TCS Pune

Quanta ZGD 2023 RPL-H_ZYP-V02-RAMP_20230814-acer – Bench Power & Signal Checklist

Board-specific bench checklist derived from 1 supplied source PDF(s). Source coverage: High. Verify exact thresholds, pin numbers and rail tolerances against the source schematic and component datasheets before component replacement or voltage injection.

🔌 Quanta ZGD 2023 RPL-H_ZYP-V02-RAMP_20230814-acerExpert⏱ 60-180 minutes📋 5 steps

Compatible models: ZGD 2023 RPL-H ZYP-V02-RAMP 20230814-acer

⚠ Safety: Disconnect battery before resistance/diode checks. Use current limiting for injection. Never inject voltage into an unknown rail until its safe voltage/current limit and isolation path are confirmed. Use a short ground spring for high-speed oscilloscope probing.

🛠 Required Tools

  • Digital multimeter Oscilloscope with x10 probe Bench power supply with current limit Thermal camera / freeze spray as required SPI programmer where firmware diagnosis is required
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Schematic-derived bench record

Bench Manual & Source Coverage

Source coverage: High. Values and thresholds must still be verified against the exact schematic/datasheet.

Source PDF(s): Quanta ZGD 2023 RPL-H_ZYP-V02-RAMP_20230814-acer.pdf

Board profile

Power & Control Architecture

Platform / ODMQUANTA
CPU / SoCRaptor Lake
PCH / ChipsetRaptor Lake
MemoryLPDDR5
BIOS / SPIW25Q256JVEIN
USB-C / PDCYPD6128-48LQXI
GPUNVIDIA
Table A

Chronological Power Sequence

Follow upstream to downstream. A missing later signal may simply be the result of an earlier missing prerequisite.

