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integrated circuit(9)
circuit(1)
Uncategorized(68034)
Resistors(1464842)
Capacitors(1233524)
Inductors, Coils, Chokes(160301)
Shenzhen cluster technology
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MAX3232EUE+
ADI
SL478M010HJKRR"
NextGen Components
PWWR0016F1K20K9"
RESI
PWWR0016F250RK9"
RESI
RWB2K500AL"
VPG Foil Resistors
93026-48KS"
Vishay / Sprague
93026-41KS"
Vishay / Sprague
R413I268050P0K"
TOKIN (KEMET)
MAX3232EUE+
ADI
Details
$20.0000
SL478M010HJKRR
CAP ALUM 4700UF 20% 10V 10K HRS
NextGen Components
Details
$0.0000
PWWR0016F1K20K9
1.2 KOHMS 1% 16W 100PPM/
RESI
Details
$0.0000
PWWR0016F250RK9
250 OHMS 1% 16W 100PPM/
RESI
Details
$0.0000
RWB2K500AL
RWB2K500AL 2 PPM REELED
VPG Foil Resistors
Details
$0.0000
93026-48KS
ST470-75T4KI
Vishay / Sprague
Details
$0.0000
93026-41KS
ST47-60T1KI
Vishay / Sprague
Details
$0.0000
R413I268050P0K
CAP FILM 0.068UF 10% 1.2KVDC RAD
TOKIN (KEMET)
Details
$0.0000
MAX3232EUE+
CD15ED470FO3
CAPACITOR
SL227M100HJJRR
CAP ALUM 220UF 20% 100V 10K HRS
PWWR0013F7R50K9
7.5 OHMS 1% 13W 100PPM/
PWWR0016F250RK9
250 OHMS 1% 16W 100PPM/
PWWR0016F5K00K9
5 KOHMS 1% 16W 100PPM/
PWWR0016F3R00K9
3 OHMS 1% 16W 100PPM/
CXHP2R7186R- TW
2.7V 18F 12.5X25 EDLC
RCEC7502R20JB
RCEC 750 22U 5% BO24
SC3000-300-ASC
CAP 3V 3000F AXIAL SCREW TERMINA
E93E451VND102MB80U
SNAP IN ALUM CAP
EKHE421VSN721MQ60Z
ALUMINUM CAPACITOR
PWR221T-50-4R70F
RES 4.7 OHM 1% 50W TO220
ADCM-S06R0SA106RB
CAPACITOR 10F 6V TH
HVLR2408F2M50K9
RES 2.5M OHM 2W 1% AXIAL
ADCH-S05R5SA224WB
CAPACITOR 0.22F 5.5V TH
PFC212236A-501K
500uH, 10%, 57.0mOhm, 25.5Amp Ma
PWWR0016F10R0K9
10OHMS 1% 16W +100PPM
DigiKey Kit (VA)
agent
DigiKey
agent
Panasonic Electronic Components
agent
Panasonic - BSG
agent
YAGEO
agent
Toko America Inc.
agent
EMIT
agent
TE Connectivity AMP Connectors
agent
Wickmann / Littelfuse
agent
3M
agent
Intersil (Renesas Electronics Corporation)
agent
Molex
agent
The basic principle and common sense of inductors. It turns out that inductors work like this
2024-07-10
MAX3232EUE+
SL478M010HJKRR
SL227M100HJJRR
HSX-2Z1007FE
PWWR0016F1K20K9
PWWR0013F15R0K9
PWWR0013F47R0K9
PWWR0013F7R50K9
PWWR0016F250RK9
PWWR0016F3R00K9
MMFR6518B2K20V9
CHP5R5L755R-TW
CHP5R5L224R-TW
MXT335K305H28
SC3000-300-ASC
E93E451VND102MB80U
E93E401VND122MB80U
EKHE421VSN721MQ60Z
PWR221T-50-22R0F
PWR221T-50-4R70F
29280B362JO0
ADCM-S06R0SA106RB
HVLR1279F2M00K9
135D826X0125K2
134D506X0125F6
93026-47KS
93026-41KS
EKVA451VSN451MQ55S
R413R322050P0K
R413I310050P0K
TPAL0220F200RK9
ADCH-S05R5SA224WB
ADCC-S05R5SA105RB
SCPC23B605SNA
450BHW110MSPA18X30
RNL1E122MDSASQ
EEH-AZA1K470B
PFC212236A-501K
MMFR2568B10K0V9
MMFR3710B5K00V9
450HXH220MEPASN30X30
400HXH330MEPASN35X25
420HXH560MEPASN35X40
The basic principle and common sense of inductors. It turns out that inductors work like this
On 2024-07-10 in
3
Inductors, also known as chokes, reactors, and dynamic reactors. It is an element that can convert electric energy into magnetic energy and store energy in the magnetic field. The structure is similar to the transformer and has the characteristics of DC and AC resistance. In electronic circuits, inductance mainly plays the role of filtering, current limiting, tuning, oscillation, interference suppression and magnetic field generation. First, let's talk about the basic principle of inductors, that is, self induction. Self induction: electromagnetic induction phenomenon that occurs when the current flowing through the conductor itself changes. The coil is made of metal wires. When the current flowing through the coil changes, it will produce obvious electromagnetic induction phenomenon. The self induced reverse electromotive force of the coil hinders the change of the current and plays the role of stabilizing the current. Specifically, if the inductor is in the state of no current passing, it will try to prevent the current from flowing through it when the circuit is connected; If the inductor is in a state of current flow, it will try to maintain the current when the circuit is disconnected. From the perspective of energy, the inductor can dump electric energy into magnetic energy and release magnetic energy into electric energy. The same inductor has different blocking effects on current with different changing frequencies. Its general rule is: connect low frequency and block high frequency. The greater the number of coils and the denser the coils are wound, the greater the inductance. The inductance of the coil with magnetic core is larger than that of the coil without magnetic core; The greater the permeability of the core, the greater the inductance of the coil. The basic unit of inductance is Henry, which is represented by the letter H. Common units: milli Heng (MH), micro Heng( μ H) , nahen (NH). The conversion relationship is: 1h=10^mh=10^6 μ H=10^9nH How to choose the right inductor? The appropriate inductor is mainly determined according to the package size of the inductor, as well as the minimum inductance and rated working current required by the circuit design. In addition, it is also necessary to comprehensively consider the working environment of the inductor, and refer to the working frequency, working voltage and other parameters.
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