Overview
The SN74LVC1G17DPWR, manufactured by Texas Instruments, is a high-performance CMOS single Schmitt-trigger buffer. This device is designed to operate over a wide voltage range from 1.65 V to 5.5 V, making it versatile for various system power supplies. It performs the Boolean function Y = A, meaning the output Y is the same as the input A. The SN74LVC1G17DPWR features Schmitt-trigger inputs, which provide different input threshold levels for positive-going and negative-going signals, enhancing noise immunity and making it suitable for applications with slow or noisy input signals.
Key Specifications
Parameter | Min | Max | Unit |
---|---|---|---|
VCC Supply Voltage Range | -0.5 | 6.5 | V |
Input Voltage Range | -0.5 | 6.5 | V |
Output Voltage Range (High or Low State) | -0.5 | VCC + 0.5 | V |
Operating Free-Air Temperature | -40 | 125 | °C |
High-Level Output Current (VCC = 3.3 V) | -16 | -24 | mA |
Low-Level Output Current (VCC = 3.3 V) | 16 | 24 | mA |
Propagation Delay Time (tpd) at 3.3 V | - | 4.6 | ns |
Maximum Supply Current (ICC) | - | 0.01 | mA |
Key Features
- Schmitt-Trigger Inputs: Provides different input threshold levels for positive-going and negative-going signals, enhancing noise immunity.
- Wide Operating Voltage Range: Operates from 1.65 V to 5.5 V, accommodating various system power supplies.
- Low Power Consumption: Maximum supply current (ICC) of only 0.01 mA, making it ideal for battery-powered applications.
- High Output Drive: Capable of driving outputs with high current levels, up to ±24 mA at 3.3 V.
- Compact Package Options: Available in ultra-small packages such as DPW (X2SON), DBV (SOT-23), and others, saving significant board space).
- Broad Operating Temperature Range: Operates from -40°C to 125°C, suitable for use in harsh environments).
- Ioff Feature: Allows the device to be powered down without damaging current backflow through the device).
- Lead-Free and RoHS Compliant: Ensures environmental compliance and durability against humidity).
Applications
- Energy and Power Systems: Suitable for smart metering devices and power supply control circuits where precise signal translation is crucial).
- Renewable Energy: Can be integrated into solar inverters or wind turbine control modules to process signals efficiently and reliably).
- Automotive: Used in sensor signal processing, automotive infotainment systems, or as part of electronic control units (ECUs) due to its robust temperature range and high reliability).
- Consumer Electronics: Ideal for handheld devices, smart home gadgets, or any application requiring signal buffering or conditioning due to its small package size and low power consumption).
- Signal Conditioning and Logic Level Translation: Useful for creating an interface between two different voltage nodes and for logic level translation).
Q & A
- What is the operating voltage range of the SN74LVC1G17DPWR?
The SN74LVC1G17DPWR operates from 1.65 V to 5.5 V).
- What type of input does the SN74LVC1G17DPWR have?
The device features Schmitt-trigger inputs).
- What is the maximum propagation delay time at 3.3 V?
The maximum propagation delay time (tpd) at 3.3 V is 4.6 ns).
- What are the package options available for the SN74LVC1G17DPWR?
The device is available in various packages including DPW (X2SON), DBV (SOT-23), DCK (SC-70), and others).
- What is the operating temperature range of the SN74LVC1G17DPWR?
The device operates from -40°C to 125°C).
- Is the SN74LVC1G17DPWR lead-free and RoHS compliant?
Yes, the device is lead-free and RoHS compliant).
- What is the maximum supply current (ICC) of the SN74LVC1G17DPWR?
The maximum supply current (ICC) is 0.01 mA).
- Can the SN74LVC1G17DPWR be used in noisy signal environments?
Yes, the Schmitt-trigger input allows it to be used in applications with noisy signal environments, offering enhanced signal integrity).
- What is the Ioff feature in the SN74LVC1G17DPWR?
The Ioff feature disables the outputs when VCC is 0 V, preventing damaging current backflow through the device).
- In which industries can the SN74LVC1G17DPWR be applied?
The device can be applied in various industries including energy and power systems, renewable energy, automotive, and consumer electronics).