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.
V4.7 · REVISION SAFETY
LA-J371P · Rev 1.0
Verify the physical motherboard revision before using this checklist. Measurements, component values and power circuitry can change between revisions.
Only one published revision is currently stored for this board. Verify the silkscreen before proceeding.
🔌 LA-J371PExpert⏱ 60-180 minutes📋 5 steps
Compatible models: FDZ41
⚠ 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
0 / 5 done
Progress saved in browser.
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): Compal LA-J371P FDZ41 r1.0.pdf
Board profile
Power & Control Architecture
Platform / ODMCOMPAL
CPU / SoCComet Lake
PCH / ChipsetComet Lake
MemoryDDR4
EC / SIOMEC5107
ChargerISL9538C
USB-C / PDTPS65987DDJ
Table A
Chronological Power Sequence
Follow upstream to downstream. A missing later signal may simply be the result of an earlier missing prerequisite.
#
Stage
Signal / Rail
From -> To
Ref
State
Expected
DMM
Oscilloscope
1
DC Input
Adapter / DC-IN main rail
Adapter/battery input path
Schematic p.6
Follow chronological sequence
19-20 V typical for barrel adapters; USB-C depends on PD contract
Measure to ground at input connector/fuse
Flat DC; inspect ripple only if unstable
2
Charger
ACOK / AC_PRESENT
Charger -> EC/PCH
Schematic p.11
Follow chronological sequence
Valid logic state when adapter accepted; commonly logic high
DMM logic level
Clean logic transition when adapter is inserted
3
Battery
Battery positive / system battery rail
Battery connector -> charger/system
Schematic p.58
Follow chronological sequence
Pack voltage appropriate to cell count and state of charge
DMM DC at battery positive to pack ground
Flat DC; no excessive ripple
4
Battery
Battery SMBus clock
EC/charger battery
Schematic p.2
Follow chronological sequence
Pulled high with communication activity when battery is queried
DMM shows logic-high average; scope preferred
Digital clock bursts
5
Battery
Battery SMBus data
EC/charger battery
Schematic p.8
Follow chronological sequence
Pulled high with bidirectional data activity
DMM shows logic-high average; scope preferred
Bidirectional data bursts
6
RTC
RTC / CMOS supply
RTC source -> PCH/SoC
Schematic p.5
Follow chronological sequence
Typically near 3 V; board-specific
DMM DC
Flat DC
7
Always-On
3 V always-on rail
Standby regulator -> EC/PCH/logic
Schematic p.85
Follow chronological sequence
3.3 V nominal where this rail exists
DMM DC at inductor/output cap
Flat DC with low ripple
8
Always-On
5 V always-on rail
Standby regulator -> peripherals
Schematic p.85
Follow chronological sequence
5.0 V nominal where design provides always-on 5 V
DMM DC at inductor/output cap
Flat DC with low ripple
9
Always-On
1.8 V auxiliary rail
Standby regulator -> BIOS/PCH/logic
Schematic p.87
Follow chronological sequence
1.8 V nominal where used
DMM DC
Flat DC
10
EC / SIO
32.768 kHz RTC / EC clock
Crystal/oscillator -> EC/PCH
Schematic p.11
Follow chronological sequence
Stable 32.768 kHz where external low-frequency clock is used
DMM not reliable; use scope
Stable low-amplitude sine/square waveform near 32.768 kHz
11
Power State
RSMRST#
EC/PCH resume-well logic
Schematic p.5
Follow chronological sequence
Inactive/high after resume-well prerequisites are satisfied
DMM logic level
Clean low-to-high transition during standby initialization
12
Power Button
PWRBTN# / ON-OFF# input
Power button -> EC
Schematic p.5
Follow chronological sequence
Normally high; clean active-low pulse on press
DMM min/max or scope
Single clean low pulse then returns high
13
Power Sequence
SLP_S5#
PCH/SoC -> EC/power logic
Schematic p.5
Follow chronological sequence
Deasserts/high when leaving S5; exact polarity/name platform-specific
DMM logic level
Step transition during power-on
14
Power Sequence
SLP_S4#
PCH/SoC -> EC/power logic
Schematic p.4
Follow chronological sequence
Deasserts/high when leaving S4
DMM logic level
Step transition
15
Power Sequence
SLP_S3#
PCH/SoC -> EC/power logic
Schematic p.4
Follow chronological sequence
Deasserts/high when entering S0
DMM logic level
Step transition
16
Memory
DDR VDD / VDDQ
Memory regulator -> DIMM/SoC
Schematic p.5
Follow chronological sequence
DDR generation-specific rail; verify schematic and memory generation
DMM DC at memory inductor
Flat DC; low ripple
17
Memory
DRAM reset
CPU/PCH/SoC -> memory
Schematic p.7
