Texas Instruments_LM3411AM5X-5.0/NOPB

Texas Instruments
LM3411AM5X-5.0/NOPB  
Voltage References

Texas Instruments
LM3411AM5X-5.0/NOPB
693-LM3411AM5X-5.0/NOPB
Ersa
Texas Instruments-LM3411AM5X-5.0/NOPB-datasheets-2028509.pdf
IC VREF SHUNT 0.5% SOT23-5
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LM3411AM5X-5.0/NOPB Description

LM3411AM5X-5.0/NOPB Description

The LM3411AM5X-5.0/NOPB is a precision shunt voltage reference IC designed by Texas Instruments. This device offers a fixed output voltage of 5V with a tolerance of ±0.5%, ensuring high accuracy and stability in power management applications. It features a low noise level of 80µVrms over the frequency range of 10Hz to 10kHz, which is crucial for maintaining signal integrity in sensitive electronic circuits. The LM3411AM5X-5.0/NOPB is available in a surface-mount SOT23-5 package, making it suitable for compact and space-constrained designs.

LM3411AM5X-5.0/NOPB Features

  • Fixed Output Voltage: Provides a stable 5V output, ideal for applications requiring a consistent reference voltage.
  • Low Noise: With a noise level of 80µVrms from 10Hz to 10kHz, it ensures minimal interference in sensitive circuits.
  • High Accuracy: ±0.5% tolerance guarantees precise voltage regulation.
  • Low Cathode Current: Requires only 115 µA of cathode current, reducing power consumption and heat generation.
  • Surface-Mount Package: The SOT23-5 package is compact and suitable for high-density PCB layouts.
  • Compliance: REACH Unaffected and ROHS3 Compliant, ensuring environmental and regulatory standards are met.
  • Moisture Sensitivity Level: MSL 1 (Unlimited), making it suitable for a wide range of manufacturing environments.

LM3411AM5X-5.0/NOPB Applications

The LM3411AM5X-5.0/NOPB is ideal for a variety of applications where a stable and precise reference voltage is required. It is particularly well-suited for:

  • Analog-to-Digital Converters (ADCs): Provides a stable reference voltage to ensure accurate conversion.
  • Digital-to-Analog Converters (DACs): Ensures precise output levels.
  • Power Management Circuits: Acts as a stable reference for voltage regulators and power supplies.
  • Battery Management Systems: Offers a reliable reference for voltage monitoring and control.
  • Precision Measurement Equipment: Ensures accurate readings by providing a stable reference voltage.

Conclusion of LM3411AM5X-5.0/NOPB

The LM3411AM5X-5.0/NOPB from Texas Instruments is a high-performance shunt voltage reference IC that stands out due to its low noise, high accuracy, and compact surface-mount package. Its fixed 5V output with ±0.5% tolerance makes it an excellent choice for precision applications. The device's compliance with REACH and ROHS3 standards ensures it meets environmental and regulatory requirements. The LM3411AM5X-5.0/NOPB is ideal for use in ADCs, DACs, power management circuits, battery management systems, and precision measurement equipment, providing a reliable and stable reference voltage.

Tech Specifications

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

LM3411AM5X-5.0/NOPB Documents

Download datasheets and manufacturer documentation for LM3411AM5X-5.0/NOPB

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Ersa Mult Dev EOL 6/Sep/2023      

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