NC7SZ125P5X Overview: Features, Applications and Datasheet

2 February 2024
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Product Overview

 

Part Number: NC7SZ125P5X 

Manufacturer: Onsemi

Description: Tri-state output buffer, SC-88A (SC-70-5/SOT-353) with 1 element and 1 bit per element

Lead Time: Can Ship Immediately

Datasheet: Datasheet PDF

Category: Integrated Circuits (ICs) Logic Buffers, Drivers, Receivers, Transceivers

Number of Pins: 5

Short Description

 

With one bit per element and a 32mA to 32mA rating, these inverting non-inverting buffers are designed for the 5TSSOP, SC-70-5, SOT-353 format. This three-state buffer, the NC7SZ125 from TinyLogic, is a Ultra-High Speed (UHS) from ON Semiconductor.

 

The NC7SZ125 from TinyLogic is a three-state output UHS buffer with a single buffer from ON Semiconductor. This device uses modern CMOS technology to enable ultra-high speed and high output drive over a wide VCC range while dissipating very little static power. It operates from 1.65 V to 5.5 V, with high impedance inputs and outputs when VCC is 0 V. With the output in the STATE state, voltages higher than VCC are tolerated. It is possible to operate the output at voltages higher than VCC when it is in the STATE condition.

 

NC7SZ125P5X  Design

 

Pinout

Alt Text: Pinout

 

CAD Model

Alt Text: Symbol

 

Alt Text: Footprint

 

Alt Text: 3D Model

 

NC7SZ125P5X Features

 

This NC7SZ125P5X gate is part of Fairchild Semiconductor's TinyLogic® UHS (Ultra High-Speed) product family. The NC7SZ125P5X features the following features:

 

Single Buffer Gate:

 

In the NC7SZ125P5X there is one buffer gate, as such, it has an input and an output to buffer signals within, making it suitable for use as a signal buffer.

 

Ultra High-Speed Operation:

 

Designed to operate at ultra high speeds, this gate is part of the TinyLogic® UHS series, and is therefore well suited for applications that need fast signal processing, which is why it is ideally suited for ultra high speed systems.

 

Wide Operating Voltage Range:

 

This device is capable of supporting a wide operating voltage range, typically ranging between 0.9V and 3.6V. Its wide operating voltage range allows it to be used in various applications at a variety of different voltage levels.

 

Low Power Consumption:

 

With low power consumption, it is ideal for electronic devices that use batteries or energy efficiently.

 

High Output Drive Capability:

 

Depending on the load limits, the gate is capable of driving other components at high output drives.

 

High Noise Immunity:

 

Signal integrity is maintained in noisy environments thanks to a high noise immunity.

 

Schmitt Trigger Input:

 

In applications with slow or noisy input signals, Schmitt trigger inputs may provide hysteresis to increase noise immunity.

 

Tiny Packages:

 

Compact electronic devices benefit from space-saving designs such as the SC-88A, which has a small 5-lead package.

 

High-Speed CMOS Technology:

 

Complementary Metal Oxide Semiconductor (CMOS) technology with high-speed operation, combining the advantages of both technologies.

 

Wide Temperature Range:

 

It is versatile enough to operate in a wide range of temperatures.

 

Latch-Up Performance:

 

Ensures reliability in diverse operating conditions due to robust latch-up performance.

 

ESD Protection:

 

ESD protection protects the device during handling and operation from electrostatic discharge events.

 

Compatible with TTL and CMOS Logic Levels:

 

With flexibility to interface with both TTL (Transistor-Transistor Logic) and CMOS logic levels.

 

Applications:

 

In addition to signal buffering, level shifting, and interfaces, this product can also be used to accomplish a wide variety of digital system applications.

 

Product Specification

 

For more information about this product specification, you can typically find the datasheet on our website. Specifications, electrical characteristics, pin configurations, and application guidelines are all provided in the datasheet.

 

Ambient Temperature Range High

85 °C

High Level Output Current

-32 mA

Logic Function

Buffer, Inverting

Low Level Output Current

32 mA

Max Junction Temperature (Tj)

150 °C

Max Operating Temperature

85 °C

Max Power Dissipation

150 mW

Max Supply Voltage

5.5 V

Min Operating Temperature

-40 °C

Min Supply Voltage

1.65 V

Number of Bits

1

Number of Bits per Element

1

Number of Channels

1

Number of Circuits

1

Number of Elements

1

Number of Input Lines

1

Number of Inputs

1

Number of Output Lines

1

Number of Outputs

1

Packaging

Cut Tape

Polarity

Non-Inverting

Propagation Delay

5 ns

Quiescent Current

2 µA

Schedule B

8542390000, 8542390000|8542390000|8542390000|8542390000|8542390000

Turn-On Delay Time

15.6 ns

 

NC7SZ125P5X Applications

 

TinyLogic UHS (Ultra High-Speed) buffer gates are available from Fairchild Semiconductor as NC7SZ125P5X. Signal buffering functions are performed by this device in digital circuits. These are a few examples of the applications for the NC7SZ125P5X:

 

Signal Buffering:

 

NC7SZ125P5X is a digital signal buffer that serves the primary purpose of buffering the digital signals that pass through it. As a result, the output signal is isolated from the input signal, ensuring that it maintains its integrity throughout the process.

