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SWITEK IML Robot Instruction -- SigmaTek -- Appendix 2 Teaching compiling

High Speed Siden Entry IML Robot SW833-S6

SWITEK IML Robot Instruction -- SigmaTek -- Appendix 2 Teaching compiling

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.

Appendix 2 Teaching compiling

Programs run from the top down; they can jump to the corresponding label part when they need to jump, or they run from the top down.
Example 1: Uniaxial running cyclically:
Motion logic: SX1 run to 0; delays 1s, SX1 run to 100mm, delay 1s, SX1 run to 0 …… Repeatedly like this manner
Key icon: Label Mark, SX1 run, Delay, Label Mark Jump
Program can be compiled as the below picture:

iml robot control system

Example2: Standby/Stacking/Get Label
For the reason that the corresponding parameters about Standby/Stacking/Get Label need to be set in single page, it just need to drag the relative icons to the teaching compiling. As shown in the below picture:

iml robot control system

Example 3: Output cyclically/Cut off the first output:
Motion logic: output 1 on; output 1 off; output 1 on …… repeatedly like this manner Key icon: Label Mark, Set Output, Label Mark Jump
Program can be compiled as the below picture:

iml robot control system

Example 4: Wait Input 1 on/off, then run the next step:
Motion logic: Wait Input 1 on, SX1 run to 200mm; Wait Input 2 off, SX1 run to 0 mm
Key icon: Wait Input, SX run
Program can be compiled as the below picture:

iml robot control system

Example 5: Transfer subprogram, Wait subprogram, Run the next step:
Motion logic: Transfer subprogram 2, wait subprogram 2, then SX1 run to 1000mm
Key icon: Execute Program, SX1 run, Wait Program
Program can be compiled as the below picture:

iml robot control system

Example 6: The former 3 groups of production, lay by the Stacking 1; the rest production, lay by the Stacking 2.
Motion logic: Estimate the amount of variable 1 whether or not more than 3; if more than 3, label mark jump to the program of Stacking 2; if less than 3, run the next step straight (Stacking 1 program); after finishing stacking, variable 1 increases 1 (as 0 former, increasing to 1; as 1 previously, increasing to 2); program will jump to Label Mark after variable increasing, or it will run the next step continue.
Key icon: Label Mark, VariableJump, Stacking, Variable Increase (enumerative efect), Label Mark Jump
Program can be compiled as the below picture:

iml robot control system

Example 7: Stacking lays 10 productions firstly, and it will lay another 10 productions more when the conveyor goes ahead 10s. Then goes on as the above method …
Motion logic: Estimate the amount of variable 1 whether or not more than 10; if more than 3, label mark jump to the program of conveyor; if less than 10, return to restart the new steps;
Notice: If program needs stacking renewedly at the begin, variables need to be cleared into 0 before the cyclical motion. If not, these variables will base the former scale on counting when the program restart. This situation can result in the amount of production will not reach 10 at the first time of conveyor belt run.
Key icon: Label Mark, Stacking, Variable Increase (Count effect), Label Jump Mark
Program can be compiled as the below picture:

iml robot control system


Best Buy Robotic Arm for Injection Molding Machine
injection robot

SW6308S-20

injection robot

Unit: mm

X1 X2 X3 X4 Y YM1 YM2 Z L W H Payload
980 820 0 0 800 235 565 1280 2320 1500 1690 3kg

The Application of End of Robotic Arm Tooling

EOAT Assembly Demonstration -- Two Cavities Parts Picking EOAT with Runner Gripping

Two Cavities Parts Picking EOAT with Runner Gripping

Product Descriptions

Bom List

Product Name PN # Model Quantity
Quick Changer 7.Y00175 QCS-G100 1
Sprue Gripper 8.Y00050 GR12-12CP 1
Plugs for Profile 4.Y00069 PEP2518 10
Cross Mounting Bracket for Profiles 7.Y00194 SMBA-2525T 6
Extruded Profile 4.Y00455 PEP2518-1000 2
Vacuum Cups VS2 Series 1.Y03085 VS2-SA11 6
Vacuum Cup Fitting 7.Y00703 VM-02-G18 6
Rotative Suspensions 8.Y00061 VFR1421-G18 6
Mounting Bracket 7.Y00200 SMBE1-1440T 6
Connector 1.Y02510 APF-M5 2
Side Manifold Block 7.Y00157 SMB-06M5 2
L-Type Threaded HOse Fitting 1.Y02722 APL6-01 8
Straight Threaded Hose Fitting 1.Y02725 APC6-01 6

Q & A About Robotic Arms and Injection Automation

Why So Many Cutlery Producers Will Choose a Submarine Gate Cold Runner Mold for Their Cutlery Auto-packing Solutions?

Plastic (PP + CA/PLA) cutlery of different size are widely used around the world with a booming demand of "Takeout" food in a fast-paced life nowadays. And as an easy to produce products more and more plastic factory owners joint this business. But for the new producers of cutlery, how to make your investment rewardable?

cutler packing system

Cutlery Auto-packing Injection Automation Solutions

To producce a plastic cutlery (Knife, Forks and Spoon) the producer will need an injeciton molding machine, the mold and the automation system. For the automation system it could be a robot only for manually packing or robot + auto-packing system for a cutlery auto-packing system. For the mold the cutlery can either choose a hot runner mold or a cold runner mold. But more and more producer will choose a submarine gate cold runner mold, why?

The most important is the cost advantage of a submarine gate cold runner mold against a hot runner one. As a low value added products most of the cutlery producing system are low budget project, and reduction of the investment means an increase of the profit in the future.

For more ideas about a cutlery auto-packing solution please contact Adams from SWITEK to get a turn-key solution of cutlery packing.


Email: sales06@switek.biz

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