Product Description

FUJI CHINAMFG Axis-X AC Serco Motor XM05711 SGMAS-01A2A-FJ12 original new/used
 

Description: FUJI AC Servo Motor
Part No: SGMAS-01A2A-FJ12
Condition: Original new /Used 
Payment Term: T/T, Paypal, Westernunion are all allowed.
Shipping Ways: DHL, FedEx, TNT, UPS,by Sea
Lead time: in stock!
HighLight: pick and place nozzle

We also supply following CHINAMFG spare parts:
 

FUJI XPF NOZZLE 0.4MM/0.7MM 1.MM/1.3MM/1.8MM/2.5MM/3.7MM/5.0MM 
FUJI XP142/XP143 NOZZLE 0.4MM/0.7MM/1.0MM/1.3MM/ 1.8MM/2.5MM /3.7MM/5.0MM 
FUJI XP T1065Z
FUJI XP142/XP143 S40159
XP243E DNSY3732/DNSY3731
FUJI XP142/XP143 PISTON AGDFPH8014
FUJI XP142/XP143 BODY ADNPH8810
FUJI XP142 CV-A1 (K1312A)
FUJI XP143 Z Q R  DNEH7042
FUJI XP142 Z Q R  DNEH7571
FUJI XP142/XP143  pin DNH8171       
FUJI XP142/XP143 pin DNPH8181
FUJI XP142/XP143 W1200-363PGX-C5Z
FUJI XP242XP243 DEEM5462/DEEM5461
FUJI XP142XP143 DEEM5391/DEEM5392
FUJI XP CXSM10-K6869-35,CXSL10-2-DCJ4481J
FUJI XP242/243 GFSY3310 W2515-235PGK-C5Z
FUJI XP242/XP243 H1007G:VKBH12R;H1007D:VKBH12W
FUJI XP242 DNSY3902 W2513-252PGX-C5Z
FUJI XP242/XP243  SGMAS-04A2A-FJ21
FUJI XP242/XP243 SGMAS-01A2A-FJ31
FUJI XP242/XP243 H4591T
FUJI XP242/XP243 DNSY3731
FUJI XP242/XP243 ADETR8066
FUJI XP242/XP243  XC-HR50 K1131F
FUJI XP242/XP243  VQZ312-5L1-C8
FUJI XP242/XP243   ADEGC8311
FUJI XP242/XP243   ADNAJ8310
FUJI XP142/XP143/XPF STOPPEP DNPH2100  
FUJI XP/QP/IP FEEDER 8MM/12MM/16MM/24MM/32MM/44MM 56MM/72MM/88MM

The responsibility of our enterprise:

1.We have always been adhering to the “quality of survival, quality tree brand, quality and efficiency, quality to promote development” quality policy
2.We always adhere to the premise of ensuring the quality of customer production, reduce customer production costs.
3.Unremittingly to the needs of our customers for the direction of our work.

Our business scope:

1.Nozzles, Feeders, Feeder Parts, cutters, filters, belts, motors, valves, sensors, camera, board cards and other machine parts…
2.Feeder Calibration Jigs, Feeder Storage Carts, IC Tray feeders, Stick feeders, Feeder Loading Unit,
3.Printer squeegee holder/blade, Clamp foil and other Printer Parts.
4.ESD splice tape, tool, stencil clean wiper/paper, PCB Magazine…
5.SMT Peripheral equipment (PCB Separator, Solder paste mixer, Automatic SMD Chip Counter, etc… )
6.SMT product recycling (feeder nozzle used machine…)                  

Terms of Payment:
     
        T/T, PayPal, Western Union

Our Advantages:

  1.  High quality and low cost. 
  2. Original new and copy new all available.
  3. Ship to worldwide.
  4. 10 years trading experience.
  5. Various brands available.
  6. Special type is available.

Contact us:
  contact-info.html
 
Website:  smtpartssupply /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Metal Coating: Copper, Copper
Mode of Production: SMT, SMT
Layers: Multilayer, Multilayer
Base Material: FR-4, Fr-4
Certification: RoHS, CCC, ISO, RoHS, CCC, ISO, RoHS, CCC, ISO
Customized: Non-Customized, Non-Customized
Customization:
Available

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induction motor

How do variable frequency drives (VFDs) impact the performance of AC motors?

