EEWORLDEEWORLDEEWORLD

Part Number

Search

M83446/04-12F

Description
General Purpose Inductor, 1uH, 10%, 1 Element, Ferrite-Core, SMD, 1010, CHIP
CategoryPassive components    inductor   
File Size1MB,1 Pages
ManufacturerAPI Delevan
Websitehttp://www.delevan.com/
Download Datasheet Parametric View All

M83446/04-12F Overview

General Purpose Inductor, 1uH, 10%, 1 Element, Ferrite-Core, SMD, 1010, CHIP

M83446/04-12F Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerAPI Delevan
package instruction1010
Reach Compliance Codecompliant
ECCN codeEAR99
uppercase and lowercase codes1010
structureRectangular
core materialFerrite
DC Resistance0.54 Ω
Nominal inductance(L)1 µH
Inductor ApplicationsRF INDUCTOR
Inductor typeGENERAL PURPOSE INDUCTOR
JESD-609 codee4
Number of functions1
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package height1.91 mm
Package length2.54 mm
Package formSMT
Package width2.54 mm
method of packingTR, 13 Inch
Minimum quality factor (at nominal inductance)22
Maximum rated current0.425 A
GuidelineMIL-PRF-83446/04
self resonant frequency145 MHz
Shape/Size DescriptionRECTANGULAR PACKAGE
shieldNO
surface mountYES
Terminal surfaceGold (Au) - with Nickel (Ni) barrier
Terminal locationDUAL ENDED
Terminal shapeWRAPAROUND
Tolerance10%
Base Number Matches1
R
NG
TI )
RA A
T (m
EN UM E
RR IM
C
CU X AN )
MA IST MS
S H
RE (O
M
DC MU
)**
XI
Hz
(M
MA
M
MU
)
NI
Hz
MI
(M
F
Y
SR
NC
M
UE
MU
EQ
NI
FR
MI
Q
ST
TE
E
NC
RA
LE
TO
H)
(µ )
CE e 3
AN ot
CT e N
DU se
#
IN (
F
SERIES
103R
103
ct
du
In
DA
MI
L
I
TA
R
Y
SH
L
MI
A
PP
ROVE
D
NU
E
MB
s
or
SH
DA
Micro i
®
Chip Inductors
R*
-100M/K
-120K
-150M/K
-180K
-220M/K
-270K
-330M/K
-390K
-470M/K
-560K
-680M/K
-820K
-101M/K
Actual Size
-121K
-151K
-181K
-221K
-271K
-331K
-391K
-471K
-561K
-681K
-821K
-102K
-122K
-152K
-182K
-222K
-272K
-332K
-392K
-472K
-562K
-682K
-822K
-103K
-123K
-153K
-183K
-223K
-273K
M83446/04– SERIES 103 PHENOLIC
50.0
30/37
0.010
± 20% / ± 10%
60
± 10% 57
50.0
38
0.012
50.0
31/39
0.015
± 20% / ± 10%
55
± 10% 52
50.0
40
0.018
50.0
32/41
0.022
± 20% / ± 10%
50
± 10% 49
50.0
42
0.027
± 20% / ± 10%
48
50.0
33/43
0.033
± 10% 45
50.0
44
0.039
50.0
34/45
0.047
± 20% / ± 10%
42
± 10% 39
50.0
46
0.056
50.0
35/47
0.068
± 20% / ± 10%
36
± 10% 34
50.0
48
0.082
50.0
36/49
0.100
± 20% / ± 10%
32
CORE
2700
2450
2200
2000
1800
1625
1450
1335
1220
1110
1000
915
830
0.060
0.069
0.078
0.093
0.108
0.114
0.120
0.133
0.145
0.170
0.195
0.212
0.230
1270
1190
1110
1030
950
925
900
860
820
760
705
675
650
Military Specifications
MIL-PRF-83446/04
Physical Parameters
Inches
A
0.075 Max.
B
0.100 ± 0.010
C
0.100 ± 0.010
D
0.050 Min.
E
0.015 Min. (Typ.)
F
0.020 Max. (Typ.)
Weight Max. (Grams)
0.03
Current Rating at 90°C Ambient
35°C Rise
Operating Temperature Range
–55°C to +125°C
Maximum Power Dissipation at 90°C
0.135 Watts
**Note
Self Resonant Frequency (SRF) Values above
250 MHz are calculated and for reference only.
Termination Finish Options
(Part # Code)
Gold over Nickel (Standard): As shown.
Tin/Lead over Nickel: Add suffix “S” to part # (e.g., 103-
102KS).
Mil type “A:” Gold over Nickel (Standard)
Mil type “B” or “F:” Tin/Lead (solder) over Nickel.
RoHS type: Order 103R - XXXKS
Mechanical Configuration
Units are epoxy encapsulated.
Contact areas for reflow soldering are gold plated per MIL-
G-45204 Type 1-Grade A. Internal connections are thermal
