SLUSCT1B June   2017  – January 2019 TPS53681

PRODUCTION DATA.  

  1. 1 Features
  2. 2 Applications
  3. 3 Description
    1. 3.1 Simplified Application
  4. 4 Revision History
  5. 5 Pin Configuration and Functions
    1.     Pin Functions
  6. 6 Specifications
    1. 6.1  Absolute Maximum Ratings
    2. 6.2  ESD Ratings
    3. 6.3  Recommended Operating Conditions
    4. 6.4  Thermal Information
    5. 6.5  Supply: Currents, UVLO, and Power-On Reset
    6. 6.6  References: DAC and VREF
    7. 6.7  Voltage Sense: AVSP and BVSP, AVSN and BVSN
    8. 6.8  Telemetry
    9. 6.9  Input Current Sensing
    10. 6.10 Programmable Loadline Settings
    11. 6.11 Current Sense and Calibration
    12. 6.12 Logic Interface Pins: AVR_EN, AVR_RDY, BVR_EN, BVR_RDY, RESET, VR_FAULT, VR_HOT
    13. 6.13 I/O Timing
    14. 6.14 PMBus Address Setting
    15. 6.15 Overcurrent Limit Thresholds
    16. 6.16 Switching Frequency
    17. 6.17 Slew Rate Settings
    18. 6.18 Ramp Selections
    19. 6.19 Dynamic Integration and Undershoot Reduction
    20. 6.20 Boot Voltage and TMAX Settings
    21. 6.21 Protections: OVP and UVP
    22. 6.22 Protections: ATSEN and BTSEN Pin Voltage Levels and Fault
    23. 6.23 PWM: I/O Voltage and Current
    24. 6.24 Dynamic Phase Add and Drop
    25. 6.25 Typical Characteristics
  7. 7 Detailed Description
    1. 7.1 Overview
    2. 7.2 Functional Block Diagram
    3. 7.3 Feature Description
      1. 7.3.1 Phase Interleaving and PWM Operation
        1. 7.3.1.1 Setting the Load-Line (DROOP)
        2. 7.3.1.2 Load Transitions
          1. 7.3.1.2.1 VID Table
        3. 7.3.1.3 Temperature and Fault Sensing
        4. 7.3.1.4 AutoBalance™ Current Sharing
        5. 7.3.1.5 Phase Configuration for Channel B
        6. 7.3.1.6 RESET Function
    4. 7.4 Device Functional Modes
    5. 7.5 Programming
      1. 7.5.1  PMBus Connections
      2. 7.5.2  PMBus Address Selection
      3. 7.5.3  Supported Commands
      4. 7.5.4  Commonly Used PMBus Commands
      5. 7.5.5  Voltage, Current, Power, and Temperature Readings
        1. 7.5.5.1 (88h) READ_VIN
          1. Table 6. READ_VIN Register Field Descriptions
        2. 7.5.5.2 (89h) READ_IIN
          1. Table 7. READ_IIN Register Field Descriptions
        3. 7.5.5.3 (8Bh) READ_VOUT
          1. Table 8. READ_VOUT Register Field Descriptions
        4. 7.5.5.4 (8Ch) READ_IOUT
          1. Table 9. READ_IOUT Register Field Descriptions
        5. 7.5.5.5 (8Dh) READ_TEMPERATURE_1
          1. Table 10. READ_TEMPERATURE_1 Register Field Descriptions
