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VMV3 데이터시트(PDF) 45 Page - Microsemi Corporation |
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VMV3 데이터시트(HTML) 45 Page - Microsemi Corporation |
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45 / 212 page ![]() Military ProASIC3/EL Low Power Flash FPGAs Revision 3 2-31 Detailed I/O DC Characteristics Table 2-33 • Summary of I/O Timing Characteristics—Software Default Settings –1 Speed Grade, Military-Case Conditions: TJ = 125°C, Worst Case VCC = 1.425 V, Worst Case VCCI Applicable to Standard Plus I/O Banks for A3P250 and A3P1000 Only I/O Standard 3.3 V LVTTL / 3.3 V LVCMOS 12 mA 12 mA High 5 – 0.54 1.90 0.04 0.94 0.39 1.94 1.47 2.61 3.01 4.03 3.56 3.3 V LVCMOS Wide Range3 100 µA 12 mA High 5 – 0.54 2.94 0.04 1.42 0.39 2.94 2.22 4.03 4.66 6.12 5.40 2.5 V LVCMOS 12 mA 12 mA High 5 – 0.54 1.94 0.04 1.21 0.39 1.97 1.62 2.64 2.91 4.07 3.71 1.8 V LVCMOS 8 mA 8 mA High 5 – 0.54 1.94 0.04 1.21 0.39 1.97 1.62 2.64 2.91 4.07 3.71 1.5 V LVCMOS 4 mA 4 mA High 5 – 0.54 2.62 0.04 1.33 0.39 2.67 2.23 2.84 2.93 4.77 4.32 3.3 V PCI Per PCI spec. – High 10 25 4 0.54 2.16 0.04 0.80 0.39 2.20 1.60 2.61 3.01 4.29 3.69 3.3 V PCI-X Per PCI-X spec. – High 10 25 4 0.54 2.16 0.04 0.78 0.39 2.20 1.60 2.61 3.01 4.29 3.69 Notes: 1. Note that 3.3 V LVCMOS wide range is applicable to 100 µA drive strength only. The configuration will not operate at the equivalent software default drive strength. These values are for normal ranges only. 2. Output delays provided in this table were extracted with an output load indicated in the Capacitive Load column. For a specific output load, refer to Designer software. Software default load is higher. 3. All LVCMOS 3.3 V software macros support LVCMOS 3.3 V wide range as specified in the JESD8-B specification. 4. Resistance is used to measure I/O propagation delays as defined in PCI specifications. See Figure 2-15 on page 2-73 for connectivity. This resistor is not required during normal operation. 5. For specific junction temperature and voltage supply levels, refer to Table 2-6 on page 2-8 for derating values. Table 2-34 • Input Capacitance Symbol Definition Conditions Min. Max. Units CIN Input capacitance VIN = 0, f = 1.0 MHz 8 pF CINCLK Input capacitance on the clock pin VIN = 0, f = 1.0 MHz 8 pF |
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