DescriptionThe XC3042A-7TQ144C is designed as one member of the XC3000 series. This series field programmable gate arrays (FPGAs) provide a group of high-performance, high-density, digital integrated circuits. Their regular, extendable, flexible, user-programmable array architecture is composed of...
XC3042A-7TQ144C: DescriptionThe XC3042A-7TQ144C is designed as one member of the XC3000 series. This series field programmable gate arrays (FPGAs) provide a group of high-performance, high-density, digital integrate...
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The XC3042A-7TQ144C is designed as one member of the XC3000 series. This series field programmable gate arrays (FPGAs) provide a group of high-performance, high-density, digital integrated circuits. Their regular, extendable, flexible, user-programmable array architecture is composed of a configuration program store plus three types of configurable elements: a perimeter of I/O Blocks (IOBs), a core array of Configurable Logic Bocks (CLBs) and resources for interconnection.
This XC3042A-7TQ144C family has many features. (1) Complete line of four related field programmable gate array product families. (2) Ideal for a wide range of custom VLSI design tasks. (3) High-performance CMOS static memory technology. (4) Flexible FPGA architecture. (5) Unlimited reprogrammability. (6) Extensive packaging options. (7) Ready for volume production. (8) Complete development system. That are all the main features.
Some XC3042A-7TQ144C absolute maximum ratings have been concluded into several points as follow. (1) Its supply voltage relative to GND would be from -0.5 to +7.0V. (2) Its input voltage with respect to GND would be from -0.5 to Vcc+0.5V. (3) Its voltage applied to 3-state output would be from -0.5 to Vcc+0.5V. (4) Its storage temperature (ambient) would be from -65 to +150°C. (5) Its maximum soldering temperature (10s @ 1/16 in.) would be +260°C. (6) Its junction temperature plastic would be +125°C. (7) Its junction temperature ceramic would be +150°C.
Also some operating conditions about XC3042A-7TQ144C. (1) Its supply voltage relative to GND commercial 0°C to +85°C junction would be min 4.75V and max 5.25V. (2) Its supply voltage relative to GND industrial -40°C to +100°C junction would be min 4.5V and max 5.5V. (3) Its high level input voltage TTL configuration would be min 2.0V and max Vcc. (4) Its low level input voltage TTL configuration would be min 0V and max 0.8V. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!