        6. 7.5.5.6 (96h) READ_POUT
          1. Table 11. READ_POUT Register Field Descriptions
        7. 7.5.5.7 (97h) READ_PIN
          1. Table 12. READ_PIN Register Field Descriptions
        8. 7.5.5.8 (D4h) MFR_SPECIFIC_04
          1. Table 13. MFR_SPECIFIC_04 Register Field Descriptions
      6. 7.5.6  Input Current Sense and Calibration
        1. 7.5.6.1 Measured Input Current Calibration
        2. 7.5.6.2 (DAh) MFR_SPECIFIC_10
          1. Table 15. MFR_SPECIFIC_10 Register Field Descriptions
        3. 7.5.6.3 (DCh) MFR_SPECIFIC_12
          1. Table 17. MFR_SPECIFIC_12 Register Field Descriptions
      7. 7.5.7  Output Current Sense and Calibration
        1. 7.5.7.1 Reading Individual Phase Currents
          1. 7.5.7.1.1 Reading Total Current
          2. 7.5.7.1.2 Calibrating Current Measurements
        2. 7.5.7.2 (38h) IOUT_CAL_GAIN
          1. Table 20. IOUT_CAL_GAIN Register Field Descriptions
        3. 7.5.7.3 (39h) IOUT_CAL_OFFSET
          1. Table 22. IOUT_CAL_OFFSET Register Field Descriptions
      8. 7.5.8  Output Voltage Margin Testing
        1. 7.5.8.1 (01h) OPERATION
          1. Table 25. OPERATION Register Field Descriptions
        2. 7.5.8.2 (21h) VOUT_COMMAND
          1. Table 26. VOUT_COMMAND Register Field Descriptions
        3. 7.5.8.3 (26h) VOUT_MARGIN_LOW
          1. Table 27. VOUT_MARGIN_LOW Register Field Descriptions
        4. 7.5.8.4 (25h) VOUT_MARGIN_HIGH
          1. Table 28. VOUT_MARGIN_HIGH Register Field Descriptions
      9. 7.5.9  Loop Compensation
        1. 7.5.9.1 (D7h) MFR_SPECIFIC_07
          1. Table 29. MFR_SPECIFIC_07 Register Field Descriptions
        2. 7.5.9.2 (28h) VOUT_DROOP
          1. Table 34. VOUT_DROOP Register Field Descriptions
      10. 7.5.10 Converter Protection and Response
      11. 7.5.11 Output Overvoltage Protection and Response
        1. 7.5.11.1 (40h) VOUT_OV_FAULT_LIMIT
          1. Table 37. VOUT_OV_FAULT_LIMIT Register Field Descriptions
        2. 7.5.11.2 (41h) VOUT_OV_FAULT_RESPONSE
          1. Table 38. VOUT_OV_FAULT_RESPONSE Register Field Descriptions
      12. 7.5.12 Maximum Allowed Output Voltage Setting
        1. 7.5.12.1 (24h) VOUT_MAX
          1. Table 39. VOUT_MAX Register Field Descriptions
      13. 7.5.13 Output Undervoltage Protection and Response
        1. 7.5.13.1 (44h) VOUT_UV_FAULT_LIMIT
          1. Table 40. VOUT_UV_FAULT_LIMIT Register Field Descriptions
        2. 7.5.13.2 (45h) VOUT_UV_FAULT_RESPONSE
