Allicdata Part #: | FEBFMT1030-ND |
Manufacturer Part#: |
FEBFMT1030 |
Price: | $ 0.00 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | ON Semiconductor |
Short Description: | DEV KIT MTI 1 SERIES |
More Detail: | FMT1010T, FMT1020R, FMT1020T, FMT1030R, FMT1030T -... |
DataSheet: | FEBFMT1030 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Part Status: | Obsolete |
Sensor Type: | Accelerometer, Gyroscope, Magnetometer, 3 Axis |
Sensing Range: | -- |
Interface: | Serial |
Sensitivity: | -- |
Voltage - Supply: | -- |
Embedded: | -- |
Supplied Contents: | Board(s) |
Utilized IC / Part: | FMT1010T, FMT1020R, FMT1020T, FMT1030R, FMT1030T |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
The FEBFMT1030 evaluation boards is designed to develop and test energy harvesting applications, as well as evaluate the performance of ambient energy harvester components. It is designed to quickly configure and analyze the performance of any kind of sensor or energy generating devices that generate energy from supporting types of electromagnetic sources. This single circuitry system enables seamless integration of any kind of energy harvester into a cycle-based development environment and to measure the results with ease.
The environmental sensor device is a standard component of the FEBFMT1030. This environmental sensor device is a state-of-the-art sensing system that uses micro electro-mechanical systems (MEMS) technology to accurately detect the physical environment. It measures the ambient air temperature, humidity, atmospheric pressure, wind speed, and rain levels. It also includes an accelerometer with a built-in gyroscope to measure orientation in three-dimensional space.
The environmental sensor device is connected to the other components of the FEBFMT1030 through a series of integrated peripherals. The FEBFMT1030 can be configured to utilize additional external sensors such as accelerometers, thermocouples, and infrared detectors. Its integrated power supply and the integrated voltage regulator ensures an optimal energy harvesting performance. The integrated power supply is designed to provide enough power to run the FEBFMT1030 and all of its associated components in certain current levels.
The FEBFMT1030 board is designed to facilitate the development and testing of energy harvester applications. The FEBFMT1030 board provides an ideal platform for prototyping a wide range of sensors. It is a single board and can be configured with required sensors and power sources. This makes FEBFMT1030 an ideal platform for interconnecting various energy harvesters. This makes the development process easier and quicker. The FEBFMT1030 board also integrates various debugging, monitoring, and power management features which makes it an excellent device for developing energy harvester solutions.
The FEBFMT1030 board is powered by an energy harvesting transducer that converts mechanical, thermal, vibrational, acoustic, solar, electromagnetic, and other forms of energy into usable electrical energy. This energy harvesting transducer is connected to a control and power supply circuit, which converts the energy from the energy harvesting transducer to a usable form of electricity. The control and power supply circuit also eliminates the noise generated by the energy harvesting and provides the necessary power required for the components of the FEBFMT1030.
The energy-harvesting components of the FEBFMT1030 can be connected to digital or analog sensors, actuators, and other parts of a system. The FEBFMT1030 can be used to power sensors and other components as they are being tested. It also provides diagnostic functions, which help to uncover problems with system components and optimize performance. By utilizing the features of the FEBFMT1030, developers are able to quickly build and test a wide range of energy harvesting applications.
The FEBFMT1030 board also has the ability to connect to various digital and analog sensors. Digital sensors are designed to detect a specific physical value while the analog sensors measure the exact same physical value in varying degrees. Digital sensors are typically used for monitoring environmental or motion parameters. The analog sensors detect and measure any physical value and can be used in a variety of applications. The FEBFMT1030 board is also designed to be able to communicate with external devices using communication protocols such as I2C, SPI, and USB.
The FEBFMT1030 board is ideal for prototyping and testing energy harvester applications. It provides a convenient, low-cost platform for rapid development and testing of various energy harvesting solutions. The FEBFMT1030 board is a powerful, flexible energy harvesting platform that can be used to quickly build and test a wide range of applications including sensors, actuators, and other embedded devices.
The specific data is subject to PDF, and the above content is for reference
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