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1. support immo tools It How to write file to IMMO06 v Open file you want to write v Check for checksum validity of data block 0x64 0x78 Mark that area click right mouse button and choose Checksum 8bit item Fix it to calculated value at address 0x79 if necessary ADVANCED SCOOTER WORKSHOP V2 5 Open Save s G Delphi Proj MOTORGLER Wewest NEC 78K0 CAN_KLINE TOOL Delphi VO0 04 IMMO06_EEPROM bin 02 03 _ 06 07 07 09 OA OB OE OF 0123456789ABCDEF 0x00 00 02 FF OO OO O1 OE 2E 51 00 00 O1 0E 3E 86 FF Q eee FF FF FF FF OFF OFF FF FF FF FF FF FF FF FF PF FF 0x20 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF Ox30 FF FF FF 00 00 01 OF 2E 51 00 00 01 OF 3E 86 FF Q gt Ox40 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF Ox50 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 00 QB FF 02 IC 2 D0 z o 0x70 F F op s 0x80 Checksum 8bit es FF 44 0x90 a LOG WINDOW i MEMORY DUMP E SPECIAL FUNCTIONS p Open Ld Save As G Delphi Proj MOTOROLER Newest NEC 78K0 CAN_KLINE TOOL Delphi YO0 04 IMMO06_EEPROM bin 02 03 04 05 07 03 09 OA OB 0123456789ABCDEF 000100 02 FF 00 00 01 OE 2E 51 00 00 01 OF 3E 86 FF 0 3 FF FF FF FF FF FF FF B8 FF FF FF FF FF FF FF FF OFF OFF OFF OFF OFF OFF OFF OFF 02 Ox
2. SERVICE keys Areas of unused keys are filled with FFs support immo tools It How to store transponder data directly into MC68HC05 EEPROM file v Read EEPROM data from ACI500 600 v Read key data using any transponder reader v Convert transponder data using Transponder Data Converter read Chapter 5 v Transfer last 6 bytes of calculated data to the position of any key in the file WASTER or SERVICE SERVIGE2 SERVICES Every key position is repeated twice in the file transfer it into both places v Recalculate CRC of Key_ Block area address 0004 001B and change its v Program modified this way EEPROM file into ACI500 600 ADVANCED SCOOTER WORKSHOP 2 7 LALOG WINDOW MEMORY DUMP X SPECIAL FUNCTIONS open py Save As G SCOOTER SCR 68HCOS_orig_ok bin O1 Oe us 04 U5 uF 03 OE OF 01lz234567 894BCLEF 0x00 oxic 9 20 Copy 0x30 Checksum For 4CI100 4CIsox acieax Checksum For EFI O60 Checksum 8bit 5 20 133 04 02 19 8F D D4 DC DA Te pa Di OC i0 3242 2 ddaiund a FF DC C E4 7G 64 54 50 46 3C 1D 16 OO F 12 1D 1D 13 13 2D 3D 43 43 44 44 45 45 45 45 45 _CDDEEEEE 60 133 04 02 19 8F D6 D4 DC DA 01 06 02 01 OC 10 E2 3 50 97 03 03 02 OO 98 11 06 F
3. and 0x0063 0x009F can be rewritten v Disconnect and reconnect 12V_IGN power supply to IMM006 Data will be transferred from addresses 0x64 0x 9 to addresses Ox00 0x14 and checksum at address 0x63 will be self repaired Key data block at the middle of the file will be left unchanged but it will be corrected by itself when complete immobilizer system becomes operational support immo tools It Reset to NEW Make a backup copy of MC68HC05E6 EEPROM before this Press this button to reset immobilizer control unit IMMO06 to its factory state Key Data will be cleared and control unit will be ready to be linked to another injection ignition control module and transponder keys MASTER Key data in the EEPROM of IMM006 0020 1 MoM i gt co You must to have at least 2 keys to carry out a key programming procedure 1 Insert MASTER key usually red or brown turn ignition to ON for 2 seconds Remove it 2 Insert SERVICE key usually black or blue turn ignition to ON for 2 seconds Remove it Repeat for all SERVICE keys 3 Insert MASTER key again and turn ignition to ON for 2 seconds to close procedure support immo tools It MAGNETI MARELLI MIU1 XX MIU2 XX INJECTION ECU WITH THROTTLE BODY Control module hardware Microcontroller STMicroelectronics ST10F269 T3 Internal EEPROM memory On FLASH emulated 16 Kilobytes External EEPROM memory NONE OR SPI 95160 EEPROM functions e Re
