M235

The Rotary Indexing Table model M235 is suitable for medium-load applications. Compact and lightweight, it can be easily installed using 4 screws on its body. It can be mounted horizontally, vertically, or inverted (upside down). Ideal for applications such as:

  • drilling machines
  • metal machining
  • robotic welding cells
  • pallet movement
  • special machines
M235 Rotary index table 

M235 technical features

Rotating plate diameter: 235 mm9.25 in
Cable pass-through hole diameter: 45 mm (through)1.77 in (through)
Rotation direction: Clockwise, counterclockwise, or alternating both
Number of steps per rotation: Indexed cam of: 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 18, 20, 21, 22, 24, 26, 27, 28, 30, 32, 33, 36 (others upon consultation), or
Continuous cam
Motor voltage: 220 V / 380 V / 440 V
Motor frequency: 50 Hz / 60 Hz
Motor power: 0.25 to 2.2 KW
Weight without geared motor: approx. 40 Kg approx. 88 lbs
Weight with geared motor: approx. 60 Kg (varies according to the geared motor applied)approx. 132 lbs (varies according to the geared motor applied)
Stopping precision: ±0.014 mm at 50 mm center radius±0.00055 in at 2 in center radius
Stopping repeatability: ±0.007 mm at 50 mm center radius±0.00028 in at 2 in center radius
Inductive sensor: PNP NA (10 V to 36 V)

M235 permissible loads

To determine which model will be used in your project, in addition to the loads below, it is also necessary to know the moment of inertia of the set that will be moved, the time in seconds for positioning, and the number of stations (stops). Example: Moment of inertia 12Kg.m2lbs.ft2, speed 1.5 seconds, 12 stations.
Click on the Quote menu or contact us for help identifying this data.

Load Description Values

Axial Load A- Maximum axial load (*):
Represents the total evenly distributed mass on the rotating plate (or total weight)(*) – the maximum total load refers to the forces on the rotating plate. This doesn’t mean that the indexing table will be able to rotate such a mass, as the rotation depends on three factors:

  • angular distance traveled (or number of stations)
  • angular speed/acceleration
  • total inertia moment (masses and the distance the masses are from the center of the rotating plate)
5000 Kg11000 lbs
Radial Load B- Maximum radial load:
Represents forces perpendicular to the center of the rotating plate, generally exerted by actuators outside of the indexing tables, aligned to the center of this plate.
700 Kg1540 lbs
Vertical Torque C- Maximum vertical torque:
Represents the unbalance of masses on the rotating plate, or the twisting of this rotating plate usually caused by actuators outside of the indexing table that exert axial force on only one side of the rotating plate.
3000 Nm2212 ft.lbs
Horizontal Torque D- Maximum horizontal torque:
Represents external forces in the rotation direction of the indexing table, forcing the rotating plate to turn or brake.
1600 to 2400 Nm1180 to 1770 ft.lbs

M235 main dimensions

M235 main dimension in milimetersM235 main dimension in inches
M235 main dimensions
in millimetersinches

(*) – measurements can vary depending on the geramotor attached to the indexing table
(**) – the quantity and diameter of threaded holes vary according to the number of stations

M235 geramotor assembly position

Gearmotor assembly position

Download the instruction manual – click on the icon below

Instructions manual

Download CAD 3D part

Assembly position Gearmotor model Click to download
D_12 APEX_Yaskawa STEP Parasolid x_t Parasolid x_b VRML
D_12 IBR_PB142 STEP Parasolid x_t Parasolid x_b VRML
D1 SEW_BSHF302CMP50M STEP Parasolid x_t Parasolid x_b VRML
D1 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_15 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D2_08 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D3 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D3_08 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
E1_08 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
E2_08 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
E3_08 SEW_KA37DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_08 SEW_KA37DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_09 SEW_KA37DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_10 SEW_KA37DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA37DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D2_12 SEW_KA37DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_10 SEW_KA477DRE100L4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA47DRE100L4 STEP Parasolid x_t Parasolid x_b VRML
D1_08 SEW_KA47DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_10 SEW_KA47DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA47DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_15 SEW_KA47DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D2_08 SEW_KA47DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D3_08 SEW_KA47DRE80M4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA47DRE90L4BE5_D1_12 STEP Parasolid x_t Parasolid x_b VRML
D1_08 SEW_KA47DRE90L4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA47DRE90L4 STEP Parasolid x_t Parasolid x_b VRML
D1_08 SEW_KA47DRS71S4BE05 STEP Parasolid x_t Parasolid x_b VRML
D1_08 SEW_KA47DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_10 SEW_KA47DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA47DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D2_08 SEW_KA47DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D2_12 SEW_KA47DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA57DRE80S4 STEP Parasolid x_t Parasolid x_b VRML
D1_12 SEW_KA57DRE90L4BE5 STEP Parasolid x_t Parasolid x_b VRML
D1_10 SEW_KA57DRN80M4BE1 STEP Parasolid x_t Parasolid x_b VRML
D1 SEW_KA57DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D1_08 SEW_KA57DRS71S4 STEP Parasolid x_t Parasolid x_b VRML
D2_12 SEW_KA67DRE112M4 STEP Parasolid x_t Parasolid x_b VRML
D2_08 SEW_KA67DRE160S4 STEP Parasolid x_t Parasolid x_b VRML
D2_12 SEW_KA67DRN132M4 STEP Parasolid x_t Parasolid x_b VRML
D SEW_WA37 STEP Parasolid x_t Parasolid x_b VRML

For the use of other geramotor, or different gearmotor positioning
or even special projects (example shaft with special length, using pulley instead
of motor, etc),
please contact Posibras to generate this new solid.Posibras reserves the right to change product features at any time.
Please contact to confirm technical specifications.
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