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PLUTO Electric Screwdriver

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Presentation on theme: "PLUTO Electric Screwdriver"— Presentation transcript:

1 PLUTO Electric Screwdriver
(PLUSTorque) EDU2AE Controller Series Developed By: Jim Chase

2 Current Control PLUTO’s Current Control tools algorithm is based on three parameters: Current, Voltage, and Frequency. To set the torque target you dial in the Torque % and the RPM and calibrate to an external Transducer. Torque calibration is much like any clutch tool

3 Clutch Control PLUTO’s Clutch Control tools are new is 2012: highest torque clutch tools available. These tools run on the EDU2AE only They are good for applications that require a tool that is not sensitive to joint variations. See the Tool overview at the end of this presentation.

4 EDU2AE Controller EDU2AE: Single P-Set EDU2AE/HP: Torque Data Display
EDU2AE/TOP: Eight P-Sets/Torque Data EDU2AE/TOP/TA: Eight P-Sets Torque Data Angle Data

5 Single Torque Profile EDU2AE

6 EDU2AE Control Parameters
Driver Model Torque level – tool dependent Joint type (HARD or SOFT) selects RPM profile Break Time: Down shift speed from pre-torque to final toque when in the Hard Joint RPM profile Ramp Time: select from 0.2 to 3.0 Seconds Speed: RPM - tool dependent Minimum/Maximum Time. Auto Reverse Reverse Speed & Torque Language: English, Italian, German, Spanish (French and Portuguese on request).

7 Torque Data Display EDU2AE/HP

8 Additional EDU2AE/HP Control Parameters
PV Torque: For thread cutting Rotations: Left or Right Change Password Password: On or Off Calibration: For torque value display Compensation: For torque value display Unit: In/lbs or Nm Torque: Min/Max Number of Screws OK/ESC: defects allowed? Sequencing Number of Cycles: jobs

9 Eight (8) P-sets with torque data
EDU2AE/TOP

10 Additional EDU2AE/TOP Control Parameters
Same as the EDU2AE/HP With eight (8) independent P-sets P-Set selection: Barcode Scanner Bit tray Switch Box

11 System list price approximately $5,000 - tool dependent
Torque & Angle EDU2AE/TOP/TA System list price approximately $5,000 - tool dependent

12 Modes of Control Torque mode Torque Lever mode Input Torque mode
Angle mode Angle Lever mode Input Angle mode

13 Torque mode Applications: Thread cutting into Plastic or Aluminum
Soft joint: measure angle from beginning of compression Torque mode The torque threshold starts the angle measurement. Final torque must fall between the min & max angle values set.

14 Torque Lever mode Applications:
Confirming correct length screw is used. Caution the operator not to pre-start the screw Torque Lever mode The tool lever pull starts the angle measurement. Final torque must fall between the min & max angle values set.

15 Torque Input mode Applications: Prox sensor on a torque arm
Confirm depth before starting to measure angle Good for threaded application with little PV torque Torque Input mode An input starts the angle measurement. Final torque must fall between the min & max angle values set.

16 Angle mode The tool runs to a preset Angle from a torque threshold.

17 The tool runs to a preset Angle from the tool’s lever start.
Angle Lever mode The tool runs to a preset Angle from the tool’s lever start.

18 The tool runs to a preset Angle from a input signal.
Input Angle mode The tool runs to a preset Angle from a input signal.

19 Application: Thread cutting into Plastic
Settings: T&A function: Torque Torque threshold: Min Test results: 20 rundown test shows 6% range with Kolver Same tests shows 7% range with Transducer Conclusion: Kolver T&A angle measurement is equal to Transducer in this application. The torque threshold starts the angle measurement. Final torque must fall between the min & max angle values set.

20 Muti Step strategies Pre-set each step as a program
Set screw count to 1 for each program Sequence through the steps with a lever pull Example: Torque and then Angle Two programs 1) torque & 2 Angle Cycle through with a lever pull

21 Tools

22 Aluminum body, button start
Current Control Tools Model Torque Nm SOFT Torque Nm HARD RPM Min RPM Max Output Housing PLUTO3D 0,3-2,0 0,3-3,0 370 1200 Hex 1/4" In Line PLUTO3P Pistol PLUTO6D 0,5-6,0 0,5-8,0 200 920 PLUTO6P PLUTO6P/U 0,5-,80 Pistol - Top PLUTO10D/N 2,0-8,0 1,5-10,0 110 600 PLUTO10P/N PLUTO10P/U/N Pistol - Top PLUTO15D/N 2,0-15,0 60 320 In line PLUTO15P/N PLUTO15P/U/N PLUTO20CA/SR 2,0-18,0 2,0-20,0 40 210 Sq. 3/8” Aluminum body, button start PLUTO35CA/SR 2,0-35,0 140 PLUTO Tools should not be used continuously above 80% of the specified torque range

23 Clutch Control Tools Model Torque range Nm Speed RPM Output Housing PLUTO3FR 0,5 - 3,2 Hex 1/4" In-line PLUTO3FR/P Pistol PLUTO5FR 0,7 - 5,0 In-Line PLUTO5FR/P PLUTO7FR 1,0 - 7,0 PLUTO7FR/P PLUTO Tools should not be used continuously above 80% of the specified torque range

24 Torque & Angle Tools Model Torque Nm SOFT Torque Nm HARD RPM min RPM max PLUTO6D/TA 0,5-6,0 0,5-8,0 200 920 PLUTO6P/TA PLUTO10D/TA 2,0-8,0 1,5-10,0 110 600 PLUTO10CA/TA PLUTO10P/TA PLUTO15D/TA 2,0-15,0 60 320 PLUTO15P/TA PLUTO15CA/TA PLUTO20CA/SR/TA 2,0-18,0 2,0-20,0 40 210 PLUTO35CA/SR/TA 2,0-35,0 --- 140 PLUTO Tools should not be used continuously above 80% of the specified torque range

25 PLUTO 15 & 20

26 PLUTO 35 Tools

27 EDU2AE/TOP & EDU2AE/TOP/TA
IO & Data Collection

28 CN1 Connector IO Outputs Inputs Error Lever start Torque reached
Start Angle count Stop Motor Reverse Start Motor

29 CN2 Connector IO Messages Inputs Missing piece Remote OK
Remote Escape Key Remote Rest

30 CN3 Connector IO Outputs Green LED parallel Red LED parallel
Yellow LED parallel Sequence complete Angle Error Program complete Tightening (motor running) Motor force Stop

31 CN4 Connector IO Outputs Program (1) in use Program (2) in use

32 CN5 Connector IO Outputs Stop motor enabled Program 1 to 8 in use
12 +24VPLC +24VPLC 13 +5VDC +5VDC Inputs Remote OK, escape, reset error. Remote program and sequence reset. Program select

33 CN6 Connector IO For Barcode Scanner Program selection

34 CN7 & USB CN7 for Printer USB to PC using hyper terminal
Optional Ethernet connection - North America only

35 Data Barcode/Result/Program/Model/Torque%/Speed/Joint/# of screws/Sequence stage/Torque/Angle Notice = in case of cycle end, it prints “Cycle end”, in case of sequence end, it prints “Seq. end” or it

36 Questions


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