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If the servos are approved by the manufacturer to this driving frequency, this is a normal effect. The servos get new positioning signals four times faster than if they are connected to a conventional remote control receiver. Especially servos with brushless motors run very hard and direct which causes slightly jerky movements in modes with high servo framerate. This is totally harmless to the servos and you will not notice in flight operation.
 
If the servos are approved by the manufacturer to this driving frequency, this is a normal effect. The servos get new positioning signals four times faster than if they are connected to a conventional remote control receiver. Especially servos with brushless motors run very hard and direct which causes slightly jerky movements in modes with high servo framerate. This is totally harmless to the servos and you will not notice in flight operation.
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From MICROBEAST firmware version V2.0.0 onwards a special software filter was installed which slightly mitigates these rough servo movements.
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From MICROBEAST software version V2.0.0 onwards a special filtering algorithm was installed which slightly mitigates these rough servo movements.<br />
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===Why do the swashplate servos run very slowly when testing on the bench?===
 
===Why do the swashplate servos run very slowly when testing on the bench?===
 
This is absolutely normal. The movement of the stick gives the MICROBEAST only a command to control the helicopter. The sticks do no longer control the servos directly. So you cannot say exactly what the MICROBEAST will do with the servos when you push one of the sticks.<br />
 
This is absolutely normal. The movement of the stick gives the MICROBEAST only a command to control the helicopter. The sticks do no longer control the servos directly. So you cannot say exactly what the MICROBEAST will do with the servos when you push one of the sticks.<br />
 
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