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EUS30-080-PHBRVC Datasheet(PDF) 2 Page - Murata Power Solutions Inc. |
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EUS30-080-PHBRVC Datasheet(HTML) 2 Page - Murata Power Solutions Inc. |
2 / 7 page Murata Power Solutions 2 EUS30-0806200901535.B01 Innovative Solutions You Can Count On BUS CONVERTER EUS30-080 Model Table 3 Protection Characteristics Notes & Conditions (1) Min Typ. Max Units Non-Latching 32 35 40 A Output Over-Current Shutdown Re-start rate 80 msec Over Temperature Shutdown Non-Latching (4) 125 130 °C Over Temperature Restart Hysteresis 10 °C Table 4 General Specifications Notes & Conditions (1) Min Typ. Max Units Isolation Voltage Input to Output 2250 Vdc Isolation Resistance Input to Output 10 Mohm Storage Temperature Range -40 125 °C Operating Temperature Range Non-condensing (6) -40 100 °C Thermal Measurement Location Temperature (6) See mechanical drawing for location 120 °C Material Flammability UL 94V-0 Calculated (Bellcore TR-332) 2.7 x10 6 Hrs MTBF Demonstrated 1 x10 6 Hrs Dimensions 2.28”L x 0.9”W x 0.48”H (max) (57.9L x 22.9W x 12.19H mm max) Weight 30 grams Table 5 Standards Compliance Notes & Conditions (5) UL/CSA 60950 Basic Insulation EN60950 Certified by TUV Notes: (1) Vin = 48Vdc, Ta = 25 °C, Airflow = 200 LFM for all data unless otherwise noted. (2) Output Ripple Voltage and noise is specified when measured with no external capacitance. (3) Transient response is specified without a capacitor at the output of the converter. (4) Thermal shutdown is monitored at the Thermal Measurement Location (TML). See ‘Mechanical Information’ on page 3 for TML location. (5) See ‘Safety Considerations’ shown in Figure 1. (6) De-rating curves are conducted in a controlled environment. End application testing is required to ensure the Thermal Measurement Location temperature is below the maximum specified. Recommended airflow direction is from pin 1 to pin 3, or 3 to 1 (transverse to the unit) (7) Current share accuracy is optimized when the source and load impedance presented to each converter is equal. (8) Input Reflected Ripple is specified when measured with a 12uH source inductance. |
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