Product Description
Sanyo Scroll Compressor for Light Commercial Applications
air conditioner compressor
Brand Name:Ā Sanyo
Type: Air Conditioner Compressor
Refrigerant:Ā R407C & R410AĀ
Condition: New
Application: Refrigeration Parts
Place of Origin: China
Marketing Type: New Product 2571
Packing: By pallet
| Phase | Output | Displacement | Compressor | CompressorĀ | Starting | 50Hz | 60Hz | Outline | ||||||
| HP | Model | code | Method | Norminal Capacity | Cop | Norminal Capacity | Cop | Graph | ||||||
| cm³/rev | kw | kBT/h | W/W | BTU/Wh | kw | kBT/h | W/W | BTU/Wh | code | |||||
| 3 | 3.5 | 55.7 | C-SBN263H8A | – | 9.6 | 32.8 | 2.87 | 9.8 | 11.8 | 40.3 | 2.87 | 9.8 | B | |
| 4 | 66.8 | C-SBN303H8A | – | 11.6 | 39.6 | 3.05 | 10.4 | 14.6 | 49.8 | 3.17 | 10.8 | A | ||
| 4 | 66.8 | C-SBN303H8G | – | 11.6 | 39.6 | 3.05 | 10.4 | 14.6 | 49.8 | 3.17 | 10.8 | At | ||
| 4.5 | 77.4 | C-SBN353H8A | – | 13.4 | 45.8 | 2.91 | 9.9 | 16.5 | 56.3 | 2.95 | 10.1 | A | ||
| 4.5 | 77.4 | C-SBN353H8G | – | 13.4 | 45.8 | 2.91 | 9.9 | 16.5 | 56.3 | 2.95 | 10.1 | At | ||
| 5 | 83.2 | C-SBN373H8A | – | 14.5 | 49.5 | 2.93 | 10 | 17.8 | 60.8 | 2.99 | 10.2 | A | ||
| 5 | 83.2 | C-SBN373H8G | – | 14.5 | 49.5 | 2.93 | 10 | 17.8 | 60.8 | 2.99 | 10.2 | At | ||
| 6 | 100 | C-SBN453H8A | – | 17.6 | 60.1 | 3.03 | 10.3 | 21.3 | 72.7 | 3.04 | 10.4 | A | ||
| 6 | 100 | C-SBN453H8G | – | 17.6 | 60.1 | 3.03 | 10.3 | 21.3 | 72.7 | 3.04 | 10.4 | At | ||
| 7 | 110.2 | C-SBS235H8A | – | – | 19.5 | 66.6 | 3.1 | 10.6 | 23.4 | 79.9 | 3.1 | 10.6 | A | |
| 7 | 110.2 | C-SBS235H8G | – | – | 19.5 | 66.6 | 3.1 | 10.6 | 23.4 | 79.9 | 3.1 | 10.6 | At | |
| 8 | 131.9 | C-SCN583H8H | – | 23.6 | 80.6 | 3.13 | 10.7 | 28 | 95.6 | 3.03 | 10.3 | D | ||
| 8 | 131.9 | C-SCN583H8K | – | 23.6 | 80.6 | 3.13 | 10.7 | 28 | 95.6 | 3.03 | 10.3 | Dt | ||
| 8 | 137 | C-SCN603H8H | – | 24.5 | 83.6 | 3.16 | 10.8 | 29.1 | 99.4 | 3.08 | 10.5 | D | ||
| 8 | 137 | C-SCN603H8K | – | 24.5 | 83.6 | 3.16 | 10.8 | 29.1 | 99.4 | 3.08 | 10.5 | Dt | ||
| 10 | 171.2 | C-SCN753H8H | – | 29.9 | 102.1 | 3.2 | 10.9 | 35.9 | 122.6 | 3.12 | 10.7 | E | ||
| 10 | 171.2 | C-SCN753H8K | – | 29.9 | 102.1 | 3.2 | 10.9 | 35.9 | 122.6 | 3.12 | 10.7 | Et | ||
| 12 | 205.4 | C-SCN903H8H | – | 34.9 | 119.2 | 3.09 | 10.5 | – | – | – | – | E | ||
| 12 | 205.4 | C-SCN903H8K | – | 34.9 | 119.2 | 3.09 | 10.5 | – | – | – | – | Et | ||
| Cooling Method: | Direct Cooling |
|---|---|
| Certification: | ISO, CE, CCC |
| Condition: | New |
| Customization: |
Available
|
|
|---|
.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}
| Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
|---|
| Payment Method: |
|
|---|---|
|
Initial Payment Full Payment |
| Currency: | US$ |
|---|
| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
|---|
.webp)
How Do Scroll Compressors Contribute to Energy Savings?
