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LM7332MAX
+BOM-
メーカーSTマイクロエレクトロニクス
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メーカー品番 #LM7332MAX
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在庫状況8450
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Current - Supply | 2.3 mA |
| Mounting Type | SMD/SMT |
| Minimum Operating Temperature | - 40 C |
| Maximum Operating Temperature | + 125 C |
| Brand | Texas Instruments |
| Number of Channels | 2 Channel |
| Product Type | Op Amps - Operational Amplifiers |
| Subcategory | Amplifier ICs |
| Package / Case | SOIC-8 |
| Supply Voltage - Min | 2.5 V, +/- 1.25 V |
| Supply Voltage - Max | 32 V, +/- 16 V |
| Vos - Input Offset Voltage | 4 mV |
| GBP - Gain Bandwidth Product | 19.3 MHz |
| SR - Slew Rate | 12 V/us |
| Ib - Input Bias Current | 2 uA |
| en - Input Voltage Noise Density | 14.8 nV/sqrt Hz |
| In - Input Noise Current Density | 1.35 pA/sqrt Hz |
| PSRR - Power Supply Rejection Ratio | 78 dB |
| Shutdown | No Shutdown |
| Amplifier Type | General Purpose Amplifier |
| Height | 1.45 mm |
| Length | 4.9 mm |
| Width | 3.9 mm |
| Unit Weight | 0.006596 oz |
| Dual Supply Voltage | +/- 3 V, +/- 5 V, +/- 9 V, +/- 12 V, +/- 15 V |
| Maximum Dual Supply Voltage | +/- 16 V |
| Minimum Dual Supply Voltage | +/- 1.25 V |
| Operating Supply Voltage | 3 V, 5 V, 9 V, 12 V, 15 V, 18 V, 24 V, 28 V |
| Supply Type | Single, Dual |
| Voltage Gain d B | 77 dB |
| Type | General Purpose Amplifiers |
概要
Description
Operating over a wide power supply range, typically from ±2V to ±15V, it is versatile for various electronic circuits. The device's output stage can drive heavy loads, making it ideal for driving capacitive loads without oscillation.
Applications include audio processing, signal conditioning, instrumentation, and medical devices. The LM7332MAX is available in multiple package options, catering to space-constrained designs. Overall, it combines high speed, precision, and reliability, making it a popular choice among engineers for demanding analog signal processing tasks.
Equivalent
Features
1. High Slew Rate: Typically around 13 V/µs, enabling fast signal processing.
2. Low Input Offset Voltage: Approximately 0.5 mV, enhancing accuracy in applications requiring precision.
3. Wide Bandwidth: Unity-gain bandwidth is about 20 MHz, suitable for high-frequency applications.
4. Low Noise: Designed for low noise operation, making it ideal for audio and instrumentation applications.
5. High Output Drive Capability: Can drive capacitive loads effectively, ensuring stable performance in various configurations.
6. Single-Supply Operation: Operates with a single supply voltage, simplifying design and power requirements.
7. Rail-to-Rail Output: Allows the output to swing close to the supply voltages, maximizing dynamic range.
These features make the LM7332MAX suitable for precision signal processing, audio applications, and other demanding electronic circuits.
Pinout
1. Pin 1 (Output A): Output of the first op-amp.
2. Pin 2 (Inverting Input A): Inverting input for the first op-amp.
3. Pin 3 (Non-Inverting Input A): Non-inverting input for the first op-amp.
4. Pin 4 (V- or Ground): Negative supply voltage or ground reference.
5. Pin 5 (Non-Inverting Input B): Non-inverting input for the second op-amp.
6. Pin 6 (Inverting Input B): Inverting input for the second op-amp.
7. Pin 7 (Output B): Output of the second op-amp.
8. Pin 8 (V+ or Positive Supply): Positive supply voltage.
This device is designed for high-speed applications and features low noise and high slew rate, making it suitable for a variety of analog signal processing tasks.
Manufacturer
Application
1. Signal Conditioning: Amplifying sensor signals with high accuracy.
2. Data Acquisition Systems: Enhancing signal integrity in measurement systems.
3. Audio Processing: Used in high-fidelity audio equipment for signal amplification.
4. Active Filters: Implementing low-pass, high-pass, and band-pass filter designs.
5. Voltage Comparators: Precision voltage threshold detection in circuits.
6. Instrumentation: In medical and industrial instrumentation for precise measurements.
Its high slew rate and low noise make it suitable for demanding applications requiring fast and accurate signal processing.