Psion Organiser II Troubleshooting Guide

Fault-finding for the Psion Organiser II.
Psion's Technical Manual documents the supply rails, the operating states, the power-on sequence and the expected currents in enough detail to diagnose this machine properly rather than by substitution.[1][2] This page combines that with what the community has found in practice.
⚠️ Before you start
[edit | edit source]- Remove the battery before opening anything.
- Back up to a Datapak first if the machine still works at all. RAM contents do not survive a long battery removal.
- Never insert or remove a Rampak with the machine switched on. The sudden power drop corrupts data.[3]
- Everything on the system board is CMOS. Use an anti-static strap.
- The SVPP rail reaches 21 V during Datapak writes, from a capacitor charged towards 35 V. Harmless to you, fatal to a pack if applied at the wrong moment.
Step 1: Identify the machine
[edit | edit source]If it powers up at all, get this out of the way first. From the main menu choose CALC and evaluate:[4]
PEEKB(-24)— model: 0 = CM, 1 = XP, 2 = XP(LA), 14 = LZ, 13 = LZ64. Values of 17–20, 29, 30, 65, 66, 129 and 130 are POS and industrial variants.PEEKB(-23)— ROM version in BCD, so$46is version 4.6.PEEKB(-25)— language options.
This matters because the LZ/LZ64 use a Texas Instruments CF70043 control IC and HD66780/HD66100 LCD drivers, while the earlier machines use an NEC µPD65006 and HD44780/HD44100.[5] Boards are not interchangeable across that divide.
Step 2: Rule out the four usual suspects
[edit | edit source]Before any measurement:
- Battery. Fit a known-good alkaline PP3 and check it under load, not just off-load. A cell that reads 9 V open-circuit and collapses under a 200 mA peak will produce completely misleading symptoms.
- Contrast. Sweep the thumbwheel through its full travel, slowly. On a tired display the usable band is narrow.
- Packs. Remove every pack and try again. A shorted or damaged pack can hold the whole machine down.
- AC key. If AC is dirty or dead, nothing will switch the machine on — it is the only key not in the scanned matrix.[1]
Step 3: Understand what should happen at switch-on
[edit | edit source]Knowing the sequence tells you where it stopped.[1]
- Pressing AC (or a rising edge on the external AC input, or a timeout of the stage 2 counter) sets the ON/OFF latch in the control IC.
- ON_B goes low immediately, switching on the supply rail regulators.
- After a delay for the rails to settle, the processor is brought out of standby by sequencing STBY_B and RES_B: it sits in reset for 30 to 60 ms while the oscillator and E clock start, then runs.
- The processor initialises the LCD — the display drivers lose power when the machine is off, so the LCD is re-initialised every time.
- Shutdown is initiated by the processor itself, by accessing the SWITCH OFF address at
$01C0–$01FF.
So: no rails at all is a power board or ON/OFF latch problem; rails present but no display is the processor, the ROM or the LCD; display but no response is the keyboard or the control IC.
Step 4: Measure
[edit | edit source]Supply currents
[edit | edit source]The most informative single measurement is the current drawn from the battery.[2]
| State | Expected | What it means if wrong |
|---|---|---|
| Off | ~40 µA total (30 µA system board plus ~10 µA power supply quiescent) | Milliamps here means something is leaking. A tired electrolytic on the power board is the usual cause, and it explains batteries flat after weeks in a drawer. |
| On, processor running | ~25 mA | Much higher with no pack activity suggests a rail that is not regulating. |
| On, processor asleep | ~4 mA | Never dropping to this suggests the machine is not entering sleep mode. |
| Slots active, no devices fitted | ~25 mA internally | — |
| Slots active, peak | up to 170 mA (regulator limit), system peaks 200 mA | — |
Use a bench supply at 9 V with the current limit wound down to about 250 mA. A shorted rail then shows up as a limit rather than as damage.
Rail voltages
[edit | edit source]| Rail | Off | On | Symptom when missing or wrong |
|---|---|---|---|
| VCC1 | 3–5 V | 5 V ±5 % | Nothing works. If it is present when off but absent when on, the main regulator has failed and the standby regulator is carrying the board. |
| VCC2 | off | 5 V ±5 % | Display completely dead although the machine otherwise runs (beeps, responds to keys) |
| V_LCD | off | adjustable +1.2 V to −3 V by the thumbwheel | No contrast control at all; blank or washed-out display |
| SVCC | off | 5 V ±5 % when the slots are switched on | Packs not recognised at all |
| SVPP | off | 4.5 V normally, 21 V ±2 % pulsed while programming | Packs read fine but SAVE always fails |
Two useful behaviours to know:
- The main regulator gives up below about 5.3 V input, after which VCC1 simply follows the supply about 0.3 V below it.[2] A machine that misbehaves on a half-flat battery is behaving as designed.
