§MEMBERSHIP · BOARD-LEVEL REPAIR

Board-level repair — iPhone, iPad, MacBook

The board-level repair program carries the system logic from the electronics core onto real device logic boards — iPhone, iPad and MacBook in one package. Board reading, measurement points, fault isolation; power, display, camera and charging circuit paths with real cases. This program is independent from electronics — separate access.

This program assumes electronics knowledge — the curriculum states it as a prerequisite. Starting from zero? The electronics program covers that ground.

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You are not on your own when you get stuck

The hardest part of this work is not finding the content — it is having someone to ask the moment you are stuck. On the repair side there are two separate assistants: one inside the lesson, one at your bench.

AI lesson assistant — with you the whole way

Ask the circuit you didn't understand, the measurement that came out wrong, the fault you can't isolate — and get an answer without leaving the lesson. It works in the free tier too, and costs no credits.

Repair Assistant — for the board on your bench

The second assistant is not in the lesson, it is at your bench: write the symptom and your reading, get the next test point by its rail name — a pinpoint answer, not a lecture. 10 credits ready the day you join; one answer costs 1 credit.

Live support — straight to me, on WhatsApp

No form, no ticket, no queue. The number is mine: +90 549 851 05 49. Tap and the message is already written — you don't even have to think of what to say. Before you buy or after, it makes no difference.

Message me now
§BOARD-LEVEL REPAIR · ONE PACKAGE

$999

one-time · iPhone + iPad + MacBook · 6 modules · 80 lessons

Lifetime
  • Board reading and measurement points — you know where to look
  • Power, charging, display, camera paths — isolation, not guesswork
  • Face ID / Touch ID and battery — the jobs a part swap can't fix
  • Step-by-step repair on real fault cases — the boards you actually get
  • Lock and ethics layer — you spot the risky job before you start

Payment is manual on purpose — you talk to a person. Leave your contact and I reply within 24 hours; your account opens the moment payment clears.

no card on file · no automatic charge · lifetime access

I want to pay

What the repair program covers

6 Module · 80 days

Open any one to see what is inside it.

  1. M1Schematics & Card Reading8 d

    Reading Apple board schematics and the physical card + rework basics (model-agnostic)

    1. 01Map out the repair workflow and the tool landscape
    2. 02Decode the structure and language of the Apple logic board schematic
    3. 03Trace a rail from its source to its load, from both ends
    4. 04Map the power tree from its source to its loads
    5. 05Locate the measurement point on the schematic, boardview, and board triangle
    6. 06Interpret measurement modes and readings according to the situation
    7. 07Read the visual evidence and make the rework decision
    8. 08Set the rework parameters and heat to match the job

    The OKU→ÖLÇ→İNCELE→KARAR→MÜDAHALE backbone.

    Electronics knowledge is a prerequisite; tools/measurement/rework at parameter+concept level (not a hand-technique tutorial).

Module 1 free · beyond this $999
  1. M2iPhone Mainboard Specialization17 d

    17-day iPhone board-level specialization reading a real iPhone logic-board schematic page by page

    1. 01Document structure: orientation, BOM and test points
    2. 02SOC interfaces: PCIe, MIPI/ISP, serial, GPIO
    3. 03SOC power rails (supply families)
    4. 04PMU: buck/LDO power map
    5. 05The main power backbone (battery, Tigris, boost)
    6. 06The wake chain: power button → PMU → AON
    7. 07NAND and the boot loop
    8. 08Display and touch (Hawking)
    9. 09Face ID (Pearl: Rigel, Romeo, Juliet)
    10. 10Camera and flash
    11. 11Sound and vibration (codec + Taptic)
    12. 12Sensors (Graphite and others)
    13. 13Dual logic board and the interposer bridge
    14. 14Baseband modem (BBPMU)
    15. 15RF: transceiver, PA and antenna
    16. 16Wi-Fi / NFC / GPS (Guinness)
    17. 17Full device diagnosis (capstone)

    Core skill: net/rail tracing (source↔load, cross-reference) and the power+data+control three legs per block; pairing/two-board limits.

  2. M3iPad Mainboard Specialization15 d
    1. 01Document structure and boot/board ID
    2. 02SOC interfaces: PCIe, MIPI/ISP, serial, GPIO
    3. 03SOC core power rails (CPU/GPU/SOC)
    4. 04PMU: buck/LDO power map
    5. 05Main power backbone (PP_VDD_MAIN, battery, boost)
    6. 06Wake chain: power button → PMU → AOP
    7. 07NAND and boot (boot-config)
    8. 08Charging: Lightning, Tristar, and Tigris
    9. 09Display and backlight
    10. 10Touch and Home/Touch ID
    11. 11Camera (MIPI/I2C)
    12. 12Audio: codec and speaker amplifier
    13. 13Sensors (AOP)
    14. 14Wi-Fi / Bluetooth (no baseband)
    15. 15Full iPad 7 diagnosis (capstone)

    iPad (Wi-Fi model) board-level delta: reading a real logic-board schematic that shares the same core generation, page by page, baseband-free.

