SLOS887G
September 2014 – May 2025
TMP112-Q1
,
TMP112D-Q1
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Device Comparison
5
Pin Configuration and Functions
6
Specifications
6.1
Absolute Maximum Ratings
6.2
ESD Ratings
6.3
Recommended Operating Conditions
6.4
Thermal Information
6.5
Electrical Characteristics
6.6
Specifications for User-Calibrated Systems (TMP112-Q1 Only)
6.7
Timing Requirements
6.8
Timing Diagrams
6.9
Typical Characteristics (TMP112-Q1)
6.10
Typical Application (TMP112D-Q1)
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.3
Feature Description
7.3.1
Digital Temperature Output
7.3.2
Serial Interface
7.3.2.1
Bus Overview
7.3.2.2
Serial Bus Address
7.3.2.3
Writing and Reading Operation
7.3.2.4
Target Mode Operation
7.3.2.4.1
Target Receiver Mode
7.3.2.4.2
Target Transmitter Mode
7.3.2.5
SMBus Alert Function
7.3.2.6
General Call
7.3.2.7
High-Speed (Hs) Mode
7.3.2.8
Timeout Function
7.3.2.9
Timing Diagrams
7.3.2.9.1
Two-Wire Timing Diagrams
7.4
Device Functional Modes
7.4.1
Continuous-Conversion Mode
7.4.2
Extended Mode (EM)
7.4.3
Shutdown Mode (SD)
7.4.4
One-Shot and Conversion Ready Mode (OS)
7.4.5
Thermostat Mode (TM)
7.4.5.1
Comparator Mode (TM = 0)
7.4.5.2
Interrupt Mode (TM = 1)
7.5
Programming
7.5.1
Pointer Register
7.5.2
Temperature Register
7.5.3
Configuration Register
7.5.3.1
Shutdown Mode (SD)
7.5.3.2
Thermostat Mode (TM)
7.5.3.3
Polarity (POL)
7.5.3.4
Fault Queue (F1/F0)
7.5.3.5
Converter Resolution (R1 and R0)
7.5.3.6
One-Shot (OS)
7.5.3.7
Extended Mode (EM)
7.5.3.8
Alert (AL)
7.5.3.9
Conversion Rate (CR)
7.5.4
High- and Low-Limit Registers
8
Application and Implementation
8.1
Application Information
8.1.1
Calibrating for Improved Accuracy (TMP112-Q1 Only)
8.1.1.1
Example 1: Finding Worst-Case Accuracy From –15°C to 50°C
8.1.1.2
Example 2: Finding Worst-Case Accuracy From 25°C to 100°C
8.1.2
Using The Slope Specifications With a 1-Point Calibration (TMP112-Q1 Only)
8.1.2.1
Power Supply-Level Contribution to Accuracy
8.2
Typical Application
8.2.1
Design Requirements
8.2.2
Detailed Design Procedure
8.2.3
Application Curve
8.3
Power Supply Recommendations
8.4
Layout
8.4.1
Layout Guidelines
8.4.2
Layout Example
9
Device and Documentation Support
9.1
Documentation Support
9.1.1
Related Documentation
9.2
Receiving Notification of Documentation Updates
9.3
Support Resources
9.4
Trademarks
9.5
Electrostatic Discharge Caution
9.6
Glossary
10
Revision History
11
Mechanical, Packaging, and Orderable Information
Package Options
Mechanical Data (Package|Pins)
DRL|6
MPDS159I
Thermal pad, mechanical data (Package|Pins)
Orderable Information
slos887g_oa
slos887g_pm
1
Features
AEC-Q100 qualified for automotive applications:
TMP112-Q1/TMP112D-Q1: –40°C to 125°C
Device HBM ESD classification level 2
Device CDM ESD classification level C6
Functional Safety-Capable
Documentation available to aid functional safety system design
TMP112-Q1
Accuracy without calibration:
±0.5°C (Max) over 0°C to 65°C
±1°C (Max) over –40°C to 125°C
TMP112D-Q1
Accuracy without calibration:
±0.4°C (Max) over 0°C to 65°C
±0.5°C (Max) over -25°C to 85°C
±0.7°C (Max) over –40°C to 125°C
Low quiescent current:
TMP112-Q1: 10μA active (Max), 1μA shutdown (Max)
TMP112D-Q1: 9μA active (Max), 0.35μA shutdown (Max)
Available packages:
SOT563 package (1.6mm × 1.6mm)
X2SON package (0.8mm × 0.8mm)
Supply range: 1.4V to 3.6V
Resolution: 12 bits
Digital output: SMBus, two-wire and I
2
C interface compatibility