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On-Board Type (DC) EMI Suppression Filters (EMIFILr)

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!Note • This !Note PDF catalog • Please is downloaded read rating and from !CAUTION the website (for of Murata storage, Manufacturing operating, rating, co., ltd. soldering, Therefore, mounting it’s specifications and handling) are in subject this catalog to change to prevent or our smoking products and/or in it may burning, be discontinued etc. without advance notice. Please check with our<br />

sales representatives • This catalog or product has only engineers typical specifications before ordering. because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.<br />

• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.<br />

C31E.pdf<br />

08.9.1<br />

■ Equivalent Circuit<br />

■ Insertion Loss Characteristics<br />

0<br />

(50Ω - 50Ω)<br />

10<br />

L1<br />

L3<br />

C2<br />

(1) B<br />

CB (2)<br />

L2<br />

C1<br />

(3) PSG<br />

CG (4)<br />

Insertion Loss (dB)<br />

20<br />

30<br />

40<br />

50<br />

60<br />

BNX012-01<br />

BNX016-01<br />

(1)-(4): Terminal Number<br />

PSG: Power Supply Ground<br />

CG: Circuit Ground<br />

CB: Circuit+B<br />

70<br />

80<br />

90<br />

0.001 0.01 0.1 1 10 100 1000<br />

Frequency (MHz)<br />

■ Notice<br />

" Rating<br />

In operating temperatures exceeding +85°C, derating of<br />

current is necessary for BNX01p series. Please apply the<br />

derating curve shown in chart according to the operating<br />

temperature.<br />

Derating<br />

Derated Current (A)<br />

15<br />

10<br />

5<br />

BNX012-01<br />

BNX016-01<br />

1<br />

0<br />

-40 85 102.5 120 125<br />

Operating Temperature (°C)<br />

" Connecting ± power line<br />

In case of using ± power line, please connect to each<br />

terminal as shown.<br />

Power Supply<br />

(BNX Input)<br />

Power Supply +Bias<br />

Power Supply Ground<br />

B<br />

PSG<br />

BNX<br />

CB<br />

CG<br />

Circuit<br />

(BNX Output)<br />

Load Circuit +Bias<br />

Load Circuit Ground<br />

4<br />

Power Supply -Bias<br />

Power Supply Ground<br />

B<br />

PSG<br />

CB<br />

CG<br />

Load Circuit -Bias<br />

Load Circuit Ground<br />

143

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