Scroll compressors are known for their energy-saving capabilities, offering improved efficiency compared to other types of compressors. Here’s a detailed explanation of how scroll compressors contribute to energy savings:
1. Enhanced Efficiency:
Scroll compressors operate with a unique scroll or spiral design that enables efficient compression of refrigerant gases. This design eliminates the need for pistons, valves, and other moving parts found in reciprocating compressors. As a result, there is less friction and reduced energy loss due to mechanical inefficiencies. The streamlined design and improved internal sealing of scroll compressors contribute to their higher efficiency, enabling them to convert more electrical energy into useful cooling power.
2. Reduced Energy Consumption:
Due to their inherent efficiency, scroll compressors consume less electrical energy to produce the same cooling capacity compared to other compressor types. The improved efficiency translates into reduced energy consumption, resulting in lower electricity bills for residential and commercial users. Scroll compressors are particularly advantageous in applications with long operating hours, such as air conditioning systems that run continuously or for extended periods.
3. Load Matching Capability:
Scroll compressors are designed to modulate their capacity to match the cooling load requirements of the system. They can adjust their output based on the cooling demand, ensuring that the compressor operates at an optimal capacity. By closely matching the cooling needs, scroll compressors prevent overcooling or undercooling, which can lead to energy wastage. This load matching capability allows the compressor to operate at higher efficiencies, especially during partial load conditions, further contributing to energy savings.
4. Reduced Start-Stop Cycles:
Scroll compressors have a smoother and more continuous operation compared to reciprocating compressors. They do not require frequent start-stop cycles, which consume additional energy during each restart. The absence of reciprocating motion eliminates the need for unloading and cycling mechanisms, reducing energy waste associated with frequent compressor cycling. The continuous operation of scroll compressors ensures steady and efficient cooling performance.
5. Lower Maintenance Requirements:
Scroll compressors typically have fewer moving parts compared to reciprocating compressors. The simplified design reduces the need for maintenance and minimizes the risk of mechanical failure. With fewer components prone to wear and tear, scroll compressors can maintain their high efficiency levels over an extended period. The reduced maintenance requirements translate into cost savings and prevent energy losses resulting from degraded compressor performance.
6. Compatibility with High-Efficiency Refrigerants:
Scroll compressors are compatible with modern high-efficiency refrigerants, such as R-410A, which offer superior performance compared to older refrigerants. High-efficiency refrigerants have lower energy consumption and reduced environmental impact. By utilizing these refrigerants, scroll compressors can further enhance their energy-saving capabilities and contribute to sustainable cooling systems.
Overall, scroll compressors contribute to energy savings through enhanced efficiency, reduced energy consumption, load matching capabilities, fewer start-stop cycles, lower maintenance requirements, and compatibility with high-efficiency refrigerants. Their utilization in various applications, including air conditioning and refrigeration systems, helps reduce electricity usage, lower operational costs, and promote environmentally friendly cooling solutions.
.webp)
What is the Lifespan of a Typical Scroll Compressor?
The lifespan of a typical scroll compressor can vary depending on several factors. Here’s a detailed explanation:
1. Quality and Design:
The quality and design of the scroll compressor play a significant role in determining its lifespan. Well-built compressors with robust components and reliable manufacturing processes tend to have longer lifespans. Compressors from reputable manufacturers that adhere to industry standards and best practices are generally more durable and have extended lifespans.
2. Maintenance and Service:
The lifespan of a scroll compressor can be influenced by the maintenance and service it receives. Regular maintenance, including cleaning, lubrication (for lubricated compressors), and inspection of critical components, helps to ensure optimal performance and identify potential issues before they become major problems. Proper maintenance practices, such as timely filter replacements and refrigerant checks, contribute to the longevity of the compressor.
3. Operating Conditions:
The operating conditions under which the scroll compressor operates can impact its lifespan. Factors such as ambient temperature, humidity levels, and operating hours can affect the compressor’s performance and wear on its components. Compressors that operate in extreme temperatures or high humidity environments may experience more stress and have a shorter lifespan compared to those operating in more favorable conditions.