4. 1 AC231 with ST 72 and 95040 EFI TECHNOLOGY AC19I AC20I AC25I AC32I with ST 72 MCU and 95080 support immo tools It 4 Connection CDI CONTROLLER HOGS AWS Oveses E8IGEZOLLEOGO MANANA ON Be rcc SB EXTERNAL 12V POWER SUPPLY support immo tools It 5 Software hints and special functions Double click with mouse on the Key Data fields to save data to binary file File name is created from the key data Save file 000 501 502 503 504 10 e Foo 01 1002 603 so Controller Info 15 11 transponder formated 7D SF 00 00 80 70 7484A 00 80 70 7C 61 EEPROM Functions File name FO SFOOUUSO0 707484 MASTER bin iad MCBSHCOSES EEFRON ite MCESHCOSE6 EEPROM smsgrrowme e Right Click with mouse to Copy calculated key data to the Clipboard no need to transfer data manually now you can Paste it to the transponder programmer application when preparing transponder key from calculated data Key Data 15 11 transponder formated EEPROM Functions Read MC6SHCOSE6 EEPROM Write MC68HCOSE6 EEPROM RESET TO NEW support immo tools It Transponder Data Converter for TEMIC11 T5 TYPE11 Can convert transponder reader data to EEPROM file format and prepares data from EEPROM file to use with transponder programmer Copy Paste operations are enab
5. 30 FF FF FF 00 00 01 OF 2E 51 00 00 01 OF 3E 86 FF Q gt 040 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF fee FF FF FF FF OFF FF FF FF FF FF FF FF FF FF FF FF FF 0 support immo tools It Change bytes at addresses 0x00 0x01 to FF 00 Change byte at address 0x63 to FF three places marked with yellow in the picture Press Write MC68HC05E6 EEPROM button La LOG WINDOW in MEMORY DUMP ESPECIAL FUNCTIONS p Open save S Cs Wsers Wirgis Desktop imm006_test bin 00 0i 02 03 05 06 OF 08 09 OA OB OC OD OF OF 012725456789 ABCDEF ox00 FF 00 FF 00 00 01 OF 2E 51 00 00 01 OF 3E 86 FF gt foe ee FP FF FP FF FP FP FF FF FF FP FP FP FP FF FP ett oer FP FF FF FF FP FF FF FP FF FP FP FF FP FF FP sai te FF FF FF 00 01 OF 2E 01 00 00 O1 DE SE 86 FF 2a eee Fr FF FF FF FF FF FF FF FF FF FF FP FF FP FF FF we meee FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF eee we Poe FF FF FF FF OO Of FF OO 00 01 37 E6 AS 00 OL 8 7 meee Di 33 63 FF FF FF FF FF FF 2A FF FF FF FF FF FF Se es Confirm Are you sure to write new data into MC68HCO5E6 EEPROM memory NOTE EEPROM area in the address range 0x0003 0x0062 is write protected in the diagnostic mode Only data at 0x0000 0 0002
6. 82881 tr Nn 12120 WRD IAW15P EO EEPROM functions e Read MC68HC11F1 EEPROM Press this button to read out data from the internal EEPROM of MC68HC11F1 by K line Output file size 512 bytes e Write MC68HC11F1 EEPROM Press this button to write data to the internal EEPROM of MC68HC11F1 by K line Writes data from Memory Dump window Input file size 512 bytes e Reset to NEW Press this button to reset IAW15 controller to its factory state Previously programmed immobilizer data will be cleared and ECU will be set into immobilizer code self programming mode Turn ignition ON with a valid MASTER key that belongs to IMM006 to link IAW15 to IMM006 immobilizer control unit Read and program MASTER key data from IMM006 into 15 transponder if you do not have a MASTER key Programming is impossible using SERVICE key support immo tools It 9 Copyright information Advanced Scooter Workshop ASW and a company logo all the pictures and screen shots used in this user manual is a property of Immo Tools www immo tools lt and can t be used by any person or business for commercial purposes without an owner s permission support immo tools It
