
Vertical and gantry axes
Loading and unloading gantries, palletisers, milling machines, robot axes and lifting devices — machines whose Z-axis will fall if the brake is not held.
On a gravity-loaded axis the brake is the safety function, not an accessory to it. A de-energised drive does not hold a suspended load — the brake does. PNOZ s50 controls and monitors that brake as a distinct safety function, including the case where two brakes must be held together.
The manufacturer states that applications with safety brakes and holding brakes require reliable brake monitoring, eliminating hazards for the user even when the drive is in a de-energised state.
Reliable brake monitoring removes the hazard that remains when the drive is de-energised but the load is still suspended.
In stage technology, winches are operated with a dual brake; PNOZ s50 can control two powerful brakes safely without the use of contacts.
Reduced cycle times through temporary overexcitation with subsequent voltage reduction.
Simple menu navigation using a rotary knob, with parameters and diagnostic messages shown on the display.
The manufacturer lists stage technology, machine tools, press brakes, packaging machines, test stand technology, materials handling, and energy and environmental technology.

Loading and unloading gantries, palletisers, milling machines, robot axes and lifting devices — machines whose Z-axis will fall if the brake is not held.

Where a second brake must be safeguarded alongside the holding brake, both can be controlled safely without contacts.

Scissor tables are lifting devices with gravity-loaded axes, where holding the load is the safety-relevant function.
These are the values that decide whether the relay suits the brake. Brake current, voltage and switching behaviour must be confirmed against the actual brake.
| Function | Safe brake control for applications with safety brakes and holding brakes |
|---|---|
| Purpose | Reliable brake monitoring, removing hazards even when the drive is de-energised |
| Outputs | Two 2-pin, safe electronic digital outputs for 24 V DC |
| Output rating | 4.5 A per output |
| Dual brake capability | Can control two powerful brakes safely without the use of contacts |
| Cycle time | Reduced through temporary overexcitation with subsequent voltage reduction |
| Configuration | Simple menu navigation using a rotary knob |
| Diagnostics | Setting parameters and diagnostic messages shown on the display |
| Typical sectors | Stage technology, machine tools, press brakes, packaging machines, test stand technology, materials handling, energy and environmental technology |
The device is configured on the machine, so the decisions concern the brake arrangement rather than device variants.
The common case: one brake on a gravity-loaded axis, controlled and monitored as the safety function.
Stage technology winches operated with a dual brake; both controlled safely without contacts.
Temporary overexcitation with subsequent voltage reduction shortens the cycle time.
Parameters are set on the device using the rotary knob, with diagnostics on the display.
The relay controls the brake; what surrounds it determines whether the load is genuinely held.
Brake voltage, current and holding torque must match the axis load and the output rating of the relay.
Brake control is frequently paired with standstill monitoring, so the brake is applied against a proven state.
On axes that can fall, guard release should follow both standstill and a held brake rather than either alone.
Brake applications are specified from the load and the brake data. These are the points that decide feasibility.
On a gravity-loaded axis, stopping and holding are separate problems. The drive stops the movement; the brake holds the load, and the brake needs its own safe control.