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| Part Number | Manufacturer | Description | ||||||
| 1. | Edal Industries, Inc. | P Series - Miniature Silicon Rectifier Circuits | 45.5 Kb | 1 Pg. |
| « Previous 1 Next » |
| 1. | 95.35 Kb • 4 Pages |
Abstract: ... Cn + x = G0 + P0Cn Cn + y = G1 + P1G0 + P1P0Cn Cn + z = G2 + P2G1 + P2P1G0 + P2P1P0Cn. G = G3 + P3G2 + P3P2G1 + P3P2P1G0 P = P3P2P1P0 Also, the F182 can be used with binary ALUs in an active-LOW or active-HIGH input ... Labels: P2G1 |
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| 2. | 419.95 Kb • 10 Pages |
Abstract: ... X : Don’t Care Cn+x = G0+P0Cn Cn+y = G1+P1G0+P1P0Cn Cn+z = G2+P2G1+P2P1G0+P2P1P0Cn G = G3+G3+P3G2+P3P2G1+P3P2P1G0 P = P3P2P1P0 or Cn+x = Y0+(X0+Cn) Cn+y = Y1+[X1+Y0(X0+Cn)] Cn+z = Y2+{X2+Y1 ... Labels: P2G1 |
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| 3. | 55.39 Kb • 9 Pages |
Abstract: ... Cn+z = G2 + P2G1 + P2P1G0 + P2P1P0Cn. G = G3 + P3G2 + P3P2G1 + P3P2P1G0. P = P3P2P1P0. Also, the HD74HC182 can be used with binary ALUs in an active-low or active-high input operand mode. The connections ... Labels: P2G1 |
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| 4. | 52.96 Kb • 8 Pages |
Abstract: ... Cn+z = G2 + P2G1 + P2P1G0 + P2P1P0Cn. G = G3 + P3G2 + P3P2G1 + P3P2P1G0. P = P3P2P1P0. Also, the HD74HC182 can be used with binary ALUs in an active-low or active-high input operand mode. The connections ... Labels: P2G1 |
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| 5. | 53.29 Kb • 6 Pages |
Abstract: ... Cn+x = G0+P0Cn Cn+y = G1+P1G0+P1P0Cn Cn+z = G2+P2G1+P2P1G0+P2P1P0Cn G = G3+P3G2+P3P2G1+P3P2P1G0 P = P3P2P1P0. The 74F182 can also be used with binary ALUs in an active-Low or active-High input ... Labels: P2G1 |
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| 6. | 71.87 Kb • 10 Pages |
Abstract: ... X : Don’t Care Cn+x = G0+P0Cn Cn+y = G1+P1G0+P1P0Cn Cn+z = G2+P2G1+P2P1G0+P2P1P0Cn G = G3+G3+P3G2+P3P2G1+P3P2P1G0 P = P3P2P1P0 or Cn+x = Y0+(X0+Cn) Cn+y = Y1+[X1+Y0(X0+Cn)] Cn+z = Y2+{X2+Y1 ... Labels: P2G1 |
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| 7. | 95.81 Kb • 5 Pages |
Abstract: ... Cn + x = G0 + P0Cn Cn + y = G1 + P1G0 + P1P0Cn Cn + z = G2 + P2G1 + P2P1G0 + P2P1P0Cn. G = G3 + P3G2 + P3P2G1 + P3P2P1G0 P = P3P2P1P0 Also, the F182 can be used with binary ALUs in an active-LOW or active-HIGH input ... Labels: P2G1 |
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| 8. | 163.38 Kb • 8 Pages |
Abstract: ... Cnax e G0 a P0Cn Cnay e G1 a P1G0 a P1P0Cn Cnaz e G2 a P2G1 a P2P1G0 a P2P1P0Cn G e G3 a P3G2 a P3P2G1 a P3P2P1G0 P e P2P2P1P0. Also, the ’F182 can be used with binary ALUs in an active LOW or active HIGH input ... Labels: P2G1 |
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| 9. | 75.15 Kb • 10 Pages |
Abstract: ... Cn+z = G2 + P2G1 + P2P1G0 + P2P1P0Cn. G = G3 + P3G2 + P3P2G1 + P3P2P1G0. P = P3P2P1P0. Also, the HD74HC182 can be used with binary ALUs in an active-low or active-high input operand mode. The connections ... Labels: P2G1 |
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| 10. | 99.68 Kb • 7 Pages |
Abstract: ... Cn + x = G0 + P0Cn Cn + y = G1 + P1G0 + P1P0Cn Cn + z = G2 + P2G1 + P2P1G0 + P2P1P0Cn G = G3 + P3G2 + P3P2G1 + P3P2P1G0 P = P3P2P1P0. Also, the HD74AC182/HD74ACT182 can be used with binary ALUs in an active Low or active ... Labels: P2G1, Pb-Free |
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