CC-9M-QA25-Z1 Allicdata Electronics
Allicdata Part #:

CC-9M-QA25-Z1-ND

Manufacturer Part#:

CC-9M-QA25-Z1

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Digi International
Short Description: MOD 9M 32MB SDRAM 32MB FLASH
More Detail: ConnectCore® Embedded Module ARM920T, SC2443 400M...
DataSheet: CC-9M-QA25-Z1 datasheetCC-9M-QA25-Z1 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: ConnectCore®
Part Status: Obsolete
Module/Board Type: MPU Core
Core Processor: ARM920T, SC2443
Co-Processor: --
Speed: 400MHz
Flash Size: 32MB
RAM Size: 32MB
Connector Type: Board-to-Board (BTB) Socket - 240
Size / Dimension: 2.36" x 1.73" (60mm x 44mm)
Operating Temperature: 0°C ~ 70°C
Description

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CC-9M-QA25-Z1 Application Field and Working Principle

The CC-9M-QA25-Z1 is a module that falls under the category of Embedded - Microcontroller, Microprocessor, FPGA Modules. This module is used to facilitate communication between two electronic devices. It features an orthogonal array that can be used to form a point-to-point, multi-drop, or daisy-chain topology. The CC-9M-QA25-Z1 is a compact and lightweight module that can easily replace conventional cabling when it comes to interconnections between two devices. It has an IP67 waterproof rating and is compliant with RoHS.

Application Fields of CC-9M-QA25-Z1

The CC-9M-QA25-Z1 is widely deployed in many areas, including factory automation, industrial, instrumentation, medical equipment, and smart homes. By exchanging SCSI, SPI, and I2C data with each other, the CC-9M-QA25-Z1 could even be used to provide data communication between subsystems in various industries. Furthermore, in these industries, the CC-9M-QA25-Z1 can reduce system complexity, simplify maintenance and increase the speed of data transmission.

Working Principle of CC-9M-QA25-Z1

The working principle of CC-9M-QA25-Z1 is based on a two-wire differential serial protocol named LVDS (Low Voltage Differential Signaling). By using LVDS, the interface communication can detect the input state within one clock period and immediately provide a stable output state. With LVDS, information intensity is not affected by line length and long distance transmission is possible. This allows the CC-9M-QA25-Z1 to support data transmission over long distances and maintain the integrity of sensitive data.

The CC-9M-QA25-Z1 also achieves high speed and low power consumption with smaller cable sizes, making it one of the most efficient solutions for interfacing between two devices. It also supports a wide range of embedded designs, such as micro-controllers, FPGA, and microprocessors. This makes the CC-9M-QA25-Z1 ideal for connecting various in-house and external components, creating a more reliable and efficient embedded system.

The CC-9M-QA25-Z1 includes a full suite of pre-defined messages and data, such as support for dual-phase encoding protocol and deviation compensation. This ensures the smooth exchange of data and transparent communication for two devices. Additionally, CC-9M-QA25-Z1 is also equipped with an in-circuit emulator, to allow developers and designers to debug, trace and analyze any embedded systems that take advantage of the CC-9M-QA25-Z1.

Conclusion

The CC-9M-QA25-Z1 module is an efficient, reliable and cost-effective solution for data transmission between two devices. It is flexible enough to be used in a variety of applications, including automation, industrial, instrumentation, medical equipment and smart home applications. Thanks to its powerful LVDS protocol and extensive support for various embedded systems, the CC-9M-QA25-Z1 can provide fast and reliable point-to-point, multi-drop and daisy-chain topology with minimal cost.

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

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