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PCB Punching Machine Robot Arm Auxiliary machine for circuit board Punching machine

PCB Punching Machine Robot Arm Auxiliary machine for circuit board Punching machine

Brand Name: MDC
Model Number: MDC-650
MOQ: 1
Price: 0
Packaging Details: wooden box packing
Payment Terms: T/T
Detail Information
Place of Origin:
China
Certification:
CE
Name:
PCB Punching Machine Robot Arm
Model:
MDC-650
Maximum Board Size:
600mm*500mm
Brand:
MD
Product Name:
Circuit Board Punching Machine Robot Arm
Application:
Circuit Board Manufacturing
Usage:
Auxiliary Machine For Circuit Board Punching Machine
Supply Ability:
The production capacity is 50 units a month
Product Description

CCD Vision Alignment Combined With High-Performance Drive Mechanism

Description

Designed specifically for PCB punching machines, this system uses open programmable technology with translational motion settings. Displacement data can be customized based on customer production needs. Equipped with a CCD camera for positioning, the error is controlled within ±0.2mm. The suction cup size and density are customizable, with a maximum punching speed of 11-15 cycles per minute. The punching time interval is consistent, resulting in extremely low failure rates and a service life of 8 to 10 years.

Compatible with various punching equipment commonly used in PCB production, the system supports different tonnages and machine heights, allowing for flexible connections. It replaces manual operation, ensuring production safety, reducing labor costs, and increasing production efficiency.

Specifications

Machine Name Auto PCB Punching Machine Robot Arm
Machine Model MDC-650 MDC-1250
Maximum Area 600mm*500mm 1200mm*600mm
Minimum Area 160*250mm 410*1250mm
Continuous Strip Punching 2-6 pieces 2-10 pieces
Punching speed 900-1000 boards per hour 660-900 boards per hour
Operation System PLC system for easy operation
Power Supply 3HP,380V/220V,50HZ/60HZ
Air Supply 0.6≥MPa
Machine Dimension(L*W*H) Board delivery host:1600mm*1540mm*1770mm Receiving board host:1640mm*1300mm*1340mm Circuit board oven:1700mm*1290mm*1800mm Board delivery host:1770mm*2100mm*1630mm Receiving board host:1830mm*1300mm*1320mm Circuit board oven:1700mm*1290mm*1800mm
Machine Weight Board delivery host:1000KG Receiving board host:500KG Board delivery host:1200KG Receiving board host:500KG


CCD Vision Alignment Combined With High-Performance Drive Mechanism

1. CCD Positioning with Automatic Reference Point Capture: Automatically adjusts and captures targets, with the offset error controlled within ±0.2mm.

2. High-Quality Frame and Transfer Rod Construction: Driven by an imported servo motor paired with a professional motion controller, ensuring high-speed, precise, and stable operation. Capable of continuous 24-hour operation without interruption.


Fully Automatic Feeder With Automatic Receiving Rack – One Operator Can Manage Multiple Machines Simultaneously

Equipped with an automatic heavy-duty feeding machine, this system accommodates various sizes and shapes of PCBs. The robotic arm works seamlessly with the receiving rack, achieving a feeding speed of over 15 cycles per minute, significantly enhancing production efficiency.


Easy Parameter Adjustment Via Human-Machine Interface For Quick Operation

The PLC provides easy and autonomous programming, allowing customization of various operational parameters. The 650 model supports 2-6-piece direct punching, while the 1250 model supports 2-10-piece direct punching, both ensuring consistent spacing for each cycle, greatly improving board utilization. All punching operation parameters can be input, modified, and adjusted through the human-machine interface, making it convenient for setting changes and simple to maintain.

Applications:

1. High-Volume Manufacturing
Automatic Machines: Ideal for mass production, utilizing CNC technology for continuous, efficient operation with minimal human oversight. They excel in environments requiring consistent output and high throughput.  
Semi-Automatic Machines: Suitable for moderate batches, offering flexibility for occasional design changes without full automation costs.

2. Precision and Complexity  
 Automatic: Ensure micron-level accuracy for multi-layer PCBs and micro-vias, critical in advanced electronics like smartphones and medical devices.  
Semi-Automatic: Provide adequate precision for simpler designs but may require manual adjustments for complex layouts.

3. Multi-Layer and HDI Boards  
Automatic: Adjust drilling depth dynamically for layer-to-layer connections (blind/buried vias), essential in high-density interconnect (HDI) designs.  
Semi-Automatic: Require operator input for layer-specific parameters, limiting scalability for intricate multi-layer projects.

4. Flexible and Rigid-Flex PCBs
 Automatic: Use specialized drill bits and adaptive speed control to handle delicate flexible materials without damage.  
Semi-Automatic: Depend on operator expertise to adjust settings, posing challenges for consistency in flex circuits.

