• The ELF series inductors are available in ranging from 0505 to
1010 types.
• Because they are magnetically shielded, these parts can be
used in high-density mounting configurations.
• With a miniature winding construction, these inductors
nonetheless achieve high Q characteristics.
• Available in tape packaging to support automated mounting
machines.
APPLICATIONS
Televisions, VCRs, personal computers, and other electronic
equipment.
SPECIFICATIONS
Operating temperature range
Storage temperature range
Terminal tensile strength
–20 to +80°C
[Including self-temperature rise]
–40 to +80°C [Unit of products]
24.5N min.
ELF Series ELF0607 Type
PRODUCT IDENTIFICATION
ELF 0607 RA- 1R0 K -3
(1)
(2) (3) (4) (5) (6)
(1)Series name
(2)Dimensions
0607
ø6.6×7mm (lead pitch 5mm)
(3)Packaging style
RA
Ammo-pack
(4)Inductance value
R22
1R0
0.22µH
1µH
(5)Inductance tolerance
J
K
M
±5%
±10%
±20%
(6)TDK internal code
(Some products may not have this number. See the main body
for details.)
PACKAGING STYLE AND QUANTITIES
Packaging style
Ammo-pack
Quantity
1000 pieces
• All specifications are subject to change without notice.
(2/3)
001-01 / 20030822 / e512_elf0607.fm
Inductors
For General Applications
Radial
AMMO-PACK TAPING STYLE
SHAPES AND DIMENSIONS
271
J
ELF Series ELF0607 Type
ø6.6max.
7max.
10.5max.
27.5max.
ø0.62±0.05
5+0.8, –0.2
Dimensions in mm
ELECTRICAL CHARACTERISTICS
Inductance
(µH)
0.22
0.27
0.33
0.39
0.47
0.56
0.68
0.82
1
1.2
1.5
1.8
2.2
2.7
3.3
3.9
4.7
5.6
6.8
8.2
10
12
15
18
22
27
33
39
47
56
∗1
Inductance
tolerance
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±20, ±10%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
Q min.
40
40
40
40
40
40
40
40
45
50
50
50
50
50
50
50
50
50
50
50
50
60
60
60
60
60
60
60
60
60
Test
frequency
L, Q (MHz)
25.2
25.2
25.2
25.2
25.2
25.2
25.2
25.2
7.96
7.96
7.96
7.96
7.96
7.96
7.96
7.96
7.96
7.96
7.96
7.96
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
2.52
Self-resonant
frequency
(MHz)ref.
390
330
280
250
220
190
170
140
120
110
90
80
68
58
50
47
42
39
35
32
29
26
23
21
19
17
16
14
13
12
DC
resistance
(Ω)max.
0.15
0.15
0.15
0.15
0.15
0.15
0.15
0.15
0.17
0.18
0.2
0.22
0.25
0.28
0.31
0.34
0.37
0.4
0.45
0.52
0.55
0.97
1.1
1.2
1.3
1.5
1.7
1.8
2.1
2.3
Rated current (mA)
∗1
max.
Based on
Based on
inductance
temperature rise
change
3200
895
2900
895
2600
895
2400
895
2200
895
2100
895
1900
895
1700
895
1600
840
1500
815
1300
775
1200
740
1100
690
1000
655
930
622
860
595
790
570
730
545
660
515
580
480
560
465
520
350
470
330
430
315
390
300
360
285
330
265
300
255
270
240
250
230
Part No.
ELF0607RA-R22X
∗2
ELF0607RA-R27X
ELF0607RA-R33X
ELF0607RA-R39X
ELF0607RA-R47X
ELF0607RA-R56X
ELF0607RA-R68X
ELF0607RA-R82X
ELF0607RA-1R0X
ELF0607RA-1R2X
ELF0607RA-1R5X
ELF0607RA-1R8X
ELF0607RA-2R2X
ELF0607RA-2R7X
ELF0607RA-3R3X
ELF0607RA-3R9X
ELF0607RA-4R7X
ELF0607RA-5R6X
ELF0607RA-6R8X
ELF0607RA-8R2X
ELF0607RA-100X
ELF0607RA-120X
ELF0607RA-150X
ELF0607RA-180X
ELF0607RA-220X
ELF0607RA-270X
ELF0607RA-330X
ELF0607RA-390X
ELF0607RA-470X
ELF0607RA-560X
Rated current: Value obtained when current flows and the temperature has risen to 20°C or when DC current flows and the initial value of inductance has
fallen by 10%, whichever is smaller.
