Manufacturer Part Number
TLC3702IPW
Manufacturer
Texas Instruments
Introduction
The TLC3702IPW from Texas Instruments is a dual general-purpose LinCMOS™ linear comparator designed for a wide range of analog signal detection and processing applications.
Product Features and Performance
Two independent comparators
Output type: CMOS, Push-Pull, TTL
Dual supply operating range: 3V to 16V
Maximum input offset voltage: 5mV at 10V
Ultra-low input bias current: 5pA at 5V
Typical output current: 20mA
Quiescent current: Max 65µA
High common-mode rejection ratio: 84dB CMRR
Propagation delay: up to 4.5µs
Operating temperature range: -40°C to 85°C
Product Advantages
Enhanced accuracy due to low input offset voltage and bias current
Flexible voltage supply options supporting a wide range of applications
High output drive capability
Minimal power consumption with low quiescent current
Robust performance with high CMRR
Key Technical Parameters
Supply Voltage (Single/Dual): 3V ~ 16V
Input Offset Voltage (Max): 5mV @ 10V
Input Bias Current (Max): 5pA @ 5V
Output Current (Typ): 20mA
Quiescent Current (Max): 65µA
CMRR (Typ): 84dB
Propagation Delay (Max): 4.5µs
Operating Temperature: -40°C ~ 85°C
Package Type: 8-TSSOP
Quality and Safety Features
Designed for robustness and reliability with a high degree of signal accuracy and noise immunity
Compatibility
Can be integrated into a variety of circuits with its multiple output types (CMOS, Push-Pull, TTL) and range of operating voltages
Application Areas
Industrial processing equipment
Sensor interfaces
Voltage level detection
Logic voltage translation
Window comparators
Product Lifecycle
Product Status: Last Time Buy
Indicates nearing discontinuation with details for replacement or upgrade options typically available
Several Key Reasons to Choose This Product
Ultra-low input bias facilitates high accuracy signal processing
Versatile power supply compatibility enhances application range
High common-mode rejection ratio ensures stability in noisy environments
Dual comparator functionality offers enhanced circuit design flexibility
Reliable performance over a wide temperature range suitable for industrial applications