Is a pocket spring mattress really good for your sleep, or just another trend? Many people want comfort, but they also need proper support every night. Finding both in one mattress can feel difficult. A pocket spring mattress stands out because it balances these needs well. It uses individual springs to respond to your body more precisely. Over time, better materials and smarter production have made it more reliable and breathable.
Is a pocket spring mattress really better than memory foam, or is it just marketing hype? Many people struggle to decide because both options promise comfort, support, and better sleep. Yet, once you lie down, they feel completely different. Choosing between them often depends on your sleep habits, body type, and even how warm you feel at night. Some people prefer a breathable, supportive surface, while others enjoy a softer, body-hugging feel.
Choosing a Pocket Spring Machine is more than a simple equipment decision. It shapes mattress quality, production flow, labor use, and future growth. Many buyers focus on speed first, yet speed alone rarely ensures stable output or consistent product performance. So how do you choose a Pocket Spring Machine that truly fits your factory? The challenge is not just comparing machines. It is about matching the machine to your production goals, product range, and daily workflow.
What makes one mattress feel more supportive than another? In many cases, the answer starts inside the factory, not the bedroom. As buyers expect better comfort and more personalized sleep, manufacturers need smarter ways to build mattress cores at scale. That is where the Pocket Spring Machine becomes essential. It helps turn steel wire into individually wrapped springs, giving mattresses better consistency, support, and motion isolation. It also helps factories improve speed and product quality at the same time.
Choosing the wrong Pocket Spring Machine can slow production before you notice it. It can also raise labor costs, reduce product consistency, and limit how far your factory can grow. That is why this decision matters so much in modern mattress manufacturing. A strong machine does more than assemble springs. It helps you improve precision, maintain stable quality, and respond faster to market demand for premium mattresses. The right choice supports both daily efficiency and long-term business growth.
In the competitive landscape of mattress manufacturing, efficiency is often lost in the transition between processing stages. Manual foam handling introduces hidden costs that erode margins, ranging from material damage caused by improper gripping to inconsistent alignment that jams downstream equipment.
High pocket springs can be used in furniture manufacturing, especially in the production of roll-packed sofas and mattresses
Save manufacturing material costs: Due to the higher height of pocket springs, the use of filing materials can be reduced,for example,ifproducing 14 inch high mattresses, 30-32cm high pocket springs can be used to save filing materials (such as sponge, latex ) if producingroll-packed sofas, using 30-3Scm high pocket springs for seat cushions,which can save about halfof material costs compared to traditionalhigh-density sponges.(High springs cost about RMB 230/m³,high-density sponge costs about RMB 450/m³)
Save logistics and warehousing costs: Roll-packed sofas, similar to roll-packed mattresses, their volumes are greatly reduced, which cansave alot of space during transportation, thereby reducing logistics costs and making them easy to carry, similary, due to the reduction involume, the costs of warehousing also decreases.

YL-16701

1. Both high compression springs and conventional springs can be produced.
2. The spring in the pocket can reach a maximum height of 45cm, making ithighly suitable for roll-packed sofas and floor-standing mattresses, significantlyreducing material costs.
3. Both cross-welding and edge-welding are driven by servo motors (rather thancylinders), which saves electricity and does not affect production even in lowtemperatures during winter.
4. With less operation pages and less parameters, it is easy to operate and evenbeginners can quickly get started.
5. The machine has a simple structure and is easy to maintain.
6. With fewer wearing parts,the daily operating cost of the machine is relativelylow.
YL-16702
1. Both high compression springs and conventional springs can be produced.2. The spring in the pocket can reach a maximum height of 45cm, making ithighly suitable for roll-packed sofas and floor-standing mattresses, significantlyreducing material costs.
3. Both cross-welding and edge-welding are driven by servo motors (rather thancylinders), which saves electricity and does not affect production even in lowtemperatures during winter.
4.With less operation pages and less parameters, it is easy to operate and evenbeginners can quickly get started.
5. Thick and thin steel wire springs can be produced at intervals according to settings,suitable for producing power-edge mattresses.
6. The machine has a simple structure and is easy to maintain.
7. With fewer wearing parts,the daily operating cost of the machine is relativelylow.
Product name | Automatic ultra high pocket spring machine | |
Model | YL-16701 | YL-16702 |
Efficiency | 140 springs/min | |
Coiling Head | Single Wire Servo Coiling Head | Double wire servo coiling head |
Working Principle | Servo Control | |
Spring Shape | Barrel and Cylindrical | |
| Producing High Compression Pocket Springs: | Wire Diameter: Φ1.7-Φ2.0mm | |
| Spring Waist Diameter: | Φ63-Φ73mm | |
| Pocket Spring Height: | 220-450mm | |
| Spring Compression: | ≤180mm | |
| Pocket Spring Height: | 220-450mm | |
| Power Consumption | 30KW | |
Voltage | 3AC380V | |
Input Current | 80A | |
Frequency | 50/60 Hz | |
| Air Consumption | 0.01m³/min | |
| Air Pressure | 0.5-0.7Mpa | |
Fabric Thickness | 50-90 g/㎡ | |
Fabric Width | 590-1060mm | |
| Weight | 4000 KG | 4500 KG |
YL-16701

YL-16702

16701
1. Both high compression springs and conventional springs can be produced.
2. The spring in the pocket can reach a maximum height of 45cm, making ithighly suitable for roll-packed sofas and floor-standing mattresses, significantlyreducing material costs.
3. Both cross-welding and edge-welding are driven by servo motors (rather thancylinders), which saves electricity and does not affect production even in lowtemperatures during winter.
4. With less operation pages and less parameters, it is easy to operate and evenbeginners can quickly get started.
5. The machine has a simple structure and is easy to maintain.
6. With fewer wearing parts,the daily operating cost of the machine is relativelylow.
16702
1. Both high compression springs and conventional springs can be produced.
2. The spring in the pocket can reach a maximum height of 45cm, making ithighly suitable for roll-packed sofas and floor-standing mattresses, significantlyreducing material costs.
3. Both cross-welding and edge-welding are driven by servo motors (rather thancylinders), which saves electricity and does not affect production even in lowtemperatures during winter.
4.With less operation pages and less parameters, it is easy to operate and evenbeginners can quickly get started.
5. Thick and thin steel wire springs can be produced at intervals according to settings,suitable for producing power-edge mattresses.
6. The machine has a simple structure and is easy to maintain.
7. With fewer wearing parts,the daily operating cost of the machine is relativelylow.
Product name | Automatic ultra high pocket spring machine | |
Model | YL-16701 | YL-16702 |
Efficiency | 140 springs/min | |
Coiling Head | Single Wire Servo Coiling Head | Double wire servo coiling head |
Working Principle | Servo Control | |
Spring Shape | Barrel and Cylindrical | |
| Producing High Compression Pocket Springs: | Wire Diameter: Φ1.7-Φ2.0mm | |
| Spring Waist Diameter: | Φ63-Φ73mm | |
| Pocket Spring Height: | 220-450mm | |
| Spring Compression: | ≤180mm | |
| Pocket Spring Height: | 220-450mm | |
| Power Consumption | 30KW | |
Voltage | 3AC380V | |
Input Current | 80A | |
Frequency | 50/60 Hz | |
| Air Consumption | 0.01m³/min | |
| Air Pressure | 0.5-0.7Mpa | |
Fabric Thickness | 50-90 g/㎡ | |
Fabric Width | 590-1060mm | |
| Weight | 4000 KG | 4500 KG |
16701

16702