∗2
X: Please specify inductance tolerance, M(±20%), K(±10%) or J(±5%)
• Test equipment L, Q: YHP4340A Q METER, or equivalent
Rdc: MATSUSHITA VP-2941A DIGITAL MILLIOHM METER, or equivalent
SRF: TAKEDA RIKEN TR-4100 TRACKING SCOPE, or equivalent
• All specifications are subject to change without notice.
(3/3)
001-01 / 20030822 / e512_elf0607.fm
Inductors
For General Applications
Radial
ELECTRICAL CHARACTERISTICS
Inductance
(µH)
68
82
100
120
150
180
220
270
330
390
470
560
680
820
1000
1200
1500
1800
2200
2700
∗1
ELF Series ELF0607 Type
Inductance
tolerance
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
±10, ±5%
Q min.
60
60
55
40
40
40
40
40
40
40
40
40
40
40
30
30
30
30
30
30
Test
frequency
L, Q (MHz)
2.52
2.52
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.796
0.252
0.252
0.252
0.252
0.252
0.252
Self-resonant
frequency
(MHz)ref.
11
9.8
8.9
8
7.2
6.6
6
5.3
4.8
4.4
4
3.8
3.5
3.2
2.9
2.7
2.4
2.2
2
1.8
DC
resistance
(Ω)max.
2.5
2.8
3.1
3.4
3.9
4.3
4.7
5.3
6
6.6
7.4
8.3
13.5
15.5
18
21
25
29
34
40
Rated current (mA)
∗1
max.
Based on
Based on
inductance
temperature rise
change
230
220
210
205
200
195
175
185
165
175
150
165
140
160
125
150
115
140
105
135
97
125
90
120
82
94
75
88
68
82
63
76
57
69
52
64
48
59
43
55
Part No.
ELF0607RA-680X
ELF0607RA-820X
ELF0607RA-101X
ELF0607RA-121X
ELF0607RA-151X
ELF0607RA-181X
ELF0607RA-221X
ELF0607RA-271X
ELF0607RA-331X
ELF0607RA-391X
ELF0607RA-471X
ELF0607RA-561X
ELF0607RA-681X
ELF0607RA-821X
ELF0607RA-102X
ELF0607RA-122X
ELF0607RA-152X
ELF0607RA-182X
ELF0607RA-222X
ELF0607RA-272X
Rated current: Value obtained when current flows and the temperature has risen to 20°C or when DC current flows and the initial value of inductance has
fallen by 10%, whichever is smaller.
∗2
X: Please specify inductance tolerance, K(±10%) or J(±5%)
• Test equipment L, Q: YHP4340A Q METER, or equivalent
Rdc: MATSUSHITA VP-2941A DIGITAL MILLIOHM METER, or equivalent
SRF: TAKEDA RIKEN TR-4100 TRACKING SCOPE, or equivalent
TYPICAL ELECTRICAL CHARACTERISTICS
INDUCTANCE CHANGE vs. DC SUPERPOSITION
CHARACTERISTICS
LCR
meter
Test circuit L=5H C=20000µF
A
DC
Specimen
10000
5000
2700µH
1000µH
1000µH
330µH
–20
2700µH
33µH
6.8µH
100µH
INDUCTANCE CHANGE vs. TEMPERATURE
CHARACTERISTICS
6
∆L
/L (%)
4
2
0
0
–2
–4
–6
100µH
33µH
6.8µH
2700µH
330µH
1000µH
20 40
80
60
Temperature (˚C)
1000
500
Inductance (
µH
)
330µH
100µH
YHP 4275A LCR METER
f=10kHz
100
50
33µH
Q vs. FREQUENCY CHARACTERISTICS
140
120
10
5
10µH
3.9µH
100
100µH
Q
80
60
2700µH
2.2µH
1
1
5
10
50 100
DC current (mA)
500 1000
40
Q-METER 4340A YHP
20
0.02 0.05 0.1 0.2
0.5 1
2
5
Frequency (MHz)
10 20
50
• All specifications are subject to change without notice.
