Texas Instruments_LM10CLN
original

Texas Instruments
LM10CLN

687-LM10CLN
PDF Datasheet
Op Amp, 4mV Vos, 90kHz BW, 1CH, DIP-8, Through Hole

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Tech Specifications

Amplifier Type
GENERAL PURPOSE
Bandwidth
90kHz
Package/Case
DIP
Common Mode Rejection Ratio
90dB
Gain Bandwidth Product
90kHz
Input Bias Current
12nA
Input Offset Voltage (Vos)
4mV
Lead Free
Contains Lead
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LM10CLN Description

LM10CLN Description

The LM10CLN is a general-purpose operational amplifier (op-amp) designed by Texas Instruments, known for its robust performance and versatility. This op-amp is housed in a through-hole package, specifically an 8-pin DIP (Dual In-line Package), making it suitable for a variety of applications where ease of integration and reliability are paramount. The LM10CLN operates within a supply voltage range of 1.1 V to 6.5 V, providing flexibility in power supply requirements. It features a low supply current of 280 µA, making it energy-efficient and suitable for low-power applications.

The LM10CLN is designed to operate within a temperature range of 0°C to 70°C, ensuring stable performance in a variety of environmental conditions. It has a low input bias current of 12 nA and an input offset voltage of 500 µV, which contribute to its high precision and accuracy. The op-amp can deliver an output current of up to 20 mA per channel, making it capable of driving moderate loads effectively.

LM10CLN Features

  • Wide Supply Voltage Range: The LM10CLN operates from a supply voltage as low as 1.1 V to a maximum of 6.5 V, offering flexibility in power supply design.
  • Low Supply Current: With a supply current of only 280 µA, the LM10CLN is highly energy-efficient, making it ideal for battery-powered and low-power applications.
  • Low Input Bias Current: The low input bias current of 12 nA ensures minimal loading on the input signal source, preserving signal integrity.
  • Low Input Offset Voltage: The 500 µV input offset voltage guarantees high accuracy and precision in signal processing.
  • High Output Current Capability: The ability to deliver up to 20 mA per channel allows the LM10CLN to drive moderate loads effectively.
  • Through-Hole Mounting: The through-hole package type ensures reliable mechanical stability and ease of integration on printed circuit boards.
  • Single Circuit Design: The LM10CLN features a single circuit design, simplifying the design process and reducing complexity in multi-channel applications.

LM10CLN Applications

The LM10CLN is well-suited for a wide range of applications due to its general-purpose design and robust performance characteristics. Some specific use cases include:

  • Signal Conditioning: Ideal for amplifying and conditioning weak signals in sensor applications, ensuring accurate and reliable signal transmission.
  • Analog Filters: The LM10CLN can be used to design active filters for various applications, including audio processing and telecommunications.
  • Voltage Buffers: Its low input bias current and high output current capability make it suitable for voltage buffering applications, maintaining signal integrity while driving moderate loads.
  • Precision Measurements: The low input offset voltage and high precision make the LM10CLN suitable for precision measurement circuits, such as in scientific instruments and medical devices.
  • Battery-Powered Devices: The low supply current and wide operating voltage range make the LM10CLN an excellent choice for battery-powered applications, extending battery life and ensuring reliable operation.

Conclusion of LM10CLN

The LM10CLN by Texas Instruments is a versatile and reliable general-purpose operational amplifier with a wide range of applications. Its low supply current, low input bias current, and low input offset voltage make it an excellent choice for precision signal processing and low-power applications. The through-hole package ensures mechanical stability and ease of integration, while its single circuit design simplifies the design process. Although the LM10CLN is now obsolete, its legacy continues to influence the design of modern op-amps, and it remains a valuable component for applications where its unique features and performance benefits are required.

FAQ

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