Allicdata Part #: | 240-3083-2-ND |
Manufacturer Part#: |
MGV252010SR33M-10 |
Price: | $ 0.06 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | Laird-Signal Integrity Products |
Short Description: | FIXED IND 330NH 5.6A 22MOHM SMD |
More Detail: | 330nH Shielded Molded Inductor 5.6A 22 mOhm Max 10... |
DataSheet: | MGV252010SR33M-10 Datasheet/PDF |
Quantity: | 1000 |
15000 +: | $ 0.05908 |
Q @ Freq: | -- |
Height - Seated (Max): | 0.039" (1.00mm) |
Size / Dimension: | 0.098" L x 0.079" W (2.50mm x 2.00mm) |
Supplier Device Package: | -- |
Package / Case: | 1008 (2520 Metric) |
Mounting Type: | Surface Mount |
Features: | -- |
Inductance Frequency - Test: | 1MHz |
Operating Temperature: | -40°C ~ 125°C |
Ratings: | -- |
Frequency - Self Resonant: | -- |
Series: | MGV |
DC Resistance (DCR): | 22 mOhm Max |
Shielding: | Shielded |
Current - Saturation: | 7.3A |
Current Rating: | 5.6A |
Tolerance: | ±20% |
Inductance: | 330nH |
Material - Core: | -- |
Type: | Molded |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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Fixed inductors are one of the most common types of electrical components, which are used to store energy in the form of an electric current. In the case of the MGV252010SR33M-10, this inductor is constructed with a winding of copper wire and a ferrite core.
The application field of this inductor is in the realm of power supplies. Specifically, it is typically used in high-performance switching power supplies for supplying AC to DC power conversion. It is also often used for filtering and noise suppression, particularly in motor control, inverter and communication circuits.
The working principle of the MGV252010SR33M-10 is related to two phenomena that occur when an alternating current is sent through the inductor. These phenomena are self-inductance and inductive reactance, and they are linked in the sense that when the current is changed in the inductor, self-inductance increases and thus more energy is stored in the inductor. This energy is then converted to a voltage when it is applied to the load.
The main advantage of using this type of inductor is that it allows for a higher current transfer efficiency and greater power supply stability. In other words, more power is delivered to the load with less energy wasted. In addition, it provides greater efficiency in terms of controlling the return current, resulting in low power losses and stability when controlling frequency variations. In terms of noise suppression, this type of inductor is also advantageous because it allows for wider bandwidths.
Overall, the MGV252010SR33M-10 is an excellent choice for use in high-performance switching power supplies. Its ability to efficiently transfer current and accurately maintain the supply voltage make it an ideal component for such applications. Its noise suppression capabilities are also notable, providing greater bandwidth and overall stability. As such, this inductor is an invaluable tool in the design of electronics and electrical systems.
The specific data is subject to PDF, and the above content is for reference
Part Number | Manufacturer | Price | Quantity | Description |
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MGV2016101R0M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1UH 2.6A 69MOHM... |
MGV2016101R5M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1.5UH 2A 129MOH... |
MGV2016102R2M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 2.2UH 1.7A 150M... |
MGV201610R24M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 240NH 5A 21MOHM... |
MGV201610R33M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 330NH 4.1A 29MO... |
MGV201610R47M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 470NH 3.5A 40MO... |
MGV201610R68M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 680NH 3.4A 49MO... |
MGV2520101R0M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1UH 3A 54MOHM S... |
MGV2520101R5M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1.5UH 2.5A 91MO... |
MGV2520102R2M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 2.2UH 2.3A 119M... |
MGV2520104R7M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 4.7UH 1.36A 262... |
MGV252010R22M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 220NH 5.9A 12.5... |
MGV252010R33M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 330NH 4.4A 26MO... |
MGV252010R47M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 470NH 3.9A 32MO... |
MGV252010R68M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 680NH 3.4A 44MO... |
MGV2520121R0M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1UH 3.5A 49MOHM... |
MGV2520121R5M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1.5UH 2.5A 77MO... |
MGV2520122R2M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 2.2UH 2.27A 98M... |
MGV2520124R7M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 4.7UH 1.55A 235... |
MGV252012R47M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 470NH 4.6A 25MO... |
MGV252012R68M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 680NH 3.7A 35MO... |
MGV201610S1R0M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1UH 3.2A 60MOHM... |
MGV201610S1R5M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1.5UH 2.4A 99MO... |
MGV201610S2R2M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 2.2UH 2.2A 140M... |
MGV201610SR47M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 470NH 4.5A 30MO... |
MGV252010S1R0M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1UH 3.4A 52MOHM... |
MGV252010S2R2M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 2.2UH 2.4A 110M... |
MGV252010SR33M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 330NH 5.6A 22MO... |
MGV252010SR47M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 470NH 5.2A 29MO... |
MGV252012S1R0M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 1UH 3.9A 44MOHM... |
MGV252012S2R2M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 2.2UH 2.5A 89MO... |
MGV252012SR47M-10 | Laird-Signal... | 0.06 $ | 1000 | FIXED IND 470NH 5.8A 22MO... |
FIXED IND 10UH 590MA 350 MOHM10H Unshiel...
FIXED IND 22NH 1.4A 70 MOHM SMD22nH Unsh...
FIXED IND 13NH 600MA SMD13nH Unshielded ...
FIXED IND 680UH 210MA 4.6 OHM680H Unshie...
FIXED IND 470UH 1.3A 280 MOHM TH470H Uns...
FIXED IND 8.2UH 165MA 2.2 OHM TH8.2H Uns...