When it comes to managing multiple input signals in electronics, the TI CD74HC4067SM96 analog multiplexer stands out as a reliable and versatile solution. In this comprehensive article, we'll delve into the intricacies of the CD74HC4067SM96, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.
Catalog
The TI CD74HC4067SM96 is a single 16:1 analog multiplexer designed to handle multiple input signals and route them to a single output. It’s part of Texas Instruments' high-performance HC family, known for its low power consumption and high-speed operation. This multiplexer is ideal for applications where space and efficiency are critical, thanks to its compact 24-pin SSOP packaging and surface-mount design.
Let's delve into the standout features that make the CD74HC4067SM96 a standout in the world of electronics:
· Supports 16 input channels and 1 output channel, making it perfect for complex signal routing.
· Operates at a single supply voltage ranging from 2V to 6V, ensuring compatibility with various systems.
· Maximum on-resistance of 180Ω at 4.5V, minimizing signal loss and ensuring high fidelity.
· Maximum frequency of 89MHz at 4.5V, suitable for high-speed data applications.
· Operates reliably in temperatures from -55°C to 125°C, making it suitable for harsh environments.
Now, let's take a closer look at the technical specifications that define the capabilities of the CD74HC4067SM96:
Type | Parameter |
Type | Analog Multiplexer |
Configuration | Single 16:1 |
Multiplexer Architecture | 16:1 |
Number of Channels per Chip | 1 |
Number of Inputs per Chip | 16 |
Number of Outputs per Chip | 1 |
Chip Enable Signals | Yes |
Maximum Propagation Delay Bus to Bus (ns) | 13@6V|15@4.5V|75@2V |
Maximum Turn-On Time (ns) | 300@2V |
Maximum Turn-Off Time (ns) | 290@2V |
Maximum Frequency (25°C) @ Vcc (MHz) | 89@4.5V |
Input Signal Type | Single |
Output Signal Type | Single |
Minimum Single Supply Voltage (V) | 2 |
Typical Single Supply Voltage (V) | 3|5 |
Maximum Single Supply Voltage (V) | 6 |
Maximum Low Level Output Current (mA) | 25 |
Maximum High Level Output Current (mA) | 25 |
Maximum On Resistance (Ohm) | 180@4.5V |
Maximum On Resistance Range (Ohm) | 150 to 250 |
Propagation Delay Test Condition (pF) | 50 |
Power Supply Type | Single |
Minimum Operating Temperature (°C) | -55 |
Maximum Operating Temperature (°C) | 125 |
Packaging | Tape and Reel |
Mounting | Surface Mount |
Package Height | 2(Max) - 0.05(Min) |
Package Width | 5.6(Max) |
Package Length | 8.5(Max) |
PCB changed | 24 |
Standard Package Name | SO |
Supplier Package | SSOP |
Pin Count | 24 |
Lead Shape | Gull-wing |
The TI CD74HC4067SM96 is designed to be versatile, finding applications in a variety of industries. Some notable use cases include:
· Energy Infrastructure: Used in energy monitoring and control systems, ensuring accurate data routing for efficient power management.
· Building Automation: Ideal for automating building systems, such as lighting and HVAC, by selecting different sensors or control inputs.
· Wireless Infrastructure: Key in wireless communication systems, ensuring efficient signal multiplexing in routers and base stations.
· Appliances: Found in household appliances to select different modes or settings through a single control line.
· Data Centers & Enterprise Computing: Enables multiple signals to be routed to central processing units, enhancing data handling capabilities.
· Retail Automation & Payment: Used in point-of-sale systems, providing reliable signal routing for payment processing devices.
Texas Instruments (TI), established in 1930, is a global leader in semiconductor and technology solutions, known for its pioneering contributions to the electronics industry. Specializing in the design and manufacture of analog and digital circuits, microcontrollers, and processors, TI has played a pivotal role in shaping technological advancements across diverse sectors, including industrial, automotive, consumer electronics, and communication.
The TI CD74HC4067SM96 Analog Multiplexer offers exceptional performance for a wide range of applications that require efficient signal routing. With its low on resistance, fast propagation delay, and wide voltage and temperature range, it's an ideal choice for industries like energy infrastructure, building automation, and wireless communications.