According to foreign media reports, Foxconn Automation Technology Development Committee manager Dai Jia-peng revealed on Friday that the company plans to reduce the number of factory employees in mainland China in three phases. This goal has been achieved in some areas.

Dai Jiapeng told DigiTImes that in the first phase, individual jobs in the factory will be equipped with robots to complete too dangerous or simple repetitive tasks for people; in the second phase, robots will be used throughout the production line; in the third stage Only a small number of employees can complete production, logistics, testing, inspection and other work.

Foxconn plans to deploy more robots and has reduced thousands of employees. Dai Jiapeng said that Foxconn's factories in Chengdu, Shenzhen and Zhengzhou have reached the second and third stages. Especially in the Zhengzhou factory, a CNC (CNC machine) production line has been fully automated.

According to Dai Jiapeng, Foxconn has deployed more than 40,000 “Foxconn robots” to date, capable of producing about 10,000 robots per year. In addition to industrial robots, Foxconn is still developing medical robots. Dai Jiapeng pointed out that industrial robots cannot completely replace people because people can quickly switch from one task to another.

Robotics will benefit Foxconn in many ways, including faster product production, lower labor costs, and the ability to exceed competitors. Switching to robots has reduced Foxconn's thousands of employees and may affect the economy of some Chinese cities.

Some plants are almost completely automated

Dai Jia-peng, general manager of the Foxconn Automation Technology Development Committee, said the company's plan will be divided into three phases.

The first phase is to set up automated workstations for jobs that are too dangerous or for jobs that human employees are unwilling to do. The second phase is to automate the entire production line. The third phase will automate the entire plant, leaving only a few human employees responsible for overseeing production, managing logistics, and deploying testing and visual inspections.

Dai Jiapeng said that the Foxconn factory in Chengdu, Shenzhen and Zhengzhou has achieved the second or third stage.

Some plants are “lights out” and require minimal human intervention on the production line.

Foxconn automates its production lines by developing its own robotics technology. The company can produce up to 10,000 robots per year and has deployed more than 40,000 robots in factories across China.

Foxconn's poor working environment has caused many employees to be overwhelmed and even committed suicide, and triggered the famous "N-jump" incident. In order to prevent similar situations, the company had to install a safety net at the factory.

There have been frequent rumors that robots may replace human employees and cause some panic. But unlike in the past, this so-called “rumor” has become a reality in more and more companies and industries.

For example, Uber tried to replace the driver with a driverless car. Google (microblogging) also cooperated with Fiat-Chrysler to launch a car service, hoping to replace taxis in many cities with driverless cars.

Similarly, the US Department of Defense's Advanced Research Projects Agency (DARPA) is also developing unmanned flight technology, hoping to replace pilots on civil airliners.

Since Hitachi produces robots that understand English and Japanese, and even communicates with human users, customer support representatives may also be unemployed.

But the most unemployed may be the fast food industry. Wendy's is currently installing self-service dining tables in 6,000 restaurants, and the US minimum hourly wage of $15 is the main incentive for this adjustment.

McDonald's is also testing a similar buffet table. McDonald's former US CEO Ed Rensi said last year that the $35,000 robot is better than the $15 an hour human employee, both in terms of cost and efficiency.

This trend of change can also be seen at the National Catering Conference in the United States, where robot manufacturers often take the opportunity to showcase their latest products.

Last summer, a company called Momentum Machines developed a robot that can make 400 burgers per hour and launched the first "robot burger" restaurant in San Francisco without human staff.

Similarly, California startup Zume is also developing robots that can make pizza. The company's founders said they used the money originally spent on human workers to make high-quality pizza ingredients. There are many similar robots, and the products are made of sandwiches, sushi, noodles, etc.

In short, a large number of human employees need to find new jobs in the future, because companies must take profit as their primary goal and replace human employees with cheaper and more efficient robots.

Door Bell Transformer

Doorbell transformers are typically installed at the point where the doorbell system connects to the main electrical supply. They are compact, lightweight, and designed for easy installation and maintenance. These transformers are widely used in residential, commercial, and industrial settings, where doorbells are an essential part of security and communication systems.
Key Functions
Voltage Conversion:
The primary function of a doorbell transformer is to step down the voltage from the standard household AC supply (e.g., 110V or 220V) to a lower DC or AC voltage required by the doorbell system. Common output voltages include 12V DC, 16V DC, or 10V AC.
Safety:
By converting high voltage to low voltage, doorbell transformers provide a layer of safety, reducing the risk of electrical shock or fire hazards associated with high-voltage circuits.
Compatibility:
Doorbell transformers are available in various specifications to accommodate different types of doorbell systems, including wired, wireless, and smart doorbells. This ensures compatibility with a wide range of doorbells and installation environments.
Technical Specifications
Input Voltage: The voltage range at which the transformer can accept power from the main supply.
Output Voltage: The voltage level at which the transformer supplies power to the doorbell system.
Output Current: The maximum current the transformer can deliver at the specified output voltage.
Power Rating: The total power the transformer can handle without overheating or damaging the circuit.
Size and Weight: Physical dimensions and weight, which can affect installation requirements and space constraints.
Connector Type: The type of output connector used to connect the transformer to the doorbell system (e.g., screw terminals, push-in connectors).
Installation and Maintenance
Installation: Doorbell transformers are typically installed near the electrical panel or in a convenient location close to the doorbell system. They require basic electrical wiring knowledge and follow standard electrical codes and regulations.
Maintenance: Regular maintenance involves checking the voltage output and wiring connections to ensure the transformer is functioning properly. Replacement may be necessary if the transformer fails or the doorbell system requires an upgrade.
Smart Home Integration
With the rise of smart homes, some modern doorbell systems are designed to integrate with other smart devices and home automation systems. While these systems may not require a traditional doorbell transformer due to built-in power management modules, they still rely on power conversion principles similar to those employed by traditional doorbell transformers.
Conclusion
In summary, doorbell transformers are essential components of doorbell systems, providing safe and reliable power conversion from standard household AC supplies to the lower voltages required by doorbells. Their technical specifications, ease of installation and maintenance, and compatibility with various doorbell types make them indispensable in residential, commercial, and industrial settings. As smart home technology continues to evolve, doorbell transformers may evolve alongside these systems, adapting to new power management requirements and integration capabilities.

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