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 | atx vs eatx 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) | 7 |
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.Can atx vs eatx power connectors be used for both AC and DC power?
We have established a good reputation and reliable partnerships within the atx vs eatx power connector industry. No, power connectors are designed to be used for either AC or DC power, but not both.
2.Can atx vs eatx 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.
3.About atx vs eatx power connector MOQ
The MOQ for power connectors will depend on the type of connector and the supplier. Generally, the MOQ for power connectors is between 500 and 1000 pieces. However, some suppliers may offer lower MOQs depending on the type of connector and the quantity required.
4.How do you prevent the pins on a atx vs eatx power connector from getting damaged?
We focus on our customers' needs and strive to meet their expectations, so we take this very seriously. 1. Inspect the pins for any damage before connecting the power connector. 2. Make sure the pins are aligned correctly before connecting the power connector. 3. Use a connector with a locking mechanism to ensure the pins stay in place. 4. Use a connector with a dust cover to protect the pins from dirt and debris. 5. Use a connector with a strain relief to reduce the stress on the pins. 6. Use a connector with a flexible cable to reduce the strain on the pins. 7. Use a connector with a protective sleeve to reduce the risk of pin damage. 8. Use a connector with a protective cap to reduce the risk of pin damage. 9. Use a connector with a protective shield to reduce the risk of pin damage. 10. Handle the connector with care to avoid any accidental damage to the pins.
5.How does the operating temperature range affect the performance of a atx vs eatx 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.
6.What is the typical voltage and current rating for atx vs eatx power connectors?
atx vs eatx power connector is not a product only, but also can help you comes to money-making. The typical voltage and current rating for power connectors depends on the type of connector being used. For example, a standard IEC 60320 C13 connector is rated for 10A at 250V.
7.Is there a maximum distance that a atx vs eatx power connector can cover?
atx vs eatx 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).
8.How important is proper grounding for atx vs eatx power connectors?
As one of the top atx vs eatx power connector manufacturers in China, we take this very seriously. Proper grounding for power connectors is extremely important. It helps to protect against electric shock, reduce interference, and ensure that the electrical system is functioning properly. Without proper grounding, the power connectors can become damaged or cause a fire hazard.
9.Can atx vs eatx 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.
10.About atx vs eatx 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.
11.How do you ensure compatibility between a atx vs eatx power connector and the mating connector?
We operate our atx vs eatx power connector business with integrity and honesty. 1. Check the specifications of the power connector and the mating connector to ensure they are compatible. 2. Ensure the power connector and the mating connector have the same number of pins and the same pin spacing. 3. Ensure the power connector and the mating connector have the same voltage and current ratings. 4. Ensure the power connector and the mating connector have the same type of connector. 5. Ensure the power connector and the mating connector have the same type of insulation. 6. Ensure the power connector and the mating connector have the same type of contact material. 7. Ensure the power connector and the mating connector have the same type of mounting.
12.Are there any environmentally-friendly options for atx vs eatx power connectors?
Our company has many years of atx vs eatx power connector experience and expertise. Yes, there are several environmentally-friendly options for power connectors. These include connectors made from recycled materials, connectors with low-impact manufacturing processes, and connectors with low-emission designs. Additionally, some connectors are designed to be more energy efficient, reducing the amount of energy used during operation.
13.About atx vs eatx power connector overseas warehouse
Power connector overseas warehouses are warehouses located in foreign countries that store power connectors and related components. These warehouses are used to store and distribute power connectors to customers in different countries. They are typically located near major ports and airports, allowing for easy access to international customers. Power connector overseas warehouses are beneficial for companies that need to ship power connectors to customers in different countries quickly and efficiently.
14.Can a atx vs eatx power connector handle high temperature and vibration?
Our mission is to provide customers with the best solutions for atx vs eatx power connector. Yes, power connectors are designed to handle high temperatures and vibrations. They are typically made of materials such as stainless steel, aluminum, and brass, which are all resistant to high temperatures and vibrations.
15.About atx vs eatx power connector inventory
Power connector inventory is a type of inventory that is used to track the various types of power connectors that are used in a variety of electronic devices. This type of inventory is important for ensuring that the right type of power connector is available for any given device. It also helps to ensure that the correct type of power connector is used in the correct application. This type of inventory can be used to track the quantity of each type of power connector, as well as the type of connector and the manufacturer.
16.What are the advantages of using a atx vs eatx power connector instead of a wire-to-wire connection?
Our products & services cover a wide range of areas and meet the needs of different fields. 1. Power connectors provide a secure and reliable connection that is less prone to accidental disconnection. 2. Power connectors are easier to install and require less time and effort than wire-to-wire connections. 3. Power connectors are more resistant to vibration and shock, making them more reliable in harsh environments. 4. Power connectors are more efficient at transferring power, reducing the risk of overheating and fire. 5. Power connectors are more cost-effective than wire-to-wire connections, as they require fewer components and less labor.
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