feature: Input voltage: maximum 220V, minimum 110V Output voltage: generally 5V or 12V Input current: Varies according to output voltage and load power Output power: depends on load capacity and output voltage Working frequency: generally 50Hz or 60Hz Advantage: 1. Versatility: Combination AC-DC and split power options are available, and the module can be configured to fit most designs 2. Convenient and flexible: easy to maintain and replace. 3. Safe and reliable: waterproof, dustproof and durable, 4. Quick connection: plug-in connection, can be quickly connected and disconnected, convenient for daily use 5. Multiple interface options: such as circular connectors, square connectors, threaded connectors, etc.
Specifications
Component Type | 1060 power connector |
Gender | Header/Receptacle |
Header Pin Pattern (Left to Right) | Power/Signal |
Number of Contacts (Power) | 4 |
Number of Rows (Power) | 1 |
Number of Contacts (Signal) | $keyworrd{12} |
Number of Rows (Signal) | 5 |
Termination Style | Solder To Board |
Orientation | Right Angle |
Pitch (Power) | 6.35mm (0.250in) |
Pitch Signal) | 2.54mm (0.100in) |
Current Rating | $keyworrd{13}A max. for One Powered Contact |
Resistance (Power Contact) | Maximum for mated pair is 2mΩ |
Resistance (Signal Contact) | Maximum for mated pair is 20mΩ |
Dielectric Withstanding Voltage | $keyworrd{14}V DC for power ; $keyworrd{15}V DC for signal contacts |
Durability (Mating cycles) | $keyworrd{16} Mating Cycles |
Operating Temperature Range | -$keyworrd{13}°C to +125°C |
Material Housing | PPA, glass fiber reinforce, UL94V-0 |
Plating Contact area | 0.76μm (29.921μin) Gold |
ail Plating (Signal) | 1.98μm (78μin) Tin |
Tail Plating (Power) | 1.98μm (78μin) Tin |
Guide Feature | Guide Pin Pocket |
Packaging | Cartons or Tray |
1.About 1060 power connector production capacity
The production capacity of power connectors depends on the type of connector and the manufacturer. Generally, the production capacity of power connectors is determined by the number of machines and the number of workers available. The production capacity of a single machine is usually limited to a few thousand pieces per day. However, with the help of automation, the production capacity of a single machine can be increased to several hundred thousand pieces per day.
2.Can 1060 power connectors be used in harsh environments?
We adhere to the principle of quality first and have a complete production quality management system and quality inspection process. Yes, power connectors can be used in harsh environments. Many power connectors are designed to be durable and resistant to extreme temperatures, dust, moisture, and other environmental factors.
3.Can 1060 power connectors be used in low voltage applications?
We have established long-term and stable partnerships with our suppliers, so we have great advantages in price and cost and quality assurance. Yes, power connectors can be used in low voltage applications. However, the power connector must be rated for the specific voltage and current requirements of the application.
4.About 1060 power connector origin
The origin of power connectors can be traced back to the early days of electricity. In the late 19th century, the first electrical connectors were developed to connect electrical devices to power sources. These connectors were made of metal and were designed to be inserted into a socket. Over time, the design of power connectors has evolved to include a variety of shapes and sizes to accommodate different types of electrical devices. Today, power connectors are used in a wide range of applications, from consumer electronics to industrial machinery.
5.About 1060 power connector raw materials
Power connector raw materials are typically made from metals such as copper, aluminum, and brass. These metals are chosen for their electrical conductivity, strength, and corrosion resistance. Plastics such as polycarbonate, nylon, and ABS are also used in the construction of power connectors. These materials are chosen for their durability, flexibility, and insulation properties.
6.About 1060 power connector production management system
The Power Connector Production Management System is a comprehensive system designed to help manufacturers manage the production of power connectors. It provides a comprehensive set of tools to help manufacturers track and manage the production process from start to finish. It includes features such as inventory tracking, order tracking, production scheduling, quality control, and cost analysis. The system also provides real-time data and analytics to help manufacturers make informed decisions about their production processes. Additionally, the system can be integrated with other systems such as ERP and CRM to provide a comprehensive view of the production process.
7.How does the operating temperature range affect the performance of a 1060 power connector?
