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MAX3232EUE+
ADI
KH-RS-14M"
KOINO
DSC1001CI1-050.0000T"
Roving Networks (Microchip Technology)
MS366-10F-NS"
Masach
A2KM1CSQ48VDC1.6D"
CIT Relay and Switch
WEPS06-1-30G1"
Phoenix Sensors
DB12-30-230"
Acopian
PE7470-5"
Pasternack
MAX3232EUE+
ADI
Details
$20.0000
KH-RS-14M
RELAY SOCKET 14 PIN
KOINO
Details
$0.0000
DSC1001CI1-050.0000T
MEMS OSC XO 50.0000MHZ CMOS SMD
Roving Networks (Microchip Technology)
Details
$0.0000
MS366-10F-NS
36.6X34.1X3.3 MM RF FRAME
Masach
Details
$0.0000
A2KM1CSQ48VDC1.6D
RELAY AUTOMOTIVE SPDT 60A 48VDC
CIT Relay and Switch
Details
$0.0000
WEPS06-1-30G1
WirelessPressure 30PSIG 1/4NPT
Phoenix Sensors
Details
$0.0000
DB12-30-230
AC/DC CONVERTER
Acopian
Details
$0.0000
PE7470-5
5 dB Fixed Attenuator SMP Male t
Pasternack
Details
$0.0000
MAX3232EUE+
KH-RS-14M
RELAY SOCKET 14 PIN
L55S2T5D15M
CURRENT SENSOR 2500A 18V
HSX-2W1004FE
1 MEG HERMETICALLY SEALED
KH-RS-R8
RELAY SOCKET 8 PIN
DSC1003DL2-025.0000T
MEMS OSC XO 25.0000MHZ CMOS SMD
171-S8-120-2
CB, 120A, AUTO, SURF MTG, 1/4" T
E1052/NEO
NDFEB SHALLOW POT 16X4.5MM M4
TC0502HF-00047K
X/Y axis NFC Near Field Communic
01-910-00125
IP TIMER W/ SOFTW POE 2 OUT 2 IN
EH12NMSS2BX
SWITCH PB SPST-NO 2A 48V
EH12NMB7ZX
SWITCH PB SPST-NO 2A 48V
A2K1CSP48VDC1.6
RELAY AUTOMOTIVE SPDT 60A 48VDC
6M.TA.9.024.1200
POWER ANALYZER AC/DC - 50 A
YOZ-52570ZZ01-YM
GNSS Antenna L1 L2
SL227M100HJJRR
CAP ALUM 220UF 20% 100V 10K HRS
82-6151.2A24.B002
22 MM, ILLUMINATED PUSHBUTTON, I
WEPS06-1-30G1
WirelessPressure 30PSIG 1/4NPT
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The basic principle and common sense of inductors. It turns out that inductors work like this
2024-07-10
MAX3232EUE+
HSX-2Z1007FE
RPZ-6.0-CT
IGA03
IGA05
LOF450-20B48-C
PVB3H2B0113R1
L55S1T5D15M
HSX-2W1004FE
DSC1001CI5-032.0000T
DSC1003DL2-025.0000T
DSC1001CI1-050.0000T
DBC-25FW-10
171-S8-120-2
DSC1001DI1-025.0000T
DSC1001DL2-027.0000T
DSC1003CI5-020.0000T
E1052/NEO
UWTH1D12LD-10WR3
UWTH1D15LD-10WR3
TC0502HF-00047K
01-910-00125
KGEA-BFCWX-B-0345J
01-910-00111
EH12NMSS2BX
A2KM1CSQ48VDC1.6D
A3KM1CSQ48VDC1.6R
A2K1CSP48VDC1.6
MSMP157-BAA
SL478M010HJKRR
82-6151.2A24.B002
WEPS06-1-30G1
DB15-30-230
DB12-10
DB12-30-230
PE7466-15
PE51OM1021
PE70A8000
TC-402-4195F-LP
PEWAN770-10
PE83IR1014
PE7396-16
PEANRBD1028
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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