          1. Table 41. VOUT_UV_FAULT_RESPONSE Register Field Descriptions
      14. 7.5.14 Minimum Allowed Output Voltage Setting
        1. 7.5.14.1 (2Bh) VOUT_MIN
          1. Table 42. VOUT_MIN Register Field Descriptions
      15. 7.5.15 Output Overcurrent Protection and Response
        1. 7.5.15.1 (46h) IOUT_OC_FAULT_LIMIT
          1. Table 43. IOUT_OC_FAULT_LIMIT Register Field Descriptions
        2. 7.5.15.2 (4Ah) IOUT_OC_WARN_LIMIT
          1. Table 44. IOUT_OC_WARN_LIMIT Register Field Descriptions
        3. 7.5.15.3 (47h) IOUT_OC_FAULT_RESPONSE
          1. Table 45. IOUT_OC_FAULT_RESPONSE Register Field Descriptions
      16. 7.5.16 Input Under-Voltage Lockout (UVLO)
        1. 7.5.16.1 (35h) VIN_ON
          1. Table 46. VIN_ON Register Field Descriptions
      17. 7.5.17 Input Over-Voltage Protection and Response
        1. 7.5.17.1 (55h) VIN_OV_FAULT_LIMIT
          1. Table 48. VIN_OV_FAULT_LIMIT Register Field Descriptions
        2. 7.5.17.2 (56h) VIN_OV_FAULT_RESPONSE
          1. Table 49. VIN_OV_FAULT_RESPONSE Register Field Descriptions
      18. 7.5.18 Input Undervoltage Protection and Response
        1. 7.5.18.1 (59h) VIN_UV_FAULT_LIMIT
          1. Table 50. VIN_UV_FAULT_LIMIT Register Field Descriptions
        2. 7.5.18.2 (5Ah) VIN_UV_FAULT_RESPONSE
          1. Table 52. VIN_UV_FAULT_RESPONSE Register Field Descriptions
      19. 7.5.19 Input Overcurrent Protection and Response
        1. 7.5.19.1 (5Bh) IIN_OC_FAULT_LIMIT
          1. Table 53. IIN_OC_FAULT_LIMIT Register Field Descriptions
        2. 7.5.19.2 (5Dh) IIN_OC_WARN_LIMIT
          1. Table 55. IIN_OC_FAULT_LIMIT Register Field Descriptions
        3. 7.5.19.3 (5Ch) IIN_OC_FAULT_RESPONSE
          1. Table 57. IIN_OC_FAULT_LIMIT Register Field Descriptions
      20. 7.5.20 Over-Temperature Protection and Response
        1. 7.5.20.1 (4Fh) OT_FAULT_LIMIT
          1. Table 58. OT_FAULT_LIMIT Register Field Descriptions
        2. 7.5.20.2 (51h) OT_WARN_LIMIT
          1. Table 59. OT_WARN_LIMIT Register Field Descriptions
        3. 7.5.20.3 (50h) OT_FAULT_RESPONSE
          1. Table 60. OT_FAULT_RESPONSE Register Field Descriptions
      21. 7.5.21 Dynamic Phase Shedding (DPS)
        1. 7.5.21.1 (DEh) MFR_SPECIFIC_14
          1. Table 61. MFR_SPECIFIC_14 Register Field Descriptions
        2. 7.5.21.2 (DFh) MFR_SPECIFIC_15
          1. Table 63. MFR_SPECIFIC_15 Register Field Descriptions
      22. 7.5.22 NVM Programming
      23. 7.5.23 NVM Security
        1. 7.5.23.1 (FAh) MFR_SPECIFIC_42