#StageSignal / RailFrom -> ToRefStateExpectedDMMOscilloscope
1DC InputAdapter / DC-IN main railAdapter/battery input pathSchematic p.13Follow chronological sequence19-20 V typical for barrel adapters; USB-C depends on PD contractMeasure to ground at input connector/fuseFlat DC; inspect ripple only if unstable
2DC InputInput fuse - both sidesDC jack -> protection pathSchematic p.86Follow chronological sequenceSame voltage on both sides of input fuseDMM DC at both fuse sides to ground; continuity with power removedFlat DC
3ChargerACDET / adapter detectAdapter divider -> charger ICSchematic p.108Follow chronological sequenceIC-specific adapter-detect threshold; commonly about 2-3 VDMM DC at ACDETFlat DC
4ChargerACOK / AC_PRESENTCharger -> EC/PCHSchematic p.12Follow chronological sequenceValid logic state when adapter accepted; commonly logic highDMM logic levelClean logic transition when adapter is inserted
5ChargerREGN / charger internal LDOCharger IC internal LDOSchematic p.108Follow chronological sequenceIC-specific; often about 6 V on TI BQ familiesDMM DC at REGN pin/capFlat DC
6ChargerACDRV / input MOSFET gate driveCharger -> input MOSFET gatesSchematic p.108Follow chronological sequenceGate drive above source when input path is enabled; exact value IC-specificMeasure gate and source; compare VGSGate should rise cleanly after valid adapter detect
7BatteryBattery positive / system battery railBattery connector -> charger/systemSchematic p.11Follow chronological sequencePack voltage appropriate to cell count and state of chargeDMM DC at battery positive to pack groundFlat DC; no excessive ripple
8BatteryBattery SMBus clockEC/charger batterySchematic p.9Follow chronological sequencePulled high with communication activity when battery is queriedDMM shows logic-high average; scope preferredDigital clock bursts
9BatteryBattery SMBus dataEC/charger batterySchematic p.9Follow chronological sequencePulled high with bidirectional data activityDMM shows logic-high average; scope preferredBidirectional data bursts
10RTCRTC / CMOS supplyRTC source -> PCH/SoCSchematic p.13Follow chronological sequenceTypically near 3 V; board-specificDMM DCFlat DC
11Always-On3 V always-on railStandby regulator -> EC/PCH/logicSchematic p.8Follow chronological sequence3.3 V nominal where this rail existsDMM DC at inductor/output capFlat DC with low ripple
12Always-On5 V always-on railStandby regulator -> peripheralsSchematic p.73Follow chronological sequence5.0 V nominal where design provides always-on 5 VDMM DC at inductor/output capFlat DC with low ripple
13EC / SIOEC resetReset circuit -> EC/SIOSchematic p.64Follow chronological sequenceReleased to inactive logic level after EC supply is validDMM logic levelClean release edge; no repetitive reset cycling
14EC / SIO32.768 kHz RTC / EC clockCrystal/oscillator -> EC/PCHSchematic p.11Follow chronological sequenceStable 32.768 kHz where external low-frequency clock is usedDMM not reliable; use scopeStable low-amplitude sine/square waveform near 32.768 kHz
15Power StateRSMRST#EC/PCH resume-well logicSchematic p.8Follow chronological sequenceInactive/high after resume-well prerequisites are satisfiedDMM logic levelClean low-to-high transition during standby initialization
16Power ButtonPWRBTN# / ON-OFF# inputPower button -> ECSchematic p.12Follow chronological sequenceNormally high; clean active-low pulse on pressDMM min/max or scopeSingle clean low pulse then returns high
17Power SequenceSLP_S5#PCH/SoC -> EC/power logicSchematic p.12Follow chronological sequenceDeasserts/high when leaving S5; exact polarity/name platform-specificDMM logic levelStep transition during power-on
18Power SequenceSLP_S4#PCH/SoC -> EC/power logicSchematic p.12Follow chronological sequenceDeasserts/high when leaving S4DMM logic levelStep transition
19Power SequenceSLP_S3#PCH/SoC -> EC/power logicSchematic p.12Follow chronological sequenceDeasserts/high when entering S0DMM logic levelStep transition
20Power SequenceSUS_ON / MAINONEC/power logic -> main regulatorsSchematic p.86Follow chronological sequenceActive state enables main/S0 rails; polarity board-specificDMM logic levelClean enable transition
21MemoryDDR VDD / VDDQMemory regulator -> DIMM/SoCSchematic p.5Follow chronological sequenceDDR generation-specific rail; verify schematic and memory generationDMM DC at memory inductorFlat DC; low ripple
22MemoryDRAM resetCPU/PCH/SoC -> memorySchematic p.3Follow chronological sequenceReleased after memory power/clock prerequisitesDMM logic levelClean reset release
23CPU / SoCVCCIO / CPU I/O railVR -> CPU/SoCSchematic p.12Follow chronological sequencePlatform-specific, commonly around 0.8-1.05 V on Intel generationsDMM DC at inductorFlat DC; switching only at PWM nodes
24CPU / SoCCPU core railCPU VR -> processor coreSchematic p.5Follow chronological sequenceVID-controlled dynamic voltage; do not use a single universal valueDMM DC at core inductorMultiphase switching on switch nodes; DC on output
25CPU / SoCSVID clock/dataCPU/SoC VR controllerSchematic p.5Follow chronological sequenceHigh-speed digital activity when CPU negotiates VID; logic level platform-specificDMM not diagnostic; use scopeDigital bursts during CPU VR initialization
26Power GoodSYS_PWROK / ALL_SYS_PWRGDPGOOD logic -> PCH/SoCSchematic p.12Follow chronological sequenceAsserted only after required S0 rails are validDMM logic levelClean delayed assertion
27Power GoodPCH_PWROK / SoC power-goodEC/PGOOD logic -> PCH/SoCSchematic p.12Follow chronological sequenceAsserted when platform power prerequisites are validDMM logic levelClean delayed assertion
28ResetPLTRST#PCH/SoC -> platform devicesSchematic p.12Follow chronological sequenceReleased/inactive after clocks and power-good conditions are satisfiedDMM logic levelClean low-to-high release
29BIOS / SPISPI_CS#PCH/SoC/EC -> SPI flashSchematic p.2Follow chronological sequenceIdle high with access pulses during firmware readsDMM not diagnostic; use scopeChip-select pulse bursts during start-up
30BIOS / SPISPI_CLKPCH/SoC/EC -> SPI flashSchematic p.2Follow chronological sequenceClock bursts during firmware accessDMM not diagnostic; use scopeHigh-frequency clock bursts
31DisplayeDP HPDPanel -> GPU/PCH/SoCSchematic p.2Follow chronological sequenceValid HPD logic state when panel is connected and poweredDMM logic levelClean logic level/transition
32DisplayBacklight enableEC/PCH/GPU -> panel/backlightSchematic p.28Follow chronological sequenceActive logic level when backlight should turn onDMM logic levelClean assertion after panel power
33DisplayBacklight PWMEC/PCH/GPU -> backlight driverSchematic p.28Follow chronological sequencePWM duty cycle controls brightness; amplitude board-specificDMM may show averaged voltage; scope preferredPWM waveform with variable duty cycle
Table B

Bench Reading & Fault Isolation

Enter the actual DMM reading and scope/logic observation. Select PASS, FAIL or N/A, then tick Checked when that row is complete.

