IBM 5160 PSU 240V: Difference between revisions

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|C1 Inrush Limiter sub-board
|C1 Inrush Limiter sub-board
|1
|1
|
|NICHICON UPW1V101MPD
|
|[https://au.element14.com/nichicon/upw1v101mpd/aluminum-electrolytic-capacitor/dp/3464408 Element14]
|-
|-
|C2 Inrush Limiter sub-board
|C2 Inrush Limiter sub-board
|1
|1
|
|PANASONIC EEUEB1H3R3S
|
|[https://au.element14.com/panasonic/eeueb1h3r3s/cap-3-3-f-50v-20/dp/2079138 Element14]
|-
|-
|C2, C3 Overcurrent sub-board
|C2, C3 Overcurrent sub-board
|2
|2
|
|RUBYCON 50YXF1MEFC5X11
|
|[https://au.element14.com/rubycon/50yxf1mefc5x11/cap-1-f-50v-20/dp/2811489 Element14]
|-
|-
|C3001 Voltage Limiter sub-board
|C3001 Voltage Limiter sub-board
|1
|1
|
|PANASONIC ECA1CHG470
|
|[https://au.element14.com/panasonic/eca1chg470/cap-47-f-16v-20/dp/1907196 Element14]
|-
|-
|C25
|C25
|1
|1
|
|PANASONIC EEUEB1H2R2S
|
|[https://au.element14.com/panasonic/eeueb1h2r2s/cap-2-2-f-50v-20/dp/2079140 Element14]
|-
|-
|C10, C29
|C10, C29, C16, C17
|2
|4
|
|NICHICON UPM1H100MDD
|
|[https://au.element14.com/nichicon/upm1h100mdd/cap-10-f-50v-20/dp/8812594 Element14]
|-
|C16, C17
|2
|
|
|-
|-
|C27
|C27
|1
|1
|
|PANASONIC ECA1CHG220
|
|[https://au.element14.com/panasonic/eca1chg220/cap-22-f-16v-20/dp/1907194 Element14]
|-
|-
|C5, C6
|C5, C6
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|2
|2
|Nichicon LLS2D471MELZ
|Nichicon LLS2D471MELZ
|[https://au.element14.com/nichicon/lls2d471melz/aluminum-electrolytic-capacitor/dp/1818548?st=470uf%20200v Element14]
|[https://au.element14.com/nichicon/lls2d471melz/aluminum-electrolytic-capacitor/dp/1818548 Element14]
|-
|-
|C9
|C9

Revision as of 06:03, 16 May 2024

For more information, see this article's corresponding Wikipedia page: IBM Personal Computer XT.

Released as the IBM Personal Computer XT, or PC/XT, the 5160 is based around Intel's 8088 processor featuring 8-bit ISA slots for expansion cards. It came with one 5.25" floppy drive, and one 5.25" full height HDD most commonly 10MB. The PC/XT used a 130W power supply.


IBM Personal Computer XT (PC/XT)
Preliminary Information
Release Year 1983
Leak Risk Low
Batteries None
Capacitor Types Aluminium Electrolytic, Tantalum, Ceramic
Destructive Entry No


Known Issues

No Power

Causes

  • Power supply will not turn on

Solutions

  • Power supply must have a load on it to activate
  • Recap

Disassembly Notes

The external casing must be tilted up when pulled all the way forward to release.

Watch out for the speaker on the left side when sliding the casing.

The centre screw tab may catch on the PSU and cable (lift rear of case when sliding avoid).

PSU is held by four 1/4" hex screws to rear of PC case and two slides on bottom of PC case and needs to be slid toward front of PC to release.

When connecting the PSU back to the system the mother board power connectors P8 and P9 should have the black wires next to each other.

The PSU case has two Torx T15H security screws in addition to the standard 1/4" hex screws.

Once the PSU is opened, there are four 1/4" hex screws that need to be undone to fully remove the main board, in addition to an earth wire and connector from the AC input board.

There are three sub-boards attached to the main PSU board that generally do not need to be removed to access all the electrolytic caps.

