EEWORLDEEWORLDEEWORLD

Part Number

Search

L-05C2N2SV4E

Description
1 ELEMENT, 0.0022 uH, CERAMIC-CORE, GENERAL PURPOSE INDUCTOR, SMD, CHIP
CategoryPassive components    inductor   
File Size109KB,4 Pages
ManufacturerJohanson Dielectrics
Environmental Compliance  
Download Datasheet Parametric View All

L-05C2N2SV4E Overview

1 ELEMENT, 0.0022 uH, CERAMIC-CORE, GENERAL PURPOSE INDUCTOR, SMD, CHIP

L-05C2N2SV4E Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerJohanson Dielectrics
Reach Compliance Codecompliant
ECCN codeEAR99
core materialCERAMIC
DC Resistance0.26 Ω
Nominal inductance(L)0.0022 µH
Inductor ApplicationsRF INDUCTOR
Inductor typeGENERAL PURPOSE INDUCTOR
JESD-609 codee3
Number of functions1
Number of terminals2
Maximum operating temperature100 °C
Minimum operating temperature-40 °C
Minimum quality factor (at nominal inductance)4
Maximum rated current0.3 A
self resonant frequency9500 MHz
Shape/Size DescriptionRECTANGULAR PACKAGE
shieldNO
special characteristicsINDUCTANCE TOLERANCE IS 0.3 NANO HENRY
surface mountYES
Terminal surfaceMatte Tin (Sn) - with Nickel (Ni) barrier
Terminal locationDUAL ENDED
Terminal shapeWRAPAROUND
Test frequency100 MHz
Tolerance13.637%
Base Number Matches1
RF C
ERAMIC
C
HIP
I
NDUCTORS
High frequency multi-layer chip inductors feature a monolithic body
made of low loss ceramic and high conductivity metal electrodes to
achieve optimal high frequency performance.
These RF chip inductors are compact in size and feature tin plated
nickel barrier terminations and tape and reel packaging which makes
them ideal for small size/high volume wireless applications.
A
PPLICATIONS
• CELL/PCS Modules
• Broadband Components
• RF Tranceivers
• Wireless LAN
• RFID
• Custom Applications
P
RODUCT
R
ANGE
S
UMMARY
EIA SIZE (mm)
0201 (0603)
0402 (1005)
0603 (1608)
0805 (2012)
SIZE CODE
L-05
L-07
L-14
L-15
L RANGE
1.0 - 33 nH
1.0 - 120 nH
1.0 - 220 nH
1.5 - 680 nH
Q FACTOR (Min.)
4 (100 MHz)
8 (100 MHz)
12 (100 MHz)
8 (100 MHz)
SRF (Typ.)
>21 GHz (1.0 nH)
>21 GHz (1.0 nH)
>23 GHz (1.0 nH)
>21 GHz (1.5 nH)
TEMPERATURE
-40°C to + 100°C
-40°C to + 100°C
-40°C to + 100°C
-40°C to + 100°C
M
ECHANICAL
C
HARACTERISTICS
E/B
T
0201 (0603)
Inches
mm
0402 (1005)
Inches
mm
0603 (1608)
Inches
mm
0805 (2012)
Inches
mm
W
L
Length
.024 ±.001”
Width
.012 ±.001”
Thickness
.012 ±.001”
End Band
.006 ±.002”
(0.6 ±0.03)
(0.3 ±0.03)
(0.3 ±0.03)
.039 ±.004” (1.00 ±.10)
.020 ±.004” (0.50 ±.10)
.020 ±.004” (0.50 ±.10)
.063 ±.006” (1.60 ±.15)
.031 ±.006” (0.80 ±.15)
.031 ±.006” (0.80 ±.15)
.012 ±.008” (0.30 ±.20)
.079 ±.008” (2.00 ±.20)
.047 ±.008” (1.20 ±.20)
.033 ±.008” (0.85 ±.20)
.020 ±.012” (0.50 ±.30)
(0.15 ±0.05) .009 ±.004” (0.23 ±.10)
H
OW TO
O
RDER
L-
DEVICE
Inductor
07
SIZE
05 = 0201
07 = 0402
14 = 0603
15 = 0805
C
TYPE
Ceramic
10N
VALUE
See Table
S = ± 0.3 nH
J= ± 5%
K = ± 10%
J
TOLERANCE
1.0 to 5.6 nH
6.8 nH and above
3.3 nH and above
V
TERMINATION
V =
Ni/Sn
4
MARKING
4 = No Marking
6 = Polarity Mark
T
TAPE & REEL
Size Code
Tape
Reel
0201 Y
Paper
5”
0201 T
Paper
7”
0402 T
Paper
7”
0603 E
Embossed 7”
0805 E
Embossed 7”
Qty
10,000
15,000
10,000
4,000
4,000
Part number written: L-07C10NJT4V
16
www.johansontechnology.com
How to make a variable frequency power supply?
[i=s] This post was last edited by paulhyde on 2014-9-15 09:09 [/i] Please give me a plan for making a 30W variable frequency power supply, preferably with a circuit design diagram :)...
zxllove23 Electronics Design Contest
Why does it always say that RCC_APB1Periph_USART4 is not defined?
I searched for the stm32f10x_rcc.h file and it is indeed not defined. What's going on?...
yilingtang stm32/stm8
Frequency Converter Maintenance Experience (Transfer)
Recently, a Mitsubishi A540-55K inverter was repaired. It was brought to us by a novice repairman because he could not repair it well. The machine originally had a broken module. After replacing the m...
totopper Industrial Control Electronics
[Video Sharing] Power Design Tips 31: Correct Selection of Synchronous Buck MOSFET Resistance Ratio
Introduction : In this Power Tips, we will look at how the conduction power dissipation is traded off in a synchronous buck power stage as a function of duty cycle and FET resistance ratio. Making thi...
德州仪器_视频 Analog electronics
dsp writes external sram
DSP writes to external SRAM, and observes the written results through the memory in CCS. But the problem now is: when writing to one address, the contents of all addresses change. For example: writing...
lilove751 Embedded System
A super novice's question about the MSP430 clock and interrupt concepts
There are several problems when learning MSP430 for the first time1. What is the relationship between MCLK, SMCLK, and ACLK? In what areas are they mostly used? Especially the difference between the l...
ladko Microcontroller MCU

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1689  2470  2862  943  1453  35  50  58  19  30 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号