Follow chronological sequence
Released after memory power/clock prerequisites
DMM logic level
Clean reset release
18
CPU / SoC
VCCIO / CPU I/O rail
VR -> CPU/SoC
Schematic p.4
Follow chronological sequence
Platform-specific, commonly around 0.8-1.05 V on Intel generations
DMM DC at inductor
Flat DC; switching only at PWM nodes
19
CPU / SoC
VCCSA / System Agent
VR -> CPU/SoC
Schematic p.4
Follow chronological sequence
Platform-specific, commonly around 0.8-1.1 V
DMM DC at inductor
Flat DC
20
CPU / SoC
VR_ON / CPU VR enable
EC/PCH -> CPU VR controller
Schematic p.4
Follow chronological sequence
Active before CPU core rail starts; logic level is board-specific
DMM logic level
Clean enable edge
21
CPU / SoC
CPU core rail
CPU VR -> processor core
Schematic p.4
Follow chronological sequence
VID-controlled dynamic voltage; do not use a single universal value
DMM DC at core inductor
Multiphase switching on switch nodes; DC on output
22
CPU / SoC
VR power-good
CPU VR -> EC/PCH
Schematic p.88
Follow chronological sequence
Asserted after CPU VR outputs are valid
DMM logic level
Clean assertion after core rail rises
23
CPU / SoC
SVID clock/data
CPU/SoC VR controller
Schematic p.88
Follow chronological sequence
High-speed digital activity when CPU negotiates VID; logic level platform-specific
DMM not diagnostic; use scope
Digital bursts during CPU VR initialization
24
Power Good
SYS_PWROK / ALL_SYS_PWRGD
PGOOD logic -> PCH/SoC
Schematic p.5
Follow chronological sequence
Asserted only after required S0 rails are valid
DMM logic level
Clean delayed assertion
25
Power Good
PCH_PWROK / SoC power-good
EC/PGOOD logic -> PCH/SoC
Schematic p.5
Follow chronological sequence
Asserted when platform power prerequisites are valid
DMM logic level
Clean delayed assertion
26
Reset
PLTRST#
PCH/SoC -> platform devices
Schematic p.5
Follow chronological sequence
Released/inactive after clocks and power-good conditions are satisfied
DMM logic level
Clean low-to-high release
27
BIOS / SPI
SPI_CS#
PCH/SoC/EC -> SPI flash
Schematic p.8
Follow chronological sequence
Idle high with access pulses during firmware reads
DMM not diagnostic; use scope
Chip-select pulse bursts during start-up
28
BIOS / SPI
SPI_CLK
PCH/SoC/EC -> SPI flash
Schematic p.8
Follow chronological sequence
Clock bursts during firmware access
DMM not diagnostic; use scope
High-frequency clock bursts
29
Display
eDP / LCD panel power
Load switch -> panel connector
Schematic p.4
Follow chronological sequence
Usually 3.3 V or platform-specific panel logic rail
DMM DC at panel connector/fuse
Flat DC
30
Display
eDP HPD
Panel -> GPU/PCH/SoC
Schematic p.6
Follow chronological sequence
Valid HPD logic state when panel is connected and powered
DMM logic level
Clean logic level/transition
31
USB-C / PD
USB-C VBUS
USB-C port -> system power path
Schematic p.44
Follow chronological sequence
5 V default; 9/15/20 V or other profiles after valid PD contract
DMM DC
Flat negotiated DC; scope for transients only
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 / 31 checked
Checked
#
Signal / Rail
Measured
Observed Waveform / Logic
Result
Failure Isolation Hint
Technician Notes
1
Adapter / DC-IN main railSchematic p.6
No rail: inspect adapter, jack, fuse, protection MOSFETsAdditional readings
Technician evidence
2
ACOK / AC_PRESENTSchematic p.11
Missing: validate ACDET, charger supply, pull-up and charger ICAdditional readings
Technician evidence
3
Battery positive / system battery railSchematic p.58
Abnormal: verify pack, connector, BATFET and charger pathAdditional readings
Technician evidence
4
Battery SMBus clockSchematic p.2
No activity: check pull-up rail, EC/charger, battery presence and bus shortsAdditional readings
Technician evidence
5
Battery SMBus dataSchematic p.8
Stuck low/high: isolate battery/device and pull-up pathAdditional readings
Technician evidence
6
RTC / CMOS supplySchematic p.5
Missing RTC can block RSMRST# and standby sequencingAdditional readings
Technician evidence
7
3 V always-on railSchematic p.85
Missing/shorted: inspect standby controller enable and rail resistanceAdditional readings
Technician evidence
8
5 V always-on railSchematic p.85
Missing: inspect enable, controller supply, MOSFETs and load shortAdditional readings
Technician evidence
9
1.8 V auxiliary railSchematic p.87
Missing may block flash/PCH/EC logic on newer platformsAdditional readings
