Technical Documents
Specifications
Brand
AlteraKit Contents
Ribbon Cable
Kit Type
ByteBlaster II Parallel Port
Standards/Approvals
No
Product Type
Programmers & In-Circuit Emulator
Sub Type
Programmer
For Use With
Altera Device
Country of Origin
Taiwan, Province Of China
Product Details
The ByteBlaster™ II download cable allows you to program and configure Altera devices. This cable drives configuration data from a standard parallel printer port on a PC to the device on the PCB. Because design changes are downloaded directly to the device, prototyping is easy and you can accomplish multiple design iterations in quick succession.
An FPGA is a semiconductor device consisting of a matrix of Configurable Logic Blocks (CLBs) connected through programmable interconnects. The user determines these interconnections by programming SRAM. A CLB can be simple (AND, OR gates, etc) or complex (a block of RAM). The FPGA allows changes to be made to a design even after the device is soldered into a PCB.
Stock information temporarily unavailable.
3,921.20 MOP
3,921.16 MOP Each (ex VAT)
1
3,921.20 MOP
3,921.16 MOP Each (ex VAT)
Stock information temporarily unavailable.
1
| quantity | Unit price |
|---|---|
| 1 - 4 | 3,921.16 MOP |
| 5+ | 3,529.15 MOP |
Technical Documents
Specifications
Brand
AlteraKit Contents
Ribbon Cable
Kit Type
ByteBlaster II Parallel Port
Standards/Approvals
No
Product Type
Programmers & In-Circuit Emulator
Sub Type
Programmer
For Use With
Altera Device
Country of Origin
Taiwan, Province Of China
Product Details
The ByteBlaster™ II download cable allows you to program and configure Altera devices. This cable drives configuration data from a standard parallel printer port on a PC to the device on the PCB. Because design changes are downloaded directly to the device, prototyping is easy and you can accomplish multiple design iterations in quick succession.
An FPGA is a semiconductor device consisting of a matrix of Configurable Logic Blocks (CLBs) connected through programmable interconnects. The user determines these interconnections by programming SRAM. A CLB can be simple (AND, OR gates, etc) or complex (a block of RAM). The FPGA allows changes to be made to a design even after the device is soldered into a PCB.