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PDL09-24D05W Datasheet(PDF) 3 Page - Power Mate Technology Co., LTD |
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PDL09-24D05W Datasheet(HTML) 3 Page - Power Mate Technology Co., LTD |
3 / 5 page PDL09W 3 www.PDUKE.com 2016/5/24 ENVIRONMENTAL SPECIFICATIONS Parameter Conditions Min. Typ. Max. Unit Operating ambient temperature 3.3Vout Standard type Without derating With derating -40 +45 +45 +100 Suffix “M” Without derating With derating -40 +50 +50 +100 Others Standard type Without derating With derating -40 +55 +55 +100 Suffix “M” Without derating With derating -40 +60 +60 +100 ℃ Storage temperature range -55 +125 ℃ Thermal shock MIL-STD-810F Vibration MIL-STD-810F Relative humidity 5% to 95% RH EMC SPECIFICATIONS Parameter Conditions Level EMI(1) EN55022 Class A,Class B ESD EN61000-4-2 Air ± 8kV and Contact ± 6kV Perf. Criteria A Radiated immunity EN61000-4-3 20 V/m Perf. Criteria A Fast transient (2) EN61000-4-4 ± 2kV Perf. Criteria A Surge (2) EN61000-4-5 ± 2kV Perf. Criteria A Conducted immunity EN61000-4-6 10 Vr.m.s Perf. Criteria A Power frequency magnetic field EN61000-4-8 100A/m continuous; 1000A/m 1 second Perf. Criteria A Note: 1. The standard modules meet either EMI Class A or Class B with external components. For further information, please contact with P-DUKE. 2. An external input filter capacitor is required if the module has to meet EN61000-4-4, EN61000-4-5. The filter Power Mate suggested: The PDL09-24 W recommended an aluminum electrolytic capacitor (Nippon chemi-con KY series, 220µF/100V) and a TVS (SMDJ70A, 70V, 3000Watt peak pulse power) to connect in parallel. The PDL09-48 W recommended an aluminum electrolytic capacitor (Nippon chemi-con KY series, 220µF/100V) and a TVS (SMDJ120A, 120V, 3000Watt peak pulse power) to connect in parallel. CAUTION: This power module is not internally fused. An input line fuse must always be used. CHARACTERISTIC CURVE PDL09-24D12W Derating Ta v.s. Input Voltage (at Full Load) PDL09-24D12WM Derating Ta v.s. Input Voltage (at Full Load) PDL09-24D12W Load Derating v.s. Input Voltage (at Ta=55℃) PDL09-24D12WM Load Derating v.s. Input Voltage (at Ta=60℃) |
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