74LVTH322245EC,557 Allicdata Electronics
Allicdata Part #:

74LVTH322245EC,557-ND

Manufacturer Part#:

74LVTH322245EC,557

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC TXRX NON-INVERT 3.6V 96LFBGA
More Detail: Transceiver, Non-Inverting 4 Element 8 Bit per Ele...
DataSheet: 74LVTH322245EC,557 datasheet74LVTH322245EC,557 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 74LVTH
Packaging: Tray 
Part Status: Obsolete
Logic Type: Transceiver, Non-Inverting
Number of Elements: 4
Number of Bits per Element: 8
Input Type: --
Output Type: 3-State
Current - Output High, Low: 12mA, 12mA
Voltage - Supply: 2.7 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 96-LFBGA
Supplier Device Package: 96-LFBGA (13.5x5.5)
Base Part Number: 74LVTH322245
Description

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The 74LVTH322245EC, 557 is a logic device that provides a wide array of applications in the areas of buffer, driver, receiver and transceiver applications. The device is powered by two input power sources: 3.3V and 5V. It operates with an output voltage of 9V and provides a slew rate of 1.8V/ms. The device has an open-drain output with an output stage consisting of two P-channel MOSFETs and two N-channel MOSFETs.

The device features a dynamic shift register that has eight output pins. Each output pin can be used to drive up to four signals in parallel. The dynamic shift register is designed to reduce power consumption and reduces the time to switch on different outputs to less than one second. The device is designed to have a very low propagation delay, which enables it to respond quickly to inputs.

The 74LVTH322245EC, 557 features a dual latch logic structure that can be used as a buffer, driver, receiver and transceiver. The dual latch logic structure uses two flip-flop latches that are connected in series to form a single logic gate. The two latches are connected to two input lines and two output lines. The input lines control the state of the output lines, while the output lines control the state of the input lines.

In buffer applications, the 74LVTH322245EC, 557 can be used to buffer multiple signals. The device is designed to generate a low-level output signal when the input signal is at a high level, and a high-level output signal when the input signal is at a low level. This ensures that the output signal is always at the same level as the input signal.

In driver applications, the device can be used to overcome high current demand from the load. It can drive logic signals from the driver inputs to the load in parallel, providing the necessary current needed to power the load. The device is also capable of driving large amounts of logic from the driver inputs to the load in conditions of signal intensity and signal integrity. The device also provides a low propagation delay for signal transitions that makes it suitable for high speed operations.

In receiver applications, the device can be used to detect and receive signals from the load. The device can detect changes in the input signals and output a signal to indicate these changes. The device also features a high common mode rejection ratio, which ensures that unwanted noise signals are filtered out, and only the valid signal is received. The device is designed to be immune to transient noise signals, and it has a low noise margin, making it suitable for applications such as communication receivers.

In transceiver applications, the device can be used to pair multiple receivers and drivers in order to achieve data transfers between two nodes. The device is designed to provide very low power consumption, and its low propagation delay ensures that data is transferred quickly from one node to the other. The device is also capable of providing a wide range of bandwidths, making it suitable for applications that require high speed data transfers.

The 74LVTH322245EC, 557 is an ideal device for buffer, driver, receiver and transceiver applications. It is capable of providing a very low power consumption, low propagation delay, and wide bandwidths. It is also capable of driving multiple signals from the driver inputs to the load in parallel and providing a high common mode rejection ratio. This makes it ideal for applications that require a high level of signal integrity and performance.

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

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