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AD549SH/883B
+БОМIC OPAMP GP 1 CIRCUIT TO99-8
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ПроизводительКомпания Analog Devices Inc.
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Мфр. Часть #AD549SH/883B
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Лист данных AD549SH/883B DataSheet
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В наличии3397
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| PartStatus | Discontinued at DigiKey |
| BaseProductNumber | AD549 |
| AmplifierType | Standard (General Purpose) |
| NumberofCircuits | 1 |
| SlewRate | 3V/µs |
| GainBandwidthProduct | 1 MHz |
| Current-InputBias | 0.075 pA |
| Voltage-InputOffset | 300 µV |
| Current-Supply | 600µA |
| Voltage-SupplySpan(Min) | 10 V |
| Voltage-SupplySpan(Max) | 36 V |
| OperatingTemperature | -55°C ~ 125°C |
| MountingType | Through Hole |
| Package | TO-99-8 Metal Can |
| SupplierDevicePackage | TO-99-8 |
| Packaging | Tube |
| Current-Output/Channel | 20 mA |
| Grade | Military |
| Qualification | MIL-STD-883 |
Обзор
Description
Key features of the AD549SH/883B include a low input bias current of 60 fA, low offset voltage, and low noise, which are crucial for maintaining signal integrity in sensitive applications. The device operates over a wide temperature range, typically from -55°C to +125°C, expanding its usability in harsh environments.
Additionally, the AD549SH/883B offers high open-loop gain and a high common-mode rejection ratio (CMRR), which further improve its performance in differential signal processing. Its compact TO-99 package makes it suitable for applications where space is limited. Typical applications include electrometer-grade amplifiers, photodiode preamps, and other scenarios requiring minimal signal distortion and high precision.
Overall, the AD549SH/883B is a reliable choice for demanding applications requiring low input bias current and high accuracy.
Equivalent
1. Texas Instruments LMC6001 - Offers ultra-low input bias current.
2. Burr-Brown OPA129 - Known for low input bias current and similar characteristics.
3. Intersil CA3130 - A MOSFET-input op-amp with high input impedance.
These alternatives should be cross-verified for specific parameters like input bias current, voltage range, and package type to ensure compatibility.
Features
1. Ultra-Low Input Bias Current: Typically 60 fA, making it suitable for high-impedance sensor applications and precision integrators.
2. Low Offset Voltage: Provides high accuracy with a typical offset voltage of 250 µV.
3. Low Input Offset Voltage Drift: Ensures stability over temperature changes with a typical drift of 5 µV/°C.
4. Wide Bandwidth: Offers a bandwidth of 1 MHz, supporting a wide range of applications.
5. High Open-Loop Gain: Greater than 1000 V/mV, enhancing linearity and accuracy.
6. Low Noise: With a voltage noise density of 12 nV/√Hz at 1 kHz, it helps maintain signal integrity.
7. Military-Grade: The 883B designation indicates compliance with military specifications, ensuring reliability in harsh environments.
8. Dual Power Supply Operation: Operates from ±5V to ±18V, providing flexibility in power supply design.
The AD549SH/883B is ideal for applications requiring extreme precision, low noise, and high reliability, such as biomedical sensors and high-impedance buffering.
Pinout
1. Pin 1 (Offset Null): Used for offset voltage adjustment.
2. Pin 2 (Inverting Input): The inverting input terminal of the op-amp.
3. Pin 3 (Non-Inverting Input): The non-inverting input terminal.
4. Pin 4 (V- or Negative Power Supply): Connects to the negative power supply voltage.
5. Pin 5 (Offset Null): Used in conjunction with Pin 1 for offset voltage adjustment.
6. Pin 6 (Output): The output terminal of the op-amp.
7. Pin 7 (V+ or Positive Power Supply): Connects to the positive power supply voltage.
8. Pin 8 (No Connect or NC): Typically not connected internally.
This device is primarily used in applications requiring extremely low input bias current like electrometers and photodiode preamps.
Manufacturer
Application
1. Electrometer Amplifiers: Used in scientific instruments to measure extremely low currents.
2. Photodiode Amplifiers: Enhances signal processing in optical sensors.
3. High-Impedance Sensor Interfaces: Suitable for resistance measurement and other high-impedance sensor outputs.
4. Biomedical Instruments: For bio-signal conditioning, such as in ECG or EEG equipment.
5. Charge Amplifiers: Converts charge to voltage in capacitive sensors.
6. Precision Current-to-Voltage Converters: In high accuracy measurement systems.
Its low bias current and high precision make it valuable in sensitive measuring devices and high-impedance applications.