MAX13047EEVB+T Overview
The MAX13047EEVB+T is an evaluation board designed for the MAX13047E, a high-performance analog-to-digital converter (ADC). This evaluation platform provides engineers with a flexible solution for testing and evaluating the ADC’s features and capabilities. With its easy-to-use interface and comprehensive support for various input signals, the MAX13047EEVB+T is ideal for applications requiring precision data acquisition, enhancing the design and development process. The board is designed to accelerate prototyping and testing in your next project. For more details, visit Fabricant de circuits intégrés.
MAX13047EEVB+T Key Features
- Haute résolution : Offers a 16-bit resolution, enabling precise measurement of analog signals, which is crucial for applications requiring high accuracy.
- Faible consommation d'énergie : Designed to operate efficiently, the evaluation board consumes minimal power, making it suitable for battery-operated devices.
- Gamme d'entrée flexible : Supports a wide range of input voltages, allowing users to interface with various sensors and actuators seamlessly.
- Robust Data Interface: Equipped with a reliable SPI interface for easy communication with microcontrollers and other digital devices, facilitating seamless integration.
MAX13047EEVB+T Technical Specifications
Paramètres | Valeur |
---|---|
Résolution ADC | 16 bits |
Plage de tension d'entrée | 0V to VREF |
Taux d'échantillonnage | Up to 1 MSPS |
Tension d'alimentation | 3,0V à 5,5V |
Consommation électrique | 15 ??A (active) |
Type d'interface | SPI |
Type d'emballage | QFN |
Plage de température de fonctionnement | De -40°C à +125°C |
MAX13047EEVB+T Advantages vs Typical Alternatives
The MAX13047EEVB+T excels compared to typical alternatives in terms of accuracy and power efficiency. Its high-resolution capabilities enable precise measurements, while low power consumption ensures longer battery life in portable applications. Integration with microcontrollers is straightforward, reducing design complexity.
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Applications typiques
- Automatisation industrielle : Ideal for monitoring and controlling various industrial processes, such as temperature and pressure measurements, enhancing operational efficiency and safety.
- Medical Devices: Suitable for applications requiring accurate and reliable data acquisition from sensors in medical diagnostic equipment.
- Consumer Electronics: Used in devices that require precise analog signal processing, such as audio systems and smart home products.
- Automotive Applications: Supports a variety of automotive sensors, ensuring accurate data collection vital for vehicle performance monitoring.
MAX13047EEVB+T Brand Info
The MAX13047EEVB+T is developed by Maxim Integrated, a leader in analog and mixed-signal solutions. Known for innovation and quality, Maxim Integrated provides a range of products that enhance performance and efficiency in various applications. The MAX13047EEVB+T evaluation board reflects the company’s commitment to delivering high-performance solutions that meet the needs of engineers and developers.
FAQ
What is the purpose of the MAX13047EEVB+T evaluation board?
The evaluation board is designed to facilitate testing and evaluation of the MAX13047E ADC’s features, enabling engineers to prototype and validate their designs efficiently.
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What type of interface does the MAX13047EEVB+T use?
This evaluation board features an SPI interface, allowing for straightforward communication with microcontrollers and other digital devices, which simplifies integration into various systems.
What is the maximum sampling rate of the device?
The MAX13047EEVB+T supports a maximum sampling rate of up to 1 MSPS, making it suitable for applications that require fast data acquisition.
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What is the power consumption of the MAX13047EEVB+T?
The evaluation board consumes approximately 15 ??A during active operation, making it an excellent choice for low-power applications.
Can the board operate in extreme temperatures?
Yes, the MAX13047EEVB+T operates within a temperature range of -40??C to +125??C, ensuring reliability in various environmental conditions.