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OR2C04A датащи(PDF) 63 Page - List of Unclassifed Manufacturers |
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OR2C04A датащи(HTML) 63 Page - List of Unclassifed Manufacturers |
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63 / 192 page ![]() Lucent Technologies Inc. 63 Data Sheet June 1999 ORCA Series 2 FPGAs Estimating Power Dissipation (continued) PCLK = [0.69 mW/MHz + (0.38 mW/MHz – Branch) (20 Branches) + (0.022 mW/MHz – PFU) (150 PFUs) + (0.006 mW/MHz – SMEM_PFU) (16 SMEM_PFUs)] [40 MHz] = 427 mW PTTL = 20 x [2.2 mW + (0.17 mW/MHz x 20 MHz x 20%)] = 57 mW PCMOS = 20 x [0.17 mW x 20 MHz x 20%] = 13 mW POUT = 30 x [(30 pF + 8.8 pF) x (5.25)2 x 20 MHz x 20%] =128 mW PBID = 16 x [(50 pF + 8.8 pF) x (5.25)2 x 20 MHz x 20%] = 104 mW TOTAL = 1.50 W OR2TxxA The total operating power dissipated is estimated by summing the standby (IDDSB), internal, and external power dissipated. The internal and external power is the power consumed in the PLCs and PICs, respec- tively. In general, the standby power is small and may be neglected. The total operating power is as follows: PT = Σ PPLC + Σ PPIC The internal operating power is made up of two parts: clock generation and PFU output power. The PFU out- put power can be estimated based upon the number of PFU outputs switching when driving an average fan-out of two: PPFU = 0.08 mW/MHz For each PFU output that switches, 0.08 mW/MHz needs to be multiplied times the frequency (in MHz) that the output switches. Generally, this can be esti- mated by using one-half the clock rate, multiplied by some activity factor; for example, 20%. The power dissipated by the clock generation circuitry is based upon four parts: the fixed clock power, the power/clock branch row or column, the clock power dis- sipated in each PFU that uses this particular clock, and the power from the subset of those PFUs that is config- ured in either of the two synchronous modes (SSPM or SDPM). Therefore, the clock power can be calculated for the four parts using the following equations: OR2T04A Clock Power P = [0.29 mW/MHz + (0.10 mW/MHz – Branch) (# Branches) + (0.01 mW/MHz – PFU) (# PFUs) + (0.003 mW/MHz – SMEM_PFU) (# SMEM_PFUs)] fCLK For a quick estimate, the worst-case (typical circuit) OR2T04A clock power ≈ 1.8 mW/MHz. OR2T06A Clock Power P = [0.30 mW/MHz + (0.11 mW/MHz – Branch) (# Branches) + (0.01 mW/MHz – PFU) (# PFUs) + (0.003 mW/MHz – SMEM_PFU) (# SMEM_PFUs)] fCLK For a quick estimate, the worst-case (typical circuit) OR2T06A clock power ≈ 2.4 mW/MHz. OR2T08A Clock Power P = [0.31 mW/MHz + (0.12 mW/MHz – Branch) (# Branches) + (0.01 mW/MHz – PFU) (# PFUs) + (0.003 mW/MHz – SMEM_PFU) (# SMEM_PFUs)] fCLK For a quick estimate, the worst-case (typical circuit) OR2T08A clock power ≈ 3.2 mW/MHz. OR2T10A Clock Power P = [0.32 mW/MHz + (0.14 mW/MHz – Branch) (# Branches) + (0.01 mW/MHz – PFU) (# PFUs) + (0.003 mW/MHz – SMEM_PFU) (# SMEM_PFUs)] fCLK For a quick estimate, the worst-case (typical circuit) OR2T10A clock power ≈ 4.0 mW/MHz. OR2T12A Clock Power P = [0.33 mW/MHz + (0.15 mW/MHz – Branch) (# Branches) + (0.01 mW/MHz – PFU) (# PFUs) + (0.003 mW/MHz – SMEM_PFU) (# SMEM_PFUs)] fCLK For a quick estimate, the worst-case (typical circuit) OR2T12A clock power ≈ 4.9 mW/MHz. |
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