CLVC1G125IDCKREP

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CLVC1G125IDCKREP DataSheet

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CLVC1G125IDCKREP Details

The CLVC1G125IDCKREP is a single non-inverting buffer from Texas Instruments, designed for voltage level translation and signal buffering in various digital applications. This buffer features a wide operating voltage range and high-speed operation, making it suitable for use in both 3.3V and 5V systems. It is housed in a small SC-70 package, allowing for space-efficient circuit designs.

Pinout

  • 1 (A): Data Input
  • 2 (Y): Buffered Data Output
  • 3 (GND): Ground
  • 4 (VCC: Positive Power Supply)

(Tip: For detailed pinout information, please refer to the corresponding datasheet.)

Key Features

  • Wide Operating Voltage Range: Supports voltage translation between 1.65V and 5.5V, enabling compatibility with various digital systems.
  • High-Speed Operation: Capable of operating at high frequencies, suitable for fast digital interfaces and buses.
  • Space-Efficient Package: Housed in a small SC-70 package for compact and space-saving circuit designs.
  • Low Power Consumption: Designed for low power operation, ideal for battery-powered applications.

Application

  • Digital Interface Level Translation: Suitable for translating voltage levels between different digital interfaces and systems.
  • Signal Buffering: Used for buffering digital signals to enhance signal integrity and drive capability.
  • Battery-Powered Devices: Ideal for low-power applications in portable and battery-operated devices.

Where to Use

The CLVC1G125IDCKREP is well-suited for applications requiring voltage level translation and signal buffering in digital systems. It is commonly used in interface modules, sensor interfaces, and portable electronic devices where space and power constraints are critical.

How to Use

Connect the CLVC1G125IDCKREP to your digital circuit by wiring the A input to the respective source and the Y output to the destination. Ensure proper power supply connections to VCC and GND. Refer to the datasheet for detailed usage instructions and application circuit examples.

Application Circuit

The application circuit diagram for the CLVC1G125IDCKREP illustrates how to integrate the buffer into a digital system for voltage level translation and signal buffering. It provides connections for power supply, ground, data input, and buffered output, ensuring proper functionality and signal integrity.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • SN74LVC1G125: A similar non-inverting buffer offering comparable features and performance from Texas Instruments.
  • NC7SZ125: An alternative single buffer from ON Semiconductor with equivalent functionality.

Complementary

The CLVC1G125IDCKREP can be complemented by the CLVC1G125QDBVRQ1, which offers automotive-grade performance and reliability, suitable for automotive digital systems.

When selecting complementary buffers, ensure that their features and specifications align with your specific application requirements for optimal performance and compatibility.

Frequently Asked Questions

Q: What is the operating voltage range of the CLVC1G125IDCKREP?

A: The CLVC1G125IDCKREP supports voltage translation between 1.65V and 5.5V, enabling compatibility with a wide range of digital systems. For detailed operating conditions, refer to the datasheet.

Q: Is the CLVC1G125IDCKREP suitable for battery-powered applications?

A: Yes, the CLVC1G125IDCKREP is designed for low power consumption and is ideal for use in battery-powered devices and portable electronics.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Technology family LVC Supply voltage (min) (V) 1.65
Supply voltage (max) (V) 5.5 Number of channels 1
IOL (max) (mA) 32 Supply current (max) (µA) 10
IOH (max) (mA) -32 Input type Standard CMOS
Output type 3-State Features Balanced outputs, Over-voltage tolerant inputs, Partial power down (Ioff), Very high speed (tpd 5-10ns)
Rating HiRel Enhanced Product Operating temperature range (°C) -40 to 85, -55 to 125

Datasheet PDF

Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.

Preliminary Specification CLVC1G125IDCKREP PDF Download

FAQs

What is CLVC1G125IDCKREP?

The CLVC1G125IDCKREP is a single-bit buffer/driver designed by Texas Instruments. It is ideal for applications requiring level shifting and signal amplification in a compact and space-efficient form factor.

How Does CLVC1G125IDCKREP Work?

The CLVC1G125IDCKREP operates as a single-bit buffer/driver, allowing for level shifting and fanout expansion of digital signals. It can interface between different voltage domains while preserving signal integrity and minimizing power consumption, making it suitable for a wide range of digital applications.

How Many Pins does CLVC1G125IDCKREP have and What are the Functions of the Pinout Configuration?

The CLVC1G125IDCKREP is housed in a 5-pin SC-70 package. The pinout configuration includes:

  • GND: Ground pin.
  • VCC: Power supply pin.
  • A: Input signal pin.
  • Y: Output signal pin.

What are the Pros and Cons of CLVC1G125IDCKREP?

Pros:

  • Compact Size: The SC-70 package is small and space-efficient, suitable for compact designs.
  • Level Shifting: Enables level shifting and signal buffering between different voltage domains.
  • Low Power Consumption: Operates with low power, making it suitable for battery-powered devices and low-power applications.

Cons:

  • Single-bit Operation: Limited to buffering and driving single-bit digital signals.
  • Limited Voltage Range: May not support wide voltage ranges compared to some other buffer/driver devices.

Are There Any Equivalents/Alternatives to CLVC1G125IDCKREP for Recommendation?

  • The NX3L1G66 from NXP Semiconductors is an equivalent single-bit buffer/driver with similar features.
  • Alternatives to the CLVC1G125IDCKREP include the SN74LVC1G125 from Texas Instruments and the NC7SZ125 from ON Semiconductor.

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