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Stepping motors provide great features such as low cost , yet they have a drastic drop in torque at high speeds and heavy current consumption when stopped. The TRANSERVO by YAMAHA eliminates all these problems by adopting an innovative vector control method. In effect, the TRANSERVO delivers the same functions of a servo motor while using a lower cost stepping motor.
Control is basically the same as a servomotor so power consumption is kept to a minimum, which saves energy and helps cut down on CO 2 emissions.
Also perfect stop can be achieved as the same as with ordinary stepping motors so choose this setting if needed.
The resolver used for detecting the motor position is the same reliable resolver as used in our high-level robots. Resolver offer stable position detection even in harsh environments containing dust or oil, etc. Addtionally the resolution of the resolver is 20480 pulses per revolution.
The resolver is a magnetic position detector. Its structure is simple with no electronic component and no optical elements. One great feature compared to ordinary optical encoders is that there are very few points where a failure might occur. Vast quantities of resolvers are used in fields like aviation and the automobile industry where reliability is essential and also because they are highly tough in harsh environments with a low failure rate.
A lubricator used in the ball screw and a contact scraper provides long-life and maintenance-free operation. maintenance free operation.
Grease lubrication on the ball screw is usually lost a little bit at a time with ball screw movement. The SR type has a lubricator that supplies grease lost over long periods to ensure near maintenance-free operation Note. Note. The maintenance-free period is within the running life of the robot.
The lubricator uses a high-density fiber net that supplies just the right amount of grease in an eco-friendly lubrication system that wastes no grease.
The dual-layer scraper in contact with the rod removes micro contaminant particles with near-perfect performance. It scrapes away tiny par ticles adhering to the rod in a multi-step operation that prevent trouble from contaminants that might otherwise penetrate to internal parts. Synthetic foam rubber with a self lubricating function ensures low-friction resistance.
This nozzle tube is even usable when there is little space around the grease port. For example, when the SR04 or SR05 space-saving model is used with the motor facing up, the grease port is positioned on the side of the robot body. This may make it difficult to refill grease depending on the positions of other robots or peripheral units.
Note. This nozzle tube can be attached to a commercially available ordinary grease gun.
Clicking a desired model name allows you to see its detailed catalog.
Type | Model | Size (mm) |
Lead (mm) |
Maximum payload(kg) | Maximum speed (mm/sec) |
Stroke (mm) |
|
---|---|---|---|---|---|---|---|
Horizontal | Vertical | ||||||
Standard | W48×H56.5 | 12 | 10 | 4 | 500 | 50 to 200 | |
6 | 20 | 8 | 250 | ||||
W48×H58 | 12 | 25 | 5 | 500 | 50 to 300 | ||
6 | 40 | 12 | 250 | ||||
2 | 45 | 25 | 80 | ||||
W56.4×H71 | 12 | 50 | 10 | 300 | 50 to 300 | ||
6 | 55 | 20 | 150 | ||||
2 | 60 | 30 | 50 | ||||
With support guide | W105×H56.5 | 12 | 10 | 3.5 | 500 | 50 to 200 | |
6 | 20 | 7.5 | 250 | ||||
W135×H58 | 12 | 25 | 4 | 500 | 50 to 300 | ||
6 | 40 | 11 | 250 | ||||
2 | 45 | 24 | 80 | ||||
W157×H71 | 12 | 50 | 8.5 | 300 | 50 to 300 | ||
6 | 55 | 18.5 | 150 | ||||
2 | 60 | 28.5 | 50 |