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SWITEK IML Robot Instruction -- SigmaTek -- History Record

High Speed Siden Entry IML Robot SW833-S6

SWITEK IML Robot Instruction -- SigmaTek -- History Record

Abstract

With the control system developed by the Austria automatic company SIGMATEK GmbH & Co KG, SWITEK high speed side entry IML robot is providing a more efficient and outstanding performance for your quality bulk production of the IML Yogurt Cups.

4 Alarms and history record

4.2 History Record

Click the notice 3 in picture 1.6.1.This button indicates Axis Alarms Information, enter into the page of Driver information. As shown in the below picture 1.6.2:

iml robot control system
  1. The information of Servo Axis and the order of CNC can be checked in this page;
  2. Motor feedback offset can be measured by checking the button in this page.
  3. Clicking the button is used to clear the alarms of this axis (currently it is only applied to the Sigmatek drivers);
  4. Clicking the corresponding axis's button, such as "", is used to enter into the
    iml robot control system

    These information of alarms in the above picture only can be used in Sigmatek drivers. The specific alarms' reasons and resolvent are listed in the below table:

Alarms Name Hand controller display Reasons and resolvents Breakdown reason and elimination methods
Phase lack alarm SDD_OnePhase Motor starts without three phase power supply
  • Check whether motor lines connects with the three phase of UVW with the right manner.
  • Check whether three phase input 380 is normal.
Dynamic voltage alarm SDD_MainError The main power supply is not normal when motor starts.
  • Check whether motor lines conencts with the three phase of UVW with the right manner.
  • Check whether three phase input 380 is normal.
Overvoltage(Regenerative resistor deficiency) SDD_DCOver DC bus voltage is higher than safety value. This value is depended on the parameter G-VMAINS (driver parameter) Motor produce the back EMF in running and the EMF will increase with speed of revolution increases. This problem occurs when speed is too fast. Motor can not run normally if the power supply voltage is too slow. Check Whether three phase power supply meets the requirement. For example system of 400V connects with the power of 200V.
Low voltage SDD_DCUnder DC bus voltage is lower than set value of parameter when motor starts. DC bus voltage is lower than the safety scope. There are 3 notices: firstly, whether three phase power supply is normal; secondly,slow down the speed when the back EMF is too high;thirdly, the overall power is not enough, the ability of output is not enough as a result of the too big motor.
Brake error SDD_BrakeError Brakek closed is tested abnormal when close the brake, such as lines of brake is short, temperature exceeds the limit and so on.
  • Check whether the brake of motor is normal
  • Check whether point of brake output 24V when test driver.
Brake with error SDD_BrakeSwitchError The connections of brake is abnormal, short or broken when open the brake.
  • Check whether the brake of motor is normal
  • Check whether point of brake output 24V when set driver.
Motor overheating SDD_MotorOverTemp Resistance of motor temperature transducer I-TEMPM is higher than the maximum resistance M-RTEMP Estimate the temperature with hands. There are problems in motor lines, encoder line or interior resistance if the temperature of motor's surface does nor reach the overheated degree.
Drive bad heat SDD_AmbientOverTemp Interior temperature I-TEMPE exceeds the set value G-MTEMPE Drivers abstract heat bad and improve the airiness.
Drive the radiator overheated SDD_HeatSinkOverTemp The thermal temperature I-TEMPK exceeds the set value G-MTEMPK Fasten the heat dissipator to the baseboard to exchange abstracting heat.
Encoder feedback abnormally SDD_FeedbackError
  • Alarms will be given out if the increment of encoder's feedback signal exceeds the scope after motor starts.
  • The encoder line is abnormal
Abnormal communication SDD_CommunicationError When the motor running direction and I-NFILT in opposite directions, if the acceleration of mor than 300 upm/s or I-NFILT>NMAX/4, Alarm
Motor speed exceeds limit SDD_OverSpeed Motor speed exceeds the maximum speed of driver. This problem may occur if encoder is abnormal with normal motor speed.
Position deviation is too large SDD_PEMax Alarm will be given out when the actual position deviation exceeds the maximum Try again after slowing down the speed. It is possible that the mechanical properties were changed.
Command acceleration exceeds limit SDD_PCmdError Alarms will be given out when speed produced by exceeds 10000/minute
The main control communication abnormalities SDD_HostComError PC control failure
Driver interior error E2 SDD_DriveError_E2 Drive internal circuit breaker. The operation timed out, or analog-to-digital convert is abnormal
  • Check whether motor is normal, whether there occurs high-frequency vibration
  • Change the driver
Driver interior error E1 SDD_DriveError_E1 Driver motherboard, as problems occurs in the internal storage Change the driver
Safety input abnormally SDD_EnableLockedError Safety signals do not input, or safety device is abnormal Check safety signal input of VAC
Regenerative resistor deficiency SDD_MaxRegenPower Alarms will be given out when the regenerative resistor I-PBAL>The maximum regeneration resistor G-MBAL
  • Reduce load, reduce dynamic, slow speed down
  • The maximum regeneration resistance power Regenerative resistor calculation options:
    resistance (Eur)ΩEM= A*B/C*0.8
    Capacity(w):PEM=(C*0.8)2EM/10
    For A: The highest speed of the motor(rpm):
    B: The back EMF (V*min):
    C: The maximum motor current (A);
Power supply 24V of brake is abnormal SDD_Brake24VError 24V power supply or brake is bad. Signal of brake open loses.
Motor overload SDD_12TError Alarms will be given out when load rate I-12T≥100% at the start of motor. This problem occurs when encoder is abnormal, also when motor oscillate frequently.
Motor temperature alarm SDD_MotorTempWarn Alarms will be given out when actual temperature I-TEMPM> (maximum temperature M-RTEMP*motor alarm temperature A-TEMPMV/100) Check the connections in the temperature sensor line of motor encoder lines. Touch motor's surface with hands to estimate whether there exists problems of overheat Change a motor if everything is normal.
Motor temperature alarm SDD_MotorTempWarn Alarms will be given out when actual temperature I-TEMPM> (maximum temperature M-RTEMP*motor alarm temperature A-TEMPMW/100) Check the connections in the temperature sensor line of motor encoder lines. Thouch motor's surface with hands to estimate whether there exists problems of overheat. Changes a motor if everything is normal.
Motor parameters do not match SDD_MotorObjectError Set parameter is not matching with motor. it is only adapted with using End at or Hiperface encoder. Load the wrong document of parameter. It need to update program.
Resolution ratio of encoder do not match Motor information do not match SDD_MutiPosError The type of encoder is different from set type, or the precision of encoder is different from set one.
  • Load the wrong document of parameter. It need to update program (Non absolute motor)
  • Set Machinery 0 (absolute motor)Axis revert> motor set current point as 0
Excess load SDD_MaxSumPowerLimit The maximum output power limitation

