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Other Programmable Devices

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JTAGJET-C2000F-ISO
IAR Systems
3.3V
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JLINK-ARM
IAR Systems
PROBE DEBUG USB JTAG/SWD FOR ARM
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ADA-ISO-TI14
IAR Systems
3.3V 31.75mm*28.956mm*24.13mm
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JTAGJET-DAVINCI
IAR Systems
JTAG EMULATOR DAVINCI W/DEBUGGER
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JTAGJET-TRACE-CM3
IAR Systems
JTAG EMULATOR CORTEX-M3 1M MEM
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JTAGJET-TRACE-2M
IAR Systems
JTAG EMULATOR W/2M TRACE BUFFER
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ADM51-TRACE-CE
IAR Systems
DEBUGGER IN-CIRCUIT TRACE BUFFER
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JTAGJET-ARM
IAR Systems
1.2V
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JTAGJET-TRACE-1M
IAR Systems
JTAG EMULATOR W/1M TRACE BUFFER
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JTAGJET-TRACE-CM-4
IAR Systems
1.8V 142.24mm*66.04mm*30.48mm
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JTAGJET-CORTEXM3
IAR Systems
JTAG EMULATOR FOR CORTEX-M3
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JTAGJET-ARM11
IAR Systems
In-Circuit Debuggers With Complete Arm Core Support
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IJET-TRACE-CM-L
IAR Systems
TRACE IN-CIRCUIT DEBUG PROBE
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JTAGJET-C2000F
IAR Systems
3.3V
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JTAGJET-470
IAR Systems
JTAG EMULATOR FOR TMS470 ARM7
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ADM51
IAR Systems
IN-CIRCUIT DEBUGGERS
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ADA-ETM-JTAG
IAR Systems
JTAG Probes For Signum Emulators At A Glance
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JTAGJET-XSCALE
IAR Systems
JTAG EMULATOR PXA25X/270&IXP4XX
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ADM51-TRACE
IAR Systems
IN-CIRCUIT DEBUGGERS
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ADA-ISO-TI14E
IAR Systems
JTAG ISOLATION ADAPTER C2000
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JTAGjet-C2000-ISO
IAR Systems
1.8V
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JTAGJET-TRACE-CM3-2
IAR Systems
JTAG EMULATOR CORTEX-M3 2M MEM
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Other Programmable Devices

Other Programmable Devices (OPDs) are a category of electronic components that can be programmed by users to perform specific tasks or functions. They are versatile and customizable, making them suitable for a wide range of applications in various industries.

Definition:
OPDs are electronic devices that can be programmed to execute a set of instructions or tasks. They are distinct from general-purpose processors in that they are often designed for specific applications or functions, allowing for more efficient and tailored solutions.

Functions:
1. Customization: OPDs can be tailored to meet the unique requirements of a particular application, offering flexibility in design and functionality.
2. Automation: They can automate complex processes, reducing the need for manual intervention and increasing efficiency.
3. Integration: OPDs can be integrated with other systems and devices, enabling seamless communication and control.
4. Scalability: They can be scaled up or down depending on the needs of the application, making them adaptable to changing requirements.

Applications:
1. Industrial Automation: OPDs are used in manufacturing processes to control machinery and monitor production lines.
2. Home Automation: They can be programmed to control lighting, heating, and security systems in smart homes.
3. Medical Devices: OPDs are used in medical equipment for patient vitals and controlling medical instruments.
4. Communication Systems: They can be employed in communication networks for data transmission and signal processing.

Selection Criteria:
1. Compatibility: Ensure the OPD is compatible with existing systems and hardware.
2. Performance: Consider the processing power, memory capacity, and speed required for the application.
3. Programmability: Look for devices that support easy programming and offer a wide range of programming languages or tools.
4. Reliability: Choose OPDs with a proven track record of reliability and robustness.
5. Cost: Evaluate the cost-effectiveness of the OPD, considering both the initial investment and the long-term maintenance and support.
6. Support and Documentation: Ensure that the manufacturer provides adequate support and documentation to facilitate programming and troubleshooting.

In summary, Other Programmable Devices offer a high degree of flexibility and customization, making them valuable tools in various sectors. When selecting an OPD, it's crucial to consider factors such as compatibility, performance, programmability, reliability, cost, and support to ensure it meets the specific needs of your project.
Please refer to the product rule book for details.