Examples of using Embedded instruments in English and their translations into German
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This openness serves to simultaneously support several embedded instruments.
This test and validation method uses embedded instruments to test and program complex boards.
In addition to Boundary Scan,these are Processor Emulation and Chip embedded Instruments.
In particular the increasing Chip Embedded Instruments utilization offers a variety of new test and measurement applications.
At the same time, we strengthen our leading position for synthesis-free FPGA Embedded Instruments.”.
It features the technologies ChipVORX® to control Chip Embedded Instruments and VarioTAP® for Processor Emulation.
The ChipVORX® technology andmodels have been developed for universal control of Chip Embedded Instruments.
FPGA Embedded Instruments are permanently integrated or temporarily implemented test and measurement functions(T& M) in an FPGA.
The ChipVORX® models are Intellectual Properties(IP)for implementation and control of chip embedded instruments.
Chip embedded Instruments are permanently integrated or temporarily implemented test and measurement functions(T& M) in an integrated circuit.
ChipVORX is an IP-based technology for implementation,access and control of Chip embedded Instruments via IEEE Std. 1149. x/JTAG.
The FPGA embedded instruments can be utilized for prototype verification as well as production test, debugging and fault diagnosis.”.
The ChipVORX technology exploits the capability of using FPGA embedded instruments in form of softcore IP(Intellectual Property) in the FPGA elements.
At the same time, this strategically highly important component complements our product portfolio of synthesis-free IPs for FPGA Embedded Instruments.”.
Thus, combination with other non-intrusive methods like BScan, Chip embedded instruments or FPGA assisted test is possible on one platform without problem.
The architecture of the module supports all modern technologies for Embedded System Access(ESA), such as Boundary Scan,Processor Emulation and Chip Embedded Instruments.
In addition to traditional Boundary Scan,test strategies such as processor emulation and Chip Embedded Instruments based on VarioTAP® and ChipVORX® technologies, respectively, are supported.
Chip Embedded Instruments are a highly important component in the ensemble of modern Embedded System Access procedures, enabling completely new test, validation and programming strategies.
The VarioTAP technology accesses the register table of the processors and uses their embedded instruments for testing and programming.
The new ChipVORX solution utilising FPGA embedded instruments provides a well-suited supplement,” notes Thomas Wenzel, Director of GOEPEL electronic's JTAG/Boundary Scan Division.
ChipVORX® is an Intellectual Property(IP) based technology for implementation,access and control of Chip Embedded Instruments via IEEE1149. x/JTAG.
Enables FPGA Embedded Instruments utilization in the form of special softcores for the test and design validation of multi-channel high-speed I/O and high-performance serial bus systems as e. g.
The new IP(Intellectual Properties) are chip-centric,enabling the utilization of FPGA Embedded Instruments within the frame of the ChipVORX® technology as well as Processor Emulation Tests based on the VarioTAP® technology.
GOEPEL electronic introduced an Automatic Application Program Generators(AAPG) for design validation and test of FPGA integrated high-speed I/O(HSIO)based on the ChipVORX® technology for FPGA Embedded Instruments.
The highly automated solution enables FPGA Embedded Instruments utilization in the form of special softcores for the test and design validation of multi-channel high-speed I/O and high-performance serial bus systems as e.g. PCI Express x2/x4/x8/x16.
Chip embedded Instruments are part of the so called Embedded System Access(ESA) technologies that are currently the most modern strategy for validation, test and debug as well as programming of complex boards and systems.
The ChipVORX® modelsare modular IP to control chip embedded instruments which now allow FPGA-assisted test of differential clock signals and the measurement of frequencies directly inside the system application.
Special focus is put on the support of FPGA Embedded Instruments, whereby ChipVORX® takes over the entire process flow from the target FPGA programming over IP to pin configuration, instrument control up to data processing.
Embedded instrument for imaging disks.
The AAPG is aversatile tool providing for the utilisation of any chip embedded instrument.
