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LMV722IDR
+Lista de MateriaisIC OPAMP GP 2 CIRCUIT 8SOIC
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FabricanteUMW
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Peça do Fabricante #LMV722IDR
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Especificações
| Atributo | Valor |
| Part Status | Active |
| Amplifier Type | Standard (General Purpose) |
| Number of Circuits | 2 |
| Output Type | Single Ended, Rail-to-Rail |
| Slew Rate | 9V/µs |
| Gain Bandwidth Product | 10 MHz |
| Current - Input Bias | 1 pA |
| Voltage - Input Offset | 800 µV |
| Current - Supply | 1mA (x2 Channels) |
| Voltage - Supply Span (Min) | 2.5 V |
| Voltage - Supply Span (Max) | 5.5 V |
| Operating Temperature | -40°C ~ 125°C (TA) |
| Mounting Type | Surface Mount |
| Package | 8-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SOP |
| Packaging | Cut Tape (CT), Tape & Reel (TR) |
| Current - Output / Channel | 40 mA |
Visão Geral
Description
The LMV722IDR offers a bandwidth of 1 MHz and a slew rate of 1 V/μs, providing suitable performance for general-purpose applications. It is designed with a low input bias current and offset voltage, minimizing errors in precision applications.
Packaged in a small-outline integrated circuit (SOIC) form factor, the LMV722IDR is ideal for space-constrained designs. Its low quiescent current consumption makes it efficient for portable and energy-sensitive applications. Typical applications include sensor signal conditioning, active filters, and portable instrumentation. Overall, the LMV722IDR combines performance, efficiency, and compactness for a wide range of analog signal processing tasks.
Equivalent
1. TLV2372 from Texas Instruments
2. MCP6022 from Microchip Technology
3. OPA2340 from Texas Instruments
4. AD8542 from Analog Devices
Each of these op-amps has unique specifications, so always check the datasheets to ensure they meet your design requirements.
Features
1. Low Voltage Operation: It operates effectively at supply voltages as low as 2.7V and up to 5.5V.
2. Low Supply Current: The device boasts a low quiescent current, enhancing battery life in portable applications.
3. Rail-to-Rail Output: This feature allows the output voltage to swing close to both supply rails, maximizing the output voltage range.
4. Wide Bandwidth: It offers a bandwidth of approximately 1 MHz, suitable for many general-purpose applications.
5. Low Input Bias Current: The low input bias current enhances performance in applications requiring high input impedance.
6. Small Package: It is available in small surface-mount packages such as SOIC, making it suitable for space-constrained designs.
7. Temperature Range: The LMV722IDR operates over a wide temperature range, typically from -40°C to 85°C, making it reliable for various environments.
These features make the LMV722IDR ideal for applications in consumer electronics, sensor interfaces, and portable devices.
Pinout
1. Pin 1 (OUT A): Output of Channel A.
2. Pin 2 (IN- A): Inverting input of Channel A.
3. Pin 3 (IN+ A): Non-inverting input of Channel A.
4. Pin 4 (V-): Negative power supply (ground in single-supply operation).
5. Pin 5 (IN+ B): Non-inverting input of Channel B.
6. Pin 6 (IN- B): Inverting input of Channel B.
7. Pin 7 (OUT B): Output of Channel B.
8. Pin 8 (V+): Positive power supply.
The LMV722IDR is designed for low-voltage, low-power applications, offering a wide supply voltage range and rail-to-rail output capability. It is commonly used for signal conditioning, filtering, and buffering applications in various electronic devices.
Manufacturer
Application
1. Consumer Electronics: Used in audio devices, smartphones, and wearable technology for signal processing and amplification.
2. Industrial Equipment: Employed in sensor signal conditioning and instrumentation.
3. Automotive Systems: Integrated into in-car entertainment systems and advanced driver-assistance systems (ADAS).
4. Medical Devices: Utilized for portable medical equipment and diagnostic instruments.
5. Communication Systems: Supports wireless technologies and network infrastructure by enhancing signal clarity.
These applications benefit from the LMV722IDR’s low noise, low power consumption, and reliable performance in compact designs.