ASUS ROG STRIX B760-I - v1820 Changelog
Firmware version 1820:
- Release Date: 27/05/2025
- Microcode:
0x12F
- Important: The undervolting options require to set microcode to
0x104.
See the post below for more info.
Unsuppressed Menu Options
The following options, identified by their hexadecimal offsets, have been revealed using UEFITools.
These previously hidden settings, or entire submenus have now been made visible.
0x6E29C, 0x73B0E, 0x73B39, 0x73B73, 0x73C23, 0x789E1, 0x78BB1, 0x7CF4B,
0x8B008, 0x8B083, 0x8B13B, 0x8B16C, 0x8B133, 0x8B218, 0x8B04B, 0x8B351,
0x8B2E7, 0x9E33C, 0x9E371, 0x9E3D3, 0x9E42D, 0x9E475, 0x9E3CB, 0xAC429
Unlocked Access Level Settings
UEFITools was used to change the “Access Level” from 09 (Supervisor) to 01 (User), which unlocked hidden settings. This process included removing dependencies for certain options, such as those with Access Level 29 (hidden until another setting is toggled).
System Locks
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| CFG Lock |
0x5A5 |
09 → 01 |
Critical for Hackintosh. Disables MSR 0xE2 lock, allowing macOS to manage power states natively. |
| Overclocking Lock |
0x5A6 |
09 → 01 |
Disables lock that prevents OS-based overclocking utilities from functioning. |
| BIOS Lock |
0xF60 |
09 → 01 |
Disables protection against unauthorized BIOS flashing from within the OS. |
| RTC Memory Lock |
0xF5F |
09 → 01 |
Unlocks Real-Time Clock memory protection. |
| Force unlock on GPIO |
0xF61 |
09 → 01 |
Unlocks all General-Purpose I/O pads from a locked state. |
Virtualization
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| VT-d |
0x2776 |
09 → 01 |
Unlocks Intel Virtualization Technology for Directed I/O. Must be disabled for most Hackintosh setups unless IOMMU is properly configured. |
Overclocking & Voltage
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| OverClocking Feature |
0x2831 |
29 → 01 |
Unlocks the main overclocking menu/features. |
| UnderVolt Protection |
0x129 |
09 → 01 |
Disables undervolt protection, allowing voltage control from the OS. |
| UnderVolt Protection |
0x1144 |
09 → 01 |
A secondary setting related to undervolting. |
| Easy OverClocking |
0x13CC |
09 → 01 |
Enables a simplified, high-level overclocking menu. |
Network Controllers
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| Intel LAN Controller |
0xA17 |
09 → 01 |
Unlocks the toggle to enable/disable the onboard Intel LAN controller. |
| Foxville I225 LAN |
0xA1B |
09 → 01 |
Unlocks the toggle for the specific I225 (2.5GbE) LAN controller. |
| Wake on LAN Enable |
0xA19 |
09 → 01 |
Unlocks Wake on LAN settings. |
| LAN Wake From DeepSx |
0xA18 |
09 → 01 |
Unlocks Wake on LAN from deep sleep states (S4/S5). |
| Foxville I225 WoL |
0xA1C |
09 → 01 |
Wake on LAN specific to the I225 controller. |
Wireless & Power
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| Wake on WLAN/BT |
0xA20 |
09 → 01 |
Unlocks Wake on WLAN / Bluetooth settings. |
| DeepSx Wake WLAN/BT |
0xA21 |
09 → 01 |
Wake on WLAN/BT from deep sleep states. |
| Low Power S0 Idle |
0x271C |
29 → 01 |
Unlocks modern standby (S0ix) low power idle settings. |
| WDT Enable |
0x1146 |
09 → 01 |
Unlocks the Watchdog Timer setting. |
BCLK Settings
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| CPU BCLK OC Freq |
0x1147 |
09 → 01 |
Unlocks manual Base Clock (BCLK) frequency overclocking. |
| BCLK Adaptive Voltage |
0x1148 |
09 → 01 |
Unlocks adaptive voltage control relative to BCLK changes. |
| PVD Ratio Threshold |
0x1149 |
09 → 01 |
Unlocks Power-Velocity-Droop ratio threshold settings. |
| FLL Overclock Mode |
0x114A |
09 → 01 |
Unlocks Frequency-Locked Loop (FLL) overclocking mode. |
| FLL Overclock Select |
0x114B |
09 → 01 |
Unlocks FLL overclocking ratio selection. |
| SA PLL Freq Override |
0x114C |
09 → 01 |
Unlocks System Agent Phase-Locked Loop frequency override. |
| BCLK TSC HW Fixup |
0x114D |
09 → 01 |
Unlocks a fixup for the Time Stamp Counter when BCLK is modified. |
Security & Miscellaneous
| Setting Name |
Question ID |
Access Level |
Purpose / Implication |
| Runtime Var Password |
0x130A |
09 → 01 |
Disables password protection for modifying runtime UEFI variables. |
| BIOS Image Rollback |
0x3051 |
29 → 01 |
Disables protection against rolling back to an older BIOS version. |
| Publish HII Resources |
0x13C7 |
09 → 01 |
Unlocks publishing of Human Interface Infrastructure resources. |
Hex Editor - Voltage Menu Unlocking
This section details the direct hex modifications required to unhide advanced voltage control options.
