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LM82 数据表(PDF) 9 Page - National Semiconductor (TI) |
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LM82 数据表(HTML) 9 Page - National Semiconductor (TI) |
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9 / 17 page ![]() 1.0 Functional Description (Continued) less than or equal to it’s corresponding HIGH setpoint, as shown in Figure 4. Figure 5 shows a simplified logic diagram for the INT output and related circuitry. The INT output can be disabled by setting the INT mask bit, D7, of the configuration register. INT can be programmed to be active high or low by the state of the INT inversion bit, D1, in the configuration register. A “0” would program INT to be active low. INT is an open-drain output. 1.3 T_CRIT_A OUTPUT and T_CRIT LIMIT T_CRIT_A is activated when any temperature reading is greater than the limit preset in the critical temperature set- point register (T_CRIT), as shown in Figure 6. The Status Registers can be read to determine which event caused the alarm. A bit in the Status Registers is set high to indicate which temperature reading exceeded the T_CRIT setpoint temperature and caused the alarm, see Section 2.3. Local and remote temperature diodes are sampled in se- quence by the A/D converter. The T_CRIT_A output and the Status Register flags are updated at the completion of a conversion. T_CRIT_A and the Status Register flags are reset only after the Status Register is read and if a tempera- ture conversion is below the T_CRIT setpoint, as shown in Figure 6. Figure 7 shows a simplified logic diagram of the T_CRIT_A and related circuitry. Located in the Configuration Register are the mask bits for each temperature reading, seeSection 2.5. When a mask bit is set, its corresponding status flag will not propagate to the T_CRIT_A output, but will still be set in the Status Registers. Configuration register bits D5 and D3, labled “Remote T_CRIT_A mask” must be set high before the T_CRIT set- point is lowered in order for the T_CRIT_A output to function properly. Setting all four mask bits or programming the T_CRIT setpoint to 127˚C will disable the T_CRIT_A output. 10129714 * Note: Status Register Bits are reset by a read of Status Register where bit is located. FIGURE 4. INT Temperature Response Diagram 10129721 FIGURE 5. INT output related circuitry logic diagram 10129706 * Note: Status Register Bits are reset by a read of Status Register where bit is located. FIGURE 6. T_CRIT_A Temperature Response Diagram 10129720 FIGURE 7. T_CRIT_A output related circuitry logic diagram www.national.com 9 |
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