Technician evidence
10
32.768 kHz RTC / EC clockSchematic p.11
No clock: inspect crystal, load capacitors, supply and oscillator pinsAdditional readings
Technician evidence
11
RSMRST#Schematic p.5
Held low: trace RTC/standby rails, EC firmware, PCH/SoC prerequisitesAdditional readings
Technician evidence
12
PWRBTN# / ON-OFF# inputSchematic p.5
No pulse: button board, cable, ESD/filter path, pull-up or EC pinAdditional readings
Technician evidence
13
SLP_S5#Schematic p.5
Missing: PCH/SoC not exiting soft-off; verify RSMRST#, clocks, firmwareAdditional readings
Technician evidence
14
SLP_S4#Schematic p.4
Missing: memory/suspend rails may not enable; trace earlier state signalsAdditional readings
Technician evidence
15
SLP_S3#Schematic p.4
Missing: system remains in sleep state; verify firmware/PCH prerequisitesAdditional readings
Technician evidence
16
DDR VDD / VDDQSchematic p.5
Missing: check enable from S4/S3 logic and resistance to groundAdditional readings
Technician evidence
17
DRAM resetSchematic p.7
Held reset: trace memory rails, clocks, SYS_PWROK and platform reset sequenceAdditional readings
Technician evidence
18
VCCIO / CPU I/O railSchematic p.4
Missing: check enable, short and regulator controllerAdditional readings
Technician evidence
19
VCCSA / System AgentSchematic p.4
Missing: check enable/PGOOD and CPU rail sequencingAdditional readings
Technician evidence
20
VR_ON / CPU VR enableSchematic p.4
Missing: EC/PCH has stopped sequence; inspect previous power-good signalsAdditional readings
Technician evidence
21
CPU core railSchematic p.4
0 V: verify VR_ON, controller supply, phase short and CPU conditionAdditional readings
No activity with prerequisites valid: inspect CPU, VR controller, bus resistorsAdditional readings
Technician evidence
24
SYS_PWROK / ALL_SYS_PWRGDSchematic p.5
Missing: identify which upstream PGOOD/rail is absentAdditional readings
Technician evidence
25
PCH_PWROK / SoC power-goodSchematic p.5
Missing: trace aggregate power-good logic and required railsAdditional readings
Technician evidence
26
PLTRST#Schematic p.5
Held reset: check BIOS/SPI activity, clocks, PCH/SoC rails and PWROKAdditional readings
Technician evidence
27
SPI_CS#Schematic p.8
No activity: sequence, reset, clock or controller may not have reached firmware fetchAdditional readings
Technician evidence
28
SPI_CLKSchematic p.8
CS toggles but no clock: inspect controller/bus; no bus activity: trace sequence firstAdditional readings
Technician evidence
29
eDP / LCD panel powerSchematic p.4
Missing: check panel power enable, fuse/load switch and shorted panel/cableAdditional readings
Technician evidence
30
eDP HPDSchematic p.6
Missing: panel/cable/connector power or HPD trace issueAdditional readings
Technician evidence
31
USB-C VBUSSchematic p.44
Stuck at 5 V/no VBUS: inspect CC negotiation, PD controller and power-path FETsAdditional 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.
Controller / IC
CHARGER · ISL9538C
Function
Battery charging / adapter power-path controller
Related rails / signals
Battery positive / system battery rail
Enable / sequencing
ACOK / AC_PRESENT u2014 Valid logic state when adapter accepted; commonly logic high
PGOOD / status
ACOK / AC_PRESENT u2014 Valid logic state when adapter accepted; commonly logic high
Input
Charger
Battery connector
Output
EC/PCH
charger/system
Checklist tests
ACOK / AC_PRESENT u2014 Valid logic state when adapter accepted; commonly logic high
Battery positive / system battery rail u2014 Pack voltage appropriate to cell count and state of charge
Battery SMBus clock u2014 Pulled high with communication activity when battery is queried
Scope: Digital clock bursts
Battery SMBus data u2014 Pulled high with bidirectional data activity
No other published board checklist currently uses this exact stored IC part number.
No matching components found.
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 LA-J371P.
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 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.
Repair QC & Final VerificationRequired before solved publication
Every item must be PASS, or N/A with a reason. Any FAIL reopens the repair and blocks the solved forum post.
V5.0 Repair Case Intelligence
Board Repair Dashboard
Aggregate repair patterns for LA-J371P · Rev 1.0. 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.