In the fast-paced world of electronics, having reliable components is essential for performance and efficiency. One such component is the Texas Instruments SN74LV1T34DCKRG4. This CMOS buffer stands out for its compact design and robust capabilities, making it an excellent choice for various applications, from telecommunications to portable devices. In this comprehensive article, we'll delve into the intricacies of the SN74LV1T34DCKRG4, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.
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SN74LV1T34DCKRG4's Manufacturer
The TI SN74LV1T34DCKRG4 is a 1-channel non-inverting buffer designed with CMOS technology. Its primary function is to strengthen and preserve signal integrity, making it ideal for applications where low power consumption and high speed are critical. As a push-pull output type buffer, it provides both high and low output currents efficiently.
Let's delve into the standout features that make the SN74LV1T34DCKRG4 a standout in the world of electronics:
· The SN74LV1T34DCKRG4 features a single-channel architecture, allowing for straightforward integration into your circuit designs.
· With its non-inverting configuration, this buffer ensures that the output signal remains in phase with the input, making it essential for precise signal transmission.
· Operating from 1.8V to 5.5V, it caters to a variety of voltage requirements, enhancing its versatility across different applications.
· The buffer boasts a maximum propagation delay of 14.5 ns at 1.8V and as low as 6.5 ns at 5V, ensuring fast signal processing.
· The 5-pin SC-70 package allows for space-efficient designs, perfect for applications where board space is at a premium.
Now, let's take a closer look at the technical specifications that define the capabilities of the SN74LV1T34DCKRG4:
Type | Parameter |
Logic Family | LV |
Logic Function | Buffer |
Number of Elements per Chip | 1 |
Number of Channels per Chip | 1 |
Number of Inputs per Chip | 1 |
Number of Input Enables per Chip | 0 |
Number of Outputs per Chip | 1 |
Number of Output Enables per Chip | 0 |
Bus Hold | No |
Polarity | Non-Inverting |
Maximum Propagation Delay Time @ Maximum CL (ns) | 14.5@1.8V|9.5@2.5V|8@3.3V|6.5@5V |
Absolute Propagation Delay Time (ns) | 15.5 |
Process Technology | CMOS |
Input Signal Type | Single-Ended |
Output Type | Push-Pull |
Maximum Low Level Output Current (mA) | 8 |
Maximum High Level Output Current (mA) | -8 |
Minimum Operating Supply Voltage (V) | 1.6 |
Typical Operating Supply Voltage (V) | 1.8|2.5|3.3|5 |
Maximum Operating Supply Voltage (V) | 5.5 |
Tolerant I/Os (V) | 5 Inputs |
Maximum Quiescent Current (uA) | 1 |
Propagation Delay Test Condition (pF) | 30 |
Minimum Operating Temperature (°C) | -40 |
Maximum Operating Temperature (°C) | 125 |
Supplier Temperature Grade | Commercial |
Packaging | Tape and Reel |
Mounting | Surface Mount |
Package Height | 0.9 |
Package Width | 1.4(Max) |
Package Length | 2.15(Max) |
PCB changed | 5 |
Standard Package Name | SOT |
Supplier Package | SC-70 |
Pin Count | 5 |
Lead Shape | Gull-wing |
* SN74LV1T34DCKRG4's Datasheet
The SN74LV1T34DCKRG4 finds its place in numerous applications, including:
· Telecommunications: Enhancing signal integrity for communication devices.
· Portable Devices: Ideal for battery-operated gadgets due to low power consumption.
· Servers and PCs: Ensures reliable data transmission in high-performance computing environments.
· Notebooks: Supports efficient signal processing for compact computing solutions.
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.
Incorporating the TI SN74LV1T34DCKRG4 into your electronic designs can significantly enhance performance and reliability. Its compact size, efficient power management, and versatile applications make it an excellent choice for a variety of projects.