|
|
Surface Mount
(SMT)
Chip Inductors, Ferrite
Beads &
Chokes |
Wide Inductance Range
Small Size
High Q / High DCI
Precision Tolerance
Low Cost
RoHS Compliant
Growth
in telecommunication and
digital equipment with higher operating frequencies, reduction in size of
handheld and portable products, and embedded subsystems are fueling demand for
SMT chip inductors, ferrite chip beads and common mode chokes. |
|
Surface Mount
(SMT)
Power Inductors |

Click to open Power Inductors |
NPIS
Shielded
7 Types
30 Sizes |
NPI
Non-shielded
6 Types
36 Sizes
|
|
|
|
Surface
Mount -
Chip Inductors
[ ¤
RoHS Compliant ¤
|
|
Type
|
Series
|
Temperature Rating
|
Description
|
Inductance Range
|
Q (Min.)
|
Sizes
|
|
Thin Film
Precision Chip
 
|
NTL
 |
-40°C ~ + 125°C
|
Thin Film Precision
Miniature Size High Frequency
Chip Inductors
|
1.0nH
~ 100nH
|
Typ. >40 @ 2GHz
(See curves) |
0201
0402 0603
|
|
Spiral Cut Chip
 
|
NIS
 |
-40°C ~ + 125°C
|
Miniature Size High Frequency
Chip Inductors
|
1.0nH
~ 220nH
|
Typ. 25 ~ 80 @ 2GHz
(See curves) |
0201
0402 0603
|
|
Monolithic
Ceramic Chip
 |
NML
 |
-40°C ~ + 85°C
|
Ceramic Body Miniature Size High Frequency
- Low Cost Chip Inductors
|
1.0nH
~ 470nH
|
30 ~ 75 @ 500MHz
~ 2Ghz
(See curves) |
0402 0603
0805
|
|
Monolithic
Ferrite Chip
  |
NFI
 |
-40°C ~ + 85°C
|
Ferrite Body Miniature Size
Wide Range - Low Cost Chip Inductors
|
47nH ~ 33uH
|
10 ~ 50 @ 400KHz
~ 50MHz
|
0603
0805
1008
1206
1210 1812
|
|
Wire Wound Open Frame Chip
 |
NIN-HK
 |
-40°C ~ +125°C |
Wirewound
Open Frame
High Current
Chip Inductors
|
6.8nH
~ 56nH
|
25 ~ 30 @
250MHz
(See curves)
|
0402
|
|
Wire Wound Open Frame Chip
 |
NIN-HJ
 |
-40°C ~ +125°C |
Wirewound
Open Frame
High Current
Chip Inductors
|
3.3nH
~ 220nH
|
25 ~ 40 @
100MHz
~ 250MHz
(See curves)
|
0603 |
|
Wire Wound Open Frame Chip
 |
NIN-HD
 |
-40°C ~ +125°C |
Wirewound
Open Frame
High Current
Chip Inductors
|
3.3nH
~ 820nH
|
23 ~ 65 @
25MHz
~ 250MHz
(See curves)
|
0805 |
|
Wire Wound Open Frame Chip
 |
NIN-HC
 |
-40°C ~ +125°C
|
Wirewound
Open Frame
High Current
Chip Inductors
|
10nH
~ 4.7uH
|
20 ~ 65 @ 25MHz
~ 500MHz
(See curves)
|
1008
|
|
Wire Wound Open Frame Chip
  |
NLQ
 |
-25°C ~ +85°C
|
Wirewound
Open Frame
Wide Range
High Current
Chip Inductors
|
0.1uH ~ 560uH
|
* * * |
0805
1008
1206
1210
1212
1812 |
|
Wire Wound
Molded Case
 |
NIN
-FC, -NC, -PC
 |
-25°C ~ +85°C
|
Wirewound
Molded Case
Various Styles
Chip Inductors
|
10nH
~ 100uH
|
30 ~ 60 @ 1 ~ 500MHz
|
1008
|
|
Wire Wound
Molded Case
 |
NIN
-FA, -NA, -PA
 |
-25°C ~ +85°C
|
Wirewound
Molded Case
Various Styles
Chip Inductors
|
47nH
~ 270uH
|
30 ~ 50 @ 1 ~ 250MHz
|
1210
|
|
Wire Wound
Molded Case
 |
NIN-FB
 |
-25°C ~ +85°C
|
Wirewound
Molded Case
Chip Inductors
|
100nH
~ 1000uH
|
30 ~ 50 @ 1~ 25MHz
|
1812
|
|
Surface
Mount -
Ferrite Chip Beads
¤ RoHS Compliant
¤
|
|
Type
|
Series
|
Temperature
Rating
|
Description
|
Impedance Range
(@ 100Mhz)
|
DCI
|
Sizes
|
|
Multilayer Chip

|
NCB
|
-40°C ~ +125°C |
Small
Size
Ferrite Chip Beads Multilayer Flat Chip
|
11
~
2000ohm
|
100mA ~ 600mA
(See curves) |
0603
0805
1206
1210
1806
1812
|
|
Multilayer Chip
 |
NCB-H
|
-40°C ~ +125°C |
High Current
Ferrite Chip Beads Multilayer Flat Chip
|
10 ~
125ohm
|
1A ~ 6A
(See curves) |
0603
0805
1206
1806 |
|
Lead Frame & Core

|
NCB
|
-40°C ~ +125°C |
High
Current
Ferrite Chip Beads
|
48
~ 95 OHM
|
5A
(See curves) |
1612
3312
3119
|
|
|
Surface
Mount -
Common Mode Choke
¤ RoHS Compliant
¤
|
|
Type
|
Series
|
Temperature
Rating
|
Description
|
Impedance Range
(@ 100Mhz)
|
DCI
|
Sizes
|
|
Miniature Chip
 
|
NCC
|
-40°C ~ +125°C |
Low
Profile Small Chip
USB & IEEE Interface
High Common Mode Impedance |
30
~
2200ohm
|
100 ~ 400mA
|
0805
1206
|
|
|
Need a
style or
type you do not see
above?
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HTML
Cross Reference
PDF
X-Ref
|
|
|
|
Passive Component Industry -
October 2006
Trends Place Focus Upon Inductive Solutions
Today’s
low operating voltages and high data rates force circuit designers to think
deeper to safeguard noise performance. Rapidly increasing component and
interconnect density, bringing increased risk of crosstalk, only adds to the
challenges. At the same time, older through-hole PCBs are continuing to ...
[more] |
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