[i=s]This post was last edited by bkn1860 on 2015-8-26 14:14[/i] [b]Set R7F0C809 RESET[font=宋体]as an input port[/font][/b][align=left] When you need to use the RESET port of R7F0C809 as an input port,...
I want to make an amplifier whose input signal is a sinusoidal signal ranging from a few mV to about 3V. I would like to ask, can the ground wire of the input signal be connected to the ground wire of...
Section 1 DP83TC811S-Q1: In-vehicle Ethernet makes your T-BOX even more powerful
In recent years, the concept of "Internet of Vehicles" has been very popular. Speaking of Internet of Vehicles, of cour...
I would like to ask: When debugging the C programming environment of IAR 430, why can't the WATCH window write observation variables? Is there a problem with the usage method or is this version not su...
I recently encountered this problem when compiling the i2c driver. Is it a version problem? Please advise
error: variable 'addr_data' has initializer but incomplete type
error: unknown field 'normal_i...
With the rapid development of science and technology, especially the widespread application of digital technology and various ultra-large-scale integrated circuits, electronic equipment, especially...[Details]
At present, the traffic congestion in cities is quite serious. According to relevant news reports: In China, the traffic congestion has expanded from megacities such as Beijing, Shanghai, and Guang...[Details]
As LEDs continue to improve in almost every aspect of performance and cost, LED lighting is being used in an increasingly wide range of applications, among which LED street lights are a focus of in...[Details]
With the rapid development of urban economy, elevators are increasingly used as a vertical transportation tool. However, elevator fault detection and maintenance, especially the role of elevator remot...[Details]
I. Introduction
Since RS232 has a short communication distance (only 15 meters according to EAT/TAI-232 standard), and can only perform point-to-point communication, it cannot directly f...[Details]
LED is the abbreviation of light emitting diode, which is an electric light source made of semiconductor technology. The core part of LED is a chip composed of P-type semiconductor and N-type semi...[Details]
With the rapid development of intelligent control technology, computers and information technology, the trend of information appliances IA (Information Application), computers and communications integ...[Details]
Digital array radar (DAR) uses digital beam forming (DBF) in both receiving and transmitting modes to achieve flexible distribution and reception of RF signal power in the airspace, obtain excellent t...[Details]
TC9012F is a universal CMOS large-scale integrated circuit for infrared remote control signal transmission, suitable for remote control of TV, VTR, laser player and other equipment. In the market, ...[Details]
introduction
MAX6636 is a multi-channel precision temperature monitor that can not only monitor local temperature, but also connect up to 6 diodes externally. Each channel has a programmable...[Details]
With concerns about the growing energy crisis, motor efficiency has become an important and timely topic. This is because motors use 63% to 70% of the electricity produced in the United States and ...[Details]
It is well known to automotive suppliers that automakers are demanding more from their supply base. For connector suppliers, this means stricter requirements for product performance, stability and ...[Details]
The era of mobile access to the Internet has arrived, and it will rapidly change the business and infrastructure needs of mobile operators under a whole new trend of requirements. We need 4G LTE to...[Details]
D5026A is a driver IC designed by Shanghai Debei Electronics for energy-saving LED display screens. Its design concept is energy-saving and compatible with existing solutions, that is, it can be ...[Details]
In the TV monitoring system, in order to complete the collection of information from various information points (video, audio, alarm signal) and the control of various front-end devices (PTZ, lens,...[Details]