V2DIP1-64 Allicdata Electronics
Allicdata Part #:

768-1056-ND

Manufacturer Part#:

V2DIP1-64

Price: $ 0.00
Product Category:

Development Boards, Kits, Programmers

Manufacturer: FTDI, Future Technology Devices International Ltd
Short Description: MOD VINCULUM-II DEV 1 PORT 64DIP
More Detail: VNC2-64Q USB 2.0 Host/Controller Interface Evaluat...
DataSheet: V2DIP1-64 datasheetV2DIP1-64 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: Vinculum-II
Part Status: Obsolete
Type: Interface
Function: USB 2.0 Host/Controller
Embedded: Yes, ASIC
Utilized IC / Part: VNC2-64Q
Primary Attributes: Single A-Type Connector, UART / Parallel FIFO / SPI Interfaces
Supplied Contents: Board(s)
Secondary Attributes: Second USB Port is Available via Pins, Traffic LEDs
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

Evaluation and Demonstration Boards and Kits have become increasingly popular across the electronics industry due to their versatile and cost-effective nature. The V2DIP1-64 is an exceptionally renowned board within this category, famous for its innovative working principle and broad range of applications.

The V2DIP1-64 is a Digital-to-Digital Input/Output Processor. It is a program-controlled digital logic circuit, operating with both gated and cascading digital logic levels. This makes it suitable for a lot of demanding applications such as high-speed data collection, analog-to-digital conversion, motor control, security systems, automotive collision warning systems, and other mechatronic systems.

Despite its small size, the V2DIP1-64 offers the users a powerful set of circuit features and functions not found in other boards. This includes 32 variables digital I/O, 16-bit timers, power-on reset delay, peripheral interrupts, 8-bit-microprocessor co-processor control, and a built-in boot procedure. Its package type is a 64-pin DIP, which makes it easier to integrate it with other existing components.

The V2DIP1-64 board is widely used in industrial automation applications including printers, medical imaging machines, and textile machines. It can also be used in military simulation exercises, robotics, aircraft autopilot systems, and industrial monitoring and control systems. Furthermore, the board has been used in digital signal processing and audio-visual systems, particularly in maritime navigation and safety systems.

In terms of construction, the V2DIP1-64 is a combination of several essential digital components. Its main component is the DIP (dual-in-line package) processor. This 32-bit processor contains discrete components such as resistors, transistors, and capacitors. Its internal architecture includes 32-bit data paths, a 256-bit memory bus interface, and an instruction cache. Its external bus connection consists of a single-port memory controller for external devices such as EEPROMs and SRAMs.

The V2DIP1-64 combines its components in a unique way to enable it to perform tasks more effectively than other boards. It uses a modified Von Neumann programmed architecture, where each instruction is independent of the data. During operation, the processor loads instructions from its instruction cache into its data bus. It then performs the indicated action such as an add or a move and then stores the data on the memory bus.

The unique construction of the V2DIP1-64 also makes it suitable for various data transfer rates. It is capable of operating up to 64 MHz, and can interface both with static and dynamic terminals to fulfill a variety of tasks. Moreover, its low power consumption, reliability, and compact size make it an ideal choice for industrial and medical applications.

The V2DIP1-64 board is an innovative and reliable board that offers a wide range of applications and uses. From industrial automation to digital signal processing and audio-visual systems, this board has it covered. Its modified Von Neumann programmed architecture, efficient instruction execution, and cost-effective features have made it a favorite among many electronics engineers.

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

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