Legend & Modification Strategy
The strategy is to make minimal changes to defeat SuppressIf conditions in the firmware logic. This is achieved by:
- Changing a logical
True to False.
- Changing a logical
Not to False.
- Changing a comparison value in a check to an impossible value (e.g.,
0xFF).
Detailed Hex Edits by Setting
The following tables document the specific byte changes made within the setup.sct file.
Global Core SVID Voltage (QuestionId: 0x2CDA)
| Address |
Original |
Modified |
Purpose |
6A6CE |
01 |
FF |
Defeats a wrapper check for Offset Mode. |
6A6E2 |
00 |
FF |
Unhides Offset Mode by breaking the Switch Microcode (0x2DAE) check. |
6A6FD |
00 |
FF |
Defeats a wrapper check for Adaptive Mode. |
6A711 |
17 02 |
47 02 |
Unhides Adaptive Mode by changing a logical Not to False. |
6A71B |
01 |
FF |
Unhides Adaptive Mode by changing an EqIdVal check to an impossible value. |
Cache SVID Voltage (QuestionId: 0x2CDE)
| Address |
Original |
Modified |
Purpose |
6A86D |
01 |
FF |
Defeats a wrapper check for Offset Mode. |
6A881 |
00 |
FF |
Unhides Offset Mode by breaking the Switch Microcode (0x2DAE) check. |
6A89C |
00 |
FF |
Defeats a wrapper check for Adaptive Mode. |
6A8B0 |
17 02 |
47 02 |
Unhides Adaptive Mode by changing a logical Not to False. |
CPU Graphics Voltage (QuestionId: 0x2CE2)
| Address |
Original |
Modified |
Purpose |
6A9DB |
00 |
FF |
Unhides the entire section by breaking the iGPU presence check (0x1540). |
CPU L2 Voltage (QuestionId: 0x2CE5)
| Address |
Original |
Modified |
Purpose |
6AAB5 |
00 |
FF |
Unhides the entire section by breaking the E-Core presence check (0x1592). |
6AAD7 |
46 02 |
47 02 |
Unhides Offset Mode by changing a logical True to False. |
6AAF0 |
00 |
FF |
Defeats a wrapper check for Adaptive Mode. |
6AB04 |
17 02 |
47 02 |
Unsuppresses Adaptive Mode by changing a logical Not to False. |
IFR Code
This what the above changes look like in the IFR extract of setup.sct
0x6A6A1: OneOf Prompt: "Global Core SVID Voltage", Help: "Configure the global Core Voltage requested by the cores. Result may be influenced by Actual VRM Core Voltage.", QuestionFlags: 0x10, QuestionId: 0x2CDA, VarStoreId: 0x30, VarOffset: 0x16B, Flags: 0x10, Size: 8, Min: 0x0, Max: 0x3, Step: 0x0 { 05 91 FC 27 FD 27 DA 2C 30 00 6B 01 10 10 00 03 00 }
0x6A6B2: OneOfOption Option: "Auto" Value: 0, Default { 09 07 08 27 10 00 00 }
0x6A6B9: OneOfOption Option: "Manual Mode" Value: 1 { 09 07 93 27 00 00 01 }
0x6A6C0: SuppressIf { 0A 82 }
0x6A6C2: Uint64 Value: 0x0 { 45 8A 00 00 00 00 00 00 00 00 }
-0x6A6CC: Uint64 Value: 0x1 { 45 0A 01 00 00 00 00 00 00 00 }
+0x6A6CC: Uint64 Value: 0xFF { 45 0A FF 00 00 00 00 00 00 00 } //Unsuppress ?
