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規格
| 屬性 | 價值 |
| Brand | Analog Devices |
| Packaging | Reel |
| Factory Pack Quantity | 1500 |
概述
Description
The ADA4960-1ACPZ is a high-performance, low-noise, precision operational amplifier designed for applications requiring low distortion and high dynamic range. It features a wide supply voltage range of ±4.5V to ±16V, making it suitable for both single-supply and dual-supply operations. With a bandwidth of 50 MHz and a slew rate of 30 V/µs, the ADA4960-1ACPZ is ideal for high-speed signal processing.
This op-amp incorporates a low input voltage noise of 0.9 nV/√Hz and a low bias current, ensuring minimal signal degradation. It is commonly used in instrumentation, medical equipment, and data acquisition systems where accuracy and precision are critical. The device comes in a compact 8-lead LFCSP package, facilitating integration into space-constrained applications.
Overall, the ADA4960-1ACPZ is a reliable choice for engineers seeking a high-quality op-amp for demanding electronic designs.
This op-amp incorporates a low input voltage noise of 0.9 nV/√Hz and a low bias current, ensuring minimal signal degradation. It is commonly used in instrumentation, medical equipment, and data acquisition systems where accuracy and precision are critical. The device comes in a compact 8-lead LFCSP package, facilitating integration into space-constrained applications.
Overall, the ADA4960-1ACPZ is a reliable choice for engineers seeking a high-quality op-amp for demanding electronic designs.
Equivalent
The ADA4960-1ACPZ is a high-speed, low-noise operational amplifier. Equivalent products include the OPA1611 from Texas Instruments, LTC6401 from Analog Devices, and MAX4466 from Maxim Integrated. Additionally, consider the AD8000 series from Analog Devices for similar performance characteristics. Always confirm compatibility with your specific application requirements.
Features
The ADA4960-1ACPZ is a precision, low-noise, high-speed operational amplifier designed for high-performance applications. Key features include:
1. Low Noise: It has a low voltage noise density of 0.9 nV/√Hz, making it suitable for sensitive applications.
2. Wide Bandwidth: The amplifier boasts a gain bandwidth product of 200 MHz, enabling high-speed signal processing.
3. High Slew Rate: The device offers a slew rate of 90 V/µs, allowing for rapid signal changes.
4. Low Distortion: It provides excellent linearity with low total harmonic distortion, ideal for audio and precision measurement applications.
5. Single-Supply Operation: The ADA4960-1 can operate on a single supply voltage as low as 4.5 V.
6. Rail-to-Rail Output: It features rail-to-rail output, maximizing dynamic range.
7. Temperature Range: Operational over a wide temperature range, ensuring reliability in various environments.
These attributes make the ADA4960-1ACPZ suitable for applications in data acquisition, instrumentation, and signal conditioning.
1. Low Noise: It has a low voltage noise density of 0.9 nV/√Hz, making it suitable for sensitive applications.
2. Wide Bandwidth: The amplifier boasts a gain bandwidth product of 200 MHz, enabling high-speed signal processing.
3. High Slew Rate: The device offers a slew rate of 90 V/µs, allowing for rapid signal changes.
4. Low Distortion: It provides excellent linearity with low total harmonic distortion, ideal for audio and precision measurement applications.
5. Single-Supply Operation: The ADA4960-1 can operate on a single supply voltage as low as 4.5 V.
6. Rail-to-Rail Output: It features rail-to-rail output, maximizing dynamic range.
7. Temperature Range: Operational over a wide temperature range, ensuring reliability in various environments.
These attributes make the ADA4960-1ACPZ suitable for applications in data acquisition, instrumentation, and signal conditioning.
Pinout
The ADA4960-1ACPZ is a high-speed, precision, differential amplifier with a pin count of 8.
