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80960JD Datasheet(PDF) 29 Page - Intel Corporation |
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80960JD Datasheet(HTML) 29 Page - Intel Corporation |
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29 / 59 page ![]() 80960JD PRODUCT PREVIEW 23 4.4 VCC5 Pin Requirements (VDIFF) In mixed voltage systems where the processor is powered by 3.3 volts and interfaces with 5 volt components, VCC5 must be connected to 5 volts. This allows proper 5 volt tolerant buffer operation, and prevents damage to the input pins. The voltage differential between the 80960Jx VCC5 pin and its 3.3 volt VCC pins must not exceed 2.25 volts. If this requirement is not met, current flow through the pin may exceed the value at which the processor is damaged. Instances when the voltage can exceed 2.25 volts is during power up or power down, where one source reaches its level faster than the other, briefly causing an excess voltage differential. Another instance is during steady-state operation, where the differential voltage of the regulator (provided a regulator is used) cannot be maintained within 2.25 volts. Two methods are possible to prevent this from happening: • Use a regulator that is designed to prevent the voltage differential from exceeding 2.25 volts, or, As shown in Figure 6, place a 100 Ω resistor in series with the VCC5 pin to limit the current through VCC5. Figure 6. VCC5 Current-Limiting Resistor • If the regulator cannot prevent the 2.25 volt differ- ential, the addition of the resistor is a simple and reliable method for limiting current. The resistor can also prevent damage in the case of a power failure, where the 5 volt supply remains on and the 3.3 volt supply goes to zero. In 3.3 volt only systems where the 80960Jx input pins are driven from 3.3 volt logic, connect the VCC5 pin directly to the 3.3 volt VCC plane. +5 V (±0.25 V) VCC5 Pin 100 Ω (±5%, 0.5 W) Symbol Parameter Min Max Units Notes VDIFF VCC5-VCC Difference 2.25 V VCC5 input should not exceed VCC by more than 2.25 V during power-up and power-down, or during steady-state operation. 4.5 VCCPLL Pin Requirements To reduce clock jitter on the i960 Jx processor, the VCCPLL pin for the Phase Lock Loop (PLL) circuit is isolated on the pinout. The lowpass filter, as shown in Figure 7, reduces noise induced clock jitter and its effects on timing relationships in system designs. The 4.7 µF capacitor must be (low ESR solid tantalum), the 0.01 µF capacitor must be of the type X7R and the node connecting VCCPLL must be as short as possible. Figure 7. VCCPLL Lowpass Filter 100 VCC (Board Plane) VCCPLL (On i960 Jx processors) Ω (±5%, 1/8 W) F_CA078A 0.01µF 4.7µF + |
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