Original Parts

130W Power Supply Main Board

204-1071-03

Notes:

  1. In the two PSU examples shown here, the three sub-boards extending towards the camera are left Voltage Windows, centre Overcurrent Monitor, right Inrush Limiter
  2. The polarity of the C3 cap on the Overcurrent sub-board appears to be marked incorrectly on the board. See picture above. Check and confirm before removing/replacing. Presumably the PSU functioned correctly for most of its life and the manufacturer knew to ignore the polarity marking for this cap.
Capacitor Specifications and Footprint Information
RefDes Qty Capacitance Voltage Mount Diameter/Size Height Lead Spacing Temp Type Brand Series
C1 Inrush Limiter sub-board 1 100 µF 25V Through hole (radial) 7mm 12mm 3mm 105C Electrolytic Marcon CE-US (4WC?)
C2 Inrush Limiter sub-board 1 3.3µF 25V Through hole (radial) 5mm 12mm 2mm 105C Electrolytic Nichicon M
C2, C3 (see note 2 above) Overcurrent sub-board 2 1 µF 50V Through hole (radial) 5mm 12mm 2mm 105C Electrolytic KML
C3001 Voltage Window sub-board 1 47 µF 16V Through hole (radial) 6mm 12mm 3mm 105C Electrolytic Nichicon M
C25 1 2.2 µF 50V Through hole (radial) 5mm 12mm 2mm 105C Electrolytic Marcon CE-US (3VC?)
C10, C29 2 10 µF 16V Through hole (radial) 5mm 12mm 2mm 105C Electrolytic Nichicon M
C16, C17 2 10 µF 25V Through hole (radial) 5mm 12mm 2mm 105C Electrolytic Marcon CE-US (3XC?)
C27 1 22 µF 16V Through hole (radial) 5mm 12mm 2mm 105C Electrolytic Marcon CE-US (3YC?)
C5, C6 2 330 µF 16V Through hole (radial) 10mm 16mm 5mm 105C Electrolytic Marcon CL-US (4WB?)
C21 1 470 µF 25V Through hole (radial) 13mm 20mm 5mm 105C Electrolytic Nichicon M
C14, C15 2 470 µF 200V Through hole (radial, snap) 25mm 40mm 10mm 85C Electrolytic Matsushita CE
C9 1 1000 µF 25V Through hole (radial) 16mm 25mm 8mm 105C Electrolytic KML M(?)
C7, C8 2 2200 µF 10V Through hole (radial) 16mm 25mm 8mm 105C Electrolytic Matsushita CE GM
C11 1 4700 µF 16V Through hole (radial) 18mm 35mm 8mm 105C Electrolytic Marcon CE-US (4PB?)

Replacement Parts

130W Power Supply Main Board

Capacitors
RefDes Qty Compatible Part Number Order Links
C1 Inrush Limiter sub-board 1 NICHICON UPW1V101MPD Element14
C2 Inrush Limiter sub-board 1 PANASONIC EEUEB1H3R3S Element14
C2, C3 Overcurrent sub-board 2 RUBYCON 50YXF1MEFC5X11 Element14
C3001 Voltage Limiter sub-board 1 PANASONIC ECA1CHG470 Element14
C25 1 PANASONIC EEUEB1H2R2S Element14
C10, C29, C16, C17 4 NICHICON UPM1H100MDD Element14
C27 1 PANASONIC ECA1CHG220 Element14
C5, C6 2
C21 1
C14, C15 2 Nichicon LLS2D471MELZ Element14
C9 1
C7, C8 2
C11 1

If parts are not available or different selection is preferred, you can use the values in the Original Parts section to perform a parametric search.

Related Links

See https://minuszerodegrees.net/5160/psu/5160_psu.htm for additional information

See https://minuszerodegrees.net/5150_5160/MDC/minimum_diag_config.htm for how to confirm faulty PSU

See https://slx-online.biz/hursley/docs/5155_psu.pdf by Dr H.Holden for a comprehensive breakdown of a 5155 PSU that is very similar. This is absolute gold.

References