The operating temperature range of a power connector affects its performance in several ways. Higher temperatures can cause the connector to become brittle and more prone to cracking or breaking. Higher temperatures can also cause the connector to expand, which can lead to poor contact between the connector and the mating part. Lower temperatures can cause the connector to become stiff and difficult to insert or remove. Additionally, lower temperatures can cause the connector to become brittle and more prone to cracking or breaking.
8.About 1060 power connector raw material procurement system
The Power Connector Raw Material Procurement System is a software solution designed to streamline the procurement process for power connector raw materials. It provides a centralized platform for suppliers to submit bids, and for buyers to compare and select the best option. The system also includes features such as automated order tracking, inventory management, and supplier performance tracking. This system helps to reduce costs, improve efficiency, and ensure that the best quality materials are purchased.
9.How do you ensure proper insulation and protection against electrical hazards when using a 1060 power connector?
1. Use the correct type of power connector for the application. 2. Inspect the power connector for any signs of damage before use. 3. Ensure that the power connector is properly rated for the voltage and current of the application. 4. Use a surge protector or other protective device to protect against electrical surges. 5. Use a ground fault circuit interrupter (GFCI) to protect against electrical shock. 6. Use a power cord with a strain relief to prevent the power connector from becoming loose. 7. Use a power connector with a built-in fuse or circuit breaker to protect against overloads. 8. Make sure the power connector is properly secured to the device or outlet. 9. Use a power connector with a built-in insulation sleeve to protect against electrical hazards.
10.How do you determine the appropriate wire gauge for a 1060 power connector?
We adhere to the principle of quality first and have a complete production quality management system and quality inspection process. The appropriate wire gauge for a power connector is determined by the current rating of the connector. The current rating is usually printed on the connector itself, and the wire gauge should be chosen to ensure that the current rating is not exceeded. The National Electrical Code (NEC) provides tables that list the maximum current rating for different wire gauges.
11.Are there any options for angled or curved 1060 power connectors?
Our company has many years of 1060 power connector experience and expertise. Yes, there are angled and curved power connectors available. These connectors are typically used in tight spaces or when the power cable needs to be routed around an obstacle. Examples of angled and curved power connectors include right angle connectors, elbow connectors, and flexible connectors.
12.Can 1060 power connectors be used for high-power applications?
We focus on teamwork and communication to achieve common goals, We attach great importance to this detail. Yes, power connectors can be used for high-power applications. However, it is important to select the right type of connector for the application, as some connectors are not designed to handle high power levels.
13.How do you troubleshoot common issues with 1060 power connectors?
Being one of the top 1060 power connector manufacturers in China, We attach great importance to this detail. 1. Check the power source: Make sure the power source is working properly and is providing the correct voltage. 2. Check the power connector: Inspect the power connector for any signs of damage or corrosion. If the connector is damaged, replace it. 3. Check the wiring: Inspect the wiring for any signs of damage or corrosion. If the wiring is damaged, replace it. 4. Check the connection: Make sure the power connector is securely connected to the power source and the device. 5. Check the device: Make sure the device is working properly and is receiving the correct voltage. 6. Check the fuse: If the device is not receiving power, check the fuse to make sure it is not blown. If the fuse is blown, replace it.
14.Are there any compatibility issues when using 1060 power connectors from different manufacturers?
Our 1060 power connector products undergo strict quality control to ensure customer satisfaction. Yes, there can be compatibility issues when using power connectors from different manufacturers. Different manufacturers may use different sizes, shapes, and pin configurations for their power connectors, which can lead to incompatibility issues. Additionally, some manufacturers may use proprietary connectors that are not compatible with other brands. It is important to check the specifications of the power connectors before purchasing to ensure compatibility.
15.Are there any specific considerations when using 1060 power connectors for industrial applications?
As one of the 1060 power connector market leaders, we are known for innovation and reliability. Yes, there are several considerations when using power connectors for industrial applications. These include: 1. Ensuring the connectors are rated for the voltage and current requirements of the application. 2. Ensuring the connectors are rated for the environmental conditions of the application. 3. Ensuring the connectors are compatible with the mating connectors used in the application. 4. Ensuring the connectors are designed to meet the safety requirements of the application. 5. Ensuring the connectors are designed to meet the durability requirements of the application. 6. Ensuring the connectors are designed to meet the EMI/RFI requirements of the application.
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