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HomeCommunitySubjectTL431BQDBZR Shunt regulator: NXP, SOT-23, TL431BQDBZR Datasheet

TL431BQDBZR Shunt regulator: NXP, SOT-23, TL431BQDBZR Datasheet

PMIC - Voltage Reference Shunt ±0.5% THREE TERMINAL VOLTAGE REFERENCE 2.495V -40°C~125°C TA TL431 0.95mm TL431 Series 36 V 100mA Adjustable SMT Precision Shunt Regulator - SOT-23

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Dec 10, 2021

Monroe Cissie

3 useful circuits with TL431.

 

PMIC - Voltage Reference Shunt ±0.5% THREE TERMINAL VOLTAGE REFERENCE 2.495V -40°C~125°C TA TL431 0.95mm TL431 Series 36 V 100mA Adjustable SMT Precision Shunt Regulator - SOT-23

TL431BQDBZR shunt regulator is a three-terminal shunt regulator. This article will unlock more details about TL431BQDBZR, including its pinout, datasheet, feature and so on... Welcome your RFQ!

TL431BQDBZR,215

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TL431BQDBZR Pinout

TL431BQDBZR CAD Model

TL431BQDBZR Symbol

 

TL431BQDBZR Footprint

 

TL431BQDBZR 3D Model

TL431BQDBZR Description

The TL431BQDBZR is from a three-terminal shunt regulator family with an output voltage range between Vref and 36 V, to be set by two external resistors.
• The TL431xDBZR  types feature an enhanced stability area with a very low load capacity requirement.
• The TL431xFDT  types offer an enhanced stability area and a higher  ElectroMagnetic Interference  (EMI) ruggedness, for example, for  Switch Mode Power Supply  (SMPS) applications.
• The TL431xSDT  types are designed for standard requirements and linear applications.

TL431BQDBZR Feature

„ Programmable output voltage up to 36  V
„ Three different reference voltage tolerances:
‹ Standard grade: 2 %

  • A-Grade1 %

  • B-Grade  : 0.5  %

„ Typical temperature drift: 6 mV (in a range of 0 ℃ up to 70 ℃)
„ Low output noise
„ Typical output impedance: 0.2 Ω
„ Sink current capability: 1 mA to 100 mA
„ AEC-Q100  qualified (grade 1)

TL431BQDBZR Application

„ Shunt regulator 

„ Precision current limiter 

„ Precision constant current sink 

„ Isolated feedback loop for Switch Mode Power Supply (SMPS)

TL431BQDBZR Application Circuit

TL431BQDBZR Function Block Diagram

The following figure shows the functional block diagram of TL431BQDBZR:

TL431BQDBZR Functional Diagram

Specifications

Nexperia USA Inc. TL431BQDBZR,215 technical specifications, attributes, parameters and parts with similar specifications to Nexperia USA Inc. TL431BQDBZR,215.

TL431BQDBZR,215 Tech Specifications

Nexperia USA Inc. TL431BQDBZR,215 technical specifications, attributes, parameters and parts with similar specifications to Nexperia USA Inc. TL431BQDBZR,215.

Product Attribute Attribute Value
Factory Lead Time4 Weeks
Package / CaseTO-236-3, SC-59, SOT-23-3
Surface MountYES
Mounting TypeSurface Mount
Operating Temperature-40°C~125°C TA
PackagingDigi-Reel®
Published2005
Tolerance±0.5%
JESD-609 Codee3
Part StatusActive
Moisture Sensitivity Level (MSL)1 (Unlimited)
Number of Terminations3Terminations
Terminal FinishTin (Sn)
Product Attribute Attribute Value
Terminal PositionDUAL
Terminal FormGULL WING
Peak Reflow Temperature (Cel)260
Number of Functions1Function
Terminal Pitch0.95mm
Time@Peak Reflow Temperature-Max (s)30
Base Part NumberTL431
Pin Count3
JESD-30 CodeR-PDSO-G3
Number of Outputs1Output
Output Voltage2.495V
Output TypeAdjustable
Supply Voltage-Max (Vsup)36V
Product Attribute Attribute Value
Supply Voltage-Min (Vsup)2.495V
Trim/Adjustable OutputYES
Analog IC - Other TypeTHREE TERMINAL VOLTAGE REFERENCE
Voltage - Output (Min/Fixed)2.495V
Reference TypeShunt
Output Voltage-Min2.483V
Temp Coef of Voltage-Max888 ppm/°C
Current - Cathode600μA
Height Seated (Max)1.1mm
Width1.3mm
Length2.9mm
RoHS StatusROHS3 Compliant
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TL431BQDBZR Package

TL431BQDBZR Manufacturer

Nexperia is a dedicated global leader in Discretes, Logic and MOSFETs devices. This new company became independent at the beginning of 2017. Focused on efficiency, Nexperia produces consistently reliable semiconductor components at a high volume: 85 billion annually. The company’s extensive portfolio meets the stringent standards set by the Automotive industry. And industry-leading small packages, produced in their own manufacturing facilities, combine power and thermal efficiency with best-in-class quality levels. Built on over half a century of expertise, Nexperia has 11,000 employees across Asia, Europe and the U.S. supporting customers globally.

Datasheet PDF

TL431BQDBZR,215 Documents

Download datasheets and manufacturer documentation for TL431BQDBZR,215

Frequently Asked Questions

What family includes a range of 3-terminal adjustable shunt regulators?
TL431.
What type of shunt regulators feature an enhanced stability area with a very low load capacity requirement?
TL431xDBZR types.
What type of ruggedness does the TL431xFDT types offer?
Electromagnetic Interference (EMI) ruggedness.
What are the TL431xSDT types designed for?
Standard requirements and linear applications.
What are the applications of the shunt regulator?
A shunt regulator is used for low-powered circuits. It works by directing the current away from the load and sending it into the ground. It provides a path from the input voltage to a variable resistor which is connected to the ground.
What is the difference between series and shunt regulator?
A series regulator is connected in series with the load to stabilize the regulator's output voltage. A shunt regulator, on the other hand, is connected in parallel to the load to stabilize the device's output voltage.
FAQ
What family includes a range of 3-terminal adjustable shunt regulators?
TL431.
What type of shunt regulators feature an enhanced stability area with a very low load capacity requirement?
TL431xDBZR types.
What type of ruggedness does the TL431xFDT types offer?
Electromagnetic Interference (EMI) ruggedness.
What are the TL431xSDT types designed for?
Standard requirements and linear applications.
What are the applications of the shunt regulator?
A shunt regulator is used for low-powered circuits. It works by directing the current away from the load and sending it into the ground. It provides a path from the input voltage to a variable resistor which is connected to the ground.
What is the difference between series and shunt regulator?
A series regulator is connected in series with the load to stabilize the regulator's output voltage. A shunt regulator, on the other hand, is connected in parallel to the load to stabilize the device's output voltage.

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