Examples of using Fpgas in English and their translations into Hebrew
{-}
-
Colloquial
-
Ecclesiastic
-
Computer
-
Programming
Sometimes both CPLDs and FPGAs are used in a single system design.
FPGAs have both advantages and disadvantages as compared to ASICs or secure microprocessors, concerning hardware security.
The 1990s were a period of rapid growth for FPGAs, both in circuit sophistication and the volume of production.
In most FPGAs, the logic blocks also include memory elements, which may be simple flip-flops or more complete blocks of memory[1].
In 2012 researchers Sergei Skorobogatov andChristopher Woods demonstrated that FPGAs can be vulnerable to hostile intent.
By the end of the decade, FPGAs found their way into consumer, automotive, and industrial applications.
More recently, OpenCL is being used by programmers to take advantage of the performance andpower efficiencies that FPGAs provide.
With respect to security, FPGAs have both advantages and disadvantages as compared to ASICs or secure microprocessors.
More recently, OpenCL(Open Computing Language) is being used by programmers to take advantage of the performance andpower efficiencies that FPGAs provide.
Previously, for many FPGAs, the design bitstream was exposed while the FPGA loads it from external memory(typically on every power-on).
Another common distinction is that CPLDscontain embedded flash to store their configuration while FPGAs usually, but not always, require an external flash.
This is trivially proven by the fact that FPGAs can be used to implement a soft microprocessor, such as the Xilinx MicroBlaze or Altera Nios II.
Particularly with the introduction of dedicated multipliers into FPGA architectures in the late 1990s, applications which had traditionally been the sole reserve of digital signal processor hardware(DSPs)began to incorporate FPGAs instead.
Some FPGAs have the capability of partial re-configuration that lets one portion of the device be re-programmed while other portions continue running.
Additional technologies for digital signal processing include more powerful general purpose microprocessors,field-programmable gate arrays(FPGAs), digital signal controllers(mostly for industrial applications such as motor control), and stream processors.
With its Stratix 10 FPGAs and SoCs, Altera introduced a Secure Device Manager and physically uncloneable functions to provide high levels of protection against physical attacks.
Ranked 264 on the TOP500 list, Cygnus leverages HDR InfiniBand to connect CPUs,GPUs and FPGAs together, enabling accelerated research in the areas of astrophysics, particle physics, material science, life, meteorology and artificial intelligence.
FPGAs that store their configuration internally in nonvolatile flash memory, such as Microsemi‘s ProAsic 3 or Lattice‘s XP2 programmable devices, do not expose the bitstream and do not need encryption.
In practice, the distinction between FPGAs and CPLDs is often one of size as FPGAs are usually much larger in terms of resources than CPLDs.
FPGAs contain an array of programmable logic blocks, and a hierarchy of“reconfigurable interconnects” that allow the blocks to be“wired together”, like many logic gates that can be inter-wired in different configurations.
Rack Scale Architecture, 3D XPoint™ memory, FPGAs and silicon photonics are just a few examples of technologies that Intel has spent several years developing and which are now on the cusp of production.
More recently, FPGAs such as the Xilinx Virtex-7 or the Altera Stratix 5 have come to rival corresponding ASIC and ASSP solutions by providing significantly reduced power, increased speed, lower materials cost, minimal implementation real-estate, and increased possibilities for re-configuration‘on-the-fly'.
An older study showed that designs implemented on FPGAs need on average 40 times as much area, draw 12 times as much dynamic power, and run at one third the speed of corresponding ASIC implementations.
More recently, FPGAs such as the Xilinx Virtex-7 or the Altera Stratix 5 have come to rival corresponding ASIC and ASSP("Application-specific standard part", such as a standalone USB interface chip[26]) solutions by providing significantly reduced power usage, increased speed, lower materials cost, minimal implementation real-estate, and increased possibilities for re-configuration'on-the-fly'.
Microsemi additionally delivers the lowest power FPGAs in the industry, created the world's first monolithic 2.4Ghz/5Ghz WiFi FEM, and has the lowest power MICS& 900MHz Sensor Radios in the industry.
Rack Scale Architecture, 3D XPoint™ memory, FPGAs and silicon photonics are just a few examples of technologies that have been in development for several years at Intel and that we will bring to production soon.
In response, organizations on the cutting edge have embraced accelerators like GPUs and FPGAs to push the performance of systems without simply revving up the speed, investigated new memory technologies- like conductive bridge RAM(CBRAM), resistive RAM(ReRAM), and phase change memory(PCM)- as well as software-defined and hyperconverged infrastructures.