0 / 33 checked
Checked#Signal / RailMeasuredObserved Waveform / LogicResultFailure Isolation HintTechnician Notes
1Adapter / DC-IN main railSchematic p.13No rail: inspect adapter, jack, fuse, protection MOSFETs
Additional readings
Technician evidence
2Input fuse - both sidesSchematic p.86Drop/open: replace only after checking downstream short
Additional readings
Technician evidence
3ACDET / adapter detectSchematic p.108Wrong level: verify divider, charger VCC and exact datasheet threshold
Additional readings
Technician evidence
4ACOK / AC_PRESENTSchematic p.12Missing: validate ACDET, charger supply, pull-up and charger IC
Additional readings
Technician evidence
5REGN / charger internal LDOSchematic p.108Missing REGN with valid VCC may indicate charger IC fault
Additional readings
Technician evidence
6ACDRV / input MOSFET gate driveSchematic p.108No drive: check ACDET/ACOK, CMSRC and charger protection state
Additional readings
Technician evidence
7Battery positive / system battery railSchematic p.11Abnormal: verify pack, connector, BATFET and charger path
Additional readings
Technician evidence
8Battery SMBus clockSchematic p.9No activity: check pull-up rail, EC/charger, battery presence and bus shorts
Additional readings
Technician evidence
9Battery SMBus dataSchematic p.9Stuck low/high: isolate battery/device and pull-up path
Additional readings
Technician evidence
10RTC / CMOS supplySchematic p.13Missing RTC can block RSMRST# and standby sequencing
Additional readings
Technician evidence
113 V always-on railSchematic p.8Missing/shorted: inspect standby controller enable and rail resistance
Additional readings
Technician evidence
125 V always-on railSchematic p.73Missing: inspect enable, controller supply, MOSFETs and load short
Additional readings
Technician evidence
13EC resetSchematic p.64Held reset: check EC VCC, reset supervisor/RC path and firmware conditions
Additional readings
Technician evidence
1432.768 kHz RTC / EC clockSchematic p.11No clock: inspect crystal, load capacitors, supply and oscillator pins
Additional readings
Technician evidence
15RSMRST#Schematic p.8Held low: trace RTC/standby rails, EC firmware, PCH/SoC prerequisites
Additional readings
Technician evidence
16PWRBTN# / ON-OFF# inputSchematic p.12No pulse: button board, cable, ESD/filter path, pull-up or EC pin
Additional readings
Technician evidence
17SLP_S5#Schematic p.12Missing: PCH/SoC not exiting soft-off; verify RSMRST#, clocks, firmware
Additional readings
Technician evidence
18SLP_S4#Schematic p.12Missing: memory/suspend rails may not enable; trace earlier state signals
Additional readings
Technician evidence
19SLP_S3#Schematic p.12Missing: system remains in sleep state; verify firmware/PCH prerequisites
Additional readings
Technician evidence
20SUS_ON / MAINONSchematic p.86Missing: identify prior PGOOD/sleep signal that inhibits EC output
Additional readings
Technician evidence
21DDR VDD / VDDQSchematic p.5Missing: check enable from S4/S3 logic and resistance to ground
Additional readings
Technician evidence
22DRAM resetSchematic p.3Held reset: trace memory rails, clocks, SYS_PWROK and platform reset sequence
Additional readings
Technician evidence
23VCCIO / CPU I/O railSchematic p.12Missing: check enable, short and regulator controller
Additional readings
Technician evidence
24CPU core railSchematic p.50 V: verify VR_ON, controller supply, phase short and CPU condition
Additional readings
Technician evidence
25SVID clock/dataSchematic p.5No activity with prerequisites valid: inspect CPU, VR controller, bus resistors
Additional readings
Technician evidence
26SYS_PWROK / ALL_SYS_PWRGDSchematic p.12Missing: identify which upstream PGOOD/rail is absent
Additional readings
Technician evidence
27PCH_PWROK / SoC power-goodSchematic p.12Missing: trace aggregate power-good logic and required rails
Additional readings
Technician evidence
28PLTRST#Schematic p.12Held reset: check BIOS/SPI activity, clocks, PCH/SoC rails and PWROK
Additional readings
Technician evidence
29SPI_CS#Schematic p.2No activity: sequence, reset, clock or controller may not have reached firmware fetch
Additional readings
Technician evidence
30SPI_CLKSchematic p.2CS toggles but no clock: inspect controller/bus; no bus activity: trace sequence first
Additional readings
Technician evidence
31eDP HPDSchematic p.2Missing: panel/cable/connector power or HPD trace issue
Additional readings
Technician evidence
32Backlight enableSchematic p.28Missing: lid/Hall state, graphics sequence, panel detection or firmware
Additional readings
Technician evidence
33Backlight PWMSchematic p.28Enable present but no PWM: brightness/graphics/EC control path issue
Additional readings
Technician evidence
V4.0 · BOARD COMPONENT INTELLIGENCE

Component Index

Select a board component to see its function, related rails/signals, enable and power-good dependencies, input/output path, matching checklist tests and identical fitted ICs found on other board checklists. Unknown values are left unknown rather than guessed.

