DatasheetsPDF.com

TMP116


Part Number TMP116
Manufacturer Texas Instruments
Title Digital Temperature Sensor
Description The TMP116 family (TMP116, TMP116N) consist of low-power, high-precision temperature sensors with integrated EEPROM memory. The TMP116 provides a ...
Features
•1 TMP116 accuracy without calibration:
  – ±0.2°C (maximum) from
  –10°C to +85°C
  – ±0.25°C (maximum) from
  –40°C to +105°C
  – ±0.3°C (maximum) from +105°C to +125°C
• TMP116N accuracy, no calibration needed:
  – ±0.3°C (maximum) from
  –25°C to +85°C
  – ±0.4°C (maximum) from
  –40°C to +125°C
• Low Quiescent C...

File Size 1.13MB
Datasheet TMP116 PDF File






Similar Datasheet

TMP112 : The TMP112 family of devices are digital temperature sensors designed for high-accuracy, low-power, NTC/PTC thermistor replacements where high accuracy is required. The TMP112A and TMP112B offers 0.5°C accuracy and are optimized to provide the best PSR performance for 3.3V and 1.8V operation respectively, while TMP112N offers 1°C accuracy. These temperature sensors are highly linear and do not require complex calculations or lookup tables to derive the temperature. The on-chip 12-bit ADC offers resolutions down to 0.0625°C. The 1.6-mm × 1.6-mm SOT563 package is 68% smaller footprint than an SOT23 package. The TMP112 family features SMBus, two-wire and I2C interface compatibility, and allows .

TMP112-Q1 : The TMP112-Q1 device is a digital temperature sensor ideal for NTC/PTC thermistor replacement where high accuracy is required. The device offers an accuracy of ±0.5°C without requiring calibration or external component signal conditioning. Device temperature sensors are highly linear and do not require complex calculations or lookup tables to derive the temperature. The calibrating for improved accuracy feature allows users to calibrate for an accuracy as good as ±0.17°C (see the Calibrating for Improved Accuracy section). The on-chip 12-bit ADC offers resolutions down to 0.0625°C. The 1.6-mm × 1.6-mm SOT563 package is 68% smaller footprint than an SOT23 package. The TMP112-Q1 device feature.

TMP114 : The TMP114 is a high accuracy, I2C-compatible digital temperature sensor in an ultra-thin (0.15 mm) 4-pin package. The small size and low height of the TMP114 package optimizes volume constrained systems and enables novel placement of the sensor under other surface mount components for the fastest and most accurate temperature measurement. The TMP114 has an accuracy of ±0.2°C and offers an on-chip 16-bit analog-to-digital converter (ADC) that provides a temperature resolution of 0.0078°C. The TMP114 is 100% tested on a production setup that is NIST traceable. To maximize battery life, the TMP114 is designed to operate from a supply voltage range of 1.08 V to 1.98 V, with a low average sup.

TMP116N : The TMP116 family (TMP116, TMP116N) consist of low-power, high-precision temperature sensors with integrated EEPROM memory. The TMP116 provides a 16-bit temperature result with a resolution of 0.0078°C and an accuracy of up to ±0.2°C with no calibration. The TMP116 is compatible with the I2Cand SMBus interface, has programmable alert functionality, and supports up to four devices on a single bus. The TMP116 consumes minimal current that, in addition to providing power savings, minimizes selfheating and improves measurement accuracy. The TMP116 operates from 1.9 V to 5.5 V and typically consumes 3.5 µA. Across the device operating temperature range of –55°C to +125°C, the TMP116 exceeds the a.

TMP117 : The TMP117 is a high-precision digital temperature sensor. It is designed to meet ASTM E1112 and ISO 80601 requirements for electronic patient thermometers. The TMP117 provides a 16-bit temperature result with a resolution of 0.0078 °C and an accuracy of up to ±0.1 °C across the temperature range of –20 °C to 50 °C with no calibration. The TMP117 has in interface that is I2C- and SMBus™-compatible, programmable alert functionality, and the device can support up to four devices on a single bus. Integrated EEPROM is included for device programming with an additional 48-bits memory available for general use. The low power consumption of the TMP117 minimizes the impact of self-heating on measu.

TMP11N50 : Features  Low gate charge  100% avalanche tested  Improved dv/dt capability  RoHS compliant  Halogen free package  JEDEC Qualification  Fast reverse recovery TMP11N50/TMPF11N50 TMP11N50G/TMPF11N50G VDSS = 550 V @Tjmax ID = 11A RDS(ON) = 0.67 W(max) @ VGS= 10 V D G Device TMP11N50 / TMPF11N50 TMP11N50G / TMPF11N50G Package TO-220 / TO-220F TO-220 / TO-220F S Marking TMP11N50 / TMPF11N50 TMP11N50G / TMPF11N50G Remark RoHS Halogen Free Absolute Maximum Ratings Parameter Drain-Source Voltage Gate-Source Voltage Continuous Drain Current Pulsed Drain Current (Note 1) TC = 25 ℃ TC = 100 ℃ Single Pulse Avalanche Energy (Note 2) Repetitive Avalanche Current (Note 1) Repetitive Av.

TMP11N50G : Features  Low gate charge  100% avalanche tested  Improved dv/dt capability  RoHS compliant  Halogen free package  JEDEC Qualification  Fast reverse recovery TMP11N50/TMPF11N50 TMP11N50G/TMPF11N50G VDSS = 550 V @Tjmax ID = 11A RDS(ON) = 0.67 W(max) @ VGS= 10 V D G Device TMP11N50 / TMPF11N50 TMP11N50G / TMPF11N50G Package TO-220 / TO-220F TO-220 / TO-220F S Marking TMP11N50 / TMPF11N50 TMP11N50G / TMPF11N50G Remark RoHS Halogen Free Absolute Maximum Ratings Parameter Drain-Source Voltage Gate-Source Voltage Continuous Drain Current Pulsed Drain Current (Note 1) TC = 25 ℃ TC = 100 ℃ Single Pulse Avalanche Energy (Note 2) Repetitive Avalanche Current (Note 1) Repetitive Av.

TMP11N50SG : Features  Low gate charge  100% avalanche tested  Improved dv/dt capability  RoHS compliant  Halogen free package  JEDEC Qualification  Fast reverse recovery TMP11N50SG/TMPF11N50SG VDSS = 550 V @Tjmax ID = 10A RDS(ON) = 0.7 W(max) @ VGS= 10 V D G S Device Package TMP11N50SG / TMPF11N50SG TO-220 / TO-220F Absolute Maximum Ratings Parameter Drain-Source Voltage Gate-Source Voltage Continuous Drain Current Pulsed Drain Current (Note 1) TC = 25 ℃ TC = 100 ℃ Single Pulse Avalanche Energy (Note 2) Repetitive Avalanche Current (Note 1) Repetitive Avalanche Energy (Note 1) Power Dissipation TC = 25 ℃ Derate above 25 ℃ Peak Diode Recovery dv/dt (Note 3) Operating Junction and.




Since 2006. D4U Semicon,
Electronic Components Datasheet Search Site. (Privacy Policy & Contact)