TM125TXHUA Allicdata Electronics
Allicdata Part #:

TM125TXHUA-ND

Manufacturer Part#:

TM125TXHUA

Price: $ 63.74
Product Category:

Integrated Circuits (ICs)

Manufacturer: PulseR
Short Description: IC TRANSCEIVER PBC 3.3V 16SMD
More Detail: Element Bit per Element Output 16-SMD
DataSheet: TM125TXHUA datasheetTM125TXHUA Datasheet/PDF
Quantity: 1000
9 +: $ 57.94740
Stock 1000Can Ship Immediately
$ 63.74
Specifications
Series: Copperhead™
Part Status: Active
Voltage - Supply: 3.3V
Mounting Type: Surface Mount
Package / Case: 16-SMD Module
Supplier Device Package: 16-SMD
Description

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TM125TXHUA is a logic buffer, driver, receiver, transceiver device built using high performance complementary metal–oxide–semiconductor (CMOS) technology. It features a low power dissipation, high speed and a wide operating voltage range. The variety of logic buffers and drivers make it an ideal choice for applications requiring speed and low power. It can be used in a variety of digital applications, such as communications, telecommunications, computer peripherals, interface circuits, power management circuits, and more. It is also used in a variety of analog applications, such as audio circuits, signal conditioning circuits, signal generators, signal processors, power converters, power amplifiers, and more.The TM125TXHUA device is a logic-level translation device that provides multiple logic signals such as 3.3v, 5V, and 12V from one logic standard at a logic level of 0.45V with a logic level VCC of 1.8V. Its wide operating voltage range of 1.8V - 5.5V makes it suitable for a variety of applications. Its low-power feature enables the device to be used in low-power circuits.The TM125TXHUA device contains two main channels: an input channel (channel A) and an output channel (channel B). The input channel operates with an input voltage range of 0.45V to VCC and the output channel operates with a voltage range from 0V to VCC. The logic functions of the device are supported by the Dual Input Buffer stage (DIBS) feature that enables the device to buffer data coming from two different sources with different logic functions.The TM125TXHUA device works with TTL, CMOS, and NMOS logic levels. The device is designed to work with TTL and base-TTL logic levels. The input and output circuitries are designed to work with both TTL and base-TTL logic levels. Furthermore, the logic transitions of the device are designed to be tolerant to noise common in CMOS and NMOS circuits.The TM125TXHUA device has two main operating modes: the universal logic buffer and the low power logic buffer. In the universal logic buffer mode, the output voltage will rise and fall as the input voltage changes. The voltage levels that the device can output are determined by the source and sink current of the device. The low power logic buffer mode works similarly to the universal logic buffer mode, but reduces the power dissipation of the device.The TM125TXHUA device is equipped with various circuit protection features such as over-temperature protection, over-current protection, and short-circuit protection. These protection features help to ensure that the device is reliable in operation even under extreme conditions.The TM125TXHUA device is designed for easy system integration. It is pin and software compatible with other logic families including FET, and bipolar. With its low pin-count and external components it is ideal for use in applications where devices with higher pin-counts would increase costs and complexity.TM125TXHUA can be applied in a wide range of digital and analog applications, such as communications, telecommunications, computer peripherals, interface circuits, power management circuits, audio circuits, signal conditioning circuits, signal generators, signal processors, power converters, power amplifiers and more. Its working principle involves the ability to transition between two different logic levels with the use of its Dual Input Buffer Stage (DIBS) feature. Its low power dissipation, wide operating voltage range, varied logic buffers and drivers, and protective circuit features make it an ideal choice for a variety of applications.

The specific data is subject to PDF, and the above content is for reference

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