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1SD536F2 数据表(PDF) 5 Page - Power Integrations, Inc. |
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1SD536F2 数据表(HTML) 5 Page - Power Integrations, Inc. |
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5 / 11 page ![]() 5 www.power.com 2SMLT0220D2I0C Rev. A 04/25 Absolute Maximum Ratings Parameter Symbol Conditions T A = -40 °C to 85 °C Min Max Units Absolute Maximum Ratings1 Gate Output Power Per channel2 P GX 1 W Switching Frequency3 f SW 25 kHz Operating Voltage Secondary- Secondary Side V DC(LINK) Transient only (for 3.3 kV versions) 3300 V Transient only (for 2.3 kV versions) 2300 V Transient only (for 1.7 kV versions) 1700 V Limited to 60 s (for 3.3 kV versions) 2500 V Limited to 60 s (for 2.3 kV versions) 1800 V Limited to 60 s (for 1.7 kV versions) 1250 V Permanently applied (3.3 kV driver versions) 2200 V Permanently applied (2.3 kV driver versions) 1600 V Permanently applied (1.7 kV driver versions) 1250 V Common-Mode Transient Peak Voltage V ΔE Between parallel connected sources 50 V peak Common-Mode Time-Voltage-Area ᶴ|dv|*dt Between parallel connected sources 20 µVs Storage Temperature4 T ST -40 50 °C Operating Ambient Temperature T A -40 85 °C Surface Temperature5 T 125 °C Relative Humidity H R No condensation 93 % Altitude of Operation6 A OP 2000 m NOTES: 1. Stresses beyond those listed under absolute maximum ratings may cause permanent damage to the device. 2. Actually achievable maximum power depends on several parameters and may be lower than the given value. It has to be validated in the final system. It is mainly limited by the maximum allowed surface temperature. 3. This limit applies to the whole product family. The actual achievable switching frequency may be lower for specific gate driver variants and has to be validated in final system as it is additionally limited by maximum gate output power in conjunction with the maximum allowed surface temperature. 4. The storage temperature inside the original package or in case the coating material of coated products may touch external parts must be limited to the given value. Otherwise, it is limited to 85°C. 5. The component surface temperature, which may strongly vary depending on the actual operating conditions, must be limited to the given value to ensure long-term reliability of the product. 6. Operation above this level requires a voltage derating to ensure proper isolation coordination. |
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