Series 7000 Torque Sensor for PTO-shafts

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Series 7000 Torque Sensor for PTO-shafts

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Properties PTO (Power Take-Off) shaft with integrated torque and angle measurement Non-contact measurement system, high robustness Special for PTO shafts 1 ¾ und 1 3/8 Plug & Play solution, no additional electronics required Performance Measurement range from 3000 Nm to 8000 Nm Accuracy class 0,5 % Temperature range -40 C +85 C (+105 C) IP65 Turning speed up to 3600 rpm Output Signals 0-10 V / 4-20 ma / CAN Bus 1. Short description The Series 7000 makes the torque- and angle-measurement in machines for agriculture and forestry industry easier and cheaper. The non-contact measurement principle shows very high robustness against mechanical and thermal influences and is maintenance-free. There are different adaptions available for the direct use of the sensors in various applications. It is therefore quite easy and quick to integrate them. The sensor is delivered as one complete unit with integrated electronics and cable. The optional read-out unit provides both the torque- and angle-measurement on it s display as well as the data storage on an integrated SD-card automatically. The data can be read through an USB interface. The complete sensor unit can be operated from 12 V to 24 V ( Cigarette lighter ). 2. Model Series 7000 Model Series 7000 Nominal-Torque Max. Overload Rotational Speed Shaft Number of teeth on gear Unit Bi-directional (+/-) Bi-directional (+/-) [rpm] 1 3/8 Inch 1 3/4 Inch 6 21 6 20 [Nm] 3000 10000 3600 [Nm] 5000 10000 3600 Flange - [Nm] 5000 10000 3600 Subject to technical changes Page 1

3. Technical Characteristics No. Type Series 7000 Accuracy class¹ 0.5 Unit * %ME: : related to a full scale measurement range 1) The accuracy class implies that taken separately both the linearity deviation as well as the rotational signal uniformity are either lower than or equal to the value of the accuracy class. The accuracy class is not to be identified with the classification following DIN 51309 or EA-10/14. 2) The factor of transmission declines linearly up to a maximum of 0.5 % / 10 K with rising temperature due to the reduction of the elasticity. Page 2 Value 1 Linearity deviation incl. hysteresis %ME* < ±0.5 2 Rotational Signal Uniformity %ME* < ±0.5 3 Repeatability %ME* < ±0,05 4 Output signal in general Unit Value Frequency range, -3dB point, Bessel characteristics Hz 2500 5 Analog signal V 0 10 4 20 6 Signal at torque = Zero V 5 12 7 Signal at positive nominal torque V > 5 >12 8 Signal at negative nominal torque V < 5 < 12 9 Calibration parameter (normed) mv/nm 4000 mv / Measurement range 8 ma / Measurement range 10 Output resistance Ω 43 11 Angle / Speed ppr optional angle sensor with 360 ppr speed sensor with 1 ppr oder 60ppr Temperature influence Unit Value 12 Zero point drift over temperature %/10 K < 0.5 13 Signal drift over temperature within operational temperature range 2 %/10 K < 0.5 Power supply Unit Value 14 Supply voltage VDC 11 28 15 Current consumption (max.) ma 100 16 Start-up peak ma < 150 17 Absolute max. supply voltage VDC 30 General information Unit Value 18 Degree of protection acc. to EN 60529 IP 65 in connected state 19 Reference temperature C +15 +35 20 Operational temperature range C -40 +85 / -20 +85 with angle sensor 21 Peak temperature temporary 12h C -40 +105 excepted angle sensor 21 Storage temperature range C -40 +85 22 Cable m Incl. 5 m cable with plug 23 EMC / EMI - EN 61000, EN 55011 General Information Unit Value 24 Maximum measureable torque Nm Related to measurement range 3000Nm about 3750Nm, related to 8000Nm about 10000Nm 25 Maximum torque, related to nominal torque Nm 10000Nm depends on shaft ends 26 Ultimate torque Nm 14000Nm depends on shaft ends 27 Maximum axial force N 20kN

