Manufacturer Part Number
TS3USB221EDRCR
Manufacturer
Texas Instruments
Introduction
High-speed USB 2.0 (480 Mbps) analog switch designed for multiplexing/demultiplexing USB applications.
Product Features and Performance
USB 2.0 full-speed and high-speed compliant
Bidirectional data flow with near-zero propagation delay
2:1 multiplexer/demultiplexer configuration
Low on-state resistance of 6 Ohms
1GHz -3dB bandwidth ensuring high signal integrity
Bi-directional switch
Supports extended operating temperature range
Product Advantages
Enhanced signal fidelity for USB applications
Improves system performance due to low crosstalk and high bandwidth
Suitable for various USB configurations with 2:1 MUX/DEMUX
Designed for minimal insertion loss
Low power consumption compatible with portable devices
Key Technical Parameters
Number of Channels: 2
SPDT switch configuration
Voltage - Supply, Single (V+): 2.3V to 3.6V
On-State Resistance (Max): 6Ohm
-3db Bandwidth: 1GHz
Operating Temperature: -40°C to 85°C
Quality and Safety Features
High-reliability design meeting Texas Instruments' standards
Enhanced ESD protection for USB data lines
Compatibility
Compatible with USB 2.0 signal requirements
Supports both full-speed and high-speed data rates
Designed for logic-level interfacing with VSON (3x3) package for easy soldering and PCB layout
Application Areas
USB peripheral devices
Docking stations
Desktop and Notebook PCs
Consumer electronics interface switching
Product Lifecycle
Product Status: Active
No indicated discontinuation, with ongoing customer support and product revisions
Several Key Reasons to Choose This Product
Low power consumption makes it ideal for battery-operated devices
High-speed performance enables faster data rates for USB systems
Minimizes signal loss and distortion through industry-leading low on-state resistance
Broad operating temperature range suitable for challenging environmental conditions
Tape and Reel packaging for ease of manufacturing and assembly processes
Texas Instruments' reputation for reliability and support in semiconductor solutions