Texas Instruments
TLC2264CN  
OP Amps, Buffer Amps ICs

Texas Instruments
TLC2264CN
687-TLC2264CN
Ersa
Texas Instruments-TLC2264CN-datasheets-2388687.pdf
IC OPAMP GP 4 CIRCUIT 14DIP
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TLC2264CN Description

TLC2264CN Description

The TLC2264CN is a general-purpose operational amplifier from Texas Instruments, designed to offer robust performance and versatility for a wide range of applications. This quad operational amplifier features a LinCMOS™ series design, ensuring high efficiency and low power consumption. The TLC2264CN operates within a supply voltage range of 4.4V to 16V, making it suitable for both low-voltage and higher-voltage applications. It boasts a gain bandwidth product of 730 kHz, providing a balance between speed and precision. The device is housed in a through-hole package, specifically a tube, which facilitates easy integration into various electronic circuits.

TLC2264CN Features

  • Wide Supply Voltage Range: The TLC2264CN can operate from 4.4V to 16V, offering flexibility in power supply requirements.
  • Low Input Bias Current: With an input bias current of just 1 pA, the TLC2264CN minimizes the impact of input currents on circuit performance, ensuring high accuracy in sensitive applications.
  • High Gain Bandwidth Product: A gain bandwidth product of 730 kHz allows for high-frequency operation while maintaining stability and precision.
  • Low Input Offset Voltage: An input offset voltage of 300 µV ensures minimal error in signal processing, enhancing the accuracy of the amplifier.
  • High Slew Rate: A slew rate of 0.55V/µs enables the TLC2264CN to handle fast-changing signals efficiently, making it suitable for applications requiring rapid response times.
  • Low Power Consumption: The device consumes only 805µA across four channels, making it energy-efficient and ideal for battery-powered or low-power systems.
  • High Output Current: Each channel can deliver up to 50 mA, providing ample drive capability for various loads.
  • Compliance and Reliability: The TLC2264CN is ROHS3 compliant and unaffected by REACH regulations, ensuring environmental safety and regulatory compliance.

TLC2264CN Applications

The TLC2264CN is ideal for a variety of applications due to its versatile design and robust performance. Some specific use cases include:

  • Signal Processing: The low input bias current and high gain bandwidth make it suitable for precision signal processing in sensors and transducers.
  • Audio Applications: Its low distortion and high slew rate make it ideal for audio amplifiers and preamplifiers, ensuring high-fidelity audio output.
  • Industrial Control: The wide supply voltage range and high output current capability make it suitable for industrial control systems, where reliability and robustness are critical.
  • Medical Equipment: The low power consumption and high accuracy make it suitable for portable medical devices, ensuring precise measurements and energy efficiency.
  • Consumer Electronics: The TLC2264CN can be used in various consumer electronics, such as portable media players, where low power and high performance are essential.

Conclusion of TLC2264CN

The TLC2264CN from Texas Instruments is a versatile and high-performance general-purpose operational amplifier, offering a wide range of features that make it suitable for numerous applications. Its low power consumption, high slew rate, and low input bias current make it an excellent choice for both low-power and high-precision applications. The device's compliance with environmental regulations and its robust design ensure reliability and ease of integration into various electronic systems. Whether used in signal processing, audio applications, or industrial control systems, the TLC2264CN provides a reliable and efficient solution for engineers and designers in the electronics industry.

Tech Specifications

Voltage - Supply Span (Max)
Number of Channels per Chip
Power Supply Type
Maximum Input Offset Voltage (mV)
Typical Output Current (mA)
PPAP
Gain Bandwidth Product
Product Status
Current - Input Bias
Automotive
Maximum Input Offset Current (uA)
Rail to Rail
Supplier Package
Package / Case
Typical Voltage Gain (dB)
REACH Status
Typical Input Bias Current (uA)
EU RoHS
Amplifier Type
Maximum Dual Supply Voltage (V)
Moisture Sensitivity Level (MSL)
Typical Input Noise Voltage Density (nV/rtHz)
Operating Temperature
Typical Slew Rate (V/us)
ECCN
Mounting Type
Current - Supply
Standard Package Name
Pin Count
Shut Down Support
Mounting
Minimum Single Supply Voltage (V)
Typical Dual Supply Voltage (V)
Voltage - Supply Span (Min)
Lead Shape
Manufacturer Type
HTSUS
Package
Current - Output / Channel
Minimum CMRR (dB)
Maximum Quiescent Current (mA)
PCB changed
Output Type
HTS
ECCN (US)
Maximum Power Dissipation (mW)
Supplier Device Package
Minimum CMRR Range (dB)
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Process Technology
Typical Gain Bandwidth Product (MHz)
Package Height
Mfr
RoHS Status
Maximum Input Bias Current (uA)
Typical Noninverting Input Current Noise Density (pA/rtHz)
Slew Rate
Package Length
Minimum Dual Supply Voltage (V)
Voltage - Input Offset
Series
Type
Maximum Single Supply Voltage (V)
Part Status
Number of Circuits
Package Width
Typical Settling Time (ns)
Base Product Number
Maximum Dual Supply Voltage
Unit Weight
en - Input Voltage Noise Density
Vos - Input Offset Voltage
Voltage Gain dB
Dual Supply Voltage
Minimum Dual Supply Voltage
Product
RoHS
Supply Voltage - Min
Tradename
Operating Supply Current
SR - Slew Rate
Number of Channels
Technology
Height
Features
Maximum Operating Temperature
Ib - Input Bias Current
Supply Voltage - Max
Width
Mounting Style
Input Type
Minimum Operating Temperature
CMRR - Common Mode Rejection Ratio
In - Input Noise Current Density
Shutdown
Vcm - Common Mode Voltage
Length
Operating Supply Voltage
Output Current per Channel
Supply Type
Pd - Power Dissipation
USHTS
GBP - Gain Bandwidth Product

TLC2264CN Documents

Download datasheets and manufacturer documentation for TLC2264CN

Ersa Fab Site 29/Jun/2022      
Ersa TLC226x, TLC226xA      
Ersa Material Set 30/Mar/2017      

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