Macintosh Classic Capacitor Replacement Guide
Replacing electrolytic capacitors (recapping) in your Macintosh Classic is essential for restoring power stability, ensuring clean video output, and preventing long-term damage due to capacitor leakage. This guide outlines the recommended procedure and provides complete analog and logic board capacitor specifications.
Capacitor Inspection
[edit | edit source]Before recapping, visually inspect all capacitors for common signs of failure:
- Bulging Tops – Swollen or domed caps indicate internal gas buildup.
- Electrolyte Leakage – Brown/white crust or residue near leads shows capacitor failure.
- Corroded Pads or Traces – PCB staining or corrosion suggests leakage damage.
If any of these symptoms are present, immediate replacement is advised.
Macintosh Classic Capacitor List
[edit | edit source]Analog Board Capacitors
[edit | edit source]The Macintosh Classic analog board has several capacitors that may require replacement. Due to variations in board revisions, consult the specific schematic for your model. Common capacitor values include:
| Label | Capacitance | Voltage | Quantity |
|---|---|---|---|
| CF3 | 1000µF | 16V | 1x |
| CF4 | 470µF | 25V | 1x |
| CL1 | 1000µF | 25V | 1x |
| CL2 | 4.7µF | 250V | 1x |
| CL3 | 1µF | 50V | 1x |
| CP1 | 220µF | 250V | 1x |
| CP10 | 470µF | 25V | 1x |
| CP11 | 220µF | 50V | 1x |
| CP12 | 1000µF | 16V | 1x |
| CP13 | 220µF | 250V | 1x |
| CP2 | 470µF | 50V | 1x |
| CP34 | 1µF | 50V | 1x |
| CP36 | 2200µF | 10V | 1x |
| CP4 | 47µF | 25V | 1x |
| CP5 | 1µF | 50V | 1x |
| CP6 | 2200µF | 10V | 1x |
| CP7 | 1000µF | 10V | 1x |
| CP8 | 2200µF | 16V | 1x |
| CP9 | 470µF | 25V | 1x |
| CV2 | 470µF | 10V | 1x |
| CP3 | 10µF | 25V | 1x |
| CP37 | 1µF | 50V | 1x |
| CL11 | 47µF | 16V | 1x |
| CF2 | 220µF | 16V | 1x |
| CF1 | 47µF | 25V | 1x |
- Note: Capacitor labels and values may vary between board revisions. Always verify with your specific board.*

Logic Board Capacitors
[edit | edit source]The Macintosh Classic logic board contains surface-mount electrolytic capacitors prone to leakage and corrosion.
| Label | Capacitance | Voltage | Quantity |
|---|---|---|---|
| C1 – C7 | 47µF | 16V | 7x |
| C8 | 1µF | 50V | 1x |
Note: When replacing with tantalum capacitors, consider using 25V rated caps for the 47µF positions to ensure longevity.

Capacitor Replacement Procedure
[edit | edit source]- Discharge the CRT – Follow standard CRT discharge procedures before working inside.
- Remove the Logic & Analog Boards – Label cables and safely extract both boards.
- Desolder Old Capacitors – Use a quality soldering iron, braid, or pump to remove components cleanly.
- Clean the Board – Thoroughly clean any electrolyte residue with isopropyl alcohol.
- Install New Capacitors – Insert with correct polarity (check for stripe on negative side).
- Solder Carefully – Ensure clean, shiny joints without cold solder bridges.
- Trim Leads & Inspect Work – Cut excess and examine under light or magnification.
- Test for Shorts – Use a multimeter to confirm there are no shorts across power rails.
Recommended Tools
[edit | edit source]- Temperature-controlled soldering iron (fine tip)
- Desoldering braid or vacuum pump
- Quality leaded solder (0.5 mm recommended)
- Isopropyl alcohol and ESD brush
- Multimeter
- Safety goggles and insulated gloves
Voltage Check After Recap
[edit | edit source]Apple publishes no rail voltages or tolerances for this machine, and no power-supply adjustment procedure. The Macintosh Classic / Classic II / Performa 200 Service Source hosted on this wiki gives only the mains side in its Electrical specification — line voltage 100–120 V AC, 47–63 Hz single phase, 100 W maximum — and its Adjustments chapter covers video only: light meter setup, cutoff, brightness and contrast, centring, size and focus.
What you can check is that the rails are inside the range the logic on the board is specified for. 5 V logic is specified for a 5 V supply at ±5 per cent, which gives 4.75 V to 5.25 V; treat anything outside that as a fault, and anything that sags under load or carries visible ripple as a fault regardless of what the DC reading says. Compare against a known-good example of the same model where you can.
Measure at the floppy drive or logic board power connector.
Tips for Best Results
[edit | edit source]- Always recap the logic board first – leaking caps often cause corrosion damage.
- Use quality capacitors (e.g., Nichicon, Panasonic, Rubycon).
- Turn on the system periodically to prolong capacitor lifespan.
- Replace in full sets for even aging and reliability.
- Clean the board thoroughly with isopropyl alcohol after removal.