4. Dimensions Dimensions Mounting parts Dim. A Dim. B Dim. C Dim. D Dim. E Dim. F PTO 6 tooth ( 1 3/8'' ) 306 98 108 76 38 50 6.8 PTO 6 tooth ( 1 3/4'' ) 316 108 108 76 38 60 8.4 PTO 21 tooth ( 1 3/8'' ) 316 98 118 65 25.5 50 6.8 PTO 20 tooth ( 1 3/4'' ) 336 123 113 90 38 60 8.4 Dim. G Dimensions Flange Flange with bolt circle 101,5 mm with 8xM8 Flange with bolt circle 84 mm with 8xM8 Strength class for bolts 10.9 120 101.5 8x M8 10.9 105 84 8x M8 Customized Flange tbd. tbd. tbd. tbd. Page 3

5. Angle Sensor Optical angle sensor with 360 CPR. Parameter Symbol Min. Typ. Max. Units Pulse Width Error ΔP 15 55 e Pulse Width Error (Ch.A, Ch. B) ΔP 15 55 e Phase Error Δφ 12 60 e LED Current ICC 2,2 5,0 ma High Level Output Voltage VOH 2,4 5 V Low Level Output Voltage VOL 0,4 V Rise Time Tr 500 ns Fall Time tf 100 ns Parameter C P S Φ Description One cycle of 360 degrees The duration of high state of the output within one cycle. Nominally 180 e or half a cycle. The number of electrical degrees between a transition in Channel A and the neighboring transition in Channel B. There are 4 states per cycle, each nominally 90 e. The number of electrical degrees between the center of high state of Channel A and the center of high state of Channel B. Nominally 90 e. Page 4

6. Speed Sensor Magnetic (Hall Effect) speed sensor with 1 CPR or 60 CPR. Parameter Symbol Min. Typ. Max. Unit Operating frequency fop 0-8000 Hz Analog band width BW 20 40 - khz High Level Output Voltage VOH 2.4 5 V Low Level Output Voltage VOL 0 0.4 V Page 5

7. Connection Plan Pin assignment at Sensor Presentation: Top view Model Binder Series M16 Connector IP67 Item number: 09-0131-90-12 Color code according to DIN 47100 Pin Color Description Value A White CAN-H B Brown CAN-L C Green Angle Channel A 0 5 V D Yellow Angle Channel B 0 5 V E Grey Analog GND F Pink Analog voltage Analog current 0 10 V 4 20 ma G Blue Ground GND H Red Supply voltage V CC I Black - K Violet - L Grey-Pink - M Red-Blue - 11 28 V Connection plan: Page 6

8. Instruction manual Field of Application The torque sensor is intended for the use in agriculture, forestry industry and test benches. Scope of Delivery The torque sensor set consists of the sensor itself (signal pick-up and signal processing integrated into sensor housing), one connecting cable with a soldered plug. Installation and Removal Make sure to install the sensor shafts exactly with the proper aligned connecting shafts. The sensor is not designed as a pillow block. No external axial or radial force should be applied to the housing of the sensor. In case that the bending or radial forces could not avoided the ball bearing of the sensor must be double-checked. The Sensor is not designed for trailing loads, please load only compressive forces on the shaft ends. A maximum cable length of 5 m must not be exceeded. Using a cable or connector other than supplied by NCTE, or a similar cable that is of a different length may affect the overall performance of the sensor. Do not remove the shaft with torque applied to the sensor. The security against rotation may only occur via the M8 thread on the flattening of the housing. Offset Adjustment If required the zero point output signal (5 V / 12 ma) can be adjusted. By factory default the sensor is set to 5 V or 12 ma at zero torque. Interface Description Mechanical connection: For torque transmission use the right mounting parts from a qualified supplier, also do not hesitate to ask NCTE. Electrical connector: On the sensor housing there is a 12-pin socket for the power supply and the signal output.(see Chapter 6. Connection Plan). Operation (in regular case or in optimal case) Optimal measurement parameters may be achieved when the sensor is applied in accordance to the specification. Use the sensor only for short periods of time at the maximum rotational speed. By compliance with the specification the sensor works generally trouble-free and maintenance-free. Irregular Operation, Measures against Disturbance The presence of external electromagnetic or magnetic fields can lead to irregular measurement results. The mechanical overload on the sensor (e.g. exceeding of maximum allowed torque or severe vibrations) may cause damage to the sensor and in consequence the incorrect signal output. In such cases the sensor must be reset. If this does not help, do not open the sensor but contact NCTE directly for assistance. Page 7