4. Load and Cycling Patterns:
The load and cycling patterns of the compressor also impact its lifespan. Compressors that consistently operate at or near their maximum capacity or frequently cycle on and off may experience more wear and tear. Compressors that are properly sized, matched to the load requirements, and operate within recommended duty cycles tend to have longer lifespans.
5. System Design and Installation:
The design and installation of the overall system in which the scroll compressor is installed can affect its lifespan. Proper system design, including appropriate sizing, adequate airflow, and efficient ductwork, ensures that the compressor operates under optimal conditions. Additionally, proper installation practices, such as correct refrigerant charge and proper electrical connections, contribute to the longevity of the compressor.
6. Application and Usage:
The specific application and usage of the scroll compressor can also impact its lifespan. Compressors used in commercial or industrial settings, where they may be subjected to heavy usage or demanding conditions, may have shorter lifespans compared to those used in residential applications with lighter usage. The type of refrigerant used and the presence of contaminants or corrosive substances in the system can also affect the compressor’s lifespan.
7. Average Lifespan:
On average, a well-maintained and properly operated scroll compressor can have a lifespan of 10 to 15 years. However, it’s important to note that this is an estimate, and individual compressors may experience longer or shorter lifespans based on the factors mentioned above.
It’s recommended to consult the manufacturer’s guidelines and specifications for the specific model of the scroll compressor to determine its expected lifespan and any recommended maintenance intervals. Additionally, working with qualified HVAC professionals can help ensure proper installation, maintenance, and troubleshooting of the scroll compressor, maximizing its lifespan and performance.
.webp)
How Do Scroll Compressors Compare to Piston Compressors?
When comparing scroll compressors to piston compressors, several factors come into play. Here’s a detailed explanation:
1. Design and Operation:
Scroll compressors and piston compressors have different designs and operating principles. Scroll compressors utilize two interlocking spiral-shaped scrolls to compress the refrigerant or gas. The scroll motion creates a continuous compression process with minimal pulsations. On the other hand, piston compressors use a reciprocating piston driven by a crankshaft to compress the refrigerant or gas. The piston motion generates pulsations during compression.
2. Efficiency:
Scroll compressors are generally more efficient than piston compressors. The continuous compression process of scroll compressors, along with minimal clearance volume, reduces energy losses and improves overall efficiency. In contrast, piston compressors experience more energy losses due to the reciprocating motion and clearance volume. Scroll compressors are known for higher part load efficiency, especially when equipped with variable speed drive (VSD) technology.
3. Noise and Vibration:
Scroll compressors tend to operate with lower noise and vibration levels compared to piston compressors. The interlocking scroll motion in scroll compressors creates a smooth compression process with reduced pulsations, resulting in quieter operation. Piston compressors, on the other hand, generate more noise and vibration due to the reciprocating motion and pulsations during compression.
4. Size and Compactness:
Scroll compressors are generally more compact than piston compressors. The absence of reciprocating parts in scroll compressors allows for a more compact design, making them suitable for applications where space is limited. Piston compressors, with their reciprocating motion and larger size, require more space for installation.
5. Reliability and Maintenance:
Scroll compressors offer enhanced reliability and require less maintenance compared to piston compressors. Scroll compressors have fewer moving parts, such as valves and piston rings, which reduces the chances of failure or breakdown. Piston compressors, with their more complex design and wearing components, may require more frequent maintenance and have a higher probability of mechanical issues.
6. Capacity and Load Handling:
Piston compressors are generally more suitable for applications with varying load demands. Piston compressors can handle a wider range of capacities and adapt to varying cooling or heating loads. Scroll compressors, while capable of modulation with VSD, may have limitations in extreme load turndown situations.
7. Cost:
The cost of scroll compressors and piston compressors can vary depending on factors such as capacity, brand, and features. In general, scroll compressors tend to be more expensive than piston compressors due to their higher efficiency, quieter operation, and compactness. However, the price difference may vary based on specific models and market conditions.
It’s important to note that the suitability of scroll compressors or piston compressors depends on the specific application requirements, load profile, and other factors. Both types of compressors have their advantages and disadvantages, and the choice between them should be based on a thorough analysis of the application needs.
In summary, scroll compressors offer advantages such as higher efficiency, quieter operation, compactness, and enhanced reliability. Piston compressors, on the other hand, may be more suitable for applications with varying load demands. Factors such as efficiency, noise, size, reliability, load handling, and cost should be considered when comparing scroll compressors to piston compressors.


editor by CX 2023-10-16