7. Advanced Scooter Workshop V2 82 User manual Immo 76 Tools It April 2013 support immo tools It 1 Introduction Advanced Scooter Workshop is a K line tool that incorporates ignition control unit CDI internal memory modification functions without cutting its plastic package scrape sealant soldering any wires or de soldering memory IC All you have to do is to connect four wires to controller connector EEPROM Read Write functions will help you To copy data from faulty CDI controller into another even used one 101690 5 11 formatted Key Data from CDI controller if all keys are lost To reset used CDI controller to the state of a brand NEW controller All functions works by K line 2 System requirements USB K line interface of Advanced Scooter Workshop connects to desktop or laptop PC using any free USB port It is powered from an external power supply 12V 800mA Min Scooter battery can also be used as a power supply Software runs on Windows 98 Windows XP Windows Vista Windows 7 3 Supported CDI controller systems Software version V2 82 supports MAGNETI MARELLI ACI100 ACI50x ACI60x with MC68HC05B8 B16 inside MAGNET MARELLI IMM003 IMM006 with MC68HC05E6 0F82B 0G72G inside MAGNETI MARELLI MIU1 XX MIU2 XX with ST10F269 T3 inside MAGNETI MARELLI MIU GS with Infineon SAK XC2060 and 95320 inside MAGNETI MARELLI IAW15 with MC68HC11F1 2E87J inside EFI TECHNOLOGY ACII AC2I AC5I AC8I AC21
8. F FF FF FF FF FF FF Powerit Geo 33 FF FF FF FF FF FF FF FF FF FF FF OFF OFF FF FF 3 eae Gero SS FF FF FF FF FF FF FP FF FF FF FF OFF OFF OFF OFF Ue eet eee ee AA FF FF FF FF FF FF FF FF FF FF OFF OFF FF OFF FF wee tt Geo CC FF FF FF FF FF FF 60 60 FF FF FF FF FF FF FF Ns OO O1 02 03 OF OS OF OF OF OF OD OE OF lz 34567894B DEF 0x00 1 F Hg 0x30 0x40 0x50 0x70 0x30 support immo tools It EFI TECHNOLOGY ACII AC2I ACSI AC8I AC211 AC23I CDI controller hardware Microcontroller SGS THOMSON ST72C334N4 Internal EEPROM memory 256 bytes Stores Key Data part numbers External EEPROM memory 95040 512 bytes Stores ignition advance tables EEPROM functions e Read ST72 internal EEPROM Press this button to read 51720334 internal EEPROM memory by K line Memory content can be modified and saved to disk with desired filename Output file size 256 bytes File is compatible with TMPro products e Write ST72 internal EEPROM Open file containing data to be programmed and press this button to write it to the ST72C334 internal EEPROM by K line Writes data from Memory Dump window Data can be modified prior to writing procedure Input file size 256 bytes e Read external 95040 EEPROM Press this button to read 95040 EEPROM memory by K line Memory content can be modified and saved to disk with d
9. Fj Fj Frj Up to 3 keys can be stored 1 MASTER and 2 SERVICE keys Areas of unused keys are filled with FFs support immo tools It How to store transponder data directly into MC68HC05 EEPROM file v Read EEPROM data from ACI100 v Read key data using any transponder reader Convert transponder data using Transponder Data Converter read Chapter 5 v Transfer last 6 bytes of calculated data to the position of any key in the file WASTER or SERVICE1 SERVIGE2 Every key position is repeated twice in the file transfer it into both places v Recalculate CRC of Key_Block1 area address 0004 0015 and change its corrected value at the address v Recalculate CRC of Key_Block2 area address 0017 0028 and change its corrected value at the address Write modified this way EEPROM file into ACI100 select desired memory block with mouse in the Memory Dump window and click Right Mouse Button For CRC recalculation ADYANCED SCOOTER WORKSHOP 2 7 A LOG WINDOW MEMORY DUMP Qe SPECIAL FUNCTIONS gt Open Ld Save As 02 03 O4 O 06 07 08 09 OA OB FF 02 Pa FF_FF FF FF 64 84 00 00 OO Copy 01234 567894BCDEF Checksum for ACILOO ACTSOX ACIB0 Checksum for EFI Checksum 8bit J Checksum_ACI 0004 0015 F4 support immo tools It MAGNETI MARELLI ACI500 ACI501 ACI502 ACI503 ACI504 ACI600 ACI601 AC602 ACI603 ACI604 CDI control
