SCM3216F-601M [FRONTIER]
SMD Wire Wound EMI Common Mode Chip; 贴片绕线EMI共模芯片型号: | SCM3216F-601M |
厂家: | Frontier Electronics |
描述: | SMD Wire Wound EMI Common Mode Chip |
文件: | 总2页 (文件大小:64K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Frontier Electronics Corp.
667 E. COCHRAN STREET, SIMI VALLEY, CA 93065
TEL: (805) 522-9998 FAX: (805) 522-9989
E-mail: frontiersales@frontierusa.com
Web: http://www.frontierusa.com
SMD Wire Wound EMI Common Mode Chip—SCM3216F series
A. Electrical specifications:
Common Mode
Impedance (Ω)
(Typical)
@ 100MHz
90
Insulation
Resistance
@125VdC
(MΩ) Min.
DC
Resistance
(ohm)
Max.
0.30
Rated
Current
(mA)
Rated
Voltage
(Vdc)
Withstand
Voltage
(Vdc)
Part Number
SCM3216F-900M
SCM3216F-161M
SCM3216F-261M
SCM3216F-601M
SCM3216F-102M
SCM3216F-222M
370
340
310
260
230
200
160
260
600
1000
0.40
0.50
0.80
1.0
50
125
10
2200
1.2
B. Mechanical Drawing:
1.60 ± 0.2
3.2 ± 0.2
(2)
(3)
(1)
(4)
(2)
(3)
(1)
1.60
3.70
(4)
Unit: mm
0.60(Typ)
C. Features:
1. Tolerance: M:±20.
2. Small size, low profile.
3. Impedance range: from 90Ω to 2200Ω.
4. High common mode impedance at high frequency effects.
5. Excellent noise suppression performance.
6. Temperature rise: 15ºC at rated current on 25ºC ambient.
7. Operating temperature: From –40ºC to +85°C.
D. Applications:
1. Common mode noise suppression of signal lines in high speed and high-density digital equipment,
such as personal computers and peripherals.
2. Suitable for differential signal line such as USB2.0, IEEE1394 and LVDS, capable of high speed
signal transmission without distortion due to its high coupling.
SMD wire wound Common Mode Chip Inductor: P/N SCM3216F-series
Oct. 10, 2004. Page: 1 of 2
Frontier Electronics Corp.
667 E. COCHRAN STREET, SIMI VALLEY, CA 93065
TEL: (805) 522-9998 FAX: (805) 522-9989
E-mail: frontiersales@frontierusa.com
Web: http://www.frontierusa.com
SMD Wire Wound EMI Common Mode Chip—SCM3216F series
E. Impedance curve:
ꢀ Special specifications are available for customer’s requirement.
SMD wire wound Common Mode Chip Inductor: P/N SCM3216F-series
Oct. 10, 2004. Page: 2 of 2
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