0x6A6D6: Equal { 2F 02 }
0x6A6D8: End { 29 02 }
0x6A6DA: SuppressIf { 0A 82 }
-0x6A6DC: EqIdValList QuestionId: 0x2DAE, Values: [0] { 14 08 AE 2D 01 00 00 00 }
+0x6A6DC: EqIdValList QuestionId: 0x2DAE, Values: [255] { 14 08 AE 2D 01 00 FF 00 } // Unsuppress Global Core SVID Voltage Offset mode
0x6A6E4: OneOfOption Option: "Offset Mode" Value: 2 { 09 07 94 27 00 00 02 }
0x6A6EB: End { 29 02 }
0x6A6ED: End { 29 02 }
0x6A6EF: SuppressIf { 0A 82 }
0x6A6F1: Uint64 Value: 0x0 { 45 8A 00 00 00 00 00 00 00 00 }
-0x6A6FB: Uint64 Value: 0x0 { 45 0A 00 00 00 00 00 00 00 00 }
+0x6A6FB: Uint64 Value: 0xFF { 45 0A FF 00 00 00 00 00 00 00 } // Unsuppress ?
0x6A707: End { 29 02 }
0x6A709: SuppressIf { 0A 82 }
0x6A70B: EqIdVal QuestionId: 0x1573, Value: 0x7 { 12 86 73 15 07 00 }
-0x6A711: Not { 17 02 }
+0x6A711: False { 47 02 }
0x6A713: End { 29 02 }
0x6A715: SuppressIf { 0A 82 }
-0x6A717: EqIdVal QuestionId: 0x1593, Value: 0x1 { 12 06 93 15 01 00 }
+0x6A717: EqIdVal QuestionId: 0x1593, Value: 0xFF { 12 06 93 15 FF 00 } // Unsuppress Global Core SVID Voltage Adaptive Mode
0x6A71D: OneOfOption Option: "Adaptive Mode" Value: 3 { 09 07 95 27 00 00 03 }
0x6A724: End { 29 02 }
0x6A726: End { 29 02 }
0x6A728: End { 29 02 }
0x6A72A: End { 29 02 }
0x6A72C: SuppressIf { 0A 82 }
0x6A72E: EqIdValList QuestionId: 0x2CDA, Values: [0, 2, 3] { 14 0C DA 2C 03 00 00 00 02 00 03 00 }
0x6A73A: String Prompt: " - CPU Core Voltage Override", Help: "Configure the voltage for the CPU Core.
...
0x6A840: OneOf Prompt: "Cache SVID Voltage", Help: "Configure the Cache Voltage requested by the Ring Domain. Result may be influenced Actual VRM Vore Voltage.", QuestionFlags: 0x10, QuestionId: 0x2CDE, VarStoreId: 0x30, VarOffset: 0x183, Flags: 0x10, Size: 8, Min: 0x0, Max: 0x3, Step: 0x0 { 05 91 12 28 13 28 DE 2C 30 00 83 01 10 10 00 03 00 }
0x6A851: OneOfOption Option: "Auto" Value: 0, Default { 09 07 08 27 10 00 00 }
0x6A858: OneOfOption Option: "Manual Mode" Value: 1 { 09 07 93 27 00 00 01 }
0x6A85F: SuppressIf { 0A 82 }
0x6A861: Uint64 Value: 0x0 { 45 8A 00 00 00 00 00 00 00 00 }
-0x6A86B: Uint64 Value: 0x1 { 45 0A 01 00 00 00 00 00 00 00 }
+0x6A86B: Uint64 Value: 0xFF { 45 0A FF 00 00 00 00 00 00 00 }
0x6A875: Equal { 2F 02 }
0x6A877: End { 29 02 }
0x6A879: SuppressIf { 0A 82 }
-0x6A87B: EqIdValList QuestionId: 0x2DAE, Values: [0] { 14 08 AE 2D 01 00 00 00 }
+0x6A87B: EqIdValList QuestionId: 0x2DAE, Values: [0] { 14 08 AE 2D 01 00 FF 00 } // Unsuppress Cache SVID Voltage Offset mode
0x6A883: OneOfOption Option: "Offset Mode" Value: 2 { 09 07 94 27 00 00 02 }
0x6A88A: End { 29 02 }
0x6A88C: End { 29 02 }
0x6A88E: SuppressIf { 0A 82 }
0x6A890: Uint64 Value: 0x0 { 45 8A 00 00 00 00 00 00 00 00 }
-0x6A89A: Uint64 Value: 0x0 { 45 0A 00 00 00 00 00 00 00 00 }
+0x6A89A: Uint64 Value: 0x0 { 45 0A FF 00 00 00 00 00 00 00 } //Unsuppress ?
