Product details

Local sensor accuracy (max) 3 Type Remote Operating temperature range (°C) 0 to 85 Supply voltage (min) (V) 2.7 Interface type I2C, SMBus Supply voltage (max) (V) 5.5 Features ALERT, One-shot conversion Supply current (max) (µA) 640 Temp resolution (max) (bps) 10 Remote channels (#) 2 Addresses 3 Rating Catalog
Local sensor accuracy (max) 3 Type Remote Operating temperature range (°C) 0 to 85 Supply voltage (min) (V) 2.7 Interface type I2C, SMBus Supply voltage (max) (V) 5.5 Features ALERT, One-shot conversion Supply current (max) (µA) 640 Temp resolution (max) (bps) 10 Remote channels (#) 2 Addresses 3 Rating Catalog
VSSOP (DGK) 8 14.7 mm² 3 x 4.9
  • Accurately Senses Die Temperature of Remote ICs or Diode Junctions
  • Uses TruTherm Technology for Precision “Thermal Diode” Temperature Measurement
  • Thermal Diode Input Stage with Analog Filtering
  • Thermal Diode Digital Filtering
  • Intel Processor on 65nm or 90nm Process or 2N3904 Non-Ideality Selection
  • Remote Diode Fault Detection
  • On-board Local Temperature Sensing
  • Remote Temperature Readings Without Digital Filtering:
    • 0.125 °C LSb
    • 10-bits Plus Sign or 11-bits Programmable Resolution
    • 11-bits Resolves Temperatures Above
      127 °C
  • Remote Temperature Readings with Digital Filtering:
    • 0.03125 °C LSb with Filtering
    • 12-bits Plus Sign or 13-bits Programmable Resolution
    • 13-bits Resolves Temperatures Above
      127 °C
  • Local Temperature Readings:
    • 0.25 °C
    • 9-bits Plus Sign
  • Status Register Support
  • Programmable Conversion Rate Allows User Optimization of Power Consumption
  • Shutdown Mode One-shot Conversion Control
  • SMBus 2.0 Compatible Interface, Supports TIMEOUT
  • 8-pin VSSOP Package

Key Specifications

  • Remote Diode Temperature Accuracy
    • TA = 20°C to 40°C, TD = 45°C to 85°C ±1.25 °C (Max)
    • TA = 0°C to 85°C, TD = 25°C to 140°C ±2.5 °C (Max)
  • Local Temperature Accuracy
    • TA = 0°C to 85°C ±3.0 °C (Max)
  • Supply Voltage 3.0 V to 3.6 V
  • Average Supply Current 471 μA (Typ)

All trademarks are the property of their respective owners.

  • Accurately Senses Die Temperature of Remote ICs or Diode Junctions
  • Uses TruTherm Technology for Precision “Thermal Diode” Temperature Measurement
  • Thermal Diode Input Stage with Analog Filtering
  • Thermal Diode Digital Filtering
  • Intel Processor on 65nm or 90nm Process or 2N3904 Non-Ideality Selection
  • Remote Diode Fault Detection
  • On-board Local Temperature Sensing
  • Remote Temperature Readings Without Digital Filtering:
    • 0.125 °C LSb
    • 10-bits Plus Sign or 11-bits Programmable Resolution
    • 11-bits Resolves Temperatures Above
      127 °C
  • Remote Temperature Readings with Digital Filtering:
    • 0.03125 °C LSb with Filtering
    • 12-bits Plus Sign or 13-bits Programmable Resolution
    • 13-bits Resolves Temperatures Above
      127 °C
  • Local Temperature Readings:
    • 0.25 °C
    • 9-bits Plus Sign
  • Status Register Support
  • Programmable Conversion Rate Allows User Optimization of Power Consumption
  • Shutdown Mode One-shot Conversion Control
  • SMBus 2.0 Compatible Interface, Supports TIMEOUT
  • 8-pin VSSOP Package

Key Specifications

  • Remote Diode Temperature Accuracy
    • TA = 20°C to 40°C, TD = 45°C to 85°C ±1.25 °C (Max)
    • TA = 0°C to 85°C, TD = 25°C to 140°C ±2.5 °C (Max)
  • Local Temperature Accuracy
    • TA = 0°C to 85°C ±3.0 °C (Max)
  • Supply Voltage 3.0 V to 3.6 V
  • Average Supply Current 471 μA (Typ)

All trademarks are the property of their respective owners.

The LM95241 is a precision dual remote diode temperature sensor (RDTS) that uses TI's TruTherm technology. The 2-wire serial interface of the LM95241 is compatible with SMBus 2.0. The LM95241 can sense three temperature zones, it can measure the temperature of its own die as well as two diode connected transistors. The LM95241 includes digital filtering and an advanced input stage that includes analog filtering and TruTherm technology that reduces processor-to-processor non-ideality spread. The diode connected transistors can be a “thermal diode” as found in Intel and AMD processors or can simply be a diode connected MMBT3904 transistor. TruTherm technology allows accurate measurement of “thermal diodes” found on small geometry processes such as 90nm and 65nm. The LM95241 supports user selectable thermal diode non-ideality of either Intel processor on 90nm or 65nm process or 2N3904.

