
Allicdata Part #: | 296-35756-2-ND |
Manufacturer Part#: |
SN74LVC1G57DRY2 |
Price: | $ 0.08 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC CONFIG MULTI-FUNC GATE 6SON |
More Detail: | Configurable Multiple Function Configurable 1 Circ... |
DataSheet: | ![]() |
Quantity: | 1000 |
5000 +: | $ 0.07226 |
Series: | 74LVC |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Logic Type: | Configurable Multiple Function |
Number of Circuits: | 1 |
Number of Inputs: | 3 |
Schmitt Trigger Input: | No |
Output Type: | Single-Ended |
Current - Output High, Low: | 32mA, 32mA |
Voltage - Supply: | 1.65 V ~ 5.5 V |
Operating Temperature: | -40°C ~ 125°C |
Mounting Type: | Surface Mount |
Package / Case: | 6-UFDFN |
Supplier Device Package: | 6-SON (1.45x1) |
Base Part Number: | 74LVC1G57 |
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The SN74LVC1G57DRY2 is a logic device from the Multi-Function, Configurable group from the Logic - Gates and Inverters category. It is part of the Texas Instrument’s LVC family, a low voltage complementary (LVC) technology based circuit that works using the advanced complementary metal-oxide-semiconductor (CMOS) process. The device is a 5-input, 2-output, configurable logic device that can be used in a multitude of applications.
The SN74LVC1G57DRY2 can operate seamlessly even with lower voltage levels while maintaining a wide operational range between 2.3V to 5.5V. Among the logic families it belongs, it has the highest speed with a typical delay (pulse width) of 5.9 ns. Its input threshold is tolerant of both 3.3V and 5V levels, making the SN74LVC1G57DRY2 a viable choice for those needing flexibility in their application. Logic functions such as Non-Inverting Buffers, Exclusive Ors, Quad 2-Input Ands, and 4-Input Ex-Ors can all be implemented easily.
The SN74LVC1G57DRY2’s typical application field is for low voltage, low power applications, particularly for battery-powered portable equipment. With its high logic speed, it can be used as a dedicated logic component to drive a variety of loads from microcontrollers. Its low power consumption of 78 mW makes it suitable for battery operated devices and is likely to be used in high-performance logic applications. Other areas that can benefit from using this device are automotive, computing, networking and memory applications where the highest speed is required.
Specifically, the SN74LVC1G57DRY2 can be used in applications such as data processing, environmental sensors, power conversion and control, RF receivers and transceivers, as well as audio and music electronics. Moreover, it can be used in a variety of industrial automation applications with its robust and reliable capabilities.
In terms of its working principle, the SN74LVC1G57DRY2 operates as a voltage-mode logic circuit. It has an input stage consisting of two independent CMOS inverters that perform the logical inversion of the input signals, and an output stage made up of open-collector N-channel MOSFETs. The CMOS inverters in the proof stage determine the input state of the CLD while the open-collector MOSFETs at the output stage determine the logic state of the output. Furthermore, the SN74LVC1G57DRY2 also feature two configurable logic switches, making it flexible enough to configure the logic device to different logic states. The logic switches can be used to invert the input/output signals and to modify the hysteresis effect of the inputs.
To summarize, the SN74LVC1G57DRY2 is an ideal choice for applications that require low power and high speed operation. With its wide input threshold tolerance, it can operate seamlessly even with lower voltage levels. With two configurable logic switches, it makes the device flexible enough to configure it according to the user’s needs. Moreover, its typical application fields include data processing, environmental sensors, power conversion and control, RF receivers and transceivers, audio and music electronics, as well as industrial automation. Its working principle operates using voltage-mode logic and consists of two independent CMOS inverters and open-collector MOSFETs.
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