Commissioning After sensor installation pay attention to the followings: Switch on the power supply unit and check the supply voltage. Peak voltage to the sensor must be avoided! Be sure to verify the power supply voltage before connecting the sensor! Connect the sensor to the power supply unit by using the delivered cable. Connect the sensor output to a high-resistance device such as an A/D converter, oscilloscope, PC measurement board. The sensor should be in mechanical unloaded state while connecting it. Service / Maintenance Service-contact: Tel.: +49 89 665619 0 Fax: +49 89 665619 29 Maintenance: The sensor is free of maintenance, NCTE advises a yearly recalibration. The ball bearing is designed for a lifetime of 5000 h. Disposal For purposes of disposal please send the device back to NCTE. Handling and Transport While handling, storing and transporting keep sensor away from magnetic and electromagnetic fields which may exceed the allowed maximum range of EMC listed in Chapter 3. Technical Characteristics of the Sensor. Precautions Do not open the sensor under any circumstances. Do not remove or loosen the locking rings on the shaft ends. The mounting nut of the socket as well as the fixing screws should not be loosened or tightened. Use only a separate power supply for the sensor Use the sensor only according to the specification (Chapter 3. Technical Characteristics of the Sensor). Keep the sensor away from magnetic and electromagnetic fields which may exceed the allowed maximum range of EMC (Chapter 3. Technical Characteristics of the Sensor) The sensor is not designed as a pillow block. The existing fixing possibilities serve exclusively for preventing the sensor from rotation. Caution! Type IP 65 in long-term usage the surface of the sensor can reach 90 degree Celsius, please be careful and use protection! Caution! Before starting, please check the strength of the connection screw and tighten it if necessary with right torque (M10 70Nm). Page 8

9. Order options Series 7000 (Versions) Series 7000 Accuracy 0,5 % Measurement range 3000 Nm ( 1 3/8'' ) incl. 5 m cable 5000 Nm ( 1 3/4'' ) incl. 5 m cable XXXX Selectable between 3000 Nm and 8000 Nm Option 1: shaft end "left" 0 PTO shaft 6 teeth ( 1 3/8'' ), 3000 Nm 1 PTO shaft 20 teeth ( 1 3/4'' ) 2 PTO shaft 21 teeth ( 1 3/8'' ), 3000 Nm 3 PTO bush 6 teeth ( 1 3/4'' ) 4 PTO bush 20 teeth ( 1 3/4'' ) 5 PTO bush 21 teeth ( 1 3/8'' ), 3000 Nm 6 Flange with bolt circle 101,5 mm with 8xM8 7 Flange with bolt circle 84 mm with 6xM8, 3000 Nm 8 PTO shaft 6 teeth ( 1 3/4'' ) 9 PTO bush 6 teeth (1 3/8"), 3000Nm 10 Flange with bolt circle 140 mm16xm12, 8000 Nm 11 Flange X-Toothing XX Customized flange Option 2: shaft end "right" 0 PTO shaft 6 teeth ( 1 3/8'' ), 3000 Nm 1 PTO shaft 20 teeth ( 1 3/4'' ) 2 PTO shaft 21 teeth ( 1 3/8'' ), 3000 Nm 3 PTO bush 6 teeth ( 1 3/4'' ) 4 PTO bush 20 teeth ( 1 3/4'' ) 5 PTO bush 21 teeth ( 1 3/8'' ), 3000 Nm 6 Flange with bolt circle 101,5 mm with 8xM8 7 Flange with bolt circle 84 mm with 6xM8, 3000 Nm 8 PTO shaft 6 teeth ( 1 3/4'' ) 9 PTO bush 6 teeth (1 3/8"), 3000Nm 10 Flange with bolt circle 140 mm 16xM12, 8000 Nm 11 Flange X-Toothing XX Customized flange Option 3: Angle sensor 0 without angle sensor 1 Angle sensor 360 PPR nur IP50 2 Speed sensor 1 CPR 3 Speed sensor 60 CPR Option 4: Output signal A Analog voltage 0-10 V S current output 4-20 ma C CAN Bus (only Speedsensor) Option 5: IP Protection 0 IP 50 1 IP65 only Speedsensor 7000 x x x x x x Page 9

Read Out Unit for all NCTE Sensors Ord.-No. 400010-ATS001 Compact readout box with display 1 torque sensor input, 0-5V and 0-10V 1 angle encoder input, A/B 2x digital output USB interface, Windows software included SD card slot 10. Contact Page 10