Texas Instruments_TL432LIAQDBZR

Texas Instruments
TL432LIAQDBZR  
Voltage References

Texas Instruments
TL432LIAQDBZR
693-TL432LIAQDBZR
Ersa
Texas Instruments-TL432LIAQDBZR-datasheets-8595648.pdf
IC VREF SHUNT ADJ 1% SOT23-3
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TL432LIAQDBZR Description

TL432LIAQDBZR Description

The TL432LIAQDBZR is a high-performance voltage reference from Texas Instruments, designed for precision applications requiring adjustable output voltage. This IC is part of the Voltage References category and is known for its exceptional accuracy and stability. With a shunt reference type, it provides an adjustable output voltage ranging from 2.495V to 36V, making it versatile for various applications. The device is Surface Mount, packaged in a Tape & Reel (TR) format, and is compliant with RoHS3 standards, ensuring environmental friendliness.

TL432LIAQDBZR Features

  • Adjustable Output Voltage: The TL432LIAQDBZR offers a wide range of output voltages, from a minimum of 2.495V to a maximum of 36V, providing flexibility for various applications.
  • Low Output Current: With an output current of 15 mA, this device is suitable for applications that require low power consumption.
  • High Tolerance: The device boasts a tolerance of ±1%, ensuring high accuracy and consistency in output voltage.
  • Low Cathode Current: The 1 mA cathode current reduces power dissipation and extends the life of the device.
  • Moisture Sensitivity Level (MSL) 1: This indicates that the device can be stored for an unlimited time without baking, simplifying logistics and storage.
  • REACH Unaffected: The TL432LIAQDBZR is not affected by REACH regulations, ensuring uninterrupted supply and use within the European market.
  • EAR99 ECCN: This export control classification number indicates that the device is not subject to export controls, facilitating international trade.

TL432LIAQDBZR Applications

The TL432LIAQDBZR is ideal for applications that require precise and stable voltage references, such as:

  • Battery Management Systems: For maintaining accurate voltage levels in battery-powered devices.
  • Sensors and Transducers: Providing a stable reference for accurate sensor readings.
  • Industrial Control Systems: Ensuring reliable operation in automated machinery and control systems.
  • Medical Devices: For applications where precision and reliability are critical, such as in monitoring equipment.

Conclusion of TL432LIAQDBZR

The TL432LIAQDBZR from Texas Instruments stands out due to its adjustable output voltage, low power consumption, and high accuracy. Its compliance with RoHS3 and REACH regulations, along with its unlimited storage time due to MSL 1, make it a preferred choice in the electronics industry. With its wide range of applications, from battery management to medical devices, the TL432LIAQDBZR is a versatile and reliable solution for precision voltage referencing.

Tech Specifications

Noise - 0.1Hz to 10Hz
PPAP
Product Status
Automotive
Noise - 10Hz to 10kHz
Supplier Package
Package / Case
Maximum Input Voltage (V)
Maximum Temperature Coefficient
REACH Status
Initial Accuracy
EU RoHS
Moisture Sensitivity Level (MSL)
Operating Temperature
ECCN
Topology
Mounting Type
Current - Supply
Standard Package Name
Reference Type
Pin Count
Mounting
Lead Shape
SVHC
Output Voltage (V)
HTSUS
Package
PCB changed
Output Type
HTS
Current - Output
ECCN (US)
Temperature Coefficient
Supplier Device Package
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Package Height
Mfr
Voltage - Output (Min/Fixed)
RoHS Status
Tolerance
Package Length
Voltage - Output (Max)
Series
Current - Cathode
Part Status
Maximum Output Current (mA)
Package Width
Base Product Number
Mounting Style
Unit Weight
Shunt Current - Max
Maximum Output Voltage
Shunt Current - Min
Series VREF - Input Voltage - Max
Supply Current - Max
RoHS
Minimum Operating Temperature
Maximum Operating Temperature
USHTS
Output Voltage

TL432LIAQDBZR Documents

Download datasheets and manufacturer documentation for TL432LIAQDBZR

Ersa TL431LI, TL432LI      
Ersa TL431LI, TL432LI      

Shopping Guide

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