Manufacturer Part Number
TMUX6104PWR
Manufacturer
Texas Instruments
Introduction
High-performance, SP4T Analog Switch for Signal Multiplexing
Product Features and Performance
SP4T switch configuration
4:1 multiplexer/demultiplexer circuit
Single channel
200Ohm maximum on-state resistance
5Ohm channel-to-channel matching
10V to 36V single supply voltage range
±5V to ±18V dual supply voltage range
85ns max switch-on time
53ns max switch-off time
500MHz -3db bandwidth
-0.41pC charge injection
6pF off-state channel capacitance
8pF off-state diode capacitance
20pA maximum off-state leakage current
-105dB crosstalk at 1MHz
Wide operating temperature range from -40°C to 125°C
Product Advantages
Low on-state resistance enhances signal integrity
Precise channel matching for differential signal applications
High bandwidth suitable for video and other high-frequency applications
Low charge injection for minimal signal distortion
Ultra-low leakage current maintains signal levels in off-state
Excellent crosstalk suppression for clean signal switching
Key Technical Parameters
200Ohm On-State Resistance (Max)
5Ohm Channel-to-Channel Matching (ΔRon)
10V ~ 36V Voltage - Supply, Single (V+)
±5V ~ 18V Voltage - Supply, Dual (V±)
85ns/53ns Switch Time (Ton, Toff) (Max)
500MHz -3db Bandwidth
Quality and Safety Features
Operational over a wide temperature range for reliability
Surface-mount technology for secure installation
Compatibility
14-TSSOP package compatible with standard SMT processes
Application Areas
Data acquisition systems
Test equipment
Audio and video switching
Communication systems
Product Lifecycle
Active status with ongoing availability
Several Key Reasons to Choose This Product
Texas Instruments' reputation for quality and reliability
Low on and off-state errors ensure accuracy in signal routing
High-speed switching capability for time-critical applications
Versatility in both single and dual supply voltage operations
Suitable for a broad range of temperatures, ensuring performance in diverse environments
Minimal signal interference characteristics ideal for precision electronic designs