V4.3 Bench PSU Current Profile

Board Current Sequence

Record current draw in amperes at each observable stage. Historical comparison uses successful repairs of this exact board checklist. A different reading is a clue, not a component diagnosis.

Current sequence: No readings yet
No successful-repair baseline yet
No successful-repair baseline yet
No successful-repair baseline yet
No successful-repair baseline yet
No successful-repair baseline yet
No successful-repair baseline yet

Tip: enter only stages you actually observed. For boards that never reach a later stage, leave that stage blank rather than entering a guessed value.

V4.4 Board Knowledge

Previous Solved Cases

Historical cases are diagnostic references only. Confirm readings on the board in front of you before replacing parts.

Live match: Mark a bench signal FAIL to check previous solved cases for Quanta ZGD 2023 RPL-H_ZYP-V02-RAMP_20230814-acer.

No structured solved-repair knowledge has been collected for this board yet. New V4.4 solved cases will build it automatically.

V4.5 · SIMILAR BOARD / PLATFORM MATCHING

Reference Boards

Reference only: The boards below share one or more stored platform attributes with this motherboard. Their voltages, component locations, designators, sequence details and repair findings are not automatically treated as facts for the current board. Verify against the current board schematic, boardview and measurements before use.

REFERENCE BOARD

ZGRC

Revision: PVT

2/5 shared matching attributes
  • Same CPU generation / model seriesINTEL CORE GEN 13
  • Same platform / ODMQUANTA
Open reference checklist →

Reference-board matches are discovery aids only. Missing information on this board is deliberately left unknown and is not filled from a similar board.

V4.9 Diagnostic Timeline

Repair Timeline

Bench actions are recorded in sequence for training, QC and future troubleshooting. Signal result changes remain in history even after a failed stage later passes.

    The final solved forum case receives the complete timeline for this bench session. Manual actions should describe what was actually done, not a suspected cause.

    GUIDED BIOS DIAGNOSTICS · V5.1

    BIOS / SPI Flash Diagnostic Record

    Record only measurements observed on this board. The workflow does not assume a flash voltage, logic level or firmware fault from a single reading.

    Original BIOS dump

    The first uploaded original is locked to this diagnostic session and cannot be overwritten by this workflow.

    Repaired BIOS dump

    Stored as a separate attachment. Uploading it never modifies the original dump.

    Final diagnostic decision

    Is the problem solved?

    Complete the applicable checklist and bench rows first. If solved, the completed diagnostic flow is converted into a resolved Repair Forum post automatically.

    V5.0 Repair Case Intelligence

    Board Repair Dashboard

    Aggregate repair patterns for Quanta ZGD 2023 RPL-H_ZYP-V02-RAMP_20230814-acer. Historical patterns are references, not proof of the current fault.

    0Recorded repairs
    0.0%Solved
    Not enough timeline dataAverage diagnosis time
    0Rework cases

    Common symptoms

    No structured data yet.

    Frequently failed rails / signals

    No structured data yet.

    Frequently replaced / repaired ICs

    No structured data yet.

    Common root causes

    No structured data yet.

    Diagnosis time is calculated from V4.9 timeline evidence when available. Only server-recorded board-linked repair cases are counted; unsaved local bench sessions are excluded. Technician performance is never exposed on this board dashboard.

    USB-C / PD DIAGNOSTICS · V5.2

    USB-C Power Delivery Diagnostic Record

    Record observed behavior on this board and adapter. Contract voltage and controller behavior vary by platform; this module does not assume that a higher-voltage PD contract must always be present.

    USB-C port fault checklist

    Check only what was actually inspected. A failed item is a diagnostic clue, not an automatic component diagnosis.

    DISPLAY / NO-DISPLAY DIAGNOSTICS · V5.3

    Internal & External Display Diagnostic Record

    Record board-specific observations. Missing display signals are clues only; expected voltage, polarity and timing must be verified from the schematic, panel specification or known-good board.

    Internal vs external display decision tree

    Complete the checks in order. The guidance below narrows the next area to inspect but does not declare a component faulty.

    Record the internal and external display results to show decision guidance.
    💰

    Estimated repair cost at TCS Pune

    ₹4,000 – ₹15,000

    Final price confirmed after free device inspection. Includes 6-month warranty.

    Get exact quote ↗
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