10. LI ACI100 CDI controller hardware Microcontroller MOTOROLA MC68HCO5B8 0D54J Internal EEPROM memory 256 bytes Stores Key Data ignition advance tables EEPROM functions e Read MC68HC05 EEPROM Press this button to read MC68HC05B8 internal EEPROM memory by K line Memory content can be modified and saved to disk with desired filename Output file size 256 bytes File is compatible with TMPro products Write MC68HC05 EEPROM Open file containing data to be programmed and press this button to write it to the MC68HCO5B8 internal EEPROM by K line Writes data from Memory Dump window Data can be modified prior to writing procedure Input file size 256 bytes EEPROM memory map 00000030 OW 0f fF FF Fr FF FEF FF FF FF FF FF 00000040 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF A NUMBER OF STORED KEYS 01 03 a 16 12 12 12 12 a op F FF FF 38 FO FO C 28 14 00 1A 1A 2 2A OD 4 50 3c 28 14 00 i a 000000AO i F 38 FF FF FF FF CRC OF KEY BLOCK EF FF PP FF FF FF F FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 50 50 FF FF FF FF FF FF FF m RU Poon tw wy Bo Hj 1 Fj irj D D D L in Ww OH lj I Hj Hj Frj Frj r F O O C O O OU F L
11. Output file size 160 bytes e Write MC68HCO5E6 EEPROM Open file containing data to be programmed and press this button to write it to the MC68HC0SE6 internal EEPROM by K line Writes data from Memory Dump window Input file size 160 bytes 90000000 1 01 OF 8 6 00000 FF FF F F FF FF 00000020 FF FF FF FF FF FF FF FF FF FF FF FF FF FF 00000030 FF FF FF 00 00 01 OF 2E 51 00 00 01 OF 3E 86 00000040 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF Sn 00000060 FF FF FF 5C 02 FF 00 00 01 OF 2E 51 00 00 00000070 OF 3E 86 FF FF FF FF FF FF 5C FF FF FF FF FF 00000080 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 00000090 FF AA FF FF FF FF FF FF FF FF FF FF FF FF FF There are 3 transponder key data zones in the memory map of HCO5E6 Two of them marked with green are protected by checksum marked with blue for data safety and self repair purposes in the case of data corruption 00000010 FF FF FF 00000020 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 00000030 FF FF FF 00 00 01 OF 2E 51 00 00 01 OF 3E 86 FF 00000040 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 00000050 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 00000060 FF FF FF 00000070 FF FF FF 00000080 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF JJ 00000090 FF AA FF FF FF FF FF FF FF FF FF FF FF FF FF
12. ad KEY DATA from ST10F269 Press this button to read out Key Data block memory range 0x18090 0x1828F from ST10F269 T3 internal FLASH memory by K line Output file size 512 bytes support immo tools It MAGNETI MARELLI MIU G3 INJECTION ECU WITH THROTTLE BODY Control module hardware Microcontroller Infineon SAK XC2060M Internal EEPROM memory NO External EEPROM memory 95320 4096 bytes EEPROM functions e Read 95320 EEPROM Press this button to read out data from the external 95320 SPI EEPROM by K line Output file size 4096 bytes e Write 95320 EEPROM Press this button to write data to the external 95320 SPI EEPROM by K line Writes data from Memory Dump window Input file size 4096 bytes CRC check and repair takes place before programming That will allow you to modify transponder data in the file e Reset to NEW Press this button to reset MIU G3 controller to its factory state Key Data will be cleared Immobilizer status LED will illuminate for 2 seconds on ignition set to ON You must to have at least 2 keys to carry out a key programming procedure as described in the Chapter 6 support immo tools It MAGNETI MARELLI IAW15 INJECTION ECU Control module hardware Microcontroller MOTOROLA MC68HC11F 1 Internal EEPROM memory 512 bytes External EEPROM memory NO THE wi 105 02 12V 01604750012 0 597 0 50160 120010 X9500
