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LMV358LIST
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- Mfr。パート #LMV358LIST
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- データシート LMV358LIST DataSheet
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仕様
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| AmplifierType | General Purpose |
| NumberofCircuits | 2 |
| OutputType | Rail-to-Rail |
| SlewRate | 0.7V/µs |
| GainBandwidthProduct | 1.3 MHz |
| Current-InputBias | 27 nA |
| Voltage-InputOffset | 1 mV |
| Current-Supply | 130µA (x2 Channels) |
| Current-Output/Channel | 70 mA |
| Voltage-SupplySpan(Min) | 2.7 V |
| Voltage-SupplySpan(Max) | 5.5 V |
| OperatingTemperature | -40°C ~ 125°C |
| MountingType | Surface Mount |
| Package/Case | 8-TSSOP, 8-MSOP (0.118, 3.00mm Width) |
概要
Description
The LMV358 is a low-power, dual operational amplifier (op-amp) designed for general-purpose applications. It is part of the LMV3xx series, which is known for its low voltage operation and low power consumption, making it ideal for battery-powered and portable devices. The LMV358 operates on a supply voltage range from 2.7V to 5.5V, offering flexibility in various electronic applications.
Key features of the LMV358 include a rail-to-rail output, which allows the output voltage to swing close to the supply rails, enhancing dynamic range and usability in low-voltage systems. It also has a low input bias current, which is beneficial in applications requiring high input impedance. The device is available in several package options, providing versatility in design and layout.
Typical applications for the LMV358 include sensor signal conditioning, battery monitoring, and audio processing. Its compact size and efficient performance make it suitable for use in consumer electronics, medical devices, and industrial control systems. Overall, the LMV358 is valued for its balance of performance and power efficiency in compact electronic designs.
Key features of the LMV358 include a rail-to-rail output, which allows the output voltage to swing close to the supply rails, enhancing dynamic range and usability in low-voltage systems. It also has a low input bias current, which is beneficial in applications requiring high input impedance. The device is available in several package options, providing versatility in design and layout.
Typical applications for the LMV358 include sensor signal conditioning, battery monitoring, and audio processing. Its compact size and efficient performance make it suitable for use in consumer electronics, medical devices, and industrial control systems. Overall, the LMV358 is valued for its balance of performance and power efficiency in compact electronic designs.
Features
The LMV358 is a dual operational amplifier from Texas Instruments, designed for general-purpose applications. Key features include:
1. Low Supply Voltage: Operates on a supply voltage as low as 2.7V and up to 5.5V, making it suitable for battery-powered devices.
2. Low Power Consumption: It has a low quiescent current, which helps in reducing power consumption, crucial for portable applications.
3. Rail-to-Rail Output Swing: Offers a rail-to-rail output voltage swing, improving dynamic range and enabling better performance in low-voltage applications.
4. Wide Bandwidth: Provides a gain bandwidth product of approximately 1 MHz, suitable for a range of applications requiring moderate frequency response.
5. Low Input Bias Current: Features low input bias current, which is beneficial for high-impedance sensor interfacing.
6. Small Package Options: Available in small package options such as SOIC, VSSOP, and other surface-mount packages, aiding in compact PCB design.
7. Temperature Range: Operates over an extended temperature range, making it adaptable for various environmental conditions.
These features make the LMV358 versatile for use in consumer electronics, automotive, and other applications requiring reliable and efficient amplification.
1. Low Supply Voltage: Operates on a supply voltage as low as 2.7V and up to 5.5V, making it suitable for battery-powered devices.
2. Low Power Consumption: It has a low quiescent current, which helps in reducing power consumption, crucial for portable applications.
3. Rail-to-Rail Output Swing: Offers a rail-to-rail output voltage swing, improving dynamic range and enabling better performance in low-voltage applications.
4. Wide Bandwidth: Provides a gain bandwidth product of approximately 1 MHz, suitable for a range of applications requiring moderate frequency response.
5. Low Input Bias Current: Features low input bias current, which is beneficial for high-impedance sensor interfacing.
6. Small Package Options: Available in small package options such as SOIC, VSSOP, and other surface-mount packages, aiding in compact PCB design.
7. Temperature Range: Operates over an extended temperature range, making it adaptable for various environmental conditions.
These features make the LMV358 versatile for use in consumer electronics, automotive, and other applications requiring reliable and efficient amplification.
Package
The LMV358LIST is an operational amplifier from Texas Instruments. The "LIST" in its name indicates a specific packaging type, which is a SOT-23-8 package. This package is a small-outline transistor format with 8 leads, designed for surface-mount technology applications, offering compactness and efficiency in circuit board designs.
Pinout
The LMV358 is a dual low-voltage operational amplifier. It typically comes in an 8-pin configuration. Here's a brief overview of its pin functions:
1. Pin 1 (OUT1): Output for the first operational amplifier.
2. Pin 2 (IN1-): Inverting input for the first operational amplifier.
3. Pin 3 (IN1+): Non-inverting input for the first operational amplifier.
4. Pin 4 (V- or GND): Ground or negative supply voltage.
5. Pin 5 (IN2+): Non-inverting input for the second operational amplifier.
6. Pin 6 (IN2-): Inverting input for the second operational amplifier.
7. Pin 7 (OUT2): Output for the second operational amplifier.
8. Pin 8 (V+ or VCC): Positive supply voltage.
These amplifiers are suited for low-power, low-voltage applications. They are used in a variety of applications, including sensor signal conditioning, portable devices, and active filters.
1. Pin 1 (OUT1): Output for the first operational amplifier.
2. Pin 2 (IN1-): Inverting input for the first operational amplifier.
3. Pin 3 (IN1+): Non-inverting input for the first operational amplifier.
4. Pin 4 (V- or GND): Ground or negative supply voltage.
5. Pin 5 (IN2+): Non-inverting input for the second operational amplifier.
6. Pin 6 (IN2-): Inverting input for the second operational amplifier.
7. Pin 7 (OUT2): Output for the second operational amplifier.
8. Pin 8 (V+ or VCC): Positive supply voltage.
These amplifiers are suited for low-power, low-voltage applications. They are used in a variety of applications, including sensor signal conditioning, portable devices, and active filters.
Manufacturer
The LMV358LIST is manufactured by Texas Instruments. Texas Instruments, often abbreviated as TI, is a global semiconductor design and manufacturing company headquartered in Dallas, Texas. It is one of the largest companies in the industry, known for developing a wide range of integrated circuits and electronic components used in various applications, including consumer electronics, automotive systems, industrial equipment, and communications technology. TI is particularly well-known for its analog and embedded processing products.
Application
The LMV358 is a low-power, rail-to-rail input and output operational amplifier. It is commonly used in battery-powered devices, portable electronics, sensor interfaces, and consumer electronics. Its low voltage operation makes it suitable for mobile devices, while its rail-to-rail capability ensures better dynamic range and signal integrity. It is often employed in audio signal processing, medical instrumentation, and data acquisition systems.
Equivalent
The LMV358LIST is a low-power operational amplifier. Equivalent products include the LMV358 from various manufacturers, LM358, TLV2462, MCP6002, and OPA2340. These op-amps offer similar performance in terms of voltage range, current consumption, and package options, but always check the specific datasheet for compatibility regarding parameters like bandwidth, slew rate, and pin configuration.
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