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OPA2652U
+BOMIC VOLTAGE FEEDBACK 2 CIRC 8SOIC
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ManufacturerTexas Instruments
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Mfr. Part #OPA2652U
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Datasheet OPA2652U DataSheet
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In Stock3717
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Specifications
| Attribute | Value |
| Series | SpeedPlus™ |
| PartStatus | Active |
| AmplifierType | Voltage Feedback |
| NumberofCircuits | 2 |
| SlewRate | 335V/µs |
| -3dbBandwidth | 700 MHz |
| Current-InputBias | 4 µA |
| Voltage-InputOffset | 1.5 mV |
| Current-Supply | 11mA (x2 Channels) |
| Current-Output/Channel | 140 mA |
| Voltage-SupplySpan(Min) | 6 V |
| Voltage-SupplySpan(Max) | 12 V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154", 3.90mm Width) |
| SupplierDevicePackage | 8-SOIC |
| BaseProductNumber | OPA2652 |
| GainBandwidthProduct | 200 MHz |
Overview
Description
Key specifications include a high slew rate, low noise figure, and low total harmonic distortion (THD), making it ideal for audio and sensor applications. The amplifier supports a wide bandwidth, allowing it to handle fast-changing signals effectively. Additionally, it offers rail-to-rail output, ensuring maximum output swing, which is crucial in battery-powered circuits.
The device is housed in a compact package, facilitating integration into space-constrained designs. Its robust performance and versatility make the OPA2652U an excellent choice for various applications, including data acquisition systems, active filters, and instrumentation amplifiers. Overall, the OPA2652U combines high precision with user-friendly characteristics for diverse electronic applications.
Equivalent
Features
1. High Speed: Offers a slew rate of 100 V/μs and a bandwidth of 20 MHz (G = 1).
2. Low Noise: A low input voltage noise density of 6.5 nV/√Hz enhances signal integrity.
3. High Output Current: Capable of sourcing and sinking up to 200 mA, making it suitable for driving heavy loads.
4. Rail-to-Rail Output: Ensures maximum output swing, enabling operation near supply rails.
5. Wide Supply Range: Operates with dual supply voltages ranging from ±2.5V to ±15V.
6. Low Distortion: Features low total harmonic distortion (THD), ideal for audio applications.
7. Temperature Range: Operating temperature from -40°C to +125°C ensures reliability in harsh environments.
8. Single and Dual Versions: Available in various packaging options, including single and dual versions for design flexibility.
These features make the OPA2652U suitable for applications like audio, instrumentation, and active filtering.
Pinout
1. IN+ (Pin 1): Non-inverting input for the first op-amp.
2. IN- (Pin 2): Inverting input for the first op-amp.
3. V- (Pin 3): Negative power supply voltage.
4. V+ (Pin 4): Positive power supply voltage.
5. OUT (Pin 5): Output for the first op-amp.
6. OUT (Pin 6): Output for the second op-amp.
7. IN+ (Pin 7): Non-inverting input for the second op-amp.
8. IN- (Pin 8): Inverting input for the second op-amp.
The OPA2652U is designed for high speed and precision applications, supporting a wide power supply range and providing low noise and distortion.
Manufacturer
Texas Instruments serves a wide range of markets, including automotive, industrial, personal electronics, communications, and more. They provide products that empower developers and engineers to create advanced electronic systems. The OPA2652U itself is a high-performance operational amplifier designed for applications requiring low noise, low distortion, and high bandwidth, making it suitable for audio, instrumentation, and signal processing tasks. TI's commitment to quality and innovation has established it as a leader in the semiconductor industry.
Application
1. Signal Conditioning: Amplifying low-level signals in sensor applications.
2. Data Acquisition Systems: Used in analog front ends for ADC interfacing.
3. Medical Equipment: Enhancing signals in diagnostic devices.
4. Communication Systems: Amplifying RF and audio signals.
5. Active Filtering: Implementing low-pass, high-pass, and band-pass filters.
6. Video Processing: Supporting video signal amplification and processing.
7. Instrumentation: Precision measurements in scientific instruments.
Its low noise, high bandwidth, and fast settling time make it ideal for these applications.