          1. Table 64. MFR_SPECIFIC_42 Register Field Descriptions
      24. 7.5.24 Black Box Recording
        1. 7.5.24.1 (D8h) MFR_SPECIFIC_08
          1. Table 65. MFR_SPECIFIC_08 Register Field Descriptions
      25. 7.5.25 Board Identification and Inventory Tracking
        1. 7.5.25.1 (9Ah) MFR_MODEL
          1. Table 67. MFR_MODEL Register Field Descriptions
        2. 7.5.25.2 (9Bh) MFR_REVISION
          1. Table 68. MFR_REVISION Register Field Descriptions
        3. 7.5.25.3 (9Dh) MFR_DATE
          1. Table 69. MFR_DATE Register Field Descriptions
      26. 7.5.26 Status Reporting
        1. 7.5.26.1 (78h) STATUS_BYTE
          1. Table 70. STATUS_BYTE Register Field Descriptions
        2. 7.5.26.2 (79h) STATUS_WORD
          1. Table 71. STATUS_WORD Register Field Descriptions
        3. 7.5.26.3 (7Ah) STATUS_VOUT
          1. Table 72. STATUS_VOUT Register Field Descriptions
        4. 7.5.26.4 (7Bh) STATUS_IOUT
          1. Table 73. STATUS_IOUT Register Field Descriptions
        5. 7.5.26.5 (7Ch) STATUS_INPUT
          1. Table 74. STATUS_INPUT Register Field Descriptions
        6. 7.5.26.6 (7Dh) STATUS_TEMPERATURE
          1. Table 75. STATUS_TEMPERATURE Register Field Descriptions
        7. 7.5.26.7 (7Eh) STATUS_CML
          1. Table 76. STATUS_CML Register Field Descriptions
        8. 7.5.26.8 (80h) STATUS_MFR_SPECIFIC
          1. Table 77. STATUS_MFR_SPECIFIC Register Field Descriptions
  8. 8 Applications, Implementation, and Layout
    1. 8.1 Application Information
    2. 8.2 Typical Application
      1. 8.2.1 6-phase, 0.9-V, 300-A Application and 2-phase 0.8-V, 90-A Application
        1. 8.2.1.1 Schematic
        2. 8.2.1.2 Design Requirements
        3. 8.2.1.3 Detailed Design Procedure
          1. 8.2.1.3.1 Choose Inductor
          2. 8.2.1.3.2 Select the Per-Phase Valley Current Limit
          3. 8.2.1.3.3 Set the Maximum Temperature Level (TMAX)
          4. 8.2.1.3.4 Set USR Thresholds to Improve Load Transient Performance
        4. 8.2.1.4 Inductor DCR and Shunt Current Sensing Design for Input Power
          1. 8.2.1.4.1 Compensation Design
          2. 8.2.1.4.2 Set PMBus Addresses
        5. 8.2.1.5 Application Performance Plots
  9. 9 Power Supply Recommendations
  10. 10Layout
    1. 10.1 Layout Guidelines
      1. 10.1.1 Device Guidelines
      2. 10.1.2 Power Stage Guidelines
    2. 10.2 Layout Examples
  11. 11Device and Documentation Support
    1. 11.1 Receiving Notification of Documentation Updates
