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User’s Manual
IBM PowerPC 750GX and 750GL RISC Microprocessor
Table
TIN1 | TIV1 | TID | TIE | V | Description | |
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0 | 1 | 0 | x | 1 | The junction temperature is less than the threshold, and, as a result, the thermal- | |
management interrupt is not generated for TIE = 1. | ||||||
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1 | 1 | 0 | x | 1 | The junction temperature is greater than the threshold, and, as a result, the thermal- | |
management interrupt is generated if TIE = 1. | ||||||
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0 | 1 | 1 | x | 1 | The junction temperature is greater than the threshold, and, as a result, the thermal- | |
management interrupt is not generated for TIE = 1. | ||||||
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1 | 1 | 1 | x | 1 | The junction temperature is less than the threshold, and, as a result, the thermal- | |
management interrupt is generated if TIE = 1. | ||||||
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Note:
1. The TIN and TIV bits are
The configuration and operation of the TAU’s
This sequence of comparisons continues until a
While the 750GX’s TAU does not implement an
The TAU configuration used to approximate the junction temperature is the same required for single- threshold mode, except that the threshold SPR selected has its TIE bit cleared to 0 to disable thermal- management interrupt generation. Once the TAU is enabled, the successive approximation routine loads a threshold value into the active threshold SPR, and then continuously polls the threshold SPRs TIV bit until it is set to 1, indicating a valid TIN bit. The successive approximation routine can then evaluate the TIN bit value, and then increment or decrement the threshold value for another comparison. This process is continued until the junction temperature is determined.
Power and Thermal Management | gx_10.fm.(1.2) |
Page 346 of 377 | March 27, 2006 |