Product Overview
The CMLO0650H Series is a magnetically shielded SMD molding power inductor designed for DC-DC converter applications. It features low DC resistance, high current capability due to magnetic iron powder, and low audible core noise. Ideal for compact and demanding electronic devices, it supports frequencies up to 3.0MHz and is RoHS compliant.
Product Attributes
- Brand: Cybermaxtech
- Series: CMLO0650H
- Construction: Magnetically shielded
- Material: Magnetic iron powder
- Certifications: RoHS compliant
- Packaging: Embossed carrier tape
Technical Specifications
| Part Number | Inductance (Lo) [H] | Rdc [m] (Typ.) | Rdc [m] (Max) | Test Condition | Heat Rating Current (Idc) [A] (Typ.) | Saturation Current (Isat) [A] (Typ.) |
|---|---|---|---|---|---|---|
| CMLO0650HR22MTT | 0.22 | 1.1 | 1.3 | 100KHz/1V | 30.0 | 35.0 |
| CMLO0650HR47MTT | 0.47 | 2.9 | 3.8 | 100KHz/1V | 20.0 | 21.0 |
| CMLO0650HR68MTT | 0.68 | 3.2 | 4.2 | 100KHz/1V | 18.0 | 16.0 |
| CMLO0650HR82MTT | 0.82 | 3.9 | 4.9 | 100KHz/1V | 16.5 | 17.0 |
| CMLO0650H1R0MTT | 1.0 | 5.2 | 6.5 | 100KHz/1V | 12.0 | 13.0 |
| CMLO0650H1R5MTT | 1.5 | 7.3 | 8.5 | 100KHz/1V | 10.0 | 10.0 |
| CMLO0650H2R2MTT | 2.2 | 10.0 | 12.5 | 100KHz/1V | 9.5 | 10.0 |
| CMLO0650H3R3MTT | 3.3 | 14.0 | 20.9 | 100KHz/1V | 8.5 | 9.0 |
| CMLO0650H4R7MTT | 4.7 | 24.0 | 27.0 | 100KHz/1V | 6.5 | 8.0 |
| CMLO0650H6R8MTT | 6.8 | 34.0 | 38.0 | 100KHz/1V | 5.5 | 7.0 |
| CMLO0650H100MTT | 10.0 | 48.0 | 55.0 | 100KHz/1V | 6.0 | 4.5 |
| CMLO0650H150MTT | 15.0 | 76.0 | 85.0 | 100KHz/1V | 3.1 | 4.0 |
| CMLO0650H220MTT | 22.0 | 110 | 130 | 100KHz/1V | 2.6 | 3.5 |
| CMLO0650H330MTT | 33.0 | 160 | 200 | 100KHz/1V | 2.3 | 3.0 |
| CMLO0650H470MTT | 47.0 | 252 | 290 | 100KHz/1V | 2.0 | 2.8 |
Notes:
- DC current (Idc) that will cause an approximate T of 40.
- DC current (Isat) that will cause Lo to drop approximately 20%.
- All test data is referenced to 25 ambient.
- Operating Temperature Range: -55 to +150.
- The part temperature (ambient + temp rise) should not exceed 150 under the worst operating conditions. Circuit design, component placement, PWB trace size and thickness, airflow and other cooling provisions all affect the part temperature. Part temperature should be verified in the end application.
2410121257_Cybermax-CMLO0650H2R2MTT_C439007.pdf
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