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...phase stepper motor J397 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength……………...
...phase stepper motor J397-H General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J3910 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength…………...
...phase stepper motor J3910-H General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength……...
...phase stepper motor J3913 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength…………...
...phase stepper motor J3913-H General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength……...
...phase stepper motor J31112 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31115 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31118 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31122 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31318 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31322 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31325 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...phase stepper motor J31328 General specifications Stepping accuracy………………5% Temperature rise……………………80℃Max Ambient temperature………………-20℃~+50℃ Insulation resistance………………100MΩMin 500VDC Dielectric strength………...
...measuring error, sometimes also called 85BYGH450B. The 14mm shaft diameter ensures stability in applications with belt transmission or planetary reducer. Also have the stepping motor with 12mm shaft with key...
...measuring error, sometimes also called 85BYGH450B. The 14mm shaft diameter ensures stability in applications with belt transmission or planetary reducer. Also have the stepping motor with 12mm shaft with key...
General Specification: Item Specification Step Angle 1.8 Step Angle Accuracy 5%(full step, no load) Radial Play 0.02mm@450g Axial Play 0.08mm@450g Max.Radial Force 75N( 20mm from the flange) Max.Axial Force 1...
...steps, in many cases 200 steps, and the motor must be sent a separate pulse for each step. The stepper motor can only take one step at a time and each step is the same size. Since each pulse causes the motor...
... or linear displacement. In the case of non-overload, the motor speed and stop position only depend on the frequency and pulse number of the pulse signal, and are not affected by the load change. When the st...
... or linear displacement. In the case of non-overload, the motor speed and stop position only depend on the frequency and pulse number of the pulse signal, and are not affected by the load change. When the st...