0625°C
  • Supply and Logic Voltage Range: 1.7 V to 3.6 V
  • 43-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-pin VQFN Package

The TMP464 device is a high-accuracy, low-power temperature sensor using a two-wire, SMBus or I2C compatible interface. Up to four 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 four 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 TMP464 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) for easy integration into computing systems. The remote junction supports a temperature range from –55°C to +150°C. The TMP464 has a preprogrammed temperature limit of 125°C.

The TMP464 device is a high-accuracy, low-power temperature sensor using a two-wire, SMBus or I2C compatible interface. Up to four 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 four 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 TMP464 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) for easy integration into computing systems. The remote junction supports a temperature range from –55°C to +150°C. The TMP464 has a preprogrammed temperature limit of 125°C.

Download View video with transcript Video

Similar products you might be interested in

open-in-new Compare alternates
Pin-for-pin with same functionality to the compared device
TMP468 ACTIVE ±0.75⁰C High-Accuracy Multi-channel Remote and Local Temperature Sensor Pin-to-pin option with 8 remote channels

Technical documentation

star =Top documentation for this product selected by TI
No results found. Please clear your search and try again.
View all 5
Type Title Date
* Data sheet TMP464 High-Accuracy 5-Channel (4-Remote and 1-Local) Temperature Sensor datasheet (Rev. C) PDF | HTML 21 Oct 2019
Application note How to Read and Interpret Digital Temperature Sensor Output Data PDF | HTML 12 Apr 2024
Application brief Improving System Reliability in Auto and Ind. Cameras w/ AccurateTemp. Sensing PDF | HTML 03 Jan 2022
Application note Remote Temperature Transistor Sensor Selection Guide PDF | HTML 24 Mar 2021
Application note How to Boost Your CPU, GPU, and SoC Performance Through Thermal Accuracy PDF | HTML 22 Sep 2020

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Simulation model

TMP464 IBIS Model

SBOMAE2.ZIP (42 KB) - IBIS Model
Calculation tool

SBOC594 Remote Temperature Sensor Calibration Tool

Supported products & hardware

Supported products & hardware

Products
Digital temperature sensors
TMP400 Remote and Local Temperature Sensor with N-Factor and Series-R Correction in QSSOP-16 TMP411 Remote and local temperature sensor with N-factor and series resistance correction TMP421 Remote and Local Temperature Sensor with N-Factor and Series-R Correction in WCSP TMP422 Dual Remote and Local Temperature Sensor with N-Factor and Series-R Correction in WCSP TMP423 Triple Remote and Local Temperature Sensor with N-Factor and Series-R Correction TMP431 Remote and Local Temperature Sensor with Automatic Beta, N-Factor and Series-R Correction TMP432 Dual Remote and Local Temp Sensor with Automatic Beta, N-Factor and Series-R Correction TMP441 Multi-Address Remote and Local Temp Sensor with Auto Beta, N-Factor and Series-R Correction in SOT23 TMP451 1.7-V remote and local temperature sensor with N-factor, filtering and series-R correction TMP461 High accuracy remote and local temperature sensor with pin-programmable bus address TMP464 5-Channel (4-Remote and 1-Local) High-Accuracy Remote and Local Temperature Sensor TMP468 ±0.75⁰C High-Accuracy Multi-channel Remote and Local Temperature Sensor
Package Pins CAD symbols, footprints & 3D models
VQFN (RGT) 16 Ultra Librarian

Ordering & quality

Information included:
  • RoHS
  • REACH
  • Device marking
  • Lead finish/Ball material
  • MSL rating/Peak reflow
  • MTBF/FIT estimates
  • Material content
  • Qualification summary
  • Ongoing reliability monitoring
Information included:
  • Fab location
  • Assembly location

Support & training

TI E2E™ forums with technical support from TI engineers

Content is provided "as is" by TI and community contributors and does not constitute TI specifications. See terms of use.

If you have questions about quality, packaging or ordering TI products, see TI support. ​​​​​​​​​​​​​​

Videos