The Servo C-Type Press is a high-performance stamping machine equipped with a servo motor for precise control, low noise, and energy-efficient operation. Its rigid C-frame structure provides excellent accessibility and stability during high-speed and high-precision stamping tasks. Ideal for applications demanding consistency, speed, and adaptability.
Product Characteristics
The Servo C-type Press is a high-performance stamping machine designed for manufacturers requiring exceptional precision, flexible motion control, and improved energy efficiency. Unlike conventional mechanical presses, the servo-driven system enables programmable slide movement, allowing operators to optimize speed, stroke, and forming profiles for different stamping applications.
Its rigid C-frame construction provides excellent structural stability while maintaining easy access to the working area, making it suitable for both manual operation and automated production lines. The machine is widely used in industries such as automotive components, electrical hardware, consumer electronics, home appliances, and precision metal fabrication.
When integrated with coil processing equipment such as servo feeders, decoilers, and straighteners, the Servo C-type Press becomes the core of a highly efficient automated stamping line that delivers consistent quality, shorter cycle times, and lower production costs.
Enables precise slide motion, customizable press profiles, and reduced energy consumption.
Rigid monoblock structure minimizes deflection and ensures long-term performance stability.
Adjustable stroke length and speed curve allow optimization for different stamping processes.
Consistent press force and positioning accuracy improve product quality and reduce scrap.
Easy-to-operate interface with real-time diagnostics and comprehensive safety functions.
Servo motors provide extremely precise slide positioning, reducing dimensional variation and ensuring consistent stamping quality.
Unlike traditional mechanical presses, servo presses allow users to adjust slide speed, dwell time, and stroke according to different dies and materials.
Energy is consumed only during actual pressing operations, helping manufacturers reduce electricity costs compared with conventional flywheel-driven presses.
Programmable motion reduces impact during die contact, extending tool life and lowering maintenance costs.
Accurate pressure control minimizes burrs, deformation, and dimensional errors, resulting in higher-quality stamped components.
The servo drive system operates more smoothly than conventional mechanical presses, creating a quieter and more comfortable working environment.
Ideal for deep drawing, precision forming, embossing, and multi-stage stamping operations requiring precise motion control.
The press supports automation, production monitoring, and Industry 4.0 manufacturing systems.
Used for brackets, reinforcement plates, seat components, battery components, and structural parts.
Terminal connectors, switch components, relay parts.
Refrigerator parts,Air-conditioner brackets,Washing machine panels
Can be integrated with coil processing equipment such as servo roll feeders, decoilers, and coil straighteners or a 3-in-1 Decoiler Straightener Feeder to form a fully automated stamping line, enhancing efficiency, reducing labor costs, and improving product consistency.
This integrated solution streamlines material handling from coil loading to precision feeding, significantly reducing manual intervention while improving production efficiency, feeding accuracy, and product consistency. It is an ideal choice for manufacturers seeking higher productivity, lower operating costs, and smarter stamping automation across industries such as automotive, electronics, home appliances, and new energy.
1. How is a servo press different from a conventional mechanical press?
Unlike a conventional mechanical press with a fixed slide motion, a servo press offers programmable movement profiles. Operators can adjust stroke speed, position, and dwell time to match different stamping processes, improving part quality, extending die life, reducing noise, and lowering energy consumption.
2. What materials can the Servo C-type Press process?
The Servo C-type Press is suitable for processing a variety of metal materials, including carbon steel, stainless steel, aluminum, copper, brass, galvanized steel, and silicon steel. It is widely used for precision stamping, blanking, forming, punching, and trimming applications.
3. Is the Servo C-type Press suitable for progressive dies?
Yes. The Servo C-type Press is fully compatible with progressive dies, transfer dies, and other precision tooling systems. Its programmable slide motion and high positioning accuracy help ensure stable production, improve part consistency, and reduce die wear during continuous operation.
4. Can the Servo C-type Press be integrated into an automated stamping line?
Yes. The machine can be integrated with servo roll feeders, decoilers, coil straighteners, and 3-in-1 Decoiler Straightener Feeders to create a fully automated stamping production line. It can also work with transfer robots and other automation equipment to improve productivity, reduce labor costs, and ensure consistent product quality.
