Allicdata Part #: | DC1678A-B-ND |
Manufacturer Part#: |
DC1678A-B |
Price: | $ 53.55 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | Linear Technology/Analog Devices |
Short Description: | BOARD DAC LTC2654-16 |
More Detail: | LTC2654-16 16 Bit Digital to Analog Converter (DA... |
DataSheet: | DC1678A-B Datasheet/PDF |
Quantity: | 1 |
1 +: | $ 48.19500 |
100 +: | $ 47.48660 |
Series: | -- |
Part Status: | Active |
Number of DAC's: | 4 |
Number of Bits: | 16 |
Sampling Rate (Per Second): | -- |
Data Interface: | MICROWIRE™, Serial, SPI™ |
Settling Time: | 8.9µs |
DAC Type: | Voltage |
Supplied Contents: | Board(s) |
Utilized IC / Part: | LTC2654-16 |
Base Part Number: | LTC2654 |
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DC1678A-B is an evaluation board designed for digital to analog converters (DACs). It is specifically intended for high-performance DACs, such as those from Texas Instruments\' DAC4xx series. The board is equipped with an analog output port for direct connection to an analog device, and features on-board circuitry for power management as well as four gain-level switches for selecting the output voltage range.
The board features an onboard 8-bit microcontroller that provides command processing and configuration. It can be programmed with an optional software development kit. The kit contains the pin mappings, along with source code and configuration templates for all of the digital input pins. This provides an easy way to configure the board for a specific application.
DC1678A-B provides a wide range of features and includes multiple DACs, a wide range of programmable gain settings, and two separate channels with independent gains. It also features a wide range of reference voltages with both low-power (3.3V) and high-power (5V) options.
The primary purpose of DC1678A-B is to convert digital signals into analog values, which can then be used in various applications, including signal processing, audio amplification, control systems and instrumentation. To do so, the board requires conversion of a digital signal to an analog voltage. This is accomplished by using an Analog-to-Digital Converter (ADC) on the board.
An ADC converts a digital signal into an analog voltage that can be used to drive the output signal provided by the DAC. To ensure that the resulting analog voltage is accurate, the board utilizes some on-board processing and analog processing circuitry. This circuitry can be programmed with software to enable the board to accurately convert the digital signal into analog voltage.
To further enhance the accuracy of the analog output, the DC1678A-B application utilizes calibration and gain adjustment features. By utilizing these features, the board can accurately adjust the gain of the analog output to ensure that it is accurate.
In order to use the DC1678A-B, users must first connect it to an application. To do so, users must connect the board to their application\'s micro-controller or the board\'s input connectors. These input connectors are configured to accept input signals from many different sources such as serial ports, digital inputs, and programmable input signals. Once the board is connected, users can begin programming their application to enable the board to accurately convert digital signals into analog voltage.
Once the application is programmed and connected to the board, users must then connect the board\'s outputs to the DAC, or other circuitry used for generating the analog voltage. To ensure proper operation, users must make sure that the board\'s outputs are correctly connected to the inputs and outputs on the DACs.
The DC1678A-B is ideal for applications such as signal processing, control systems, instrumentation, and other applications requiring the accurate and reliable conversion of digital signals into analog voltage. The board\'s calibration and gain adjustment features ensure that the resulting analog voltage is accurate and that any changes made in the signal processing circuitry do not affect the performance of the board. As a result, users can rely on the DC1678A-B to provide accurate and dependable conversion of digital signals into analog voltage.
The specific data is subject to PDF, and the above content is for reference
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