- LOWBAT is asserted when VCC1 falls about 2 % below nominal.[2] A persistent LOW BATTERY warning with a good cell points at the regulator or the divider chain that feeds the detector, not at the battery.
Symptom table
[edit | edit source]| Symptom | Likely cause | Action |
|---|---|---|
| Completely dead | Flat or high-resistance battery; corroded battery leads; AC key; ON/OFF latch; failed regulator | Known-good alkaline PP3 first. Then check for VCC1 present with the machine off. Then check AC reaches the control IC. |
| Dead, and the battery goes flat in storage | Leaky electrolytic on the power board | Measure the off-state current. It should be around 40 µA. |
| Black screen on first switch-on | Contrast at one extreme | Turn the thumbwheel. This is the single most common "fault" reported on these machines.[3] |
| Display blank but the machine beeps and responds | VCC2 or V_LCD missing | Measure both. VCC2 comes from VCC1 through a switch transistor; V_LCD comes from a charge pump. |
| No contrast change across the whole wheel travel | V_LCD charge pump or thumbwheel | Check the wheel's resistance changes; if it does, the pump has failed. See the Psion Organiser II Capacitor Replacement Guide. |
| Missing dots, a dead column, a faded band | Conductive rubber LCD connector strip | Release the LCD clamp, clean both faces and the strip with isopropyl alcohol, reassemble squarely with even pressure. Replace the strip (Psion 3700 0002) if cleaning does not cure it. |
| Persistent whistle, buzz or squeal — especially on an LZ or LZ64 | Ageing electrolytics on the power board. A 10 µF capacitor whose positive side connects to the buzzer is the reported culprit, blocking the pulsing voltage of the programming pump | Recap the power board. This is a documented, confirmed fix.[6] |
| Clock resets or loses time on every battery change | Hold-up capacitor on the power board | Should hold the rail above 3 V for 2–3 minutes with the machine off.[2] |
| Clock drifts badly while the machine is off | 32768 Hz oscillator marginal, or the stage 2 counter | The machine wakes itself every 34 min 8 s to update the clock; if that mechanism fails the time drifts.[1] |
| Machine switches itself on in a drawer | Normal | It wakes every 34 min 8 s to keep time, then switches off again.[1] |
| One key dead | Keymat pill or PCB pad | Clean both. See Psion Organiser II General Maintenance. |
| A whole row of keys dead | One of the K1–K7 outputs | Those outputs come from the control IC's stage 2 counter bits. Check for a broken track first.[1] |
| A whole column of keys dead | One of the KBD1–KBD5 inputs on port 5 bits 2–6 | Trace the line back to the processor.[1] |
| AC dead, everything else fine | AC key contact | AC is wired directly to the control IC and to port 5 bit 7, outside the scanned matrix.[1] |
| Packs read but SAVE always fails | 21 V programming pump | The pump storage capacitor is the usual failure. Reads do not use it, which is why the fault is so clean-cut. |
| Packs not recognised at all | SVCC not switched on; slot contacts; PACON_B | Clean the contacts, then check SVCC appears when a pack operation is attempted. |
| One slot works, the other does not | Slot contacts or that slot's select path | Swap a known-good pack between slots to confirm before opening anything. |
| Rampak has lost its contents | Flat backup cell in the pack, or hot-plugging | Check the pack's own cell. Never hot-plug a Rampak.[3] |
| "DATAPAK FULL" on a pak that looks empty | Erased records still occupy space | Normal EPROM behaviour. Copy the live records to a fresh pak, or have the old one UV-formatted. |
| Machine shows "PACK?" or "INSERT PACK?" then switches off | It is a POS model | Not a fault. POS machines look for a procedure called BOOT on the fitted packs and switch off if they cannot find one.[4] |
| Numeric keypad or unusual keyboard legends | POS variant | Confirm with PEEKB(-24).[4]
|
| Persistent LOW BATTERY with a good cell | Regulator or the LOWBAT divider chain | LOWBAT trips at about 2 % below nominal VCC1.[2] |
| Corrosion on the boards, green vias | Past battery leak or capacitor leakage | Neutralise, clean thoroughly and inspect every track in the affected area. See Battery Explosion, Capacitor or Corrosion Damage. |
| Buzzer clicks but will not produce a tone | Control IC or software, not the element | The element only makes a sound on transitions of the ALARM signal; a tone is the software toggling it.[2] |
Diagnosing the memory configuration
[edit | edit source]If a machine boots but reports the wrong amount of memory, or crashes in a way that suggests a decoding problem, check the memory decode links. There are eight, arranged as four pairs, and only one of each pair should be fitted.[1]
| Version | PROM | RAM | Links fitted |
|---|---|---|---|
| CM | 32 KB at $8000–$FFFF |
8 KB at $2000–$3FFF |
L1, L4, L5, L7 |
| XP | 32 KB at $8000–$FFFF |
8 KB + 8 KB at $2000–$5FFF |
L1, L4, L5, L7 |
| LA | 32 KB at $8000–$FFFF |
32 KB at $0400–$7FFF |
L1, L4, L6, L7 |
The individual links do the following:[1]
- L1 routes CS1_B to a 32 KB PROM; L2 routes CS2_B to an 8 KB PROM.
