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AD623ANZ
+BOMIC INST AMP 1 CIRCUIT 8DIP
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제조업체아날로그 디바이스(주)
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제조업체 부품 #AD623ANZ
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데이터시트 AD623ANZ DataSheet
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패키지 DIP-8
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재고5080
365 1일 품질 보증
7*24 영업 시간 서비스 보증
90-판매 후 1일 보증
정품 보증
사양
| 속성 | 가치 |
| Package / Case | Tube |
| Part Status | Active |
| Amplifier Type | Instrumentation |
| Number of Circuits | 1 |
| Output Type | Rail-to-Rail |
| Slew Rate | 0.3V/µs |
| -3 dB Bandwidth | 800 kHz |
| Current - Input Bias | 17 nA |
| Voltage - Input Offset | 25 µV |
| Supply Current | 375µA |
| Voltage - Supply Span(Min) | 2.7 V |
| Voltage - Supply Span(Max) | 12 V |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Through Hole |
개요
Description
Key features include a wide power supply range from 3 V to 12 V, adjustable gain via a single external resistor, and low power consumption. The device also provides rail-to-rail output, enhancing its dynamic range capabilities. Its compact design is available in an 8-pin package, making it easy to integrate into various circuit designs.
The AD623ANZ is notable for its ease of use, as it requires minimal external components, and for its flexibility, enabling it to handle both single-supply and dual-supply environments. This makes it an excellent choice for embedded systems and portable applications.
Equivalent
1. INA128/INA129 from Texas Instruments
2. MAX4462 from Maxim Integrated
3. LT1167 from Analog Devices
4. MCP6N11 from Microchip Technology
These alternatives offer similar functionalities like high input impedance, low power consumption, and good CMRR, making them suitable substitutes depending on specific application requirements. Always check the datasheets for precise compatibility with your project.
Features
1. Gain Range: Adjustable gain from 1 to 1000, set by a single external resistor, allowing for flexibility in various applications.
2. Input Voltage Range: Capable of handling a wide input voltage range, making it suitable for interfacing with different types of sensors and transducers.
3. Low Power Consumption: Designed for low power applications, which is ideal for battery-operated devices.
4. High CMRR: Offers a high Common-Mode Rejection Ratio (CMRR) to minimize noise and interference from common-mode signals.
5. Rail-to-Rail Output: Provides rail-to-rail output swing, enhancing dynamic range and ease of use with single supply systems.
6. Low Offset Voltage: Features a low offset voltage and low drift over temperature, ensuring accuracy and reliability in measurements.
7. Single or Dual Supply Operation: Can operate from a single supply ranging from 2.7V to 12V, or dual supplies.
These features make the AD623ANZ suitable for applications in medical instrumentation, sensor signal conditioning, and data acquisition systems.
Pinout
1. Pin 1 (RG): Gain setting pin. Connect a resistor between this pin and Pin 8 to set the gain.
2. Pin 2 (-IN): Inverting input. Connects to the negative side of the input signal.
3. Pin 3 (+IN): Non-inverting input. Connects to the positive side of the input signal.
4. Pin 4 (-VS): Negative power supply voltage.
5. Pin 5 (REF): Reference voltage input. Sets the output zero reference level.
6. Pin 6 (VOUT): Output voltage.
7. Pin 7 (+VS): Positive power supply voltage.
8. Pin 8 (RG): Gain setting pin. Works with Pin 1 to set the gain via an external resistor.
The AD623ANZ offers high accuracy and low power consumption, making it suitable for a range of medical, industrial, and precision applications.
Manufacturer
Application
1. Medical Instrumentation: For amplifying low-level physiological signals, such as ECG and EEG.
2. Industrial Process Control: For sensor signal conditioning and monitoring in automation systems.
3. Data Acquisition Systems: Enhances signal resolution and accuracy.
4. Weigh Scales: Amplifies signals from load cells for accurate weight measurement.
5. Bridge Measurements: Used in strain gauge and pressure sensor applications.
6. Transducer Interface: Converts low-level transducer signals to high-level, usable outputs.
7. Portable Instrumentation: Suitable for battery-powered devices due to low power consumption.
Its high input impedance, low offset voltage, and high common-mode rejection ratio make it ideal for these precision-demanding applications.