### Pin Functions:
1. Pin 1 (VOUT+): Positive output voltage.
2. Pin 2 (VOUT−): Negative output voltage.
3. Pin 3 (IN+): Positive input for the differential signal.
4. Pin 4 (IN−): Negative input for the differential signal.
5. Pin 5 (VREF): Reference voltage for output offset.
6. Pin 6 (NC): No connect (not internally connected).
7. Pin 7 (VSS): Negative supply voltage.
8. Pin 8 (VDD): Positive supply voltage.
The device operates at a supply voltage range of ±2 V to ±5 V and offers high performance for applications like data acquisition and sensor interfacing.
### Pin Functions:
1. Pin 1 (VOUT+): Positive output voltage.
2. Pin 2 (VOUT−): Negative output voltage.
3. Pin 3 (IN+): Positive input for the differential signal.
4. Pin 4 (IN−): Negative input for the differential signal.
5. Pin 5 (VREF): Reference voltage for output offset.
6. Pin 6 (NC): No connect (not internally connected).
7. Pin 7 (VSS): Negative supply voltage.
8. Pin 8 (VDD): Positive supply voltage.
The device operates at a supply voltage range of ±2 V to ±5 V and offers high performance for applications like data acquisition and sensor interfacing.
Manufacturer
The manufacturer of the ADA4960-1ACPZ is Analog Devices, Inc. (ADI). Founded in 1965, Analog Devices is a multinational company headquartered in Norwood, Massachusetts, that specializes in designing and manufacturing a wide range of analog, mixed-signal, and digital signal processing integrated circuits (ICs). Their products are widely used in various sectors, including industrial automation, automotive, healthcare, communications, and consumer electronics.
Analog Devices is recognized for its expertise in high-performance signal processing and has a strong emphasis on innovation and technology development. They produce a variety of components such as amplifiers, converters, sensors, and microcontrollers, among others, catering to both standard and application-specific needs.
The ADA4960-1ACPZ is a high-speed, precision, low-noise operational amplifier designed for applications requiring high performance, such as data acquisition systems, instrumentation, and automotive sensors. ADI's commitment to quality and performance makes it a key player in the semiconductor industry.
Analog Devices is recognized for its expertise in high-performance signal processing and has a strong emphasis on innovation and technology development. They produce a variety of components such as amplifiers, converters, sensors, and microcontrollers, among others, catering to both standard and application-specific needs.
The ADA4960-1ACPZ is a high-speed, precision, low-noise operational amplifier designed for applications requiring high performance, such as data acquisition systems, instrumentation, and automotive sensors. ADI's commitment to quality and performance makes it a key player in the semiconductor industry.
Application
The ADA4960-1ACPZ is a high-performance, low-noise operational amplifier designed for various applications, including:
1. Data Acquisition Systems: It enhances signal integrity in ADC interfaces.
2. Instrumentation: Used in precision measurement and sensor signal conditioning.
3. Medical Equipment: Ideal for low-noise amplification in imaging and diagnostic devices.
4. Communication Systems: Supports RF and baseband processing.
5. Audio Equipment: Enhances sound quality in high-fidelity audio systems.
6. Industrial Control: Utilized in control systems for accurate signal processing.
Its features make it suitable for any application requiring high accuracy and low distortion.
1. Data Acquisition Systems: It enhances signal integrity in ADC interfaces.
2. Instrumentation: Used in precision measurement and sensor signal conditioning.
3. Medical Equipment: Ideal for low-noise amplification in imaging and diagnostic devices.
4. Communication Systems: Supports RF and baseband processing.
5. Audio Equipment: Enhances sound quality in high-fidelity audio systems.
6. Industrial Control: Utilized in control systems for accurate signal processing.
Its features make it suitable for any application requiring high accuracy and low distortion.
Package
The ADA4960-1ACPZ is packaged in a 16-lead LFCSP (Lead Frame Chip Scale Package) with a footprint of 4 mm x 4 mm. It features a thermal pad for improved heat dissipation and is designed for high-performance applications.