Manufacturer Part Number
TLC339CDR
Manufacturer
Texas Instruments
Introduction
The TLC339CDR is a quadruple, differential input, micropower voltage comparator designed in Texas Instruments' LinCMOS™ process.
Product Features and Performance
Quadruple operational modes
Differential inputs
LinCMOS™ technology for low power consumption
Four voltage comparators in a single package
CMOS output with open-drain configuration
Flexible single or dual supply operation
Product Advantages
High input impedance resulting in lower input bias currents
Low power consumption suitable for battery-operated devices
Good common-mode rejection ratio (CMRR) ensures stability
Minimal propagation delay suitable for time-sensitive applications
Key Technical Parameters
Number of Elements: 4
Output Type: CMOS, Open-Drain
Supply Voltage Range: 3V to 16V
Input Offset Voltage (Max): 5mV at 10V
Input Bias Current (Max): 5pA at 5V
Output Current (Typical): 20mA
Quiescent Current (Max): 100µA
Common-Mode Rejection Ratio (Typical): 84dB
Propagation Delay (Max): 4.5µs
Operating Temperature Range: 0°C to 70°C
Quality and Safety Features
Built to high Texas Instruments standards
Robust 84dB CMRR improves accuracy
Designed for controlled propagation delays
Compatibility
14-SOIC package compatible with surface mount technology
Suitable for a wide range of supply voltages (3V to 16V)
Application Areas
Consumer electronics
Control systems
Alarm systems
Industrial electronics
Product Lifecycle
Product Status: Active
Not currently indicated as nearing discontinuation
Availability of replacements or upgrades should be confirmed with Texas Instruments
Several Key Reasons to Choose This Product
Low power consumption suitable for portable devices
High level of integration with four comparators in one package
Excellent CMRR and low input bias currents enhance accuracy
Suitable for a variety of applications due to wide voltage range and operating temperatures
Quick response time with a maximum propagation delay of 4.5µs
Ease of design into various systems thanks to compatibility with surface mount processes