Availability: | |
---|---|
Quantity: | |
Performance Characteristics:
1. Energy Efficiency:
Servo motors are known for their energy efficiency. They consume power only when needed, which can lead to lower operating costs and reduced energy consumption compared to other types of motors.
2. Increased Safety:
By automating repetitive and potentially dangerous tasks, such as part removal from hot molds, these robots enhance workplace safety. They reduce the risk of injuries to operators and improve overall safety in the manufacturing environment.
3.Flexibility:
Although these robots have a limited number of axes, they can still be adapted to a variety of tasks through the use of specialized end-of-arm tooling (EOAT). This flexibility allows for customization based on specific production needs.
Technical Parameter
Mold | Battery capacity | Fit to IMM Tons | Vertical stroke (mm ) | Right-left stroke (mm) | Horizontal stroke( mm ) | Take out time | Cycle time | Max load (kg) | Weight ( kg ) |
EWB700S3 | 2KVA | 80-180 | 700 | 700 | 1300 | 3 | 6.5 | 3 | 190 |
EWB900S3 | 2KVA | 150-250 | 900 | 700 | 1300 | 3 | 6.5 | 5 | 220 |
EWB1100S3 | 3KVA | 220-350 | 1100 | 900 | 1780 | 3 | 10 | 5 | 350 |
Mold | A | C | D | E | G | H | I | K | M |
EWB700S3 | 1400 | 470 | 1420 | 1240 | 2315 | 290 | 700 | 50 | 700 |
EWB900S3 | 1460 | 485 | 1450 | 1300 | 2375 | 290 | 700 | 80 | 700 |
EWB1100S3 | 1635 | 650 | 1660 | 1780 | 2750 | 310 | 950 | 120 | 735 |
Performance Characteristics:
1. Energy Efficiency:
Servo motors are known for their energy efficiency. They consume power only when needed, which can lead to lower operating costs and reduced energy consumption compared to other types of motors.
2. Increased Safety:
By automating repetitive and potentially dangerous tasks, such as part removal from hot molds, these robots enhance workplace safety. They reduce the risk of injuries to operators and improve overall safety in the manufacturing environment.
3.Flexibility:
Although these robots have a limited number of axes, they can still be adapted to a variety of tasks through the use of specialized end-of-arm tooling (EOAT). This flexibility allows for customization based on specific production needs.
Technical Parameter
Mold | Battery capacity | Fit to IMM Tons | Vertical stroke (mm ) | Right-left stroke (mm) | Horizontal stroke( mm ) | Take out time | Cycle time | Max load (kg) | Weight ( kg ) |
EWB700S3 | 2KVA | 80-180 | 700 | 700 | 1300 | 3 | 6.5 | 3 | 190 |
EWB900S3 | 2KVA | 150-250 | 900 | 700 | 1300 | 3 | 6.5 | 5 | 220 |
EWB1100S3 | 3KVA | 220-350 | 1100 | 900 | 1780 | 3 | 10 | 5 | 350 |
Mold | A | C | D | E | G | H | I | K | M |
EWB700S3 | 1400 | 470 | 1420 | 1240 | 2315 | 290 | 700 | 50 | 700 |
EWB900S3 | 1460 | 485 | 1450 | 1300 | 2375 | 290 | 700 | 80 | 700 |
EWB1100S3 | 1635 | 650 | 1660 | 1780 | 2750 | 310 | 950 | 120 | 735 |