Supported screws

This section describes the screw types supported by the SD/SDV-Series screwdriving system.

General Capabilities

The SD/SDV-Series supports a wide range of standard screws.

  • Screw lengths up to 35 mm are supported for collaborative applications

  • Longer screws may be supported in non-collaborative applications

Note

Maximum screw length depends on the application, including:

  • Safety requirements

  • Tool orientation

  • Screw feeding method

Integration Considerations

Note

Always verify that the selected screw is compatible with:

  • Screw feeder or feeding system

  • Screwdriver bit type

  • Application requirements

If your screw type is not listed, contact support for compatibility testing.

Head Types

Pan head

Countersunk head

Socket head

pan

countersunk

cap

Supported Standards

The following standards describe screw types compatible with the system.

Note

Screw standards define geometry (e.g. head type), but not all combinations of size and length are covered.

Compatibility primarily depends on the screw head and drive type.

Standard

Type

Size

ISO 14583 / DIN 7985

Pan head – Torx

M2.5 – M6

ISO 14581

Countersunk – Torx

M2.5 – M6

DIN 912 / ISO 4762

Socket head – Hex

M2.5 – M6

ISO 14579

Socket head – Torx

M2.5 – M6

ISO 14580

Socket head – Torx

M2.5 – M6

DIN 7981 / ISO 7049

Pan head – PH / PZ

2.5 – 6 mm

DIN 7983

Countersunk – PH / PZ

2.5 – 6 mm

DIN 7500 M

Thread forming – Countersunk (PZ)

2.5 – 6 mm

WN 5251 / WN 5451

Thread forming – Pan head (Torx)

2.5 – 6 mm

WN 1411

Thread forming – Pan head (PH)

2.5 – 6 mm

DIN 14586 C

Self tapping – Countersunk (Torx)

2.5 – 6 mm

DIN 7982

Self tapping – Countersunk (PH/PZ)

2.5 – 6 mm

Important Notes

Important

The specified screw sizes are indicative and based on typical applications within the tool torque range.

Smaller or larger screws may be possible depending on:

  • Material

  • Application setup

  • Process parameters

Note

Vacuum-based screw pickup and handling may impose additional constraints on screw geometry and weight.

Note

For optimal performance:

  • Use high-quality screws with consistent tolerances

  • Ensure correct bit selection and condition

  • Validate screw feeding and pickup before production

See Tool orientation and safety system