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The J-Link Ultra Emulator for ARM and Cortex-M3 cores is a JTAG/SWD emulator designed for ARM/Cortex and other supported CPUs. It is fully compatible to the standard J-Link and works with the same PC software. Based on the highly optimized and proven J-Link, it offers even higher speed as well as target power measurement capabilities due to the faster CPU, built-in FPGA and High speed USB interface. It connects via USB to a PC running Microsoft Windows 2000, Windows XP, Windows 2003, Windows Vista or Windows 7. J-Link Ultra has a built-in 20-pin JTAG/SWD connector. Features - Fully compatible to the standard J-Link
- Very high performance for all supported CPU cores
- Hi-Speed-USB 2.0 interface
- Serial Wire Debug supported
- Serial Wire Viewer (SWV) supported
- SWV: UART and Manchester encoding supported
- SWO sampling frequencies up to 25 MHz
- Target power can be supplied
- Target power consumption can be measured with high accuracy.
- Direct download into flash memory of most popular microcontrollers supported
- Any ARM7/ARM9/ARM11, Cortex-M0/M1/M3 core support, including thumb mode
- Automatic core recognition
- JTAG speed up to 25 MHz
- Seamless integration into the IAR Embedded Workbench IDE
- No power supply required, powered through USB
- Support for adaptive clocking
- All JTAG signals can be monitored, target voltage can be measured
- Support for multiple devices
- Fully plug and play compatible
- Standard 20-pin JTAG connector
- Wide target voltage range: 1.8V - 5.0V
- USB and 20-pin ribbon cable included
- Memory viewer (J-Mem) included
- TCP/IP server included, which allows using J-Link via TCP/IP networks
- RDI interface available, which allows using J-Link with RDI compliant software
- Flash programming software (J-Flash) available
- Flash DLL available, which allows using flash functionality in custom applications
- Software Developer Kit (SDK) available
- Embedded Trace Buffer (ETB) support
- Optical isolation adapter available
- Target power supply: J-Link can supply up to 300 mA to target with overload protection
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