13. disk with desired filename Output file size 1024 bytes File is compatible with TMPro products e Write external 95080 EEPROM Open file containing data to be programmed and press this button to write it to the 95080 EEPROM by K line Writes data from Memory Dump window Data can be modified prior to writing procedure Input file size 1024 bytes e Reset to NEW Make a backup copy of 95080 EEPROM before doing this Press this button to reset CDI controller to its factory state Key Data will be cleared Engine will run in limited up to 2000 rpm mode with immobilizer aerial plug disconnected Immobilizer status LED will illuminate for 2 seconds on ignition set to ON You must to have at least 2 keys to carry out a key programming procedure 1 Insert MASTER key usually red or brown turn ignition to ON for 2 seconds Remove it 2 Insert SERVICE key usually black or blue turn ignition to ON for 2 seconds Remove it Repeat for all SERVICE keys 3 Insert MASTER key again and turn ignition to ON for 2 seconds to close procedure support immo tools It MAGNETI MARELLI IMM003 XX IMMO06 XX IMMOBILIZER Microcontroller MOTOROLA MC68HC05E6 0F82B 00720 Internal EEPROM memory 160 bytes Stores Key Data EEPROM functions Read MC68HC05E6 EEPROM Press this button to read out full internal MC68HCO5E6 EEPROM memory image by K line Memory content can be modified and saved to disk with desired filename
14. esired filename Output file size 512 bytes e Write external 95040 EEPROM Open file containing data to be programmed and press this button to write it to the 95040 EEPROM by K line Writes data from Memory Dump window Data can be modified prior to writing procedure Input file size 512 bytes e Reset to NEW Make a backup copy of ST72 EEPROM before doing this Press this button to reset CDI controller to its factory state Key Data will be cleared Engine will run in limited up to 2000 rpm mode with immobilizer aerial plug disconnected Immobilizer status LED will illuminate for 2 seconds on ignition set to ON You must to have at least 2 keys to carry out a key programming procedure 4 Insert MASTER key usually red or brown turn ignition to ON for 2 seconds Remove it 5 Insert SERVICE key usually black or blue turn ignition to ON for 2 seconds Remove it Repeat for all SERVICE keys 6 Insert MASTER key again and turn ignition to ON for 2 seconds to close procedure support immo tools It EFI TECHNOLOGY AC19I AC20I AC25I AC32I EURO3 CDI controller hardware Microcontroller SGS THOMSON ST72F521 Internal EEPROM memory NO INTERNAL EEPROM External EEPROM memory 95080 1024 bytes Stores Key Data part numbers ignition advance tables EEPROM functions e Read external 95080 EEPROM Press this button to read 95080 EEPROM memory by K line Memory content can be modified and saved to
15. g them to the two first positions in the Key field Transponder Data Converter Key 7D5F0000805 19468 ty 19 Key to File Key data stored in the memory of CDI Injection control unit is formated to look like BE FA XX XX XX XX RX XX aa Some of control units stores all 8 bytes of transponder File BEF 4000000000000 data MIU some uses only 6 last bytes without leading BE FA Add BEFA at the begining of File field if you want to convert 6 data bytes From EEPROM file to get correct transponder data in the Key field BEF40000018B423C instead of HHHH18BA23C Now key data is formatted properly and is ready to be converted for writing to the file of CDI INJECTION IMMOBILIZER control unit Transponder Data Converter Ps Used in the keys for motor scooters Key D5F000080519468 ir y this software is always programmed to 7D SF 0 File to Key Key to File gi ol File BEFA4000001542916 support immo tools It 6 Key programming procedure after ignition injection controller has been reset to NEW 1 Insert MASTER key usually red or brown turn ignition to ON for 2 seconds until immobilizer LED goes OFF Remove key from lock 2 Insert SERVICE key usually black or blue turn ignition to ON for 2 seconds until immobilizer LED goes OFF Remove key from lock Repeat for all SERVICE keys 3 Insert MASTER key again and turn ignition to ON for 2 seconds until immobilizer LED g
