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Description
The JTAG-HS3 is the newest member of our family of affordable high-speed
Xilinx FPGA programming solutions. The HS3 builds on the successful
JTAG-HS1 by adding an open-drain buffer to pin 14 allowing for the
debugging of Xilinx Zynq-SOC processors. It can be attached to target
boards using Xilinx's 2x7 connector*, and is compatible with all Xilinx
tools, including iMPACT, ChipScope, and EDK. When connected to a PC via a
standard A to micro-USB cable, the JTAG HS3 receives its power from USB and
can be recognized as a Digilent programming cable, even if the HS3 is not
attached to the target board. The JTAG bus can be shared with other devices
as the HS3's signals are held in high-impedance, except when actively
driven during programming. The HS3 is small and light, allowing it to be
held firmly in place by the system board connector. * This is a unique
programming header and is not compatible with the 1x6 MTE Digilent JTAG
Connector.
Xilinx FPGA programming solutions. The HS3 builds on the successful
JTAG-HS1 by adding an open-drain buffer to pin 14 allowing for the
debugging of Xilinx Zynq-SOC processors. It can be attached to target
boards using Xilinx's 2x7 connector*, and is compatible with all Xilinx
tools, including iMPACT, ChipScope, and EDK. When connected to a PC via a
standard A to micro-USB cable, the JTAG HS3 receives its power from USB and
can be recognized as a Digilent programming cable, even if the HS3 is not
attached to the target board. The JTAG bus can be shared with other devices
as the HS3's signals are held in high-impedance, except when actively
driven during programming. The HS3 is small and light, allowing it to be
held firmly in place by the system board connector. * This is a unique
programming header and is not compatible with the 1x6 MTE Digilent JTAG
Connector.
Digilent JTAG-HS3 Programming Cable
Current Price
$77.29
Average
$71.03
Min Price
$49.99
Max Price
$97.54
Price dynamics
8%
Description
The JTAG-HS3 is the newest member of our family of affordable high-speed
Xilinx FPGA programming solutions. The HS3 builds on the successful
JTAG-HS1 by adding an open-drain buffer to pin 14 allowing for the
debugging of Xilinx Zynq-SOC processors. It can be attached to target
boards using Xilinx's 2x7 connector*, and is compatible with all Xilinx
tools, including iMPACT, ChipScope, and EDK. When connected to a PC via a
standard A to micro-USB cable, the JTAG HS3 receives its power from USB and
can be recognized as a Digilent programming cable, even if the HS3 is not
attached to the target board. The JTAG bus can be shared with other devices
as the HS3's signals are held in high-impedance, except when actively
driven during programming. The HS3 is small and light, allowing it to be
held firmly in place by the system board connector. * This is a unique
programming header and is not compatible with the 1x6 MTE Digilent JTAG
Connector.
Xilinx FPGA programming solutions. The HS3 builds on the successful
JTAG-HS1 by adding an open-drain buffer to pin 14 allowing for the
debugging of Xilinx Zynq-SOC processors. It can be attached to target
boards using Xilinx's 2x7 connector*, and is compatible with all Xilinx
tools, including iMPACT, ChipScope, and EDK. When connected to a PC via a
standard A to micro-USB cable, the JTAG HS3 receives its power from USB and
can be recognized as a Digilent programming cable, even if the HS3 is not
attached to the target board. The JTAG bus can be shared with other devices
as the HS3's signals are held in high-impedance, except when actively
driven during programming. The HS3 is small and light, allowing it to be
held firmly in place by the system board connector. * This is a unique
programming header and is not compatible with the 1x6 MTE Digilent JTAG
Connector.
Price will be lower
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in next 2 weeks
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Product review & video
wait JTAG hs3 programming kala comes in its gonna come in a little bit the bubble wrap back like this open it up just get a little mini USB cable as well as your actual JTAG interface here so just plug that guy in there so now this will be able to plug into the two by ten JTAG header on most agree FPGA boards digital imports as well as boards made by other companies and now this will not work with microcontrollers


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