Allicdata Part #: | 74LVQ125TTR-ND |
Manufacturer Part#: |
74LVQ125TTR |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | STMicroelectronics |
Short Description: | IC BUF NON-INVERT 3.6V 14TSSOP |
More Detail: | Buffer, Non-Inverting 4 Element 1 Bit per Element ... |
DataSheet: | 74LVQ125TTR Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | 74LVQ |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Logic Type: | Buffer, Non-Inverting |
Number of Elements: | 4 |
Number of Bits per Element: | 1 |
Input Type: | -- |
Output Type: | 3-State |
Current - Output High, Low: | 24mA, 24mA |
Voltage - Supply: | 2 V ~ 3.6 V |
Operating Temperature: | -55°C ~ 125°C (TA) |
Mounting Type: | Surface Mount |
Package / Case: | 14-TSSOP (0.173", 4.40mm Width) |
Supplier Device Package: | 14-TSSOP |
Base Part Number: | 74LVQ125 |
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The 74LVQ125TTR is a quad-transistor gate in the standard Logic - Buffers, Drivers, Receivers, Transceivers family. It has been engineered to be compatible with the industry standard 74XX logic family, allowing for a wider range of applications.
The device is available in three packages of various sizes. Available packages include a TSSOP, SSOP, and MSOP. This device has a supply voltage range of between 2.7-3.6V and a maximum output current of 12mA. It also has an operating temperature range of between -40°C and + 85°C. It has an operating frequency range of between 2kHz to 6 MHz and a propagation delay of 4 ns.
The 74LVQ125TTR is a high-speed, low-power quadruple buffer used to drive devices with a high-current output requirement. It is designed to buffer and amplify the input signal and then drive the output devices. In this way, devices that require high current inputs, such as flash memory, can be connected to an external voltage source or other logic device without having to worry about the input signal being lost or distorted.
This versatile device can be used for multiple applications, such as data multiplexer, bus transceiver and direction control, to name a few. It can also be used as a gain amplifier, switch control, and audio driver. This device is capable of driving high capacitive loads, allowing it to be used with memory devices like DRAM or SRAM.
The main feature of this device is its high-speed operation. Its 4nm propagation delay allows it to achieve high-speed operation at a low voltage level, making it suitable for use in low-power applications. The device also has a wide input compliance voltage range of -0.5 to 5.5 V, which ensures reliable data transfers.
The device uses four internal known gates to provide input buffering, output loading, and direction control. These known gates are the NAND gate, the OR gate, the NOR gate, and the XOR gate. These gates allow the device to be used for a wide variety of applications, such as data multiplexing, control logic, and gain amplification.
The primary functioning principle of this device is that it buffers the input signal and then passes it on to the selected output. The device uses TTL or CMOS levels to maintain the input/output impedance levels. The device features an internal data latch, allowing it to hold multiple words of data at the same time. This feature can be used to transmit and receive data in, or between multiple devices.
In addition, the device also features an active chip-select control, which can be used to enable or disable the device. This feature is useful when data must be transmitted between multiple devices. The device can also be used in applications where data must be transmitted serially, such as in I2C, UART, and SPI buses.
The 74LVQ125TTR is an ideal device for a wide range of logic - Buffers, Drivers, Receivers, Transceivers applications. It provides high-speed operation at a low voltage level, making it suitable for use in low-power environments. It has a wide input compliance voltage range, allowing it to be used with a variety of devices. Its internal data latches allows it to handle multiple words of data, making it ideal for data multiplexing, control logic, and gain amplification. Finally, its active chip-select control makes it suitable for use in applications where data must be transmitted serially or between multiple devices.
The specific data is subject to PDF, and the above content is for reference
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