DC-EM-02T-JT Allicdata Electronics
Allicdata Part #:

602-1007-ND

Manufacturer Part#:

DC-EM-02T-JT

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Digi International
Short Description: MODULE EM CUSTOMIZABLE JTAG
More Detail: Digi Connect EM® Embedded Module ARM7TDMI, NS7520 ...
DataSheet: DC-EM-02T-JT datasheetDC-EM-02T-JT Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: Digi Connect EM®
Part Status: Obsolete
Module/Board Type: MPU Core
Core Processor: ARM7TDMI, NS7520
Co-Processor: --
Speed: 55MHz
Flash Size: 4MB
RAM Size: 8MB
Connector Type: Pin Header
Size / Dimension: 1.94" x 1.58" (49.2mm x 40.0mm)
Operating Temperature: -40°C ~ 85°C
Description

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DC-EM-02T-JT is a set of embedded microcontroller, microprocessor, FPGA modules that are used in various industrial, commercial, and scientific applications. The set of modules is designed to work together in order to provide a cost-effective solution for system integration. It is the perfect choice for a low cost and low power solution that can be easily implemented and configured.

The DC-EM-02T-JT modules are designed to work as a system as well as individually. They are compatible with one another and with many types of industrial, commercial, and scientific applications. The modules provide features such as digital I/O, analog I/O, embedded memory, and on board high-speed communication channels.

The DC-EM-02T-JT modules feature an ARM microcontroller core. This core consists of a 32-bit ARM Cortex-M0 processor with up to 32 MIPS, 32 KB of embedded RAM, and 16 KB of embedded flash memory. The ARM microcontroller core is designed to handle all the basic tasks of embedded system programming such as input/output port and timer/counter control, UART communication, and serial bus communications.

The on board memory feature of the DC-EM-02T-JT modules allows developers to create a persistent data store while not having to rely on an external memory. This makes the modules ideal for applications with limited resources, such as embedded systems. The on board memory of the DC-EM-02T-JT is composed of 8 KB of SRAM, 16 KB of non-volatile SRAM, and 64 KB of flash memory. The flash memory can be used to store application code and other contextual data.

The DC-EM-02T-JT modules feature a number of digital and analog I/O ports, which allows users to interface with the digital IC’s, sensors, and other peripheral devices. These parts are all programmable and can be used for a variety of applications. For example, the digital I/O ports can be used for digital input/output (I/O) and the analog I/O port can be used for analog input/output (I/O).

The DC-EM-02T-JT modules also feature high-speed communication channels. These channels include the I2C, SPI, and UART. The I2C protocol is designed to facilitate communication between multiple slave devices. The SPI (Serial Peripheral Interface) protocol is designed to send data between multiple master and slave devices. The UART (Universal Asynchronous Receiver/Transmitter) protocol is designed to provide a means of communication between two devices without the need for a clock signal.

In addition to the I/O ports and communication channels available on the DC-EM-02T-JT modules, the set also integrates an FPGA (Field Programmable Gate Array). This FPGA is used to control and configure the embedded system. It is also used to perform digital signal processing and other complex operations. It can also be programmed to perform special functions or algorithms as needed.

The DC-EM-02T-JT modules can be used for a wide range of applications. These include industrial control systems, automated test systems, security systems, medical device development, telecommunications equipment, and more. They are also used in consumer products such as smart phones, tablets, and media players. The modules are engineered with reliability, flexibility, and scalability in mind.

The DC-EM-02T-JT modules offer a cost-effective solution for adding features and functionality to an embedded system. They are designed to work together to create a low-power, reliable, and flexible embedded system solution. By using the FPGA, the modules can be customized and programmed to perform specific tasks. The FPGA can also be used to add additional features and functions to the system.

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

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