Variable frequency drives (VFDs) have a significant impact on the performance of AC motors. A VFD, also known as a variable speed drive or adjustable frequency drive, is an electronic device that controls the speed and torque of an AC motor by varying the frequency and voltage of the power supplied to the motor. Let’s explore how VFDs impact AC motor performance:

  • Speed Control: One of the primary benefits of using VFDs is the ability to control the speed of AC motors. By adjusting the frequency and voltage supplied to the motor, VFDs enable precise speed control over a wide range. This speed control capability allows for more efficient operation of the motor, as it can be operated at the optimal speed for the specific application. It also enables variable speed operation, where the motor speed can be adjusted based on the load requirements, resulting in energy savings and enhanced process control.
  • Energy Efficiency: VFDs contribute to improved energy efficiency of AC motors. By controlling the motor speed based on the load demand, VFDs eliminate the energy wastage that occurs when motors run at full speed even when the load is light. The ability to match the motor speed to the required load reduces energy consumption and results in significant energy savings. In applications where the load varies widely, such as HVAC systems, pumps, and fans, VFDs can provide substantial energy efficiency improvements.
  • Soft Start and Stop: VFDs offer soft start and stop capabilities for AC motors. Instead of abruptly starting or stopping the motor, which can cause mechanical stress and electrical disturbances, VFDs gradually ramp up or down the motor speed. This soft start and stop feature reduces mechanical wear and tear, extends the motor’s lifespan, and minimizes voltage dips or spikes in the electrical system. It also eliminates the need for additional mechanical devices, such as motor starters or brakes, improving overall system reliability and performance.
  • Precision Control and Process Optimization: VFDs enable precise control over AC motor performance, allowing for optimized process control in various applications. The ability to adjust motor speed and torque with high accuracy enables fine-tuning of system parameters, such as flow rates, pressure, or temperature. This precision control enhances overall system performance, improves product quality, and can result in energy savings by eliminating inefficiencies or overcompensation.
  • Motor Protection and Diagnostic Capabilities: VFDs provide advanced motor protection features and diagnostic capabilities. They can monitor motor operating conditions, such as temperature, current, and voltage, and detect abnormalities or faults in real-time. VFDs can then respond by adjusting motor parameters, issuing alerts, or triggering shutdowns to protect the motor from damage. These protection and diagnostic features help prevent motor failures, reduce downtime, and enable predictive maintenance, resulting in improved motor reliability and performance.
  • Harmonics and Power Quality: VFDs can introduce harmonics into the electrical system due to the switching nature of their operation. Harmonics are undesirable voltage and current distortions that can impact power quality and cause issues in the electrical distribution network. However, modern VFDs often include built-in harmonic mitigation measures, such as line reactors or harmonic filters, to minimize harmonics and ensure compliance with power quality standards.

In summary, VFDs have a profound impact on the performance of AC motors. They enable speed control, enhance energy efficiency, provide soft start and stop capabilities, enable precision control and process optimization, offer motor protection and diagnostic features, and address power quality considerations. The use of VFDs in AC motor applications can lead to improved system performance, energy savings, increased reliability, and enhanced control over various industrial and commercial processes.

induction motor

Are there energy-saving technologies or features available in modern AC motors?

Yes, modern AC motors often incorporate various energy-saving technologies and features designed to improve their efficiency and reduce power consumption. These advancements aim to minimize energy losses and optimize motor performance. Here are some energy-saving technologies and features commonly found in modern AC motors:

