CNC pallet changer proximity switch
Match sensing type, connector, and target gap before replacing APC clamp or seat sensors.
Makino CNC alarm guide for a51/a61, D500, F5, V56, servo and spindle faults, ATC errors, batteries, cabinet fans, and lube sensors.
Makino CNC alarm guide for a51/a61, D500, F5, V56, servo and spindle faults, ATC errors, batteries, cabinet fans, and lube sensors.
Parts to price first
Match sensing type, connector, and target gap before replacing APC clamp or seat sensors.
Price filters after confirming the Makino coolant or oilmatic filter part number.
Use cabinet fan size, voltage, and airflow rating from the existing fan label.
Compare thread size, flow range, and wiring before replacing Makino lube-flow fault parts.
Relevant when spindle orientation or ATC recovery faults trace to feedback loss instead of clamp logic.
Match sensor body, output type, cable, and target distance before replacing ATC arm, shutter, or unclamp sensors.
Makino machining centers throw alarms from three layers at once. You may see a Makino PMC alarm, a Fanuc or Mitsubishi servo/spindle alarm, and a Makino Pro message on the same stop. If you clear the wrong layer first, the machine just faults again. This guide covers the alarm families maintenance techs see most on a51, a61, D500, F5, and V56 machines, with the alarm number, what it means, what usually causes it, and how to recover without making the problem worse.
Most Makino machines in this range use Makino Professional 5 or Professional 6 on top of a Fanuc or Mitsubishi CNC platform.
That means an alarm can come from:
Servo or spindle drive layer
These are the Fanuc or Mitsubishi alarms such as 401 Servo Alarm, 414 Servo Not Ready, 417 Servo Disconnected, or spindle amplifier alarms.
Makino PLC / PMC layer
These are machine-built sequence alarms for the tool changer, pallet changer, lube system, hydraulics, coolant, guards, and other machine functions. These alarms often use five-digit numbers such as 13035, 13063, or 13207.
Makino Pro operator layer
These messages point you to the sequence that failed. They usually tell you which confirmation never arrived, for example pallet seated, clamp complete, shutter open, spindle oriented, or arm home.
The fastest rule on Makino is simple: do not treat every alarm like an electrical problem. On these machines, contamination, pressure instability, poor sensor feedback, and incomplete sequence conditions cause a high percentage of stoppages.
Exact screen names vary by control generation, but the workflow is consistent.
If the alarm happened during a tool change or pallet change, go to the Makino recovery or maintenance screen before cycling power. The screen usually shows which confirmation is missing. That saves time and avoids making the sequence position harder to recover.
Alarm: Fanuc Servo Alarm 401
Meaning: Servo amplifier or axis fault
The CNC received a fault signal from a servo amplifier. On Makino this is usually the umbrella alarm. The real cause sits in the axis detail or the amplifier status.
Clear the underlying cause, then reset the servo alarm from the control. If 401 returns immediately at power-up, do not keep resetting. You likely have a power, amplifier, or feedback failure.
Alarm: Fanuc Servo Alarm 414
Meaning: Servo not ready
The CNC tried to enable the servo system, but the amplifier did not enter ready state.
Restore the safety and power condition, then power the machine down and back up cleanly. If the amplifier still will not report ready, move to amplifier-level diagnostics.
Alarm: Fanuc Servo Alarm 417
Meaning: Servo disconnected or serial communication loss
The CNC lost communication with the servo amplifier over the serial or fiber link.
Repair the communication or power issue and reboot the machine. If 417 returns on the same node, isolate that amplifier and its cable.
Alarm: Fanuc Spindle Alarm 12
Meaning: Overcurrent in DC link or spindle amplifier current fault
The spindle amplifier detected abnormally high current in the DC link or power stage during spindle start, orientation, acceleration, or braking.
Reset after the spindle system cools and after you correct the load, wiring, or amplifier fault. If the spindle trips on every start command, stop and isolate the spindle motor and amplifier.
Makino ATC faults usually stop because a condition did not confirm in time. The machine expected shutter open, pot vertical, arm home, tool clamped, or spindle oriented, and never saw the input.
Typical message: Tool changer sequence timeout, pot not confirmed, arm not home, clamp not confirmed, shutter fault
Use Makino’s ATC recovery screen, not brute force. Step the mechanism in the correct direction until the tool changer returns to a known state. Then clear the alarm and verify spindle tool data if the interruption happened mid-cycle.
On a51 and a61 horizontal machining centers, APC faults are common because the pallet system depends on several clean confirmations happening in sequence.
Typical message: Pallet not seated, clamp not complete, APC arm home timeout, receiver not ready
The pallet sequence timed out waiting for a position, clamp, door, or pressure confirmation.
Recover the APC from the Makino maintenance screen. Do not force pallet clamp with contamination still present. The machine will come back to the same fault.
Makino maintenance manuals include real PMC alarm lists for support systems. The V55 manual’s oil controller section includes these alarms:
Message: FLOW QUANTITY OF SPINDLE LUBRICANT IS ABNORMAL
Meaning: The spindle lube flow rate is outside the expected range.
