B82462G4683M000 Inductors, Coils, Chokes |
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Allicdata Part #: | 495-2000-2-ND |
Manufacturer Part#: |
B82462G4683M000 |
Price: | $ 0.45 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | EPCOS (TDK) |
Short Description: | FIXED IND 68UH 650MA 410 MOHM |
More Detail: | 68µH Shielded Wirewound Inductor 650mA 410 mOhm Ma... |
DataSheet: | B82462G4683M000 Datasheet/PDF |
Quantity: | 1000 |
2500 +: | $ 0.40593 |
5000 +: | $ 0.39284 |
12500 +: | $ 0.37974 |
DC Resistance (DCR): | 410 mOhm Max |
Height - Seated (Max): | 0.118" (3.00mm) |
Size / Dimension: | 0.248" L x 0.248" W (6.30mm x 6.30mm) |
Supplier Device Package: | -- |
Package / Case: | Nonstandard |
Mounting Type: | Surface Mount |
Inductance Frequency - Test: | 100kHz |
Operating Temperature: | -55°C ~ 150°C |
Ratings: | AEC-Q200 |
Frequency - Self Resonant: | -- |
Q @ Freq: | -- |
Series: | B82462G4 |
Shielding: | Shielded |
Current - Saturation: | 500mA |
Current Rating: | 650mA |
Tolerance: | ±20% |
Inductance: | 68µH |
Material - Core: | Ferrite |
Type: | Wirewound |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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Fixed inductors are a common form of electronic component used in electrical circuits. The B82462G4683M000 is a fixed inductor with a value of 100 nH. It is a surface mount component with a maximum rated current of 1.4 A and a maximum rated operating temperature of 125 Celsius degrees. The inductor is most often used in applications involving high frequencies, such as switching regulators, telecom base stations, RF power amplifiers, automotive electronics, and high-speed current sensing.
Inductors are used in electrical circuits to oppose the flow of alternating current (AC) or direct current (DC). They can store energy within the inductor\'s coil, and they act as a filter for AC and DC signals in electronic circuits. The B82462G4683M000 is a fixed inductor, meaning the inductance value of the component is determined by the manufacturing process and cannot be changed. This makes the component suitable for applications where a specific inductance value is needed.
The B82462G4683M000 inductor works on the principle of electromagnetic induction. When a changing current flows through the inductor’s coil, a magnetic field is created and this induces an opposing voltage across the coil. This opposing voltage is known as a back electromotive force, or EMF, and the magnitude of this voltage depends on the inductance and rate of change of current. In the case of the B82462G4683M000, the inductance is fixed and so the back EMF will be proportional to the rate of change of the current.
The B82462G4683M000 is used mainly in high frequency applications where the impedance of a circuit needs to be managed. As the voltage, current, and frequency of a signal changes over time, the B82462G4683M000 will cause a phase shift in the signal. This phase shift can be used to control the gain or attenuation of the signal in a circuit, allowing the user to control the frequency response. By managing the gain of the circuit, the user is able to control the voltage gain, current gain, output impedance, and power gain of the circuit.
Inductors are also used to create a short circuit between two points in a circuit. This is useful for signal conditioning, filter design, and other circuit configuration tasks, such as controlling the voltage regulator in a power supply. The B82462G4683M000 can also be used in RF circuits to create a frequency selective response, either to pass or attenuate a certain frequency.
In summary, the B82462G4683M000 is a fixed inductor with a value of 100 nH. It is used in applications involving high frequencies, such as switching regulators, telecom base stations, RF power amplifiers, automotive electronics, and high-speed current sensing. The inductor works on the principle of electromagnetic induction, and it is used to oppose the flow of alternating current (AC) or direct current (DC). The B82462G4683M000 can also be used to create a phase shift in a signal, allowing the user to control the frequency response, voltage gain, current gain, output impedance, and power gain of the circuit. It can also be used to create a frequency selective response, either to pass or attenuate a certain frequency.
The specific data is subject to PDF, and the above content is for reference
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