Record of manipulation. As shown in the below picture 1.6.4:

iml robot control system

1.The specific data classification of Detailed record. Include record types (alarm/manipulation instruction), manipulation No./Alarms No., Count, the last record of arrived, the last record of gone and specific description about alarms/manipulation. Drag the scroll bar at the bottom of this picture to right hand. As shown in the below picture 1.6.5:

iml robot control system


Hybrid Injection Molding Machine for Laboratory Consumable Petri Dish Injection Molding -- HD170LDY-A
Haida hybrid Injection Molding Machine
HD170LDY-A

HD170LDY -- HaiDa Hybrid Injection Molding Machine

No. Name Value
1 Clamping Force 1700 kN
2 Shot Weight 114 g
3 Shot Speed 200 mm/s
4 Screw Diameter 32 mm
5 Opening Stroke 440 mm
6 Space Between Tie Bars 470 x 470 mm
7 Mold Thickness (Min) 200 mm
8 Mold Thickness (Max) 520 mm
9 Pumper Motor 56 kW
10 Heating Capacity 11 kW

Injection Automation Application -- Side Entry Petri Dishs Injection Molding Automation Solution
petri dish packing solution

SIDE ENTRY PETRI DISH PACKING SOLUTION

Introduction of SWITEK Side Entry Petri Dish Packing System

The SWITEK side entry petri dish packing system is a custom made automation system for the stable production of laboratory consumable plastic petri dish with the picking robot, the petri dish assembly, stacking, packing unit etc. integrated as auniformed system for the efficient and stable production of the petri dish. The system can be custome made for a petri dish mold layout design of 2+2, 4+4, 6+6, 8+8 etc.

Functional Units of SWITEK Top Entry Petri Dish Packing System
petri dish packing solution
  • (1) -- Side Entry Robotic Arm: The picking arm of the packing system in handling the picking of the petri dish from the injection molding machine and place them on the assembly unit.
  • (2) -- Injection Mold: The core injection unit to shape the petri dish, it can be 2+2, 4+4, 6+6, 8+8 configuragion of the petri covers and bottoms.
  • (3) -- Petri Dish Assembly Unit: Have the cover and bottom of the petri dish assembled and drop it on the conveyor.
  • (4) -- Sorting Conveyor: Lined the assembled petri dish sets for stacking before packing.
  • (5) -- Stacking Station: Have the well assembled petri dishes stacked up as requested (5/10/15/20/25 sets etc.).
  • (6) -- Petri Dish Packing Unit: Have the well stacked petri dish packed and sealed with optional function of vacuume the bag.
  • (7) -- Petri Dish Transfer Robot: Catch the well sealed petri dish bag and drop it to the conveyor.
  • (8) -- Petri Dish Dropping Conveyor: Deliver the well packed petri dish.
  • (9) -- Injection Molding Machine: The injection unit of the whole syste.

Installation Dimension of SWITEK Side Entry Petri Dish Packing System
petri dish packing solution

Productivity of SWITEK Side Entry Petri Dish Packing Solutions
    Vacuumed Sleeve Packing
  • 10 Sets/Bag --Injection Cycle time: 9s
  • 20 Sets/Bag --Injection cycle: 6s
  • 25 Sets/Bag --Injection Cycle: 5.5s
    Non-vacuumed Sleeve Packing
  • 10 Sets/Bag --Injection Cycle time: 6.5s
  • 20 Sets/Bag --Injection cycle: 6s
  • 25 Sets/Bag --Injection Cycle: 5.5s

Mold Layout Design & Sleeve Size for the Petri Dish Packing System
petri dish packing solution

Mold Layout Deisgn

petri dish packing solution

Sleeve Size for Package with Vacuum Request

petri dish packing solution

Sleeve Size for Package without Vacuum Request

petri dish packing solution

Sleeve (With Mark) Size for Package with Vacuum Request

petri dish packing solution

Sleeve (With Mark) Size for Package without Vacuum Request

I think you'll have an overall understanding about the SWITEK top/side entry petri dish packing system. If you still have any other question about it or need any help in your petri dish production project, please feel free to contact SWITEK laboratory consumable plastic parts injection molding solutions team for more information.


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