  • High-Efficiency Designs: Modern AC motors are often designed with higher efficiency standards compared to older models. These motors are built using advanced materials and optimized designs to reduce energy losses, such as resistive losses in motor windings and mechanical losses due to friction and drag. High-efficiency motors can achieve energy savings by converting a higher percentage of electrical input power into useful mechanical work.
  • Premium Efficiency Standards: International standards and regulations, such as the NEMA Premium® and IE (International Efficiency) classifications, define minimum energy efficiency requirements for AC motors. Premium efficiency motors meet or exceed these standards, offering improved efficiency compared to standard motors. These motors often incorporate design enhancements, such as improved core materials, reduced winding resistance, and optimized ventilation systems, to achieve higher efficiency levels.
  • Variable Frequency Drives (VFDs): VFDs, also known as adjustable speed drives or inverters, are control devices that allow AC motors to operate at variable speeds by adjusting the frequency and voltage of the electrical power supplied to the motor. By matching the motor speed to the load requirements, VFDs can significantly reduce energy consumption. VFDs are particularly effective in applications where the motor operates at a partial load for extended periods, such as HVAC systems, pumps, and fans.
  • Efficient Motor Control Algorithms: Modern motor control algorithms, implemented in motor drives or control systems, optimize motor operation for improved energy efficiency. These algorithms dynamically adjust motor parameters, such as voltage, frequency, and current, based on load conditions, thereby minimizing energy wastage. Advanced control techniques, such as sensorless vector control or field-oriented control, enhance motor performance and efficiency by precisely regulating the motor’s magnetic field.
  • Improved Cooling and Ventilation: Effective cooling and ventilation are crucial for maintaining motor efficiency. Modern AC motors often feature enhanced cooling systems, including improved fan designs, better airflow management, and optimized ventilation paths. Efficient cooling helps prevent motor overheating and reduces losses due to heat dissipation. Some motors also incorporate thermal monitoring and protection mechanisms to avoid excessive temperatures and ensure optimal operating conditions.
  • Bearings and Friction Reduction: Friction losses in bearings and mechanical components can consume significant amounts of energy in AC motors. Modern motors employ advanced bearing technologies, such as sealed or lubrication-free bearings, to reduce friction and minimize energy losses. Additionally, optimized rotor and stator designs, along with improved manufacturing techniques, help reduce mechanical losses and enhance motor efficiency.
  • Power Factor Correction: Power factor is a measure of how effectively electrical power is being utilized. AC motors with poor power factor can contribute to increased reactive power consumption and lower overall power system efficiency. Power factor correction techniques, such as capacitor banks or power factor correction controllers, are often employed to improve power factor and minimize reactive power losses, resulting in more efficient motor operation.

By incorporating these energy-saving technologies and features, modern AC motors can achieve significant improvements in energy efficiency, leading to reduced power consumption and lower operating costs. When considering the use of AC motors, it is advisable to select models that meet or exceed recognized efficiency standards and consult manufacturers or experts to ensure the motor’s compatibility with specific applications and energy-saving requirements.

induction motor

What are the key advantages of using AC motors in industrial applications?

AC motors offer several key advantages that make them highly suitable for industrial applications. Here are some of the main advantages:

  1. Simple and Robust Design: AC motors, particularly induction motors, have a simple and robust design, making them reliable and easy to maintain. They consist of fewer moving parts compared to other types of motors, which reduces the likelihood of mechanical failure and the need for frequent maintenance.
  2. Wide Range of Power Ratings: AC motors are available in a wide range of power ratings, from small fractional horsepower motors to large industrial motors with several megawatts of power. This versatility allows for their application in various industrial processes and machinery, catering to different power requirements.
  3. High Efficiency: AC motors, especially modern designs, offer high levels of efficiency. They convert electrical energy into mechanical energy with minimal energy loss, resulting in cost savings and reduced environmental impact. High efficiency also means less heat generation, contributing to the longevity and reliability of the motor.
  4. Cost-Effectiveness: AC motors are generally cost-effective compared to other types of motors. Their simple construction and widespread use contribute to economies of scale, making them more affordable for industrial applications. Additionally, AC motors often have lower installation and maintenance costs due to their robust design and ease of operation.
  5. Flexible Speed Control: AC motors, particularly induction motors, offer various methods for speed control, allowing for precise adjustment of motor speed to meet specific industrial requirements. Speed control mechanisms such as variable frequency drives (VFDs) enable enhanced process control, energy savings, and improved productivity.
  6. Compatibility with AC Power Grid: AC motors are compatible with the standard AC power grid, which is widely available in industrial settings. This compatibility simplifies the motor installation process and eliminates the need for additional power conversion equipment, reducing complexity and cost.
  7. Adaptability to Various Environments: AC motors are designed to operate reliably in a wide range of environments. They can withstand variations in temperature, humidity, and dust levels commonly encountered in industrial settings. Additionally, AC motors can be equipped with protective enclosures to provide additional resistance to harsh conditions.

These advantages make AC motors a popular choice for industrial applications across various industries. Their simplicity, reliability, cost-effectiveness, energy efficiency, and speed control capabilities contribute to improved productivity, reduced operational costs, and enhanced process control in industrial settings.

China OEM CHINAMFG CHINAMFG Axis-X AC Serco Motor Xm00211 Sgmas-01A2a-Fj12 Original New/Used   vacuum pump for ac	China OEM CHINAMFG CHINAMFG Axis-X AC Serco Motor Xm00211 Sgmas-01A2a-Fj12 Original New/Used   vacuum pump for ac
editor by CX 2024-04-03