DescriptionThe XC3090A-7PQ160I belongs to the XC3000A family. It is a field programmable gate array. It features additional interconnect resources and other user-friendly enhancements. Besides,it provides a group of high-performance, high-density, digital integrated circuits. XC3090A-7PQ160I has ...
XC3090A-7PQ160I: DescriptionThe XC3090A-7PQ160I belongs to the XC3000A family. It is a field programmable gate array. It features additional interconnect resources and other user-friendly enhancements. Besides,it pr...
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The XC3090A-7PQ160I belongs to the XC3000A family. It is a field programmable gate array. It features additional interconnect resources and other user-friendly enhancements. Besides,it provides a group of high-performance, high-density, digital integrated circuits.
XC3090A-7PQ160I has some features as follows. (1) ideal for a wide range of custom VLSI design tasks; (2) high-performance CMOS static memory technology; (3) flexible FPGA architecture; (4) unlimited reprogrammability; (5) extensive packaging options; (6) ready for volume production; (7) 8 mA output sink current and 8 mA source current; (8) ultra-high-speed FPGA family with six members; (9) complete development system.
What comes next is about XC3090A-7PQ160I absolute maximum ratings. (1): supply voltage relative to GND (VCC) is from -0.5 V to 7.0 V; (2): input voltage with respect to GND (VIN) is from -0.5 V to VCC+0.5 V; (3): voltage applied to 3-state output (VTS) ranges from -0.5 V to VCC+0.5 V; (4): storage temperature (ambient) is from -65 to 150 ; (5): maximum soldering temperature is 260 ; (6): junction temperature plastic is 125 and junction temperature ceramic is 150 . Then is about DC characteristics over operating conditions. (1): the minimum high-level output voltage (VOH) is 3.86 V at IOH is -4.0 mA and VCC min; (2): the maximum low-level output voltage (VOL) is 0.40 V at IOL is 4.0 mA and VCC min; (3): the maximum horizontal longline pull-up (IRLL) is 3.4 mA; (4): the minimum pad pull-up (IRIN) is 0.02 mA and the maximum is 0.17 mA.