1.8µH, 900mA, 4532 Power Inductor, Wound Chip Inductor
CC4532391KS
Wound Chip Inductor, General Grade
1.8µH, 900mA, 4532 Wound Chip Inductor CC series is high-quality electronic component designed with heat-resistant molded resin housing. This product ensures excellent performance and durability. With a moisture sensitivity Level 1 and compliance with RoHS requirements, it meets industry standards with wide inductance range and offers flexibility for different circuit designs. Operating within a temperature range of -40°C to +125°C, it can withstand harsh conditions.
Product Features
- Heat-resistant molded resin housing
- Lower RDC
- Higher current handling capability
- Operating temp.: -40°C ~ +125°C (including self-temperature rise)
Product Applications
- Wireless communication
- Portable devices
| Product Category | Power Inductor - Wound Chip Inductor | Inductance (µH) | 1.8 |
| Part Number | CC45321R8JS | Tolerance | ±5% |
| Grade | General | RDC (Ω) | 0.16 |
| Length (mm) | 4.5 | IDC (A) | 0.9 |
| Width (mm) | 3.2 | Operating temp.°C (LOW) | -40 |
| Height (mm) | 3.2 | Operating temp.°C (HIGH) | 125 |
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Wound Chip Inductor CC4532 Series Datasheet
Include dimensions, electrical characteristics and curve diagrams for your reference
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How can you ensure reliable power delivery in wireless communication devices while maintaining thermal stability across extreme temperature ranges?
ABC ATEC's CC45321R8KS wound chip inductor delivers precisely engineered power management with lower RDC and exceptional current handling (900mA), ensuring stable wireless signal transmission from -40°C to +125°C. Our IATF16949 certified manufacturing process guarantees the reliability your communication equipment demands. Contact us today to explore custom inductors optimized for your wireless communication specifications.
ABC ATEC's 45 years of specialized expertise in inductor design and manufacturing is reflected in this precision-engineered component, backed by IATF16949 Quality Certification. The combination of heat-resistant construction, lower RDC characteristics, and robust current handling capabilities positions this wound chip inductor as an optimal choice for engineers seeking customized, high-reliability solutions. Contact our technical team to discuss how this power inductor can enhance your wireless communication or portable device designs with proven durability and performance excellence.



