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ISL99360 数据表(PDF) 21 Page - Renesas Technology Corp |
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ISL99360 数据表(HTML) 21 Page - Renesas Technology Corp |
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21 / 107 page ![]() ISL68229, ISL68239 4. Operating the Device R16DS0006EU0101 Rev.1.01 Page 21 of 106 Jul 21, 2022 4. Operating the Device After the ISL68229 or ISL68239 initialize and a configuration is loaded, it is ready for operation. The ISL68229 and ISL68239 have several performance enhancing features that enable them to meet the most stringent voltage regulation and efficiency demands. The synthetic current modulator provides excellent transient response to support the latest generation of ASICs and CPUs. Automatic phase dropping, diode emulation, and PFM operation improve efficiency across the load range. The ISL68229 and ISL68239 support Smart Power Stage (SPS) current sense in addition to DCR/resistor current sense to enable optimal design. The devices also support a full complement of high resolution telemetry, including per phase temperature sense when paired with select Renesas SPS devices. The following sections provide more detail about these features. 4.1 Input Voltage Sensing Input voltage is monitored using the VINSEN pin. Connect the VINSEN pin as shown in Figure 6. Input voltage is monitored continuously, and regulation is stopped anytime the sensed input voltage falls outside the boundaries established by configuration settings associated with the parameters VIN ON, VIN OFF, VIN Overvoltage Fault Limit, and VIN Undervoltage Fault Limit. 4.2 Lossless Input Current and Power Sensing Input current telemetry is provided per rail using an input current synthesizer. By using the ISL68229 or ISL68239 to precisely determine the operational conditions, the input current can be synthesized to a high degree of accuracy without the need for a lossy sense resistor. With a precise knowledge of the input current and voltage, the input power can be computed. 4.3 VMON Voltage Sensing The VMON input pin provides a secondary input voltage sense with several selectable voltage ranges. The VMON input pin can be used to inhibit rail operation when the sensed voltage falls outside the boundary established by the configuration settings that are associated with the parameters VMON_ON and VMON_OFF. If a rail is prevented from operating due to a VMON excursion, the rail restarts if the sensed voltage returns to the specified range. Use of this feature is optional for each rail. A typical use case for this voltage sensing feature is monitoring the bias supply voltage associated with the power stages and preventing operation if this voltage is below the configured range. Figure 7 on page 21 shows how to connect the VMON pin for sensing the 5V SPS bias voltage. Figure 6. Input Voltage Sense Configuration Figure 7. VMON Configuration |
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