 

Mixed-Voltage Systems:

 

This module allows voltage levels to be translated between different circuit sections, ensuring compatibility between mixed-voltage systems containing different voltage levels.

 

Level Shifting:

 

As part of a system's level shifting requirements, the device can be used as a level shifting device for transferring signals between voltage levels.

 

Digital Communication Interfaces:

 

I2C, SPI, and UART are digital communication interfaces that may require buffering and voltage level translation.

 

Battery-Powered Devices:

 

Battery-powered devices can benefit from the NC7SZ125P5X's low power consumption, extending their battery life.

 

Consumer Electronics:

 

It is vital for consumer electronic devices to be capable of maintaining continuous communication between their components by buffering and voltage level shifting.

 

IoT (Internet of Things) Devices:

 

This component is suitable for IoT applications where sensors and actuators operate at different voltage levels, especially in situations where microcontrollers or processors are used.

 

Medical Devices:

 

In medical electronic devices, varying voltage requirements can be met by the NC7SZ125P5X by buffering or translating digital signals.

 

Automotive Electronics:

 

The NC7SZ125P5X can ensure proper signal communication and compatibility in automotive systems with components operating at different voltage levels.

 

Embedded Systems:

 

The integration of numerous components with varying voltage specifications is crucial in embedded systems. A highly reliable and efficient communication system, such as the NC7SZ125P5X, ensures the smooth running of such systems.

 

Communication Buses:

 

Interfacing with other devices requires voltage level translation on communication buses such as CAN (Controller Area Network), LIN (Local Interconnect Network), and other serial buses.

 

Digital Logic Circuits:

 

Signal integrity is ensured between different sections of the circuit by integrating the buffer into digital logic circuits.

 

Test and Measurement Equipment:

 

Applications in which accurate measurement and data acquisition depend on precise buffering or voltage level translation.

 

Networking Equipment:

 

Various components, including switches and routers, can be buffered and level-shifted using the NC7SZ125P5X.

This list of applications shows that the NC7SZ125P5X is capable of accommodating digital systems that need signal integrity, voltage translation, and buffering. Fairchild Semiconductor provides detailed usage guidelines and recommendations in its datasheet and application notes.

Similar Specs Components

 

Here in this section, we compared the different components which have the similar species with the NC7SZ125P5X component. Moreover, if you think we miss any important point, then make sure to let us know in the comment section. 



Part Number

NC7SZ125P5X

NL17SZ06DFT2G

NC7SZU04P5X

NC7SZ05P5X

Manufacturer

ON Semiconductor

ON Semiconductor

ON Semiconductor

ON Semiconductor

Package / Case

5-TSSOP, SC-70-5, SOT-353

5-TSSOP, SC-70-5, SOT-353

5-TSSOP, SC-70-5, SOT-353

5-TSSOP, SC-70-5, SOT-353

Number of Inputs

1

N/A

N/A

N/A

Number of Pins

5

5

5

5

Number of Circuits

1

N/A

N/A

N/A

Min Supply Voltage

1.65 V

N/A

N/A

N/A

Max Supply Voltage

5.5 V

N/A

N/A

N/A

Radiation Hardening

No

No

No

No

Mount

Surface Mount

Surface Mount

Surface Mount

Surface Mount

 

Faqs

 

What is the NC7SZ125P5X?

 

Designed for translating voltage levels and buffering signals, NC7SZ125P5X is an ultra-high-speed single buffer gate in digital circuits.

 

What is the purpose of a buffer gate?

 

It prevents signal degradation and ensures proper transmission by isolating and strengthening digital signals.

 

How many channels does the NC7SZ125P5X have?

 

Signal buffering is provided by the NC7SZ125P5X, which offers one input and one output.

 

Can it be used for level shifting applications?

 

Yes, It is possible to level shift the NC7SZ125P5X, allowing different parts of a circuit to have differing signal voltage levels.

 

What are the primary applications of the NC7SZ125P5X?

 

Digital communication interfaces, such as signal buffering, level shifting, and mixed-voltage systems, are primary applications.

 

Final Verdict

 

Providing reliable and versatile signal buffering and voltage level translation solutions for digital circuits, the NC7SZ125P5X stands out as a reliable and versatile single buffer gate. This device is a valuable component in mixed-voltage systems, consumer electronics, and Internet of Things applications because of its wide operating voltage range, low power consumption, and compatibility with multiple communication interfaces.

 

Designed for use in scenarios where voltage levels vary, the NC7SZ125P5X provides signal integrity, level shifting, and compatibility. As a result of its compact package options, it is suitable for applications with size restrictions, contributing to more space-efficient designs.

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