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 | 8 pin auxiliary 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) | 4 |
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 8 pin auxiliary power connector warranty
Power connector warranties vary depending on the manufacturer. Generally, power connectors are covered by a limited warranty that covers defects in materials and workmanship for a specified period of time. The warranty period may range from one year to five years, depending on the manufacturer. Some manufacturers may also offer extended warranties for their power connectors. It is important to read the warranty information carefully before purchasing a power connector to ensure that it is covered by the warranty.
2.Can 8 pin auxiliary 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.Are there any special tools or techniques required for installing a 8 pin auxiliary power connector?
Our 8 pin auxiliary power connector products undergo strict quality control to ensure customer satisfaction. Yes, special tools and techniques are required for installing a power connector. Depending on the type of power connector, you may need a crimping tool, soldering iron, wire strippers, and/or heat shrink tubing. Additionally, you may need to use specific techniques such as soldering, crimping, and/or heat shrinking to ensure a secure connection.
4.What is the maximum number of pins available for 8 pin auxiliary power connectors?
We have established long-term and stable partnerships with our suppliers, so we have great advantages in price and cost and quality assurance. The maximum number of pins available for power connectors depends on the type of connector being used. For example, the ATX power connector used in most desktop computers has 24 pins, while the Molex connector used in many older computers has 4 pins.
5.Are there any special considerations when using 8 pin auxiliary power connectors in high altitude environments?
We are a professional 8 pin auxiliary power connector company dedicated to providing high quality products and services. Yes, there are several special considerations when using power connectors in high altitude environments. These include: using connectors with a higher current rating, using connectors with a higher voltage rating, using connectors with a higher temperature rating, using connectors with a higher insulation resistance rating, and using connectors with a higher dielectric strength rating. Additionally, it is important to ensure that the connectors are properly sealed to prevent moisture from entering the connection.
6.Is there a maximum distance that a 8 pin auxiliary power connector can cover?
8 pin auxiliary power connector is not a product only, but also can help you comes to money-making. The maximum distance that a power connector can cover depends on the type of connector and the power requirements of the device. Generally, the maximum distance for a power connector is determined by the voltage and current requirements of the device, as well as the type of cable used. For example, a USB cable can typically carry up to 5 volts and 1.5 amps over a distance of up to 5 meters (16 feet).
7.What is the difference between a straight and a right-angle 8 pin auxiliary power connector?
We maintain a certain amount of R&D investment every year and continuously improve operational efficiency to provide better services to our cooperative customers. A straight power connector is a type of connector that has two straight sides that are parallel to each other. This type of connector is typically used to connect two devices that are close together. A right-angle power connector is a type of connector that has two sides that are perpendicular to each other. This type of connector is typically used to connect two devices that are farther apart.
8.How do you ensure proper insulation and protection against electrical hazards when using a 8 pin auxiliary 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.
9.Is it possible to customize the design or length of a 8 pin auxiliary power connector?
We focus on our customers' needs and strive to meet their expectations, so we take this very seriously. Yes, it is possible to customize the design or length of a power connector. Many companies offer custom power connectors that can be designed to meet specific requirements. These custom connectors can be designed to fit a variety of applications and can be made in different lengths, shapes, and sizes.
10.What are the main components of a 8 pin auxiliary power connector?
We are a professional 8 pin auxiliary power connector company dedicated to providing high quality products and services. The main components of a power connector are the housing, contacts, and strain relief. The housing is the outer shell of the connector that holds the contacts and strain relief in place. The contacts are the electrical terminals that make contact with the mating connector. The strain relief is a flexible material that helps to secure the cable to the connector and prevents it from being pulled out.
11.How does the operating temperature range affect the performance of a 8 pin auxiliary 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.
12.About the development history of 8 pin auxiliary power connector factory
The power connector factory was established in the early 1990s. It was founded by a group of experienced engineers and technicians who had been working in the connector industry for many years. The company has grown steadily over the years and has become one of the leading manufacturers of power connectors in the world. The company has developed a wide range of products, including power connectors, power cords, and power adapters. The company has also developed a range of custom solutions for customers, including custom-designed connectors and custom-made power cords. The company has also developed a range of innovative products, such as the Power Connector System, which is designed to provide a reliable and efficient connection between power sources and devices. The company has also developed a range of products for the automotive industry, including power connectors for cars, trucks, and motorcycles. The company has also developed a range of products for the medical industry, including power connectors for medical equipment.
13.Can 8 pin auxiliary power connectors support high-frequency signals?
We adhere to the principle of quality first and have a complete production quality management system and quality inspection process. Yes, power connectors can support high-frequency signals. However, the type of connector used will depend on the specific application and the frequency of the signal. For example, coaxial connectors are often used for high-frequency signals, while screw terminals are better suited for lower-frequency signals.
14.Can 8 pin auxiliary power connectors be used in high vibration environments, such as in airplanes or trains?
Yes, power connectors can be used in high vibration environments, such as in airplanes or trains. However, it is important to use connectors that are designed to withstand the vibration and shock of the environment. Specialized connectors, such as those with locking mechanisms, are available to ensure a secure connection in these environments.
15.About 8 pin auxiliary power connector technology
Power connector technology is a type of technology used to connect electrical components to a power source. It is used in a variety of applications, including consumer electronics, industrial equipment, and automotive systems. Power connectors are designed to provide a secure connection between two components, while also allowing for easy disconnection. They are available in a variety of shapes and sizes, and can be used to connect components to a variety of power sources, including AC and DC power. Power connectors are typically made from metal or plastic, and are designed to be durable and reliable.
16.How do you select the appropriate locking mechanism for a 8 pin auxiliary power connector?
1. Consider the application: The type of locking mechanism you choose should be based on the application and the environment in which the power connector will be used. For example, if the connector will be used in a harsh environment, you may want to choose a locking mechanism that is more robust and resistant to corrosion. 2. Consider the size: The size of the power connector should also be taken into account when selecting a locking mechanism. If the connector is too small, then a locking mechanism that is too large may not fit. 3. Consider the cost: The cost of the locking mechanism should also be taken into account when selecting the appropriate locking mechanism for a power connector. If the cost is too high, then it may not be feasible to use the locking mechanism. 4. Consider the safety: The safety of the power connector should also be taken into account when selecting the appropriate locking mechanism. If the locking mechanism is not secure enough, then it could lead to accidental disconnection of the power connector.
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