The LM95241 resolution format for remote temperature readings can be programmed to be 11-bits signed or unsigned with the digital filtering disabled. When the filtering is enabled the resolution increases to 13-bits signed or unsigned. In the unsigned mode the LM95241 remote diode readings can resolve temperatures above 127°C. Local temperature readings have a resolution of 9-bits plus sign.

The LM95241 is a precision dual remote diode temperature sensor (RDTS) that uses TI's TruTherm technology. The 2-wire serial interface of the LM95241 is compatible with SMBus 2.0. The LM95241 can sense three temperature zones, it can measure the temperature of its own die as well as two diode connected transistors. The LM95241 includes digital filtering and an advanced input stage that includes analog filtering and TruTherm technology that reduces processor-to-processor non-ideality spread. The diode connected transistors can be a “thermal diode” as found in Intel and AMD processors or can simply be a diode connected MMBT3904 transistor. TruTherm technology allows accurate measurement of “thermal diodes” found on small geometry processes such as 90nm and 65nm. The LM95241 supports user selectable thermal diode non-ideality of either Intel processor on 90nm or 65nm process or 2N3904.

The LM95241 resolution format for remote temperature readings can be programmed to be 11-bits signed or unsigned with the digital filtering disabled. When the filtering is enabled the resolution increases to 13-bits signed or unsigned. In the unsigned mode the LM95241 remote diode readings can resolve temperatures above 127°C. Local temperature readings have a resolution of 9-bits plus sign.

Download View video with transcript Video

Technical documentation

star =Top documentation for this product selected by TI
No results found. Please clear your search and try again.
View all 1
Type Title Date
* Data sheet LM95241 Dual Remote Diode Temp Sensor w/SMBus Interface & TruTherm Technology datasheet (Rev. E) 22 Mar 2013

Design & development

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

Driver or library

LM95241SW-LINUX — Linux Driver for LM95241

The Linux driver supports the LM95241 series of Dual Remote and Local Temp Sensors. The Linux driver supports communication through the I2C bus and interfaces with the Hardware Monitoring sub-system.
Linux Mainline Status

Available in Linux Main line: Yes
Available through git.ti.com: N/A

Supported (...)
Support software

SENSOREVAL Eval Board Software For Hardware Monitors And Digital Temperature Sensors

SensorEval
SensorEval software supports the latest TI temperature sensor and hardware monitor evaluation boards via USB interface. It also allows access to sensors mounted directly on motherboards that support Intel chip sets.

  • Download SensorEval Software and Manual
  • Windows XP support is offered for (...)
Supported products & hardware

Supported products & hardware

Products
Digital temperature sensors
  • LM63 1 remote and local temperature sensor with fan control
  • LM64 1 remote and local temp sensor with fan control and 5 GPIO's
  • LM71 ±1.5°C Temperature Sensor with SPI Interface
  • LM71-Q1 Automotive Grade, ±1.5°C Temperature Sensor with SPI Interface
  • LM73 ±1°C Temperature Sensor with I2C/SMBus Interface
  • LM75A 2C industry standard temperature sensor, I2C/SMBus interface
  • LM86 ±0.75°C remote and local temperature sensor with SMBus interface
  • LM89 ±0.75°C remote and local temperature sensor with SMBus interface and 2 addresses for bus sharing
  • LM90 Remote and Local Temperature Sensor with SMBus Interface
  • LM93 2 remote, 1 local temp sensor with hardware monitor and 16 power supply voltage monitors
  • LM95010 ±2°C Temperature Sensor with SensorPath Interface
  • LM95071 ±1°C Temperature Sensor with SPI Interface
  • LM95172-Q1 Automotive Grade, ±1°C Temperature Sensor with 200°C Capability and SPI Interface
  • LM95214 ±2°C Quad Remote and Local Temperature Sensor with SMBus Interface
  • LM95221 ±3°C dual remote & local temperature sensor with beta compensation and SMBus, I2C
  • LM95231 Dual Remote and Local Temperature Sensor with TruTherm Technology and SMBus Interface
  • LM95233 ±2°C Dual Remote and Local Temperature Sensor with TruTherm Technology and SMBus Interface
  • LM95234 ±2°C Quad Remote and Local Temperature Sensor with TruTherm Technology and SMBus Interface
  • LM95235 ±0.75°C remote & local temperature sensor with SMBus, beta compensation for 65/90n
  • LM95235-Q1 Automotive Grade, ±2°C Remote and Local Temperature Sensor with TruTherm Technology and SMBus
  • LM95241 ±1.25°C dual remote & local temperature sensor with beta compensation and SMBus, I
  • LM95245 ±0.75°C remote & local temperature sensor with SMBus, beta compensation for 45nm d
  • LM96000 Hardware monitor with fan control and 6 power supply voltage monitors
  • LM96080 1 local temp sensor with fan speed and power supply voltage monitor
  • LM96163 1 remote and local temp sensor with beta compensation and fan control
  • LM99 Remote and Local Temperature Sensor with TruTherm Technology and SMBus Interface
Precision ADCs
  • ADC128D818 12-Bit, 82SPS, 8-Ch Delta-Sigma ADC with Temp Sensor, INT / EXT Voltage Reference & I2C Interface
Package Pins CAD symbols, footprints & 3D models
VSSOP (DGK) 8 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