0x6A8A4: Equal { 2F 02 }
0x6A8A6: End { 29 02 }
0x6A8A8: SuppressIf { 0A 82 }
0x6A8AA: EqIdVal QuestionId: 0x1573, Value: 0x7 { 12 86 73 15 07 00 }
-0x6A8B0: Not { 17 02 }
+0x6A8B0: False { 47 02 } // Unsuppress Cache SVID Voltage Adaptive Mode
0x6A8B2: End { 29 02 }
0x6A8B4: OneOfOption Option: "Adaptive Mode" Value: 3 { 09 07 95 27 00 00 03 }
0x6A8BB: End { 29 02 }
0x6A8BD: End { 29 02 }
0x6A8BF: End { 29 02 }
0x6A8C1: SuppressIf { 0A 82 }
0x6A8C3: EqIdValList QuestionId: 0x2CDE, Values: [0, 2, 3] { 14 0C DE 2C 03 00 00 00 02 00 03 00 }
0x6A8CF: String Prompt: " - Cache Voltage Override", Help: "Configure the voltage for the Cache.
...
Min.: 0.001V | Max.: 0.999V | Standard: By CPU | Increment: 0.001V", QuestionFlags: 0x0, QuestionId: 0x49, VarStoreId: 0x30, VarOffset: 0x189, Flags: 0x11, Size: 16, Min: 0x0, Max: 0xFFFF, Step: 0x1 { 07 94 1A 28 1B 28 49 00 30 00 89 01 00 11 00 00 FF FF 01 00 }
0x6A9B0: Default DefaultId: 0x0 Value: 0 { 5B 07 00 00 01 00 00 }
0x6A9B7: End { 29 02 }
0x6A9B9: End { 29 02 }
0x6A9BB: End { 29 02 }
0x6A9BD: SuppressIf { 0A 82 }
0x6A9BF: EqIdValList QuestionId: 0x2CDE, Values: [0, 1, 2] { 14 0C DE 2C 03 00 00 00 01 00 02 00 }
0x6A9CB: Text Prompt: "Total Adaptive Mode Cache Voltage", Help: "Total Adaptive Mode Cache Voltage", Text: "By CPU" { 03 08 1C 28 1C 28 1D 28 }
0x6A9D3: End { 29 02 }
0x6A9D5: SuppressIf { 0A 82 }
-0x6A9D7: EqIdVal QuestionId: 0x1540, Value: 0x0 { 12 06 40 15 00 00 }
+0x6A9D7: EqIdVal QuestionId: 0x1540, Value: 0xFF { 12 06 40 15 FF 00 }
0x6A9DD: OneOf Prompt: "CPU Graphics Voltage", Help: "Configure the mode of voltage fed to the CPU Graphics. Manual mode allows user-defined values. Offset mode modifies values by SVID.", QuestionFlags: 0x10, QuestionId: 0x2CE2, VarStoreId: 0x30, VarOffset: 0x173, Flags: 0x10, Size: 8, Min: 0x0, Max: 0x2, Step: 0x0 { 05 91 39 28 3A 28 E2 2C 30 00 73 01 10 10 00 02 00 }
0x6A9EE: OneOfOption Option: "Auto" Value: 0, Default { 09 07 08 27 10 00 00 }
0x6A9F5: OneOfOption Option: "Manual Mode" Value: 1 { 09 07 93 27 00 00 01 }
0x6A9FC: OneOfOption Option: "Offset Mode" Value: 2 { 09 07 94 27 00 00 02 }
0x6AA03: End { 29 02 }
0x6AA05: SuppressIf { 0A 82 }
0x6AA07: EqIdValList QuestionId: 0x2CE2, Values: [0, 2] { 14 0A E2 2C 02 00 00 00 02 00 }
0x6AA11: String Prompt: " - CPU Graphics Voltage Override", Help: "Configure the voltage for the CPU Graphics.
...