Common causes:
Diagnosis: Check lube pump output, inspect the metering units, and verify the flow sensor changes state during a lube cycle.
Message: OILMATIC FILTER IS CLOGGED
Meaning: The oil controller filter differential has reached the warning or alarm threshold.
Common causes:
Diagnosis: Replace the filter, inspect oil condition, and confirm pressure returns to normal after service.
Message: COOLANT LEVEL IS TOO LOW
Meaning: Coolant tank level sensor is below minimum.
Common causes:
Message: SPINDLE LUBRICANT FLOW SENSOR ABNORMAL
Meaning: Flow switch or sensor feedback is invalid.
Common causes:
Message: SPNDL OILMATIC THERMAL IS TRIPPED
Meaning: The oil controller thermal overload has tripped.
Common causes:
Message: OILMATIC ALARM
Meaning: General oil controller alarm. Check the oil controller panel for the specific subcondition.
Message: COMMUNICATION WITH OILMATIC IS ILLEGAL
Meaning: Communication with the oil controller failed.
Common causes:
Fix the support-system fault, then reset from the Makino control. For overloads, correct the cause before resetting breakers or thermal relays.
Makino coolant faults often look simple, but a low coolant or lube alarm can block spindle warm-up, ATC sequence, or prolonged cycle operation.
Alarm class: Axis overtravel, positive or negative limit
An axis hit the hardware limit switch or exceeded a soft travel limit.
Move off the limit, re-reference if needed, and clear the alarm. If the axis cannot move cleanly, stop and inspect the mechanics before trying recovery again.
| Alarm | Description | Primary action |
|---|---|---|
| 13035 | Flow quantity of spindle lubricant is abnormal | Check lube flow, pump, metering units |
| 13063 | Oilmatic filter is clogged | Replace filter, inspect oil condition |
| 13064 | Oilmatic filter is clogged warning | Service filter before it becomes a hard stop |
| 13086 | Coolant level is too low | Refill tank, check level switch |
| 13093 | Spindle lubricant flow sensor abnormal | Check sensor and actual lube flow |
| 13201 | Spindle Oilmatic thermal is tripped | Check pump overload and power supply |
| 13204 | Oilmatic alarm | Inspect oil controller panel for detail |
| 13205 | Oilmatic filter clogged warning | Replace filter and confirm pressure |
| 13207 | Communication with Oilmatic is illegal | Check controller power and comm wiring |
| 30087 | Stop after M02 due to Oilmatic clog alarm | Service oil controller before restart |
| 30088 | Stop after M30 due to Oilmatic clog alarm | Service oil controller before restart |
| 30089 | Stop after M06 due to Oilmatic clog alarm | Service oil controller before next tool change |
| 401 | Servo alarm | Open axis detail and inspect load/feedback |
| 414 | Servo not ready | Check safety chain and drive power |
| 417 | Servo disconnected | Check serial/fiber communication chain |
| 12 | Spindle overcurrent in DC link | Inspect spindle motor, drive, cooling |
| APC timeout | Pallet sequence did not complete | Check contamination, sensors, clamp pressure |
| ATC timeout | Tool change confirmation missing | Check orientation, air pressure, sensor state |
| Part | Application | Notes |
|---|---|---|
| Servo amplifier module | Axis drive system | Match by control generation and axis rating |
| Spindle amplifier | Spindle drive system | Order by machine serial and spindle option |
| Spindle encoder / orientation feedback | ATC and spindle orientation faults | Feedback failure often blocks tool change |
| APC clamp proximity sensor | a51 / a61 pallet systems | Verify target gap and mounting rigidity |
| APC hydraulic or pneumatic pressure switch | Pallet clamp confirmation | Check under load, not only static |
| ATC shutter sensor | Tool changer sequence | Common contamination failure point |
| ATC arm home sensor | Tool changer sequence | Check alignment after any jam |
| Tool clamp / unclamp sensor | Spindle drawbar confirmation | Essential for recovery after interrupted tool change |
| Lube flow sensor | V-series and D-series support systems | Used in alarms 13035 and 13093 |
| Oilmatic filter element | Oil controller | Replace on clog alarms |
| Coolant level switch | Coolant support system | Check float movement and wiring |
| Cabinet cooling fan / filter | Servo and spindle cabinet | Heat causes recurring drive faults |
Before ordering, match the machine-control part to the model number, electrical rating, and failure symptom.
Always order Makino parts by machine serial number and control generation. The same model family may use different drive and sensor hardware across production years.
Match the Makino machine serial, control generation, sensor output, connector, and recorded alarm history before ordering.
Makino machines can show alarms from the servo or spindle drive layer, the Makino PLC or PMC layer, and the Makino Pro operator layer. Identify the layer before clearing the alarm.
Identify the affected axis, then check for mechanical bind, crash load, encoder or motor cable faults, unstable incoming power, and amplifier status.
Alarm history shows which alarm happened first. Clearing the screen too early can hide the sequence that points to the actual sensor, hydraulic, lube, or drive problem.