1000ppr 8mm Shaft High Resolution Rotary Encoder Push Pull E50s8-1000-3-T-24
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1000ppr 8mm Shaft E50s8-1000-3-t-24 high resolution rotary encoder Autonics Encoder Key Features of S50 series rotary encoder Sock(endure): 490m/s2 ,11 ms three times for X,Y,Z direction individually Shaft Material: Stainless steel Shell Material: die cast aluminum Shaft length: 16mm GND: not connect to encoder Cable length: 1000mm(cable with shielding) Package: Carton box Solid Shaft diameter: 8mm(D shape)
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ENCODER TECHNOLOGY THEORY An incremental encoder outputs a defined amount of pulses per revolution, so that every pulse is expected to be on a defined mechanical position. The maximum deviation between this ideal position and the actual position is called integral non linearity (INL). The INL accuracy is an important value if the incremental encoder is used for positioning tasks. The duty cycle describes the ratio between “high” time to “low” time of an incremental encoder. Typically this ratio is 50/50, which is equivalent to 180 el° high and 180 el° low. The performance of magnetic incremental encoders increases with higher PPR settings and higher rotation speeds (RPM). This is in contrast to optical encoders where the performance decreases. The DNL and INL accuracy that are stated in our datasheets are worst case values, a better performance can be expected for higher PPR and RPM. This is the maximum frequency that the encoder is able to output via the output lines. For example, the frequency of a 1024 PPR encoder that rotates at 600 RPM is 200 Hz (200*1024/60s).
S50 ordering encoder model number S50-D3F50 DC8V S50-D3P60 DC8V S50-Q2N100 DC12V S50-Q2F200 DC24V S50-D1N250 DC8-30V S50-Q1F256 DC5-30V S50-D3N300 DC5-30V S50-T3V360 DC12V S50-T6E1024 DC8-24V S50-T6C2048 DC5V S50-D3NH4096 DC24V S50-T3FH500DC12V S50-T4C8192 DC24V S50-D4E10000 DC8-30V S50-Q3PH16384 DC5-12V S50-Q6E2000 DC12-24V S50-D6C23040 DC5V S50-D3P20000 DC5V S50-D3PH2500 DC12V
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