2512061017Y0 [FAIR-RITE]

MULTI-LAYER CHIP BEAD; 多层片式磁珠
2512061017Y0
型号: 2512061017Y0
厂家: FAIR-RITE PRODUCTS CORP.    FAIR-RITE PRODUCTS CORP.
描述:

MULTI-LAYER CHIP BEAD
多层片式磁珠

文件: 总3页 (文件大小:290K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Fair-Rite Product's Catalog  
Part Data Sheet, 2512061017Y0  
Printed: 2010-11-09  
Fair-Rite Products Corp. PO Box J,One Commercial Row, Wallkill, NY 12589-0288  
Phone: (888) 324-7748 www.fair-rite.com  
Part Number:  
2512061017Y0  
Frequency Range: Low Current  
Description:  
Application:  
Where Used:  
Part Type:  
MULTI-LAYER CHIP BEAD  
Suppression Components  
Board Component  
Chip Beads  
Preferred Part:  
Mechanical Specifications  
Weight:  
.030  
(g)  
Part Type Information  
Fair-Rite offers a broad selection of cost effective multi-layer chip beads to suppress conducted EMI signals. Chip beads can be used  
in an array of devices such as cellular phones, computers, laptops, pagers, etc. The small package sizes accommodate automated placements  
and allow for a dense packaging of circuit boards. Chip beads are 100% tested for impedance and dc resistance. They are available in  
standard, high and GHz signal speeds. The multi-layer chip beads are organized by increasing package size and current carrying capacity.  
-All multi-layer chip beads are supplied taped and reeled, if required bulk packed chip beads can be provided.  
-The impedance values listed are typical values. The nominal impedance with a ± 25% tolerance is specified for the + marked 100 MHz.  
Chip beads are measured for impedance on the HP 4291A and fixture HP 16192A.  
-Chip beads have plated contacts, 100% tin over a nickel undercoating. They can accommodate both reflow and wave soldering technologies.  
-The suggested land patterns are in accordance to the latest revision of IPC-7351.  
-Recommended storage and operating temperature range is -55°C to 125°C.  
-Our 'Chip Bead Kit' (part number 0199000018) is available for prototype evaluation.  
Fair-Rite Product's Catalog  
Part Data Sheet, 2512061017Y0  
Printed: 2010-11-09  
Fair-Rite Products Corp. PO Box J,One Commercial Row, Wallkill, NY 12589-0288  
Phone: (888) 324-7748 www.fair-rite.com  
Mechanical Specifications  
Land Patterns  
V
W
X
Y
Z
Dim  
mm  
mm  
tol  
nominal inch  
ref  
inch  
misc.  
1.200  
0.047  
2.800  
0.110  
1.800  
0.071  
1.600  
0.063  
-
-
A
B
C
D
E
F
1.10  
±0.20  
0.043  
-
-
-
-
-
-
-
-
-
-
1.60  
±0.20  
0.063  
Winding Information  
3.20  
±0.20  
0.126  
Turns  
Tested  
-
Wire  
1st Wire  
Length  
2nd Wire  
Length  
0.70  
±0.30  
0.028  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Size  
-
-
-
G
H
J
Reel Information  
Tape Width Pitch  
Parts 7 '' Parts 13 '' Parts 14 ''  
K
mm  
8
mm  
4
Reel  
3000  
Reel  
Reel  
-
Electrical Specifications  
Typical Impedance ( )  
50 MHz  
10000  
Package Size  
72  
Pkg Size  
100 MHz+  
100 ±25%  
1206  
(3216)  
500 MHz  
127  
-
1000 MHz+  
Connector Plate  
# Holes  
# Rows  
Electrical Properties  
Signal Speed  
-
-
Standard  
0.20  
Max DCR ( )  
Max Current (mA)  
450  
Legend  
+ Test frequency  
Preferred parts, the suggested choice for new designs,have shorter lead times and are more readily available.  
The column H(Oe) gives for each bead the calculated dc bias field in oersted for 1 turn and 1 ampere direct current. The actual dc H field in  
the application is this value of H times the actual NI (ampere-turn) product. For the effect of the dc bias on the impedance of the bead material,  
see figures 18-23 in the application note How to choose Ferrite Components for EMI Suppression.  
A ½ turn is defined as a single pass through a hole.  
l/A - Core Constant  
l
: Effective Path Length  
e
A : Effective Cross-Sectional Area  
e
V : Effective Core Volume  
e
L
__  
A - Inductance Factor ( )  
Nl - Value of dc Ampere-turns  
2
N
L
N/AWG - Number of Turns/Wire Size for Test Coil  
Fair-Rite Product's Catalog  
Part Data Sheet, 2512061017Y0  
Printed: 2010-11-09  
Fair-Rite Products Corp. PO Box J,One Commercial Row, Wallkill, NY 12589-0288  
Phone: (888) 324-7748 www.fair-rite.com  

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