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MCF185AN101M04AK

MCF185AN101M04AK

  • 厂商:

    ROHM(罗姆)

  • 封装:

  • 描述:

    MCF185AN101M04AK - EMI FILTER - Rohm

  • 数据手册
  • 价格&库存
MCF185AN101M04AK 数据手册
MCF18 EMI Filters EMI FILTER MCF18 (1608 (0603) size, 4A) Features 1) Industry’s smallest size(1608 size) 2) The entire series is rated at 4A, making them ideal for high current circuits in or around the power supply. 3) The internal resistance is lower than in standard products (competitors’ 2A units) Quick Reference The design and specifications are subject to change without prior notice. Please check the most recent technical specifications prior to placing orders or using the product. For more detail information regarding packaging style code, please check product designation. Operating Insulation Capacitance Capacitance Temperature characteristics Rated voltage Rated current tolerance (V) (A/DC) resistance(MΩ) temperature(°C) (pF) (%) code 10 22 47 0±30 AN 50 100 ppm/°C 220 470 M (±20) 4 1000 −55 to +125 1000 2200 Rate of 3300 capacitance CN 25 4700 change 10000 ±15% 22000 47000 Thickness (mm) Part No. Model Name MCF185AN100M04AK MCF185AN220M04AK MCF185AN470M04AK MCF185AN101M04AK MCF185AN221M04AK MCF185AN471M04AK MCF182CN102M04AK MCF182CN222M04AK MCF182CN332M04AK MCF182CN472M04AK MCF182CN103M04AK MCF182CN223M04AK MCF182CN473M04AK MCF18 0.6 Dimensions (Unit : mm) 0.2±0.1 1.6±0.2 0.6±0.15 0.8±0.2 0.2±0.15 0.2±0.15 0.5±0.15 0.8±0.2 Rev.A 1/8 MCF18 EMI Filters Part No. Explanation Code Rated current 04A 4A Code Packaging specifications Paper tape(width 8mm, pitch 4mm) K Reel φ180mm (7inch) Basic ordering unit(pcs.) 4,000 Reel(φ180mm):Compatible with JEITA standard "EIAJ ET-7200B" Rated current Part No. Packaging Style MCF Rated voltage Code Voltage 2 5 25V 50V 18 2 CN 332 M 04A Nominal capacitance 3-digit designation according to IEC K Temperature characteristic code :Refer to quick reference table. Capacitance tolerance Code Tolerance M ±20% Rev.A 2/8 MCF18 EMI Filters •Performance and test method No. 1 Items Appearance and dimensions Withstanding voltage Performance No marked defects shall be allowed for appearance. No dielectrical breakdown or other damage shall be allowed. Test Method Using a Magnifier. 2 Voltage shall be applied as per Table1. Table 1 CharacVoltage teristic 300% Rated voltage AN 250% Rated voltage CN Voltage shall be applied for 1 to 5s with 50mA charging and discharging current. 3 Insulation resistance Not less than 1000MΩ or 100MΩ µF, whichever is less. Capacitance shall be within specified tolerance range. Measurements shall be made after 60+/−5s period of the rated voltage Measurements shall be made under the conditions specified in Table 2. Table 2 Frequency Voltage 1+/−0.1MHz 1+/−0.1Vrms. 1+/−0.1kHz 1+/−0.1Vrms. 4 Capacitance Characteristics AN CN 5 Dielectric loss tangent AN Capacitance < 30pF tan δ < 100/(400+20C)% − < Capacitance − 30pF tan δ < 0.1% − tan δ < 3.0% − Measurements shall be made under the conditions specified in Table 2. CN 6 Resistance Within specified tolerance range Measurement current 100mA max Rated between between current terminal resistance terminal resistance 4A 20mΩMax. 2000mΩMax. W L T Rev.A 3/8 MCF18 EMI Filters No. Items Performance Test Method If required measurements shall be made at a given temperature. 7 Temperature Without characteristic voltage application 8 Solderability AN CN 0+/−30ppm / °C (−55°C to +125°C) +/−15% (−55°C to +125°C) More than 75% of each end termination shall be covered with new solder. The solder specified in SnAg3.0Cu0.5 shall be used. And the flux containing 25% rosin and ethanol solution shall be used. The specimens shall be immersed into the solder at 235+/−5°C for 2+/−0.5s So that both end terminations are completely under solder. 9 Resistance to solderin heat Appearance Without mechanical damage. Change rate from initial value AN Within +/−2.5% Within +/−7.5% CN Dielectric loss tangent Insulation resistance Within specified initial value. Within specified initial value. The solder specified in SnAg3.0Cu0.5 shall be used. The specimens shall be immersed into the solder at 260+/−5°C for 5+/−0.5s so that both end terminations are completely under the solder. Pre-heating at 150+/−10°C for 1 to 2min Initial measurements prior to test shall be performed after the thermal Pre-conditioning specified in Remarks (1). Final measurements shall be made after the specimens have been left at room temperature as per Table3. Table3 Characteristic AN CN Time 24+/−2 h 48+/−4 h 10 End termination adherence Without peeling or sign of peeling shall be allowed on the end terminations. A 5N weight for 10+/−1s shall be applied to the soldered specimens as shown by the arrow mark in the below sketch. Applied pressure Substrate Filter Rev.A 4/8 MCF18 EMI Filters No. 11 Bending strength Items Performance Test Method Glass epoxy board with soldered specimens shall be bent till 1mm by 1.0mm/s. Appearance Without mechanical damage. 12 Vibration Appearance Change rate from initial value Without mechanical damage. AN Within +/−2.5% Within +/−7.5% CN Dielectric loss tangent Within specified initial value. The specimens shall be soldered on the specified test jig. Initial measurements shall be made after the thermal pre-conditioning specified in Remarks(1). Final measurements shall be made after the specimens have been left at room temperature as per Table3. [Condition] Directions : 2h each in X, Y and Z directions Total : 6h Frequency range : 10 to 55 to 10Hz(1min) Applitude : 1.5mm (shall not exceed acceleration196m/s2) Table3 Characteristic AN CN Time 24+/−2 h 48+/−4 h 13 Temperature Appearance cycling Change rate from initial value Without mechanical damage. AN Within +/−2.5% CN Within +/−7.5% The specimens shall be soldered on the test jig shown in Remarks. Temperature cycle : 100cycles Initial measurements prior to test shall be performed after the thermal per-conditioning specified in Remarks (1). Final measurements shall be made after the specimens have been left at room temperature as per Table3. Temp. (°C) Min operating temp.+/−3 Room temp. Max operating temp.+/−3 Room temp. Table3 Characteristic AN CN Time 24+/−2 h 48+/−4 h Dielectric loss tangent Insulation resistance Within specified initial value. Within specified initial value. Step 1 2 3 4 Time (min) 30+/−3
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