    2. 11.2 Community Resources
    3. 11.3 Trademarks
    4. 11.4 Electrostatic Discharge Caution
    5. 11.5 Glossary
  12. 12Mechanical, Packaging, and Orderable Information

Package Options

Mechanical Data (Package|Pins)
Thermal pad, mechanical data (Package|Pins)
Orderable Information

Programmable Loadline Settings

over recommended operating conditions (unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
DCLLChannel A DC loadline settings for Channel A VOUT_DROOP = 0xD000 0 mΩ
VOUT_DROOP = 0xD008 0.1125 0.125 0.1395 mΩ
VOUT_DROOP = 0xD010 0.2412 0.25 0.2587 mΩ
VOUT_DROOP = 0xD014 0.3031 0.3125 0.3218 mΩ
VOUT_DROOP = 0xD018 0.3637 0.375 0.3872 mΩ
VOUT_DROOP = 0xD01C 0.4265 0.4375 0.4484 mΩ
VOUT_DROOP = 0xD020 0.4875 0.5 0.5125 mΩ
VOUT_DROOP = 0xD024 0.5484 0.5625 0.5765 mΩ
VOUT_DROOP = 0xD028 0.6093 0.625 0.6406 mΩ
VOUT_DROOP = 0xD030 0.6855 0.7031 0.7207 mΩ
VOUT_DROOP = 0xD033 0.7769 0.7969 0.8168 mΩ
VOUT_DROOP = 0xD034 0.7921 0.8125 0.8328 mΩ
VOUT_DROOP = 0xD035 0.8073 0.8281 0.8488 mΩ
VOUT_DROOP = 0xD036 0.8227 0.8438 0.8648 mΩ
VOUT_DROOP = 0xD037 0.8379 0.8594 0.8808 mΩ
VOUT_DROOP = 0xD038 0.8531 0.875 0.8968 mΩ
VOUT_DROOP = 0xD039 0.8683 0.8906 0.9128 mΩ
VOUT_DROOP = 0xD03A 0.8836 0.9063 0.9289 mΩ
VOUT_DROOP = 0xD03B 0.8988 0.9219 0.9449 mΩ
VOUT_DROOP = 0xD03C 0.9140 0.9375 0.9609 mΩ
VOUT_DROOP = 0xD03D 0.9292 0.9531 0.9769 mΩ
VOUT_DROOP = 0xD03E 0.9445 0.9688 0.9930 mΩ
VOUT_DROOP = 0xD03F 0.9597 0.9844 1.0090 mΩ
VOUT_DROOP = 0xD040 0.975 1 1.025 mΩ
VOUT_DROOP = 0xD041 0.9902 1.0156 1.0409 mΩ
VOUT_DROOP = 0xD042 1.0055 1.0313 1.0570 mΩ
VOUT_DROOP = 0xD043 1.0207 1.0469 1.0730 mΩ
VOUT_DROOP = 0xD044 1.0359 1.0625 1.0890 mΩ
VOUT_DROOP = 0xD048 1.0968 1.125 1.1531 mΩ
VOUT_DROOP = 0xD050 1.2187 1.25 1.2812 mΩ
VOUT_DROOP = 0xD058 1.3406 1.375 1.4093 mΩ
VOUT_DROOP = 0xD060 1.4625 1.5 1.5375 mΩ
VOUT_DROOP = 0xD068 1.5843 1.625 1.6656 mΩ
VOUT_DROOP = 0xD070 1.7062 1.75 1.7937 mΩ
VOUT_DROOP = 0xD078 1.8281 1.875 1.9218 mΩ
VOUT_DROOP = 0xD07C 1.8890 1.9375 1.9859 mΩ
VOUT_DROOP = 0xD080 1.95 2 2.05 mΩ
VOUT_DROOP = 0xD084 2.0109 2.0625 2.1141 mΩ
VOUT_DROOP = 0xD088 2.0718 2.125 2.1781 mΩ
VOUT_DROOP = 0xD08C 2.1328 2.1875 2.2421 mΩ
VOUT_DROOP = 0xD090 2.1937 2.25 2.3062 mΩ
VOUT_DROOP = 0xD098 2.2698 2.328 2.3862 mΩ
VOUT_DROOP = 0xD09B 2.3612 2.4218 2.4823 mΩ
VOUT_DROOP = 0xD09C 2.3765 2.4375 2.4984 mΩ
DCLLChannel A DC loadline settings for Channel A VOUT_DROOP = 0xD09D 2.3917 2.4531 2.5144 mΩ
VOUT_DROOP = 0xD09E 2.4069 2.4687 2.5304 mΩ
VOUT_DROOP = 0xD09F 2.4221 2.4843 2.5464 mΩ
