WS7.0 Position Sensor with Absolute or Incremental Encoder Compact Industrial Sensor for Long Ranges · Measurement Range: 0 ... 3750 mm to 0 ... 40000 mm 0 ... 147.6 in to 0 ... 1574.8 in · With Absolute or Incremental Encoder Output p l elo ode r dev m ed urthe u ntin for f o isc t use D Incremental Encoder Outputs on` Absolute Multiturn Encoder with synchronous D serial output TSSI / RS-485 Resolution Incremental: 1, 5 or 10 pulses per mm; 25.4, 127 or 254 pulses per in TSSI: 0.073 mm up to 30000 mm range 0.088 mm up to 40000 mm range TSSI-P: 0.037 mm up to 30000 mm range 0.044 mm up to 40000 mm range Aluminium and Stainless Steel Cable: Stainless Steel Sensing device Linearity Incremental or Absolute Encoder Up to ±0.05 % F.S., optional ±0.01 % F.S. Weight Environmental Refer to Output Specification Refer to Output Specification Order code WS7.0 Absolute/Incremental WS7.0 Model Name Measurement Range (in mm) 3750 / 5000 / 7500 / 10000 / 15000 / 20000 / 25000 / 30000 / 40000 Pulses per mm for Incremental Output PP530 10 = 10 Pulses per mm; 254 pulses per in 5 = 5 Pulses per mm; 127 pulses per in 1 = 1 Pulse per mm; 25.4 pulses per in (not in the 40000 mm range) Outputs ME = Mechanism only for installation of suitable multiturn encoders PP530 = Incremental output TSSI = Multiturn encoder with synchronous serial output TSSI-P = TSSI prgrammable, RS232C, incremental signals Other Outputs on Request (Interbus S, Profibus, CAN-Bus) Linearity L01 = ±0.01 %, related to the specified sensitivity on the label (PP530) Option M4 = M4 cable fixing Order Code Mating Conn. (see accessories p. 105)
Open the catalog to page 1WS7.0 Position Sensor with Absolute or Incremental Encoder Cable Forces typical at 20 °C Maximum Pull-out Force [N] Minimum Pull-in Force [N] Outline drawing For guaranteed dimensions consult factory
Open the catalog to page 2WS Position Sensors Output Specification PP530 Excitation Voltage Excitation Current Output Frequency Linedriver, Push-Pull, CMOS, TTL and HTL compatible Output Current 30 mA max., Short Circuit Protection Output Voltage Depends on the excitation voltage (e.g. to obtain TTL-signals the excitation must be 5 V) Compatible to EIA RS-422/RS-485 Stability (Temperature) Operation Temperature ±0.002% / K Full Scale (sensor mechanism) -10 ... +70 °C Storage Temperature Transition Time Positive Edge Transition Time Negative Edge Reverse Polarity, Permanent Short Circuit Signal Conditioner PP530 Incremental...
Open the catalog to page 3WS Position Sensors Output Specification TSSI · 4096 counts per revolution (12 bit), 4096 revolutions (12 bit) · No Loss of Data at Power-down · Easy to Connect to PLC’s with SSI Input Circuit Description The sensing device of the SSI is a 24-bit absolute multiturn encoder. The position information is given by an analog/digital converter output serialized as a data word. The processing unit (PLC, Microcomputer) sends pulse sequences which clocks the data transmission at the required transfer rate. With the first falling edge of the pulse sequence the position of the sensor is recorded and stored....
Open the catalog to page 4WS Position Sensors Output Specification TSSI-P · 8192 counts per revolution (13 bit), 4096 revolutions (12 bit) · Encoder programming and data transfer via RS-232 interface · In addition sinusoidal incremental signals Description The sensing device of the SSI is a 25-bit absolute multiturn encoder. The position information is given by an analog/digital converter as a serial data word. The processing unit (PLC, Microcomputer) sends pulse sequences which clocks the data transmission at the required transfer rate. With the first falling edge of the pulse sequence the position of the sensor is recorded...
Open the catalog to page 5WS Position Sensors Output Specification TSSI-P Sensor Circuit Recommended Processing Input Circuit Cable Length Baud Rate Subsequent Circuit Note: Extension of the cable length will reduce the maximum transmission rate. The signals CLOCK/CLOCK and DATA/DATA must be connected in a twisted pair cable, shielded per pair and common. Incremental Signals
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