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 | 16 pin 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.How does the operating temperature range affect the performance of a 16 pin 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.
2.About 16 pin power connector R&D capabilities
Power connector R&D capabilities vary from company to company. Some companies specialize in developing custom power connectors for specific applications, while others may have a more general focus on developing power connectors for a variety of applications. Companies may also specialize in developing power connectors for specific industries, such as automotive, medical, or industrial. Additionally, some companies may have the capability to develop power connectors with specific features, such as waterproofing or high-temperature resistance. Companies may also have the capability to develop power connectors with specific certifications, such as UL or CE.
3.Do 16 pin power connectors have a maximum number of mating cycles?
As one of the top 16 pin power connector manufacturers in China, we take this very seriously. Yes, power connectors typically have a maximum number of mating cycles. This number can vary depending on the type of connector and the manufacturer, but is typically between 500 and 1000 cycles.
4.About 16 pin 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.
5.About 16 pin power connector quality system
A power connector quality system is a set of processes and procedures that are used to ensure the quality of power connectors. This system includes the design, manufacture, testing, and maintenance of power connectors. It also includes the inspection and certification of power connectors to ensure they meet the required standards. The system also includes the tracking and monitoring of power connector performance over time. The system should also include the development of corrective action plans to address any issues that arise.
6.Is there a specific sequence for connecting and disconnecting a 16 pin power connector?
As one of the 16 pin power connector market leaders, we are known for innovation and reliability. Yes, there is a specific sequence for connecting and disconnecting a power connector. The sequence is as follows: 1. Disconnect the power source from the device. 2. Disconnect the power connector from the device. 3. Inspect the power connector for any damage or corrosion. 4. Connect the power connector to the device. 5. Reconnect the power source to the device. 6. Test the device to ensure proper operation.
7.Is there a maximum distance that a 16 pin power connector can cover?
16 pin 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.About 16 pin power connector production equipment
Power connector production equipment is used to manufacture power connectors for a variety of applications. This equipment is used to create a variety of power connectors, including those used in automotive, industrial, and consumer electronics. The equipment typically includes a variety of machines, such as presses, injection molding machines, and die-casting machines. The machines are used to create the various components of the power connectors, such as the contacts, housings, and terminals. The equipment is also used to assemble the components into the finished product.
9.How do you troubleshoot common issues with 16 pin power connectors?
Being one of the top 16 pin 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.
10.What is a 16 pin power connector?
We focus on innovation and continuous improvement to maintain a competitive advantage. A power connector is a type of electrical connector used to connect a power supply to a device. It is typically used to provide power to electronic devices such as computers, printers, and other electronic equipment. Power connectors come in a variety of shapes and sizes, and are designed to fit specific power requirements.
11.How do you ensure proper polarity when using a 16 pin power connector?
We continuously upgrade our skills and knowledge to adapt to changing 16 pin power connector market needs. 1. Check the polarity markings on the connector and the power source. 2. Make sure the positive and negative terminals are connected correctly. 3. Use the correct type of connector for the power source. 4. Use a multimeter to test the polarity of the connection. 5. Use a polarized connector to ensure proper polarity.
12.Are there any special considerations when using 16 pin power connectors in high altitude environments?
We are a professional 16 pin 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.
13.About 16 pin power connector payment method
Power connector payment method is a payment system that allows customers to pay for goods and services using their mobile phones. It is a secure and convenient way to make payments, as customers can use their phones to make payments without having to enter their credit card information. The system is also designed to be fast and easy to use, allowing customers to make payments quickly and securely. Power connector payment method is becoming increasingly popular as more businesses are beginning to accept it as a payment option.
14.About 16 pin power connector production skills training
Power connector production skills training is designed to help workers learn the skills needed to produce power connectors. This type of training typically covers topics such as the types of power connectors available, the tools and materials needed to produce them, and the steps involved in the production process. It may also include instruction on safety protocols and quality control measures. Training may be provided in a classroom setting or online.
15.About 16 pin 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.
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