VOUT_DROOP = 0xD0A0 2.4375 2.5 2.5625 mΩ
VOUT_DROOP = 0xD0A1 2.4527 2.5156 2.5784 mΩ
VOUT_DROOP = 0xD0A2 2.4679 2.5312 2.5944 mΩ
VOUT_DROOP = 0xD0A3 2.4831 2.5468 2.6104 mΩ
VOUT_DROOP = 0xD0A4 2.4984 2.5625 2.6265 mΩ
VOUT_DROOP = 0xD0A5 2.5136 2.5781 2.6425 mΩ
VOUT_DROOP = 0xD0A6 2.5288 2.5937 2.6585 mΩ
VOUT_DROOP = 0xD0A7 2.5437 2.609 2.6742 mΩ
VOUT_DROOP = 0xD0A8 2.5593 2.625 2.6906 mΩ
VOUT_DROOP = 0xD0A9 2.5745 2.6406 2.7066 mΩ
VOUT_DROOP = 0xD0AA 2.5897 2.6562 2.7226 mΩ
VOUT_DROOP = 0xD0AB 2.6050 2.6718 2.7385 mΩ
VOUT_DROOP = 0xD0AC 2.6203 2.6875 2.7546 mΩ
VOUT_DROOP = 0xD0B0 2.6812 2.75 2.8187 mΩ
VOUT_DROOP = 0xD0B8 2.8031 2.875 2.9468 mΩ
VOUT_DROOP = 0xD0C0 2.925 3 3.075 mΩ
VOUT_DROOP = 0xD0C8 3.0468 3.125 3.2031 mΩ
DCLLChannel B DC Loadline settings for Channel B VOUT_DROOP = 0xD000 0 mΩ
VOUT_DROOP = 0xD008 0.1125 0.125 0.1395 mΩ
VOUT_DROOP = 0xD010 0.2355 0.25 0.2625 mΩ
VOUT_DROOP = 0xD014 0.297 0.3125 0.3234 mΩ
VOUT_DROOP = 0xD018 0.3637 0.375 0.395 mΩ
VOUT_DROOP = 0xD01C 0.4244 0.4375 0.454 mΩ
VOUT_DROOP = 0xD020 0.4875 0.5 0.517 mΩ
VOUT_DROOP = 0xD024 0.5464 0.5625 0.5786 mΩ
VOUT_DROOP = 0xD028 0.6093 0.625 0.648 mΩ
VOUT_DROOP = 0xD030 0.6855 0.7031 0.7207 mΩ
VOUT_DROOP = 0xD033 0.7769 0.7969 0.8168 mΩ
VOUT_DROOP = 0xD034 0.7921 0.8125 0.8335 mΩ
VOUT_DROOP = 0xD035 0.8073 0.8281 0.852 mΩ
VOUT_DROOP = 0xD036 0.8227 0.8438 0.8648 mΩ
VOUT_DROOP = 0xD037 0.8379 0.8594 0.8815 mΩ
VOUT_DROOP = 0xD038 0.8531 0.875 0.8968 mΩ
ACLL AC Loadline settings for both Channel A and Channel B(1) MFR_SPECIFIC_07 = 0x00 0 mΩ
MFR_SPECIFIC_07 = 0x01 0.1125 0.125 0.1395 mΩ
MFR_SPECIFIC_07 = 0x02 0.2412 0.25 0.2587 mΩ
MFR_SPECIFIC_07 = 0x03 0.3031 0.3125 0.3218 mΩ
MFR_SPECIFIC_07 = 0x04 0.3637 0.375 0.3862 mΩ
MFR_SPECIFIC_07 = 0x05 0.4265 0.4375 0.4484 mΩ
MFR_SPECIFIC_07 = 0x06 0.4875 0.5 0.5125 mΩ
MFR_SPECIFIC_07 = 0x07 0.5484 0.5625 0.5765 mΩ
MFR_SPECIFIC_07 = 0x08 0.6093 0.625 0.6406 mΩ
MFR_SPECIFIC_07 = 0x09 0.7312 0.75 0.7687 mΩ
MFR_SPECIFIC_07 = 0x0A 0.7769 0.7969 0.8168 mΩ
MFR_SPECIFIC_07 = 0x0B 0.7921 0.8125 0.8328 mΩ
MFR_SPECIFIC_07 = 0x0C 0.8073 0.8281 0.8488 mΩ
MFR_SPECIFIC_07 = 0x0D 0.8227 0.8438 0.8648 mΩ
MFR_SPECIFIC_07 = 0x0E 0.8379 0.8594 0.8808 mΩ
MFR_SPECIFIC_07 = 0x0F 0.8531 0.875 0.8968 mΩ
MFR_SPECIFIC_07 = 0x10 0.8683 0.8906 0.9128 mΩ
MFR_SPECIFIC_07 = 0x11 0.8836 0.9063 0.9289 mΩ
MFR_SPECIFIC_07 = 0x12 0.8988 0.9219 0.9449 mΩ
MFR_SPECIFIC_07 = 0x13 0.9140 0.9375 0.9609 mΩ
MFR_SPECIFIC_07 = 0x14 0.9292 0.9531 0.9769 mΩ
MFR_SPECIFIC_07 = 0x15 0.9445 0.9688 0.9930 mΩ