- L4 makes A14 available to a 32 KB PROM; L3 pulls PROM pin 27 high when A14 is not needed.
- L6 routes CS6_B to a 32 KB RAM; L5 routes CS5_B to an 8 KB RAM.
- L7 (normally fitted) gates the chip selects with the processor E clock; L8 makes them depend on the address lines alone.
RAM must be 250 ns or better.[1] The 32 KB parts Psion used are 62256LFP / KM62256BLG and the 8 KB parts 6264LFP.[1][5]
What is realistically repairable
[edit | edit source]| Part | Repairable? | Notes |
|---|---|---|
| Power supply board | Yes | Mixed technology, but the electrolytics are leaded and the values are published. This is where most faults are. |
| LCD connector strip | Yes | Cleaning usually does it; replacements exist (Psion 3700 0002). |
| LCD panel | Yes, with a donor | Psion part 3900 0003. Note the LZ uses different drivers. |
| Keymat | Yes | Washable; Psion part 8700 0001. |
| RAM / PROM | Yes, for SMD-capable hands | 62256/6264 static RAM and 27C256/27C64 EPROM are all standard parts, and Organiser II ROM images are archived. |
| HD6303XFP processor | Difficult | 80-pin flat pack. Obtainable but a demanding rework job. |
| Control IC (µPD65006 / CF70043) | No | Semi-custom parts made only for Psion. A failed control IC means a donor board. |
| Board with heavy corrosion | Depends | Track repair is possible but the boards are thin and the tracks fine. |
Related pages
[edit | edit source]- Psion Organiser II
- Psion Organiser II General Maintenance
- Psion Organiser II Capacitor Replacement Guide
- Organiser II Spare Parts List
- Psion Organiser Troubleshooting Guide — the Series 1
- Battery Explosion, Capacitor or Corrosion Damage · Capacitor Failure Symptoms
References
[edit | edit source]- ↑ 1.00 1.01 1.02 1.03 1.04 1.05 1.06 1.07 1.08 1.09 1.10 1.11 1.12 Psion Organiser II Technical Manual, Psion Ltd, 1986, Chapter 2 "System Board", transcribed at Jaap's Psion Organiser II Page. Source for the power-on and shutdown sequence, memory options and links, keyboard matrix, real-time clock divider chain, the 34 min 8 s wake-up, the LCD interface and the standby current figures.
- ↑ 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 Psion Organiser II Technical Manual, Psion Ltd, 1986, Chapter 3 "Power Supply Board", transcribed at Jaap's Psion Organiser II Page. Source for the rail voltages, operating states, currents, PP3 characteristics, the V_LCD generator, the 21 V programming pump and the LOWBAT detector.
- ↑ 3.0 3.1 3.2 PSION Organiser II Forum. Community source for the Rampak hot-plug corruption problem, top-slot device power behaviour, and general repair practice.
- ↑ 4.0 4.1 4.2 Psion Organiser II Models and Version Numbers, Jaap's Psion Organiser II Page. Source for the PEEKB identification values, the POS boot behaviour and the ROM version table.
- ↑ 5.0 5.1 Psion Organiser II Spare Parts List v3, Psion. Hosted on this wiki as File:Psion Organiser II Spare Parts List v3.pdf. Source for the per-variant device identities, capacitor values, and part numbers.
- ↑ Byte-My-Vdu, "Psion II LZ Repair", 14 December 2018, and the comments beneath it. Source for the LZ/LZ64 whistle, the capacitor complement, the confirmation that a recap cures it, and the identification of the buzzer-connected 10 µF capacitor.