Product Introduction

Product Features

Technical Specifications
|
Model |
High Speed PPU Unit |
|
X-axis Linear Stroke |
90~110 mm |
|
Z-axis Stroke (Z-axis) |
46 mm |
|
Z-axis Stroke (RE) |
25 mm |
|
Repeatability |
±0.02 mm |
|
Cycle Time (Stepper Motor) |
0.5 s |
|
Cycle Time (Servo Motor) |
0.3 s |
|
Max Load |
1.5 kg |
|
Drive Source |
57 Stepper Motor / Servo Motor |


Applications & Components
▶ 3C Electronics Industry: Component fast pick and place and assemble for mobile phones, such as PCB board, connector, display module assembly, and flexible printed circuit board
▶ New Energy Industry: Small lithium-ion battery cell, protection board, tab, and electronic component transportation and movement
Why Choose This Machine
Consistency in Functioning: Before dispatching the machine, it is tested for 72 hours of continual running, adjustment, and loading test strokes to ensure that the machines we supply to our customers have a perfect ability to function and perform their intended tasks right away after delivery.
Part of Your Smart Factory
This high-speed pick-and-place mechanism features ultra fast operation speed high positioning accuracy and stable running performance which can greatly boost your production efficiency simplify automated workflow and serve as the essential core equipment for building and optimizing your modern smart factory.
FAQ(Frequently Asked Questions)
Q: Do we need to take down any part or the entire mechanism in order to make changes to the stroke on the X-axis?
A: No. The stroke adjustment process for the X-axis of the fast-cycle pick-and-place mechanism is designed in such a way that no dismantling is required. It only needs mechanical stroke limit adjustment to be done using the right tool, alongside parameter adjustments in the control system.
Q: Is it possible to combine high-performance PPU handling system with the present PLC control system?
A: Absolutely, because the high-speed pick-and-place unit has the capability of interfacing with other systems that are designed using some popular PLCs, including guidelines on how to wire up and program them. As such, it can easily interface with other control systems without necessarily requiring more programming, thus reducing the time taken to debug.
Q: Why would it become crucial to select a particular driving mechanism? In other words, what reasons would necessitate selecting the stepper motor drive mechanism over the servo motor drive mechanism?
A: Factors behind selecting the stepper motor drive mechanism:
One of the factors behind selecting the stepper motor drive mechanism is the fact that it is relatively inexpensive and can accomplish the basics of picking and placing within half a second. Unfortunately, the stepper motor drive mechanism cannot achieve the required accuracy levels compared to the servo motor drive mechanism.
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