MFR_SPECIFIC_07 = 0x16 0.9597 0.9844 1.0090 mΩ
MFR_SPECIFIC_07 = 0x17 0.975 1 1.025 mΩ
MFR_SPECIFIC_07 = 0x18 0.9902 1.0156 1.0409 mΩ
MFR_SPECIFIC_07 = 0x19 1.0055 1.0313 1.0570 mΩ
MFR_SPECIFIC_07 = 0x1A 1.0207 1.0469 1.0730 mΩ
MFR_SPECIFIC_07 = 0x1B 1.0359 1.0625 1.0890 mΩ
MFR_SPECIFIC_07 = 0x1C 1.0968 1.125 1.1531 mΩ
MFR_SPECIFIC_07 = 0x1D 1.2187 1.25 1.2812 mΩ
MFR_SPECIFIC_07 = 0x1E 1.3406 1.375 1.4093 mΩ
MFR_SPECIFIC_07 = 0x1F 1.4625 1.5 1.5375 mΩ
MFR_SPECIFIC_07 = 0x20 1.5843 1.625 1.6656 mΩ
MFR_SPECIFIC_07 = 0x21 1.7062 1.75 1.7937 mΩ
MFR_SPECIFIC_07 = 0x22 1.8281 1.875 1.9218 mΩ
MFR_SPECIFIC_07 = 0x23 1.8890 1.9375 1.9859 mΩ
MFR_SPECIFIC_07 = 0x24 1.95 2 2.05 mΩ
MFR_SPECIFIC_07 = 0x25 2.0109 2.0625 2.1140 mΩ
MFR_SPECIFIC_07 = 0x26 2.0718 2.125 2.1781 mΩ
MFR_SPECIFIC_07 = 0x27 2.1328 2.1875 2.2421 mΩ
MFR_SPECIFIC_07 = 0x28 2.1937 2.25 2.3062 mΩ
MFR_SPECIFIC_07 = 0x29 2.3156 2.375 2.4343 mΩ
MFR_SPECIFIC_07 = 0x2A 2.3612 2.4218 2.4823 mΩ
MFR_SPECIFIC_07 = 0x2B 2.3765 2.4375 2.4984 mΩ
ACLL AC Loadline settings for both Channel A and Channel B(1) MFR_SPECIFIC_07 = 0x2C 2.3917 2.4531 2.5144 mΩ
MFR_SPECIFIC_07 = 0x2D 2.4069 2.4687 2.5304 mΩ
MFR_SPECIFIC_07 = 0x2E 2.4221 2.4843 2.5464 mΩ
MFR_SPECIFIC_07 = 0x2F 2.4375 2.5 2.5625 mΩ
MFR_SPECIFIC_07 = 0x30 2.4527 2.5156 2.5784 mΩ
MFR_SPECIFIC_07 = 0x31 2.4679 2.5312 2.5944 mΩ
MFR_SPECIFIC_07 = 0x32 2.4831 2.5468 2.6104 mΩ
MFR_SPECIFIC_07 = 0x33 2.4984 2.5625 2.6265 mΩ
MFR_SPECIFIC_07 = 0x34 2.5136 2.5781 2.6425 mΩ
MFR_SPECIFIC_07 = 0x35 2.5288 2.5937 2.6585 mΩ
MFR_SPECIFIC_07 = 0x36 2.5437 2.609 2.6742 mΩ
MFR_SPECIFIC_07 = 0x37 2.5593 2.625 2.6906 mΩ
MFR_SPECIFIC_07 = 0x38 2.5745 2.6406 2.7066 mΩ
MFR_SPECIFIC_07 = 0x39 2.5897 2.6562 2.7226 mΩ
MFR_SPECIFIC_07 = 0x3A 2.6050 2.6718 2.7385 mΩ
MFR_SPECIFIC_07 = 0x3B 2.6203 2.6875 2.7546 mΩ
MFR_SPECIFIC_07 = 0x3C 2.6812 2.75 2.8187 mΩ
MFR_SPECIFIC_07 = 0x3D 2.8031 2.875 2.9468 mΩ
MFR_SPECIFIC_07 = 0x3E 2.925 3 3.075 mΩ
MFR_SPECIFIC_07 = 0x3F 3.0468 3.125 3.2031 mΩ
tINT Integration time constant(1) MFR_SPEC_7<11:8> = 0000b 5 µs
MFR_SPEC_7<11:8> = 0001b 10 µs
MFR_SPEC_7<11:8> = 0010b 15 µs
MFR_SPEC_7<11:8> = 0011b 20 µs
MFR_SPEC_7<11:8> = 0100b 25 µs
MFR_SPEC_7<11:8> = 0101b 30 µs
MFR_SPEC_7<11:8> = 0110b 35 µs
MFR_SPEC_7<11:8> = 0111b 40 µs
MFR_SPEC_7<11:8> = 1000b 1 µs
MFR_SPEC_7<11:8> = 1001b 2 µs
MFR_SPEC_7<11:8> = 1010b 3 µs
MFR_SPEC_7<11:8> = 1011b 4 µs
MFR_SPEC_7<11:8> = 1100b 5 µs
MFR_SPEC_7<11:8> = 1101b 6 µs
MFR_SPEC_7<11:8> = 1110b 7 µs
MFR_SPEC_7<11:8> = 1111b 8 µs