    Core skill: net/rail tracing (source↔load) and the power+data+control three legs; the Wi-Fi model drops baseband/NFC/cellular blocks.

  3. M4MacBook T2 Mainboard18 d

    18-day MacBook board-level specialization reading a real MacBook logic-board schematic FOLLOWING THE SCHEMATIC'S OWN TOC ORDER, each section by its own sheet name

    1. 01Document structure: table of contents, BOM and mechanicals
    2. 02The Processor (CPU): graphics, memory and power
    3. 03The chipset (PCH): USB, clocks and power management
    4. 04LPDDR3 memory: channels, VREF and termination
    5. 05USB-C and Thunderbolt
    6. 06Wi-Fi / Bluetooth module
    7. 07T2 logic and communication (GPIO, SMC, I2C/SPI)
    8. 08T2 power and support (boot ROM, shifter)
    9. 09Secure Element and the I2C network
    10. 10Power/thermal sensors and fans (SMC)
    11. 11Audio: speaker amplifiers and microphone
    12. 12Keyboard and trackpad
    13. 13Input and charging: DC-In, battery, and PBUS
    14. 14CPU power supply: IMVP8 and VR
    15. 15System power (PMIC) and distribution
    16. 16Display: backlight and eDP
    17. 17Storage: NAND and SSD
    18. 18Reference pages and capstone

    Key difference from iPhone/iPad: multi-processor and multi-layer power (discrete VR/FET) instead of a single SoC + single PMU.

  4. M5MacBook M-Series18 d

    Apple Silicon MacBook board-level delta: reading the M1/M2/M3/M4 architecture where T2 responsibilities move into the SoC, with integrated Secure Enclave, DFU/restore flow, Apple Silicon power tree, and M-series diagnostic differences. Carries the Phase 4 T2/Intel MacBook reflex into M-series MacBooks; T2 is no longer a separate chip.

    1. 01Document structure: table of contents, BOM and mechanicals (M1)
    2. 02The processor (SOC): support, clock/reset and the CIO interface
    3. 03SOC interfaces: display (LPDP/MIPI), PCIe and AOP
    4. 04Processor power rails: CPU, GPU, memory and IO
    5. 05SOC grounding, desense and boot ROM: where does the M1 read its startup code from? (p16-20)
    6. 06Input & charge chain and the Secure Element: how does the board draw energy from outside? (s21-24)
    7. 073.8V always-on power and Iceman VR: how is the first rail born from the main bus? (s25-27)
    8. 08The PMU rail factory: how do the Master and Slave PMUs produce the rail forest from the bus? (s28-35)
    9. 09System power distribution: how do LDOs and load switches deliver the rail to every corner? (s36-40)
    10. 10I2C buses and the SMC: how does the system manage peripherals by 'talking'? (s41-43)
    11. 11Sensors: how does the board 'measure' itself — current, temperature, and motion? (s44-49)
    12. 12USB-C / Thunderbolt: how does one port carry power, data, and display all at once? (s50-59)
    13. 13WiFi/BT and SSD: how do two different peripherals work over the same PCIe path? (s60-65)
    14. 14Display and backlight: why are image and light two separate layers? (s66-70)
    15. 15Audio and trackpad: how do familiar interfaces come together in the last peripherals? (s71-77)
    16. 16Reading the schematic like a reference book: alias, test point, and BOM (s78-90)
    17. 17M1 power-on chain synthesis: end-to-end diagnosis with the '5V to 20V' current signature
    18. 18Capstone: evaluating M1 within its family — the common backbone and M-Series deltas
  5. M6Lock & Ethics4 d
    1. 01Security architecture: SEP, Secure Element and secure boot
    2. 02Activation / iCloud lock (anti-theft)
    3. 03EFI and firmware locks (device differences)
    4. 04Ethical boundary, data and legitimate process (capstone)

    Device-common lock phase: a capstone unifying the security and lock architecture of all three devices (iPhone/iPad/MacBook).

    Teaches the ARCHITECTURE and the ETHICAL BOUNDARY; contains NO lock-bypass technique (D4).

    Hardware repair is legitimate, crossing an ownership wall without the owner is not; data is not chip-transferable.

Module 1 is entirely free and unlimited (8 days) — registration required, no card on file, no automatic charge. Once you finish Module 1 the paywall appears, and unlocking Modules 2-6 is a one-time $999 payment. This program is independent from electronics; separate access, lifetime.

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