Min.: 0.005V | Max.: 0.635V | Standard: By CPU | Increment: 0.005V", QuestionFlags: 0x0, QuestionId: 0x4C, VarStoreId: 0x30, VarOffset: 0x177, Flags: 0x11, Size: 16, Min: 0x0, Max: 0xFFFF, Step: 0x1 { 07 94 3F 28 40 28 4C 00 30 00 77 01 00 11 00 00 FF FF 01 00 }
0x6AA9F: Default DefaultId: 0x0 Value: 0 { 5B 07 00 00 01 00 00 }
0x6AAA6: End { 29 02 }
0x6AAA8: End { 29 02 }
0x6AAAA: End { 29 02 }
0x6AAAC: End { 29 02 }
0x6AAAE: SuppressIf { 0A 82 }
-0x6AAB0: EqIdVal QuestionId: 0x1592, Value: 0x0 { 12 06 92 15 00 00 }
+0x6AAB0: EqIdVal QuestionId: 0x1592, Value: 0xFF { 12 06 92 15 FF 00 }
...
0x6AAB6: OneOf Prompt: "CPU L2 Voltage", Help: "Configure the voltage for the CPU L2. This may help for sustaining high clock speeds.", QuestionFlags: 0x10, QuestionId: 0x2CE5, VarStoreId: 0x30, VarOffset: 0x179, Flags: 0x10, Size: 8, Min: 0x0, Max: 0x3, Step: 0x0 { 05 91 04 28 05 28 E5 2C 30 00 79 01 10 10 00 03 00 }
0x6AAC7: OneOfOption Option: "Auto" Value: 0, Default { 09 07 08 27 10 00 00 }
0x6AACE: OneOfOption Option: "Manual Mode" Value: 1 { 09 07 93 27 00 00 01 }
0x6AAD5: SuppressIf { 0A 82 }
-0x6AAD7: True { 46 02 }
+0x6AAD7: False { 47 02 }
0x6AAD9: OneOfOption Option: "Offset Mode" Value: 2 { 09 07 94 27 00 00 02 }
0x6AAE0: End { 29 02 }
0x6AAE2: SuppressIf { 0A 82 }
0x6AAE4: Uint64 Value: 0x0 { 45 8A 00 00 00 00 00 00 00 00 }
-0x6AAEE: Uint64 Value: 0x0 { 45 0A 00 00 00 00 00 00 00 00 }
+0x6AAEE: Uint64 Value: 0xFF { 45 0A FF 00 00 00 00 00 00 00 }
0x6AAF8: Equal { 2F 02 }
0x6AAFA: End { 29 02 }
0x6AAFC: SuppressIf { 0A 82 }
0x6AAFE: EqIdVal QuestionId: 0x1573, Value: 0x7 { 12 86 73 15 07 00 }
-0x6AB04: Not { 17 02 }
+0x6AB04: False { 47 02 }
0x6AB06: End { 29 02 }
0x6AB08: OneOfOption Option: "Adaptive Mode" Value: 3 { 09 07 95 27 00 00 03 }
0x6AB0F: End { 29 02 }
0x6AB11: End { 29 02 }
0x6AB13: End { 29 02 }
0x6AB15: SuppressIf { 0A 82 }
0x6AB17: EqIdValList QuestionId: 0x2CE5, Values: [0, 2, 3] { 14 0C E5 2C 03 00 00 00 02 00 03 00 }
0x6AB23: String Prompt: " - CPU L2 Voltage Override", Help: "Configure the voltage for the CPU L2.
