Allicdata Part #: | LQP02HQ0N8W02E-ND |
Manufacturer Part#: |
LQP02HQ0N8W02E |
Price: | $ 0.00 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | Murata Electronics North America |
Short Description: | FIXED IND 0.8NH 900MA 50 MOHM |
More Detail: | 0.8nH Unshielded Thin Film Inductor 900mA 50 mOhm ... |
DataSheet: | LQP02HQ0N8W02E Datasheet/PDF |
Quantity: | 1000 |
Specifications
DC Resistance (DCR): | 50 mOhm Max |
Height - Seated (Max): | 0.013" (0.32mm) |
Size / Dimension: | 0.016" L x 0.008" W (0.40mm x 0.20mm) |
Supplier Device Package: | -- |
Package / Case: | 01005 (0402 Metric) |
Mounting Type: | Surface Mount |
Inductance Frequency - Test: | 500MHz |
Operating Temperature: | -55°C ~ 125°C |
Ratings: | -- |
Frequency - Self Resonant: | 15.5GHz |
Q @ Freq: | 14 @ 500MHz |
Series: | LQP02 |
Shielding: | Unshielded |
Current - Saturation: | -- |
Current Rating: | 900mA |
Tolerance: | ±0.05nH |
Inductance: | 0.8nH |
Material - Core: | Non-Magnetic |
Type: | Thin Film |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
Description
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, HTMLFixed Inductors is generally used for producing energy or inductance from the changing flux components. The most common form of energy source for this application is magnetic coils-specifically, they are used to convert the energy generated by a fluctuating electric current into the desired inductive force. To accomplish this, a device called an LQP02HQ0N8W02E inductor is used. This article will discuss the LQP02HQ0N8W02E’s application field and working principle. LQP02HQ0N8W02E inductors are used in many high precision applications because their construction provides a high degree of accuracy when producing the desired inductance. These inductors can also operate at variable frequencies and temperatures. The applications for these inductors include RF communications, telecommunications, power generation, sensors, and automotive electronics.The core of the LQP02HQ0N8W02E inductor is made up of a special copper wire or magnetic material that is wound into a tightly coiled form. This type of coil is designed to capture the electrical current as it passes through the device, thereby creating an inductive force. As the electric current passes through the device, it generates a magnetic field which in turn induces a voltage in the coil, which is then used to power various devices. The two main components of the LQP02HQ0N8W02E inductor are the coil and the core. The coil is usually a flexible copper wire, and the core is usually made of a magnetic material such as iron or nickel. These two components are then wound together to form a coil. The inductor will produce a voltage when an electric current is passed through it. The voltage produced will depend on the inductance of the coil and the amount of current passing through it.The basic principle behind the working of the LQP02HQ0N8W02E inductor is Faraday\'s Law of Induction. According to this law, an electric current passing through a coil of wire produces a magnetic field, which in turn induces a voltage in the coil. This voltage is then used to power various electrical devices and circuits. The LQP02HQ0N8W02E inductors have a unique design which makes them suitable for high-voltage and high-frequency applications. They also have excellent heat and humidity resistance, making them suitable for use in very hostile environments. This type of inductor is typically used in various RF systems, such as antennas, cavity resonators, oscillators, and frequency converters.In summary, the LQP02HQ0N8W02E inductors are used in many high precision applications due to their efficient and accurate construction. They are suitable for a wide range of applications as they can operate at variable frequencies and temperatures, while also exhibiting excellent heat and humidity resistance. This type of inductor is used in various RF systems for its ability to produce a high voltage, as well as its ability to convert electric current into the desired inductive force.The specific data is subject to PDF, and the above content is for reference
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LQP02HQ1N5C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 1.5NH 700MA 80 ... |
LQP02HQ1N6C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 1.6NH 700MA 80 ... |
LQP02HQ1N7C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 1.7NH 700MA 80 ... |
LQP02HQ1N8C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 1.8NH 700MA 80 ... |
LQP02HQ1N9C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 1.9NH 700MA 80 ... |
LQP02HQ20NJ02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 20NH 140MA 2.26... |
LQP02HQ2N0C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2NH 700MA 100 M... |
LQP02HQ2N1C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.1NH 650MA 100... |
LQP02HQ2N2C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.2NH 500MA 200... |
LQP02HQ2N3C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.3NH 450MA 200... |
LQP02HQ2N4C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.4NH 450MA 200... |
LQP02HQ2N5C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.5NH 450MA 200... |
LQP02HQ2N6C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.6NH 450MA 200... |
LQP02HQ2N7C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 2.7NH 450MA 200... |
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LQP02HQ3N2C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 3.2NH 400MA 250... |
LQP02HQ3N3C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 3.3NH 400MA 250... |
LQP02HQ3N4C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 3.4NH 400MA 300... |
LQP02HQ3N5C02E | Murata Elect... | 0.04 $ | 1000 | FIXED IND 3.5NH 350MA 300... |
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