Good price  online

Products Details

Home > Products >
PCB Machine
>
PCB Punching Machine Robot Arm Auxiliary machine for circuit board Punching machine

PCB Punching Machine Robot Arm Auxiliary machine for circuit board Punching machine

Brand Name: MDC
Model Number: MDC-650
MOQ: 1
Price: 0
Packaging Details: wooden box packing
Payment Terms: T/T
Detail Information
Place of Origin:
China
Brand Name:
MDC
Certification:
CE
Model Number:
MDC-650
Name:
PCB Punching Machine Robot Arm
Model:
MDC-650
Maximum Board Size:
600mm*500mm
Brand:
MD
Product Name:
Circuit Board Punching Machine Robot Arm
Application:
Circuit Board Manufacturing
Usage:
Auxiliary Machine For Circuit Board Punching Machine
Minimum Order Quantity:
1
Price:
0
Packaging Details:
wooden box packing
Delivery Time:
8-10
Payment Terms:
T/T
Supply Ability:
The production capacity is 50 units a month
Product Description

CCD Vision Alignment Combined With High-Performance Drive Mechanism

Description

Designed specifically for PCB punching machines, this system uses open programmable technology with translational motion settings. Displacement data can be customized based on customer production needs. Equipped with a CCD camera for positioning, the error is controlled within ±0.2mm. The suction cup size and density are customizable, with a maximum punching speed of 11-15 cycles per minute. The punching time interval is consistent, resulting in extremely low failure rates and a service life of 8 to 10 years.

Compatible with various punching equipment commonly used in PCB production, the system supports different tonnages and machine heights, allowing for flexible connections. It replaces manual operation, ensuring production safety, reducing labor costs, and increasing production efficiency.

Specifications

Machine Name Auto PCB Punching Machine Robot Arm
Machine Model MDC-650 MDC-1250
Maximum Area 600mm*500mm 1200mm*600mm
Minimum Area 160*250mm 410*1250mm
Continuous Strip Punching 2-6 pieces 2-10 pieces
Punching speed 900-1000 boards per hour 660-900 boards per hour
Operation System PLC system for easy operation
Power Supply 3HP,380V/220V,50HZ/60HZ
Air Supply 0.6≥MPa
Machine Dimension(L*W*H) Board delivery host:1600mm*1540mm*1770mm Receiving board host:1640mm*1300mm*1340mm Circuit board oven:1700mm*1290mm*1800mm Board delivery host:1770mm*2100mm*1630mm Receiving board host:1830mm*1300mm*1320mm Circuit board oven:1700mm*1290mm*1800mm
Machine Weight Board delivery host:1000KG Receiving board host:500KG Board delivery host:1200KG Receiving board host:500KG


CCD Vision Alignment Combined With High-Performance Drive Mechanism

1. CCD Positioning with Automatic Reference Point Capture: Automatically adjusts and captures targets, with the offset error controlled within ±0.2mm.

2. High-Quality Frame and Transfer Rod Construction: Driven by an imported servo motor paired with a professional motion controller, ensuring high-speed, precise, and stable operation. Capable of continuous 24-hour operation without interruption.


Fully Automatic Feeder With Automatic Receiving Rack – One Operator Can Manage Multiple Machines Simultaneously

Equipped with an automatic heavy-duty feeding machine, this system accommodates various sizes and shapes of PCBs. The robotic arm works seamlessly with the receiving rack, achieving a feeding speed of over 15 cycles per minute, significantly enhancing production efficiency.


Easy Parameter Adjustment Via Human-Machine Interface For Quick Operation

The PLC provides easy and autonomous programming, allowing customization of various operational parameters. The 650 model supports 2-6-piece direct punching, while the 1250 model supports 2-10-piece direct punching, both ensuring consistent spacing for each cycle, greatly improving board utilization. All punching operation parameters can be input, modified, and adjusted through the human-machine interface, making it convenient for setting changes and simple to maintain.

Applications:

1. High-Volume Manufacturing
Automatic Machines: Ideal for mass production, utilizing CNC technology for continuous, efficient operation with minimal human oversight. They excel in environments requiring consistent output and high throughput.  
Semi-Automatic Machines: Suitable for moderate batches, offering flexibility for occasional design changes without full automation costs.

2. Precision and Complexity  
 Automatic: Ensure micron-level accuracy for multi-layer PCBs and micro-vias, critical in advanced electronics like smartphones and medical devices.  
Semi-Automatic: Provide adequate precision for simpler designs but may require manual adjustments for complex layouts.

3. Multi-Layer and HDI Boards  
Automatic: Adjust drilling depth dynamically for layer-to-layer connections (blind/buried vias), essential in high-density interconnect (HDI) designs.  
Semi-Automatic: Require operator input for layer-specific parameters, limiting scalability for intricate multi-layer projects.

4. Flexible and Rigid-Flex PCBs
 Automatic: Use specialized drill bits and adaptive speed control to handle delicate flexible materials without damage.  
Semi-Automatic: Depend on operator expertise to adjust settings, posing challenges for consistency in flex circuits.