Hex Block Replacements
Original Hex Sequence
05 91 FC 27 FD 27 DA 2C 30 00 6B 01 10 10 00 03 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A 01 00 00 00 00 00 00 00 2F 02 29 02 0A 82 14 08 AE 2D 01 00 00 00 09 07 94 27 00 00 02 29 02 29 02 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A 00 00 00 00 00 00 00 00 2F 02 29 02 0A 82 12 86 73 15 07 00 17 02 29 02 0A 82 12 06 93 15 01 00 09 07 95 27 00 00 03 29 02 29 02 29 02 29 02 0A 82 14 0C DA 2C 03 00 00 00 02 00 03 00 1C 90 FE 27 FF 27 DB 2C 30 00 1C 13 14 00 14 00 29 02 0A 82 46 02 07 94 FE 27 FF 27 42 00 30 00 6C 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DA 2C 02 00 00 00 01 00 05 91 F0 27 F1 27 43 00 30 00 6E 01 10 10 00 01 00 09 07 97 27 00 00 01 09 07 96 27 10 00 00 29 02 29 02 0A 82 14 0C DA 2C 03 00 00 00 01 00 02 00 1C 90 F8 27 F9 27 DC 2C 30 00 CC 12 14 00 14 00 29 02 0A 82 46 02 07 94 F8 27 F9 27 44 00 30 00 67 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DA 2C 02 00 00 00 01 00 1C 90 F6 27 F7 27 DD 2C 30 00 F4 12 14 00 14 00 29 02 0A 82 46 02 07 94 F6 27 F7 27 45 00 30 00 69 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0C DA 2C 03 00 00 00 01 00 02 00 03 08 FA 27 FA 27 FB 27 29 02 05 91 12 28 13 28 DE 2C 30 00 83 01 10 10 00 03 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A 01 00 00 00 00 00 00 00 2F 02 29 02 0A 82 14 08 AE 2D 01 00 00 00 09 07 94 27 00 00 02 29 02 29 02 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A 00 00 00 00 00 00 00 00 2F 02 29 02 0A 82 12 86 73 15 07 00 17 02 29 02 09 07 95 27 00 00 03 29 02 29 02 29 02 0A 82 14 0C DE 2C 03 00 00 00 02 00 03 00 1C 90 14 28 15 28 DF 2C 30 00 84 14 14 00 14 00 29 02 0A 82 46 02 07 94 14 28 15 28 46 00 30 00 84 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DE 2C 02 00 00 00 01 00 05 91 16 28 17 28 47 00 30 00 86 01 10 10 00 01 00 09 07 97 27 00 00 01 09 07 96 27 10 00 00 29 02 29 02 0A 82 14 0C DE 2C 03 00 00 00 01 00 02 00 1C 90 18 28 19 28 E0 2C 30 00 AC 14 14 00 14 00 29 02 0A 82 46 02 07 94 18 28 19 28 48 00 30 00 87 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DE 2C 02 00 00 00 01 00 1C 90 1A 28 1B 28 E1 2C 30 00 D4 14 14 00 14 00 29 02 0A 82 46 02 07 94 1A 28 1B 28 49 00 30 00 89 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0C DE 2C 03 00 00 00 01 00 02 00 03 08 1C 28 1C 28 1D 28 29 02 0A 82 12 06 40 15 00 00 05 91 39 28 3A 28 E2 2C 30 00 73 01 10 10 00 02 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 09 07 94 27 00 00 02 29 02 0A 82 14 0A E2 2C 02 00 00 00 02 00 1C 90 3B 28 3C 28 E3 2C 30 00 94 13 14 00 14 00 29 02 0A 82 46 02 07 94 3B 28 3C 28 4A 00 30 00 74 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A E2 2C 02 00 00 00 01 00 05 91 3D 28 3E 28 4B 00 30 00 76 01 10 10 00 01 00 09 07 96 27 10 00 00 09 07 97 27 00 00 01 29 02 1C 90 3F 28 40 28 E4 2C 30 00 BC 13 14 00 14 00 29 02 0A 82 46 02 07 94 3F 28 40 28 4C 00 30 00 77 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 29 02 0A 82 12 06 92 15 00 00 05 91 04 28 05 28 E5 2C 30 00 79 01 10 10 00 03 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 0A 82 46 02 09 07 94 27 00 00 02 29 02 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A 00 00 00 00 00 00 00 00 2F 02 29 02 0A 82 12 86 73 15 07 00 17 02 29 02 09 07 95 27 00 00 03 29 02 29 02 29 02 0A 82 14 0C E5 2C 03 00 00 00 02 00 03 00 1C
Modified Hex Sequence