16. led in Key File data fields Right Click mouse to copy paste data ADYANCED SCOOTER WORKSHOP 2 7 La LOG WINDOW jis MEMORY DUMP JQ SPECIAL FUNCTIONS Transponder Data Converter TEMIC 11 TK5530 or T5 TYPE11 holds 8 bytes of data Key 7D5F000080519468 ty Data of transponders used in the keys for motor scooters supported by this software is always programmed to 7D SF at first two bytes from the factory 7D SF XX XX XX XX KX XX ME Boh Keyto File Key data stored in the memory of CDI Injection control unit is formated to look like BE FA XX XX XX XX AX XX Some of control units stores all 8 bytes of transponder File BEFA000001842916 data MIU some uses only 6 last bytes without leading BE FA A Add BEFA at the begining of File field if you want to convert 6 data bytes from EEPROM file to get correct transponder data in the Key field BEFA0000018B423C instead of 000001854230 When to use Transponder Data Converter Data may differ when reading same transponder key with several transponder readers DATA SF EEHEHGE 1946370 TYPE 11 TENIC HR Key Coz84AB4BE2FOO00 gy SY 5FOOOO805194687D fly Ri Key to File i File to Key Key to File File BEFAnnnnnnnnnnnn File BEFAQODOOOO00000N0 Enter data from transponder reader to the Key field and press button with blue arrows to realign data bits support immo tools It This will result finding 7D 5F bytes in the bit stream and placin
17. ler hardware Microcontroller MOTOROLA MC68HC05B16 0D60J Internal EEPROM memory 256 bytes Stores Key Data Part Numbers some newer types ignition advance tables EEPROM functions Read MC68HC05 EEPROM Press this button to read MC68HC05B16 internal EEPROM memory by K line Memory content can be modified and saved to disk with desired filename Output file size 256 bytes File is compatible with TMPro products e Write MC68HC05 EEPROM Open file containing data to be programmed and press this button to write it to the MC68HC05B16 internal EEPROM by K line Writes data from Memory Dump window Data can be modified prior to writing procedure Input file size 256 bytes EEPROM memory map _ 04 fF FF FF FF FF FF FF FF FF FF FF FF FF FF 00 00000050 FF DC 0000 2 ip in aj NUMBER OFSTOREDKEYS 01 04 ZS 2 35 4c 4s 00000060 13 1D ip 1 45 45 45 45 45 00000070 33 OA 02 02 01 06 10 E2 FF DC C8 2 1D 1B 0c 00 00000090 13 1D 1D 45 45 45 45 45 000000AO 33 OA 02 02 01 0C 10 E2 OO0000B0 50 97 03 FF FF FF FF FF 33 FF FF CRC OF KEY BLOCKI FF FF FF FF FF 55 FF FF FF FF FF FF FF UUUUUUEU AA FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF 60 60 FF FF FF FF FF FF FF Hj Frj mmm Ld Up to 4 keys can be stored 1 MASTER and 3
18. oes OFF to close key programming procedure 7 Additional key programming procedure lf MASTER key absent then read MASTER key data from particular control unit and program it to the T5 transponder using any transponder programmer Perform key programming procedure described in chapter 6 using this T5 transponder as a MASTER key support immo tools It 8 How to know what is inside of your EF TECHNOLOGY CDI controller if it is not in the list of supported controllers v Select system with external EEPROM of type 95080 CDI Controller Type Selection MAGNETI MARELLI EFI TECHNOLOGY System ACII AC2I AC23I ACSI Controller Info Key Data T5 11 transponder formated MASTER SERVICE EEPROM Functions Read external 95080 EEPROM Write external 95080 EEPROM RESET TO NEW Read EEPROM as 95080 0123456 789ABCDEF E 8a OO2274460688 a BBDDFFHHJIILLNN PPRRTTVVXX727 bbddffhhjjllonn pprrttvvxxzz Copyright 2012 Immo Tools Web www immo tools It v If you have part number at addresses 0030 0035 but data in the range of 0100 03FF looks like in the picture 00 00 02 02 04 04 06 06 then the real type of external EEPROM is 95040 and there is ST72C334 MCU with internal EEPROM inside that CDI controller Select correct system with external EEPROM 95040 and ST72C334 MCU in that case support immo tools It MAGNETI MAREL

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