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ADUC831BS
+Nomenclature8-bit Microcontrollers - MCU
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FabricantÉquipement de simulation
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Pièce fabricant #ADUC831BS
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Fiche technique ADUC831BS DataSheet
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En stock12871
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Spécifications
| Attribut | Valeur |
Présentation
Description
Equivalent
Features
Key features include:
1. Microcontroller Core: It has an 8051-compatible core, allowing for compatibility with a wide range of development tools.
2. ADC: The device includes a 12-bit, 8-channel ADC with a fast conversion time, suitable for multiple sensor inputs.
3. DAC: It offers a 12-bit DAC for precision analog output.
4. Memory: The microcontroller comes with on-chip Flash/EE memory, providing program and data storage flexibility.
5. Timers: It includes timers/counters for various timing operations and task scheduling.
6. Interfaces: Features UART, I²C, and SPI interfaces for robust communication options with peripherals.
7. Power: The ADuC831BS operates on low power, making it suitable for battery-operated devices.
8. Development Support: It has in-circuit programming and debugging capabilities.
These features make the ADuC831BS ideal for precision data acquisition, industrial control, and instrumentation applications.
Pinout
The ADuC831BS has a pin count of 52. It comes in a 52-lead LQFP (Low Profile Quad Flat Package) which allows for efficient use of board space.
Key functions of the ADuC831BS include:
- 8-channel, 12-bit ADC with a sampling rate of up to 200 kSPS.
- 2-channel, 12-bit DAC.
- 8052-compatible microcontroller core with 20 MHz performance.
- On-chip Flash/EE memory for program and data storage.
- Multiple I/O ports and peripherals, including timers, serial ports, and interrupt capabilities.
- On-chip temperature sensor for precise temperature measurement.
- Power management features and on-chip oscillator.
This device is suitable for precision measurement and control applications in various fields such as industrial automation, instrumentation, and data acquisition systems.
Manufacturer
Application
1. Data Acquisition Systems: It integrates high-resolution ADCs, suitable for capturing precise signal measurements.
2. Industrial Automation: Offers robust performance for controlling industrial processes.
3. Instrumentation: Ideal for precision measurement instruments due to its analog processing capabilities.
4. Healthcare Devices: Used in medical equipment requiring accurate signal processing.
5. Automotive: Suitable for applications needing reliable data processing and control.
6. Consumer Electronics: Employed in devices that require intelligent data handling and control functions.
7. Energy Management: Utilized in metering and monitoring systems for efficient energy use.