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Recap guide

Recap the Franklin Ace 1000 / 1200

The Franklin Ace 1000 and 1200 are Apple II compatible computers. Console5 lists the capacitors for their ASTEC AA12180 power supply, with a cap map that shows where each one sits.

Open the interactive checklist Tick off each capacitor as you replace it. It saves in your browser.

Worth a recap. Reports say it is a common and useful fix on this machine.

Where to start

We did not find a clear list of what fails first on this machine, so we are not guessing. Read the guides below, check the board for leaks, and replace what you can see.

Before you start

  • This is a mains power supply with 250 V capacitors and X class suppression parts. Unplug it and give it time to drain before you touch anything.
  • Boards changed during production. Check your board number against the guides before you order parts.
  • Boards changed during production. Check your board number against the guides before you order parts.

ASTEC AA12180 power supply

Eighteen parts. C1, C4 and C5 are film suppression capacitors, not electrolytics: C1 and C4 are 250 VAC X class RIFA parts, and Console5 notes that C5 is polyester, not a hazardous RIFA. Console5's drawing writes C5 as .01 uF where its list says 0.1 uF 400 V, so read the part itself before you order. The drawing also shows C2, C3, C11, C12, C18, C19 and C25 (ceramic or film parts) that are not on the list.

PartValueVoltsType
C1 250 VAC X class, RIFA metallized paper.0.1 µF250 Vcheck your board
C4 250 VAC X class, RIFA metallized paper.0.1 µF250 Vcheck your board
C5 400 VDC RIFA type PHE 280. Polyester, not metallized paper, not a hazardous RIFA.0.1 µF400 Vcheck your board
C6150 µF250 Vcheck your board
C7150 µF250 Vcheck your board
C8150 µF250 Vcheck your board
C9150 µF250 Vcheck your board
C10220 µF10 Vcheck your board
C131000 µF10 Vcheck your board
C141000 µF10 Vcheck your board
C151000 µF10 Vcheck your board
C241000 µF10 Vcheck your board
C16330 µF16 Vcheck your board
C17330 µF16 Vcheck your board
C201000 µF25 Vcheck your board
C21470 µF25 Vcheck your board
C22470 µF25 Vcheck your board
C23470 µF25 Vcheck your board

Shopping list

18 capacitors in all, grouped by value. Buy a few spares.

  • 4 x 150 µF, 250 V (check your board): Amazon · eBay
  • 4 x 1000 µF, 10 V (check your board): Amazon · eBay
  • 3 x 470 µF, 25 V (check your board): Amazon · eBay
  • 2 x 0.1 µF, 250 V (check your board): Amazon · eBay
  • 2 x 330 µF, 16 V (check your board): Amazon · eBay
  • 1 x 0.1 µF, 400 V (check your board): Amazon · eBay
  • 1 x 220 µF, 10 V (check your board): Amazon · eBay
  • 1 x 1000 µF, 25 V (check your board): Amazon · eBay

Skip the sourcing

While you are in there

Affiliate links. As an Amazon Associate I earn from qualifying purchases. These links only search by name. Disclosure

Step by step

  1. Photograph both sides of the board before you touch anything. Zoom in on every capacitor. The photo is your map when you are three hours in.
  2. Unplug it, take out the batteries and let it sit. Old power supplies and CRT parts can hold a charge. If your machine has a tube, leave the tube and its board to a professional.
  3. Open it up and keep the screws sorted. A muffin tin or an egg carton works. Different screws go in different holes, and the holes never forgive you.
  4. Look for leaks. Clean any sticky residue off with isopropyl alcohol and a soft brush. A leaked capacitor leaves brown crust and can eat copper traces. Look at the traces under it, not only the part itself.
  5. Mark the polarity of every capacitor on the photo before it comes off. On an electrolytic, the stripe marks the negative leg. The board usually shows a half-shaded circle or a bar for the same spot.
  6. Remove the old capacitors one at a time. Surface mount: add fresh solder to both ends and rock the part off, or use flux and a low-melt alloy. Through-hole: heat one leg at a time and clear the hole with wick or a pump.
  7. Clean the pads and check for lifted pads or damaged traces. Clean flux off with isopropyl. A bad pad needs a jumper wire, not hope.
  8. Fit and solder the new capacitor, matching polarity. Same capacity, same or higher voltage, and it has to physically fit. Work from the smallest parts up.
  9. Clean the flux off and look at every joint. A good joint is shiny and shaped like a tiny volcano. A dull blob or a ball is a cold joint: reflow it.
  10. With a multimeter, check for shorts across the power rails before you power it on. Use the continuity or resistance setting. A reading near zero means stop and look for a solder bridge.
  11. Power it up and test everything: video, sound, controls, the lot. If something is wrong, check polarity first. It is the most common mistake and the easiest fix.

Tools

Safety

  • Good airflow, or a fume fan. Solder smoke is not for breathing.
  • Safety glasses on. Solder spits and clipped legs fly.
  • Iron in its stand when you are not holding it. Know where the cord is.
  • Touch bare metal first, or use a wrist strap. Static kills old chips.
  • No tube, no mains power supply. Leave those to a professional.
  • Wash your hands after, especially if you used leaded solder.

Values are shown as published in the guides above, and boards changed during production. Check the board in front of you. A recap involves hot tools and, on some machines, dangerous voltages. You do it at your own risk.

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