Products
Category:
MengziDC Fan
info50@henglongplastic.com
Product Description
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| Specifications and models | Bearing mode | Operating voltage | Starting voltage | Current | Rotating speed | Air volume | wind pressure | Noise value | Available features (optional) | Weight | |||
| VDC | VDC | A | RPM | CFM | mmH2O | dBA | frequency generator (FG) | Speed detection (RD) | Temperature control | pulse width modulation | g | ||
| JDX6020S/B | Sleeve/Ball | 5 | 4.5~5.5 | 0.40 | 5000 | 19.09 | 6.12 | 36.1 | ● | ● | ● | 47.2 | |
| JDH6020S/B | 4.5~5.5 | 0.35 | 4500 | 17.66 | 5.54 | 32.9 | ● | ● | ● | ||||
| JDM6020S/B | 4.5~5.5 | 0.30 | 4000 | 15.65 | 4.31 | 29.3 | ● | ● | ● | ||||
| JDL6020S/B | 4.5~5.5 | 0.22 | 3300 | 10.56 | 2.95 | 25.3 | ● | ● | ● | ||||
| JDU6020S/B | 4.5~5.5 | 0.14 | 2500 | 9.22 | 1.83 | 20.4 | ● | ● | ● | ||||
| JDX6020S/B | 12 | 10.8~13.2 | 0.24 | 5000 | 19.09 | 6.12 | 36.1 | ● | ● | ● | |||
| JDH6020S/B | 10.8~13.2 | 0.18 | 4500 | 17.66 | 5.54 | 32.9 | ● | ● | ● | ||||
| JDM6020S/B | 10.8~13.2 | 0.15 | 4000 | 15.65 | 4.31 | 29.3 | ● | ● | ● | ||||
| JDL6020S/B | 10.8~13.2 | 0.10 | 3300 | 10.56 | 2.95 | 25.3 | ● | ● | ● | ||||
| JDU6020S/B | 10.8~13.2 | 0.07 | 2500 | 9.22 | 1.83 | 20.4 | ● | ● | ● | ||||
| JDX6020S/B | 24 | 21.6~26.4 | 0.24 | 6000 | 24.15 | 8.88 | 41.6 | ● | ● | ● | |||
| JDH6020S/B | 21.6~26.4 | 0.18 | 5000 | 19.09 | 6.12 | 36.1 | ● | ● | ● | ||||
| JDM6020S/B | 21.6~26.4 | 0.15 | 4000 | 15.65 | 4.31 | 29.3 | ● | ● | ● | ||||
| JDL6020S/B | 21.6~26.4 | 0.10 | 3000 | 10.66 | 2.43 | 22.5 | ● | ● | ● | ||||
| JDU6020S/B | 21.6~26.4 | 0.08 | 2500 | 9.22 | 1.83 | 20.4 | ● | ● | ● | ||||
The design flexibility and miniaturization potential of DC fan technology are highly valued in today's compact product landscapes. Engineers can specify DC fans in a vast array of sizes, thicknesses, airflow capacities, and connector types to fit stringent spatial constraints. This versatility enables effective cooling solutions for densely packed circuit boards, slim laptop profiles, and small-form-factor appliances. The ability to integrate sophisticated control electronics directly onto the fan PCB further simplifies system design, allowing for a more streamlined and efficient end product.
In conclusion, the DC fan represents a sophisticated and efficient solution for active cooling needs. Its advantages in energy efficiency, precise speed controllability, enhanced reliability, and design adaptability make it a preferred choice in a technology-driven market. By providing effective thermal management with intelligent operation, the DC fan plays a critical role in ensuring the performance, stability, and longevity of a wide range of electronic and mechanical systems. Its continued evolution supports the development of quieter, more efficient, and smarter products across multiple sectors.