compression bonded.
Packaging
Tape & reel (8mm): 7" reel, 2000 pieces max.;
13" reel, 8000 pieces max.
Made In the U.S.A.
Millimeters
1.91 Max.
2.54 ± 0.25
2.54 ± 0.25
1.27 Min.
0.38 Min. (Typ.)
0.51 Max. (Typ.)
01
02
03
04
05
06
07
08
09
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
M83446/04– SERIES 103 FERRITE CORE
± 10% 30
25.0
750
0.12
± 10% 25
25.0
650
0.15
± 10% 25
25.0
550
0.18
± 10% 25
25.0
450
0.22
± 10% 25
25.0
375
0.27
± 10% 25
25.0
300
0.33
± 10% 22
25.0
235
0.39
± 10% 22
25.0
215
0.47
± 10% 22
25.0
195
0.56
± 10% 22
25.0
175
0.68
± 10% 22
25.0
160
0.82
± 10% 22
25.0
145
1.0
± 10% 22
7.9
130
1.2
± 10% 22
7.9
115
1.5
± 10% 22
7.9
105
1.8
± 10% 22
7.9
85
2.2
± 10% 24
7.9
77
2.7
± 10% 24
7.9
70
3.3
± 10% 24
7.9
68
3.9
± 10% 24
7.9
60
4.7
± 10% 22
7.9
55
5.6
± 10% 22
7.9
50
6.8
± 10% 22
7.9
48
8.2
± 10% 24
7.9
40
10.0
± 10% 25
2.5
35
12.0
± 10% 25
2.5
30
15.0
± 10% 25
2.5
28
18.0
± 10% 25
2.5
25
22.0
± 10% 25
2.5
22
27.0
0.125
0.175
0.200
0.220
0.230
0.235
0.240
0.260
0.278
0.520
0.530
0.540
0.740
0.840
0.920
1.00
1.15
1.40
1.55
1.80
2.00
2.20
2.50
3.45
3.80
5.60
5.80
6.40
6.90
880
745
695
665
650
645
635
610
590
435
430
425
360
340
325
310
290
260
250
230
220
210
195
165
160
135
130
125
120
Parts listed above are QPL/MIL qualified
Optional Tolerances: J = 5% H = 3% G = 2% F = 1%
*Complete part # must include series # PLUS the dash #
For surface finish information, refer to www.delevanfinishes.com
270 Quaker Rd., East Aurora NY 14052 • Phone 716-652-3600 • Fax 716-652-4814 • E-mail: apisales@delevan.com • www.delevan.com
1/2009
Good information for this week: Learn about inverter power supply design
[align=left][font=宋体]Inverter power supply information[/font][/align][align=left][url=https://download.eeworld.com.cn/detail/%E4%B9%9F%E8%AE%B8%E6%83%B3%E4%BD%A0/545971]https://download.eeworld.com.cn...
okhxyyo Power technology
Why do I have to use a pointer when sending a character array in serial communication? Why do I change it to a for loop?
[i=s] This post was last edited by 16816 on 2016-10-20 04:42 [/i] Why do I have to use pointers to send character arrays in serial communication? Why does it display garbled characters when I change i...
16816 MCU
Using VHDL language to realize serial communication on CPLD
[align=left][b]Abstract[/b]: Serial communication is an important means to achieve remote measurement and control. Serial communication is implemented on CPLD using VHDL language, which can be used co...
maker FPGA/CPLD
Please help me find what this component is
What is the device with the number 470 in the picture? Thank you....
stm32f103vct6 Integrated technical exchanges
I would like to ask you what are the output modes of transistors?
I wanted to ask a question a long time ago: triode, taking TTL as an example, the output modes of triodes are OC output, push-pull output, and ordinary collector output. I think so, but I want to ask ...
mdlv Embedded System
【Labview】See which learning method everyone is using
There are three general ways to learn LabVIEW: systematic learning method, exploratory learning method, and goal-driven learning method. These three methods are not contradictory, and different method...
安_然 Test/Measurement

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 73  1111  2505  567  960  2  23  51  12  20 
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