| Part Numbert | Mfg | Packt | D/C | Descriptiont | Qty | Company/Contact | |
| SKIIP83AHB15 | Module | 70 |
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| SKIIP83AHB15 | SEMIKRON | NA | 50 |
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| SKIIP83AHB15 | 55 |
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| SKIIP83AHB15 | 1 | SEMIKRON |
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| SKIIP83AHB15 | SEMIKRON | MODULE |
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| SKIIP83AHB15 | SEMIKRON | 25 |
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| SKIIP83AHB15 | 25 | 模块 |
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| SKIIP83AHB15 | SEMIKRON | N/A | STOCK | 100 |
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| SKIIP83AHB15 | SEMIKRON | MODULE | 05+ | 原装现货,品质为先! | 85 |
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| SKIIP83AHB15 | SEMIKRON | 09+ | 1 |
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| SKIIP83AHB15 | new and or | 06+ | 321 |
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| SKIIP83AHB15 | Skype:gtuitgah@163.com | 1-2days | 500 |
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| SKIIP83AHB15 | N/A | Module | 00+ | Inventory stock,low | 86 |
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| SKIIP83AHB15 | 70 |
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| SKIIP83AHB15 | SEMIKRON | Module | N/A | IGBT | 25 |
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| SKIIP83AHB15 | 52 |
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| SKIIP83AHB15 | SEMIKRON | MODULE | N/A | 100 |
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| SKIIP83AHB15 | SEMIKRON | MUDOLE | we can find total pa | 250 |
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| SKIIP83AHB15 | N/A | 50 |
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| SKIIP83AHB15 | N/A | module | 2008+ | 25 |
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| SKIIP83AHB15 | SEMIKRON | Module | new and original | 1 |
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| SKIIP83AHB15 |
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| SKIIP83AHB15 | SEMIKRON | 10 |
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| SKIIP83AHB15 | NEW | 100 |
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| SKIIP83AHB15 | 模块 | 代理原装 | 382 |
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| SKIIP83AHB15 | MODULE | SEMIKRON | 25 |
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| SKIIP83AHB15 | SEMIKRON | 05+ | new and original | 1 |
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| SKIIP83AHB15 | SEMIKRON | MODULE | 06+ | 25 |
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| SKIIP83AHB15 | Power modu | N/A | New & Original/stock | 100 |
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| SKIIP83AHB15 | SEMIKRON | MODULE | 10 |
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| SKIIP83AHB15 | SEMIKRON | MUDOLE | STRC Verified | 105 |
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| SKIIP83AHB15 | 25 |
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| SKIIP83AHB15 | SEMIKRON | UPS | 2005+ | UPS | 27 |
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| SKIIP83AHB15 | N/A | new and original in | 200 |
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| SKIIP83AHB15 | Power modu | N/A | New & Original/stock | 100 |
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| SKIIP83AHB15 | SEMIKRON | N/A | 1 |
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| SKIIP83AHB15 | SEMIKRON | 400 |
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| SKIIP83AHB15 | 25 |
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| SKIIP83AHB15 | SEMIKRON | IGBT | 08+ | 1 |
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| SKIIP83AHB15 | SEMIKRON | N/A | 2002+ | 100 |
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| SKIIP83AHB15 | 25 |
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| SKIIP83AHB15 | N/A | module | 2005+ | 200 |
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| SKIIP83AHB15 | SEMIKRON | 1 |
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| SKIIP83AHB15 | SEMIKRON | MODULE | 00+ | 25 |
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SKIIP83AHB15 Datasheet
SKIIP83AHB15 Price (1) The launch power of (-12, -7) dBm is specially designed for the 2 km distance requirement, and the maximum optical power meets the class I laser safety standard. (2) Voltage levels listed are compatible with 100K Series PECL logic levels. The parts are compatible with 10K and 10KH Series logic when driven with differential signals. (3) This Optical Extinction Ratio is expressed in decibels (dB) by the relationship lO'Iog(Phigh avg/Plow avg). SKIIP83AHB15 on stock Figure 6a shows the 3650 connected as a transconductance amplifier with input current sources. Voltage sources are shown in Figure 6b. In this case the voltages are converted to currents by RGI and RG2. As shown by the equations, they perform as gain setting resistors in the voltage transfer function. When a single voltage source is used, it is recom- mended (but not essential) that the gain setting resistor remain split into two equal halves in order to minimize errors due to bias currents and common-mode rejection (see Typical Performance Curves). Referring to Figure 2, the unknown input signal to be converted is integrated from zero for a fixed time period (tINT), measured by counting clock pulses. A constant reference voltage of the opposite polarity is then integ rated until the integrator output voltage returns to zero. The reference integration (deintegration) time (TDEINT) is then directly proportional to the unknown input voltage (VIN). In a simple dual-slope converter, a complete conver- sion requires the integrator output to "ramp-up" from zero and "ramp-down" back to zero. A simple mathematical equation relates the input signal, reference voltage, and integration time: |
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