Manufacturer Part Number
SN74CBTLV3125DGVR
Manufacturer
Texas Instruments
Introduction
The SN74CBTLV3125DGVR is a high-performance, quad FET bus switch designed for the routing of high-speed signals.
Product Features and Performance
Quad FET bus switch technology for efficient signal routing
1 x 1:1 circuit configuration, providing flexibility in signal routing
Supports single supply operation, simplifying power design
Low on-state resistance, enhancing signal integrity
5V tolerant inputs, accommodating a range of signal levels
Minimal propagation delay, ideal for high-speed applications
ESD protection on all pins, increasing device robustness
Product Advantages
High-speed signal switching capabilities
Compatible with various bus standards
Low power consumption, extending battery life in portable devices
Compact 14-TFSOP packaging, suitable for space-constrained applications
5V tolerant inputs allow for mixed-voltage operation environments
Key Technical Parameters
Circuit: 1 x 1:1
Independent Circuits: 4
Voltage Supply: 2.3V ~ 3.6V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 14-TFSOP
Quality and Safety Features
Built-in ESD protection
Manufactured by Texas Instruments, known for high-quality and reliable components
Compatibility
Compatible with single supply voltages for easy integration
5V tolerant inputs support mixed voltage systems
Application Areas
High-speed data routing in telecom infrastructure
Signal multiplexing in data acquisition systems
Switching in networking equipment
Interface applications where minimal propagation delay is crucial
Product Lifecycle
Currently in Active status
No announced discontinuation, ensuring long-term availability
Several Key Reasons to Choose This Product
High-speed switching capabilities improve system performance
Flexible power supply compatibility eases system design
Low on-state resistance ensures minimal signal distortion
Compact footprint enables use in size-constrained applications
Texas Instruments' reputation for quality and reliability