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LM393PT
+Lista de MateriaisIC COMPARATOR 2 GEN PUR 8TSSOP
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FabricanteSemiconductor de Rohm
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Peça do Fabricante #LM393PT
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Ficha Técnica LM393PT DataSheet
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Especificações
| Atributo | Valor |
| Part Status | Obsolete |
| Base Product Number | LM393 |
| Type | Standard (General Purpose) |
| Number of Elements | 2 |
| Output Type | Open-Collector, Rail-to-Rail |
| Voltage - Supply, Single/Dual (±) | 2V ~ 36V, ±1V ~ 18V |
| Voltage - Input Offset (Max) | 7mV @ 5V |
| Current - Input Bias (Max) | 0.25µA @ 5V |
| Current - Output (Typ) | 16mA @ 5V |
| Current - Quiescent (Max) | 1mA |
| Operating Temperature | 0°C ~ 70°C |
| Package | 8-TSSOP (0.173", 4.40mm Width) |
| Mounting Type | Surface Mount |
| Supplier Device Package | 8-TSSOP |
| Packaging | Tape & Reel (TR) |
Visão Geral
Description
Key specifications include a wide voltage range (typically 2V to 36V), low input bias current, and fast response times, allowing it to be used in applications such as voltage level detection, zero-crossing detection, and signal conditioning. The LM393PT has an open-collector output, which enables easy interfacing with higher voltage levels and loading conditions.
Common applications include automotive electronics, battery management systems, and industrial automation. Its robustness and reliability make it suitable for both consumer and industrial electronics. The device is typically available in a standard 8-pin DIP package, facilitating easy integration into circuits.
Equivalent
Features
1. Dual Comparator: Contains two independent, high-speed comparators.
2. Wide Supply Voltage Range: Operates from a single supply of 2V to 36V or dual supplies of ±1V to ±18V.
3. Low Input Offset Voltage: Typically around 2mV, ensuring accurate comparisons.
4. High Gain: Offers a high open-loop voltage gain, typically 100 dB, enhancing sensitivity.
5. Fast Response Time: Capable of switching with a response time of around 0.3µs, suitable for fast signal processing.
6. Low Power Consumption: Typical supply current is low, allowing for energy-efficient designs.
7. Output Configuration: Open-collector outputs enable easy interfacing with various digital logic levels.
8. Temperature Range: Operates over a wide temperature range from -40°C to +125°C, suitable for various applications.
These features make the LM393PT ideal for use in analog-to-digital converters, voltage level detectors, and various feedback control systems.
Pinout
Pin Configuration:
1. Inverting Input (V-): Input for the first comparator.
2. Non-inverting Input (V+): Input for the first comparator.
3. Output (OUT): Output for the first comparator.
4. Ground (GND): Common ground connection.
5. Inverting Input (V-): Input for the second comparator.
6. Non-inverting Input (V+): Input for the second comparator.
7. Output (OUT): Output for the second comparator.
8. NC (No Connect): Not connected; typically left unconnected.
Functions:
- The LM393PT is used for comparing two voltage levels and provides a digital output based on the comparison.
- It features an open-collector output, allowing for interfacing with various voltages and pull-up resistors.
- The IC operates over a wide voltage range (2V to 36V) and is suitable for applications in signal conditioning, level detection, and waveform shaping.
Manufacturer
The company primarily serves a broad range of markets, including automotive, industrial, consumer electronics, and communications. TI's products are widely used in applications such as signal conditioning, power management, and data conversion. The LM393PT itself is a dual comparator, commonly utilized in various electronic circuit designs for comparing voltages and providing outputs based on the comparison.
Texas Instruments is known for its commitment to research and development, continuously advancing technology and providing comprehensive support for engineers and designers. The company's influence and reputation in the semiconductor industry make it a pivotal player in the global electronics market.
Application
1. Voltage Level Detection: Monitoring voltage levels for over-voltage or under-voltage conditions.
2. Threshold Sensing: Setting reference points in sensors to trigger alarms or outputs.
3. Signal Conditioning: Amplifying and shaping analog signals in communication systems.
4. Temperature Control: Used in thermostats to compare temperature sensor outputs.
5. Oscillator Circuits: Generating square wave signals in timing applications.
6. Zero-Crossing Detectors: Detecting when AC signals cross zero voltage for phase control.
Its versatility and low power consumption make it suitable for a variety of electronic projects and systems.