Allicdata Part #: | 04603-ND |
Manufacturer Part#: |
04603 |
Price: | $ 45.26 |
Product Category: | Uncategorized |
Manufacturer: | Greenlee Communications |
Short Description: | DIE-ISO 32 |
More Detail: | N/A |
DataSheet: | 04603 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 41.13900 |
Series: | * |
Part Status: | Active |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
04603, also known as an induction motor, is a type of motor that is used to convert electrical energy into mechanical energy. The principle of motor operation makes use of the effects of induction, induced by an alternating (AC) source of current, on a conductor placed in an alternating magnetic field. The inductor motor is able to provide high torque over a wide range of speed which makes them an ideal choice for industrial applications. Moreover, they are smaller, lighter and more efficient than conventional electric motors. The design of an induction motor consists of a stator, which is the outer frame of the motor that houses the laminations and windings, and a rotor, which houses the electromagnets and the copper coils. The stator is a rotating part of the motor that creates a magnetic field which interacts with the rotor. When electric current is passed through the stator windings, a rotating magnetic field is generated, which induces currents in the rotor. This in turn creates a magnetic field in the rotor, causing it to rotate in the same direction as the stator field. With the rotor rotating at a different speed to the stator field, a power transfer occurs from the rotor to the stator, creating torque and motion.The operating principle of an induction motor can be divided into two stages: the induction phase, which is the motor starting up, and the normal operating phase. When starting up, the induction motor works slightly differently. When power is applied to the stator, the induced current in the rotor lags behind the stator, thus, no effective power is transferred to the rotor. As the rotor speed increases, the rotor current increases accordingly, creating a greater magnetic force, which opposes the stator current. This increases the power transfer from the stator to the rotor and creates torque, causing the rotor to accelerate. As soon as the rotor speed reaches synchronous speed, the current produces a force which matches the stator current, and the rotor runs at same speed as the magnetic field. In the normal operating phase, the torque, power and speed of the motor remain constant. This is because the rotor speed is maintained at synchronous speed with the stator, and any difference in the field, either in speed or torque will cause current in the rotor to increase or decrease, allowing the motor to self-regulate.04603 induction motors are most commonly used in industrial processes such as grain handling, fans and pumps, and conveyors. They are known for their robustness and high starting torque, making them ideal for these applications. Additionally, they require less maintenance and operate at relatively high efficiency levels, compared to other types of electric motors. 04603 applications can also be found in automotive or household appliances as these motors are compact, quiet and often work with AC current. Other applications include robotics, medical devices, HVAC systems, compressors, and machine tools.Overall, the 04603 motor is one of the most widely used types of motors in industrial and household appliances due to its robustness, high torque and improved efficiency. It has advanced design for better maintenance and durability and is relatively easy to install and maintain compared to other types of motors. Moreover, 04603 motors are compact and lightweight, making them an ideal choice for a variety of applications across various industries.
The specific data is subject to PDF, and the above content is for reference
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0460-202-16141 | TE Connectiv... | -- | 1000 | CONTACT PIN 16-20AWG SZ16... |
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0460075102 | Molex, LLC | 0.55 $ | 1000 | CONN HDR 2POS 7.50MM R/A ... |
025-0460-000 | ITT Cannon, ... | 0.6 $ | 1770 | DUST CAP 10SL 12S 12 PLAS... |
0460073102 | Molex, LLC | 1.04 $ | 50 | CONN HDR 2POS 7.50MM R/A ... |
0460073104 | Molex, LLC | 1.54 $ | 1000 | CONN HDR 4POS 7.50MM R/A ... |
0460075302 | Molex, LLC | 0.0 $ | 1000 | CONN HDR 2POS 7.50MM R/A ... |
0460812000 | Molex, LLC | 5.39 $ | 1000 | MULTIPATH 4 BLADE RA PWR ... |
0460812001 | Molex, LLC | 5.39 $ | 1000 | MULTIPATH 4 BLADE RA PWR ... |
0460812010 | Molex, LLC | 5.39 $ | 1000 | MULTIPATH 4 BLADE RA PWR ... |
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0460001.UR | Littelfuse I... | 0.85 $ | 6500 | FUSE BRD MNT 1A 125VAC/VD... |
046002.5UR | Littelfuse I... | 0.85 $ | 5000 | FUSE BRD MNT 2.5A 125VAC/... |
0460002.UR | Littelfuse I... | 0.85 $ | 23500 | FUSE BOARD MNT 2A 125VAC/... |
0460002.ER | Littelfuse I... | 0.71 $ | 1000 | FUSE BOARD MNT 2A 125VAC/... |
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0460121141-12-B0 | Molex, LLC | 0.55 $ | 200 | 12" PRE-CRIMP A2040 BLACK... |
0460121141-12-R0 | Molex, LLC | 0.55 $ | 200 | 12" PRE-CRIMP A2040 REDRe... |
0460121141-12-W0 | Molex, LLC | 0.55 $ | 200 | 12" PRE-CRIMP A2040 WHITE... |
0460121141-12-B9 | Molex, LLC | 0.6 $ | 200 | 12" PRE-CRIMP A2064 BLACK... |
0460121141-12-R9 | Molex, LLC | 0.6 $ | 200 | 12" PRE-CRIMP A2064 REDRe... |
0460121141-12-W9 | Molex, LLC | 0.6 $ | 200 | 12" PRE-CRIMP A2064 WHITE... |
192926-0460 | ITT Cannon, ... | 9.36 $ | 243 | CONN RCPT HSNG MALE 12POS... |
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