Technical Parameters
| Paramater/Model | ZXSK1-1100 | ZXSK1-1600 | ZXSK1-2000 | ZXSK1-2600 | ZXSK2-1600 | ZXSK2-2000 | ZXSK2-2500 | ZXSK2-3000 |
| Nominal force(KN) | 1100 | 1600 | 2000 | 2600 | 1600 | 2000 | 2500 | 3000 |
| Nominal force stroke(MM) | 3 | 3 | 3 | 3 | 3 | 3 | 4 | 4 |
| Slide stroke length(MM) | 180 | 200 | 220 | 250 | 200 | 250 | 250 | 300 |
Unloaded continuous stroke number(SPM) | 1~70 | 1~60 | 1~50 | 1~40 | 1~55 | 1~45 | 1~40 | 1~35 |
| Die height(MM) | 400 | 450 | 450 | 500 | 450 | 500 | 550 | 550 |
| Slide adjustment(MM) | 90 | 100 | 110 | 120 | 100 | 110 | 120 | 120 |
| Slide area(LRXFB)(MM) | 910×520 | 990×580 | 1130×650 | 1250×700 | 1500×580 | 1850×650 | 2100×700 | 2100×800 |
| Bolster area(LRXFB)(MM) | 1150×680 | 1250×760 | 1400×840 | 1500×900 | 2040×760 | 2420×840 | 2700×920 | 2700×940 |
| Throat depth | 350 | 390 | 430 | 460 | 390 | 430 | 470 | 480 |
| Servo main motor power(KW) | 50 | 63 | 63 | 84 | 63 | 63 | 84 | 105 |
Application
1600 Large-Scale New Energy Lithium Battery Aluminum Casing Blanking Dedicated Automated Stamping Line
Thick-Sheet 3-in-1 Decoiler, Leveler & Feeder System for Automotive Stamping Applications
Customized Dual-Uncoiler 3-in-1 Feeding Line for Automated Stamping of Smart Furniture Hardware Components
2-in-1 Decoiler & Leveling Machines with Servo Feeders: Enhancing Precision in 3C Industry Automation
Ready to streamline your production with reliable stamping automation solutions that boost efficiency, reduce downtime!
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FAQ
Q: How do I determine the right feeder size for my production line?
A: The feeder size depends on the material width, thickness, and feeding step distance required by your stamping press. Choosing the correct specifications ensures smooth operation and prevents feeding errors or misalignment.
Q: What factors should I consider when choosing a servo feeder machine?
A: When selecting a servo feeder, key factors include feeding accuracy (±0.05mm or better), maximum feeding speed (e.g., 20m/min), material compatibility (stainless steel, aluminum, etc.), load capacity, and control system (PLC or touchscreen). Ensure the machine matches your stamping process requirements.
Q: How do I choose the right decoiler, straightener and feeder?
A: Select based on material type, width, thickness, coil weight, and required speed. Match decoiler capacity to coil size, choose a straightener for material strength, and a feeder that meets feed length and precision. Ensure compatibility with your press and automation level.
Q: Coil feeder vs servo feeder: what’s the difference?
A: A coil feeder is a broader system for continuous coil feeding, often integrated with decoiler and straightener. A servo feeder uses servo motors for precise, programmable feeding, ideal for short pitches and high accuracy applications.
Q: How to choose decoiler capacity?
A: Select a decoiler rated 10–20% above your maximum coil weight. Confirm inner diameter (I.D.) compatibility and outer diameter limits. Adjustable mandrels are recommended if you run multiple coil sizes.
Q: What feed precision can I expect?
A: Servo feeders typically achieve ±0.01–0.05 mm, with high-end models reaching ±0.005 mm. Mechanical feeders usually provide ±0.02–0.1 mm. Actual accuracy depends on material properties and straightening quality.
Q: How does material affect machine selection?
A: High-strength materials need stronger straightening and drive systems. Thin materials require low-pressure handling. Soft materials like aluminum need anti-scratch solutions.
Q: What affects feeding accuracy most?
A: Key factors include feeder precision, servo tuning, straightener setup, material quality, and press stability. Poor setup or worn dies can reduce accuracy.
Q: What spare parts should be prepared?
A: Common spares include bearings, belts, sensors, seals, guide blocks, and lubrication parts. Keeping key components reduces downtime and improves maintenance efficiency.
Q: Can feeders be retrofitted to existing presses?
A: Yes, most systems support retrofitting. Check press dimensions, feed height, control compatibility, and safety requirements before installation.
Q: How long does it take to receive the feeder machine after placing an order?
A: Lead time for delivery typically ranges from 4 to 8 weeks depending on customization, production schedules, and shipping location. Once your order is confirmed, we will provide a more precise delivery estimate.
Q: What are your payment terms?
A: We accepts T/T payment, 30% deposit and 70% balance before shipping
Q: How often should I perform maintenance on my servo feeder machine?
A: Routine maintenance should be conducted weekly for basic cleaning and lubrication, while a more thorough inspection should be done monthly to check for wear on rollers, belts, and electrical components. A full servicing is recommended every 6-12 months depending on usage intensity.
Q: What are the most common issues with feeder machines, and how can I troubleshoot them?
A: Common issues include misalignment, inconsistent feeding accuracy, or motor failure. Check for loose bolts, dirt buildup, or software calibration errors. If problems persist, refer to the user manual or contact technical support.
Q: Do you provide on-site repair services if my machine breaks down?
A: Yes, we offer on-site repair services for major issues, along with remote troubleshooting support for minor problems. For urgent cases, we can dispatch a technician within 24-48 hours, depending on your location.
Q: What is the maintenance cycle?
A: Daily cleaning and inspection; weekly check belts, air lines; monthly inspect bearings and guides; yearly replace worn parts. Adjust frequency based on operating hours and workload.
Q: What's the package of your coil feeding machines?
A: For the coil feeding equipment that go LCL shipping, We will use plastic films wrap on the equiment, and then fix it into a wooden box.
For the large coil lines that go FCL shipment, We will fix each part with ropes on the shipping container and then wrapped them with plastic films.
Q: What is the typical lead time?
A: Standard machines usually take 4–8 weeks. Customized systems or full production lines may require 10–20+ weeks depending on complexity and production schedule.
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