05 91 FC 27 FD 27 DA 2C 30 00 6B 01 10 10 00 03 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A FF 00 00 00 00 00 00 00 2F 02 29 02 0A 82 14 08 AE 2D 01 00 FF 00 09 07 94 27 00 00 02 29 02 29 02 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A FF 00 00 00 00 00 00 00 2F 02 29 02 0A 82 12 86 73 15 07 00 47 02 29 02 0A 82 12 06 93 15 FF 00 09 07 95 27 00 00 03 29 02 29 02 29 02 29 02 0A 82 14 0C DA 2C 03 00 00 00 02 00 03 00 1C 90 FE 27 FF 27 DB 2C 30 00 1C 13 14 00 14 00 29 02 0A 82 46 02 07 94 FE 27 FF 27 42 00 30 00 6C 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DA 2C 02 00 00 00 01 00 05 91 F0 27 F1 27 43 00 30 00 6E 01 10 10 00 01 00 09 07 97 27 00 00 01 09 07 96 27 10 00 00 29 02 29 02 0A 82 14 0C DA 2C 03 00 00 00 01 00 02 00 1C 90 F8 27 F9 27 DC 2C 30 00 CC 12 14 00 14 00 29 02 0A 82 46 02 07 94 F8 27 F9 27 44 00 30 00 67 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DA 2C 02 00 00 00 01 00 1C 90 F6 27 F7 27 DD 2C 30 00 F4 12 14 00 14 00 29 02 0A 82 46 02 07 94 F6 27 F7 27 45 00 30 00 69 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0C DA 2C 03 00 00 00 01 00 02 00 03 08 FA 27 FA 27 FB 27 29 02 05 91 12 28 13 28 DE 2C 30 00 83 01 10 10 00 03 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A FF 00 00 00 00 00 00 00 2F 02 29 02 0A 82 14 08 AE 2D 01 00 FF 00 09 07 94 27 00 00 02 29 02 29 02 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A FF 00 00 00 00 00 00 00 2F 02 29 02 0A 82 12 86 73 15 07 00 47 02 29 02 09 07 95 27 00 00 03 29 02 29 02 29 02 0A 82 14 0C DE 2C 03 00 00 00 02 00 03 00 1C 90 14 28 15 28 DF 2C 30 00 84 14 14 00 14 00 29 02 0A 82 46 02 07 94 14 28 15 28 46 00 30 00 84 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DE 2C 02 00 00 00 01 00 05 91 16 28 17 28 47 00 30 00 86 01 10 10 00 01 00 09 07 97 27 00 00 01 09 07 96 27 10 00 00 29 02 29 02 0A 82 14 0C DE 2C 03 00 00 00 01 00 02 00 1C 90 18 28 19 28 E0 2C 30 00 AC 14 14 00 14 00 29 02 0A 82 46 02 07 94 18 28 19 28 48 00 30 00 87 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A DE 2C 02 00 00 00 01 00 1C 90 1A 28 1B 28 E1 2C 30 00 D4 14 14 00 14 00 29 02 0A 82 46 02 07 94 1A 28 1B 28 49 00 30 00 89 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0C DE 2C 03 00 00 00 01 00 02 00 03 08 1C 28 1C 28 1D 28 29 02 0A 82 12 06 40 15 FF 00 05 91 39 28 3A 28 E2 2C 30 00 73 01 10 10 00 02 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 09 07 94 27 00 00 02 29 02 0A 82 14 0A E2 2C 02 00 00 00 02 00 1C 90 3B 28 3C 28 E3 2C 30 00 94 13 14 00 14 00 29 02 0A 82 46 02 07 94 3B 28 3C 28 4A 00 30 00 74 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 0A 82 14 0A E2 2C 02 00 00 00 01 00 05 91 3D 28 3E 28 4B 00 30 00 76 01 10 10 00 01 00 09 07 96 27 10 00 00 09 07 97 27 00 00 01 29 02 1C 90 3F 28 40 28 E4 2C 30 00 BC 13 14 00 14 00 29 02 0A 82 46 02 07 94 3F 28 40 28 4C 00 30 00 77 01 00 11 00 00 FF FF 01 00 5B 07 00 00 01 00 00 29 02 29 02 29 02 29 02 0A 82 12 06 92 15 FF 00 05 91 04 28 05 28 E5 2C 30 00 79 01 10 10 00 03 00 09 07 08 27 10 00 00 09 07 93 27 00 00 01 0A 82 47 02 09 07 94 27 00 00 02 29 02 0A 82 45 8A 00 00 00 00 00 00 00 00 45 0A FF 00 00 00 00 00 00 00 2F 02 29 02 0A 82 12 86 73 15 07 00 47 02 29 02 09 07 95 27 00 00 03 29 02 29 02 29 02 0A 82 14 0C E5 2C 03 00 00 00 02 00 03 00 1C
Download
Download Link: B760-I_1820_MOD.BIN
SHA256: 677BB0842ACAFD9AEA317BFAC663B29E78A26E12362F21177D4FBD36E8667A52
MD5: EFDB432BBC6C32F85B283A156AD8BB76