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TA75W393FU
+NomenclatureAnalog Comparators
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FabricantToshiba
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Pièce fabricant #TA75W393FU
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En stock10640
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Spécifications
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Présentation
Description
Key features of this comparator include a wide operating temperature range, typically from -40°C to 85°C, allowing it to function reliably in various environments. It also offers a quick response time and minimal input bias current, enhancing its efficiency in precision-sensitive tasks. Its compact packaging makes it ideal for integration into space-constrained designs. Overall, the TA75W393FU is a versatile and reliable component for engineers seeking a dependable voltage comparison solution in their electronic designs.
Equivalent
1. LM393 from Texas Instruments or ON Semiconductor
2. LM2903 from Texas Instruments or STMicroelectronics
3. MC3303 from ON Semiconductor
4. TLV3201 from Texas Instruments
These comparators offer similar functionalities and performance characteristics, such as dual channels and similar voltage ranges, making them suitable replacements in most applications. Always check the specific datasheet for compatibility in your application.
Pinout
The TA75W393FU typically comes in an 8-pin package, specifically the SOP8 (Small Outline Package) form factor. Here is a concise description of the pin functions:
1. VCC (Pin 8): Positive supply voltage.
2. GND (Pin 4): Ground or negative supply voltage.
3. IN-1 (Pin 2): Inverting input of the first comparator.
4. IN+1 (Pin 3): Non-inverting input of the first comparator.
5. OUT1 (Pin 1): Output of the first comparator.
6. IN-2 (Pin 6): Inverting input of the second comparator.
7. IN+2 (Pin 5): Non-inverting input of the second comparator.
8. OUT2 (Pin 7): Output of the second comparator.
The comparators in the TA75W393FU are generally used to compare two voltages and provide a digital output indicating which input is higher.
Manufacturer
Application
1. Signal Processing: Used to compare voltage levels in signal conditioning circuits.
2. Voltage Detection: Implements over-voltage and under-voltage detection systems.
3. Oscillator Circuits: Functions in timing and waveform generation applications.
4. Level Shifting: Assists in interfacing different voltage level components.
5. Sensor Interfaces: Utilized in interfacing with sensors requiring precise voltage comparison.
Its low power consumption and high-speed operation make it suitable for battery-powered and precision electronic devices.