SNAS264D April 2006 – February 2024 LM94
PRODUCTION DATA
| Register Address |
Read/ Write |
Register Name |
Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Default Value |
|---|---|---|---|---|---|---|---|---|---|---|---|
| BCh | R/W | Special Function Control 1 |
RES | FCFE2 | FCFE1 | LCFE2 | LCFE1 | VH | 00h | ||
| Bit | Name | R/W | Description |
|---|---|---|---|
| 2:0 | VH | R/W | Voltage hysteresis control. This determines the amount of hysteresis to be applied to all voltage limit comparisons. It applies to both high and low limits. One LSB equals one A/D count, so the actual voltage represented by one LSB depends on the voltage channel. |
| 3 | LCFE1 | R/W | Limit Comparison Filter Enable. Setting this bit causes limit comparisons for temperature zone 1a and 1b to use the filtered (spike smoothed) temperature instead of the unfiltered temperature. |
| 4 | LCFE2 | R/W | Limit Comparison Filter Enable. Setting this bit causes limit comparisons for temperature zone 2a and 2b to use the filtered (spike smoothed) temperature instead of the unfiltered temperature. |
| 5 | FCFE1 | R/W | Fan Control Filter Enable. Setting this bit causes fan control functions for zone 1a and 1b (including fan boost) to use the filtered (spike smoothed) temperature instead of the unfiltered temperature. This includes the PI Loop controller, LUT, and temperature fan boost functions. |
| 6 | FCFE2 | R/W | Fan Control Filter Enable. Setting this bit causes fan control functions for zone 2a and 2b (including fan boost) to use the filtered (spike smoothed) temperature instead of the unfiltered temperature. This includes the PI Loop controller, LUT, and temperature fan boost functions. |
| 7 | RES | R | Reserved |
In order for the LCFE1, LCFE2, FCFE1 and FCFE2 bits to work correctly, the ZN1E and ZN2E bits in the Zones 1/2 Spike Smoothing Control register (at address C2h) should be cleared.
Application Note: If hysteresis for voltage limit comparisons is non-zero, special care needs to be taken when changing the voltage limit registers while a voltage error condition exists. If software relaxes the voltage limits in an attempt to prevent an error condition, it may be necessary to relax the limits by an amount greater than the hysteresis value and wait several milliseconds before attempting to clear the error status bit for the given voltage channel. Once the error status bit has been cleared, the desired limit(s) can be programmed.