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LMV762MA
+BOMIC COMP PREC W/P-POP LV 8-SOIC
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ManufacturerTexas Instruments
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Mfr. Part #LMV762MA
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Package SOIC (D)-8
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In Stock5212
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Specifications
| Attribute | Value |
| Package | Tube |
| ProductStatus | Active |
| Type | General Purpose |
| NumberofElements | 2 |
| OutputType | Push-Pull |
| Voltage-SupplySingle/Dual(±) | 2.7V ~ 5V |
| Voltage-InputOffset(Max) | 0.2mV @ 5V |
| Current-InputBias(Max) | 50pA @ 5V |
| Current-Quiescent(Max) | 700µA |
| CMRRPSRR(Typ) | 100dB CMRR, 110dB PSRR |
| PropagationDelay(Max) | 225ns |
| OperatingTemperature | -40°C ~ 125°C |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
| MountingType | Surface Mount |
Overview
Description
One of the key attributes of the LMV762MA is its low input offset voltage, which ensures accurate performance in precision applications. It also exhibits low power consumption, making it suitable for energy-sensitive environments. The fast response time of the LMV762MA allows for rapid signal processing, enhancing its utility in high-speed applications.
Packaged in a compact 8-pin SOIC, the LMV762MA is versatile and easy to integrate into various circuit designs. It is commonly used in applications such as zero-crossing detectors, battery monitoring systems, and sensor signal conditioning. Its reliability and straightforward functionality make it a popular choice among engineers and designers.
Equivalent
1. TLV6700 from Texas Instruments
2. MAX9025 from Maxim Integrated
3. LTC6702 from Analog Devices
4. MCP6542 from Microchip Technology
These comparators offer similar low-voltage operation and rail-to-rail input characteristics, suitable for various precision applications. Always verify electrical specifications and package compatibility before making substitutions.
Features
1. Low Voltage Operation: Designed for 2.7V to 5V supply voltages, making it suitable for battery-powered applications.
2. Low Power Consumption: Consumes minimal power with a typical supply current of just 88µA per comparator, which is ideal for energy-efficient designs.
3. High Speed: Offers a fast response time with a propagation delay of around 300ns.
4. Input Offset Voltage: Features a low input offset voltage, typically around 1mV, ensuring high precision.
5. Rail-to-Rail Input: Supports rail-to-rail input common-mode voltage range, allowing it to function effectively across a complete supply voltage range.
6. Open-Drain Output: Equipped with an open-drain output, facilitating easy interfacing with various logic levels.
7. Small Package: Available in a compact SOIC-8 package, which can be advantageous for space-constrained applications.
These features make the LMV762MA suitable for a wide range of applications, including portable devices, battery-powered equipment, and systems requiring precise voltage comparisons.
Pinout
1. V+ (Power Supply Voltage): The positive voltage supply pin.
2. Non-Inverting Input (IN+): Input pin for the non-inverting input of the first comparator.
3. Inverting Input (IN-): Input pin for the inverting input of the first comparator.
4. Output1: Output pin for the result of the first comparator.
5. Output2: Output pin for the result of the second comparator.
6. Inverting Input (IN-): Input pin for the inverting input of the second comparator.
7. Non-Inverting Input (IN+): Input pin for the non-inverting input of the second comparator.
8. GND (Ground): Ground reference pin.
The device is used for comparing two voltages and providing a digital output to indicate which is higher. It is known for its low power consumption and fast response time, making it suitable for battery-powered and portable applications.
Manufacturer
Application
1. Battery-Powered Devices: Offers low power consumption, extending battery life.
2. Portable Electronics: Utilized in smartphones, tablets, and wearable tech for voltage monitoring.
3. Sensor Interfaces: Provides accurate signal comparisons in sensor systems.
4. Consumer Electronics: Used in audio, video, and other consumer appliances for efficient signal processing.
5. Industrial Applications: Ideal for process control and monitoring systems.
6. Medical Devices: Used for precise measurements in portable diagnostic equipment.
7. Automotive Systems: Employed in various in-vehicle electronic systems for performance monitoring.
These features make it a versatile component for a wide range of low-power, precision applications.