DRV5032-SOLAR-EVM Allicdata Electronics
Allicdata Part #:

296-47133-ND

Manufacturer Part#:

DRV5032-SOLAR-EVM

Price: $ 17.99
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Texas Instruments
Short Description: EVALUATION MODULE
More Detail: DRV5032FB * Hall Effect Sensor Evaluation Board
DataSheet: DRV5032-SOLAR-EVM datasheetDRV5032-SOLAR-EVM Datasheet/PDF
Quantity: 10
Lead Free Status / RoHS Status: Not applicable / Not applicable
1 +: $ 16.35480
Stock 10Can Ship Immediately
$ 17.99
Specifications
Series: *
Part Status: Active
Lead Free Status / RoHS Status: --
Sensor Type: Hall Effect
Sensing Range: ±3.9mT Trip, ±3.7mT Release
Interface: --
Sensitivity: --
Voltage - Supply: 1.65 V ~ 5.5 V
Embedded: No
Supplied Contents: Board(s), Accessories
Utilized IC / Part: DRV5032FB
Description

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 DRV5032-SOLAR-EVM is a mobile sensing device that uses advanced solar cell technology to measure environmental light and darkness. It allows users to measure the intensity of light within an area and detect the amount, type and positioning of shadows. Using a combination of embedded sensors, the device can measure light levels from 0.01 lux to 66.5 lux and detect the level of ambient light on a regular basis in either sunlight or moonlight.

This device is mainly used in applications such as indoor or outdoor lighting control, solar cell performance analysis, and illumination adjustment in automobiles. The DRV5032-SOLAR-EVM can also be used to detect light and darkness for assisted living and other such safety related applications. It is also useful in art installations, event and architectural lighting, and ambient lighting solutions.

The DRV5032-SOLAR-EVM has a built-in solar cell and circuitry that allows the device to measure light intensity up to 66.5 lux. The device also has a light-to-digital converter, an 8-bit analog-to-digital converter, a temperature sensor, and a clock. The clock can be used to trigger measurements, which can then be used to determine the time of day and the duration of darkness. In addition, the device has a capacitive touch sensor that can detect the presence of people or objects.

The DRV5032-SOLAR-EVM also includes an automated local positioning system (LPS) for precisely positioning its measurements. The LPS is designed to auto-calibrate the device’s internal temperature to within 1 degree Celsius and automatically update its light readings with the surrounding lighting levels. The user can also customize the light measurement threshold to optimize the accuracy of the device.

The DRV5032-SOLAR-EVM is powered by a built-in 3.7 V lithium-ion battery that can last up to two weeks. It can be connected to a host computer via USB or to an external monitor and other devices via I2C bus. It is fully programmable and controllable via I2C commands. The device also has an integrated 10-bit ADC, which allows it to take readings of ambient light in 16 light zones and convert them into 8-bit digital values.

The DRV5032-SOLAR-EVM uses an advanced mathematical algorithm to accurately detect changes in light intensity levels and darkness. It is able to automatically adjust its sensitivity thresholds and detect objects or people as they move around in its range of view. The device also provides real-time feedback of its readings via the I2C bus.

The DRV5032-SOLAR-EVM is one of the most accurate and versatile solar energy based sensing devices on the market today. By combining its built-in solar cell, light-to-digital converter, temperature sensor, and capacitive touch sensor, the device is able to accurately detect shadows and light levels, as well as the presence of people or objects. With its built-in LPS and 8-bit ADC, it can accurately measure light levels up to 66.5 lux in 16 light zones with an accuracy of 1 degree Celsius. Additionally, the device can be set up to detect changes in light intensity levels and darkness, and provide feedback to the user via I2C bus.

The specific data is subject to PDF, and the above content is for reference

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