123A-58B00 Connector: M.2 (NGFF); horizontal; SMT; gold flash; PIN: 67; 0.5A
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123A-58B00
123A-58B00 Connector: M.2 (NGFF); horizontal; SMT; gold flash; PIN: 67; 0.5A
£5.99
123A-58B00 Connector: M.2 (NGFF); horizontal; SMT; gold flash; PIN: 67; 0.5A
The 123A-58B00 is a meticulously crafted M.2 (NGFF) connector, expertly designed for seamless integration into horizontal surface mount technology (SMT) layouts. This connector boasts a resilient gold flash finish, providing exceptional conductivity and resistance to corrosion, guaranteeing a long-lasting and dependable connection. Featuring 67 pins, it offers comprehensive support for a wide range of M.2 module types, including solid-state drives (SSDs), wireless communication modules, and advanced peripherals, making it a versatile choice for diverse applications. Its 0.5A current rating ensures efficient power delivery for connected devices, optimizing performance without compromising safety. This connector is a critical component for modern electronics, enabling high-speed data transfer and robust connectivity in compact form factors. Its SMT compatibility streamlines the assembly process, making it an ideal solution for high-volume manufacturing.
The M.2 (NGFF) standard is the cornerstone of modern high-performance storage and communication interfaces. The 123A-58B00 connector adheres to these stringent standards, ensuring compatibility and reliability across various M.2 module types. The horizontal orientation simplifies module insertion and removal, facilitating easy maintenance and upgrades, reducing downtime, and improving overall system usability. The SMT design guarantees precise alignment and secure attachment to the PCB, minimizing the risk of connection failures and ensuring consistent performance under demanding operating conditions. The gold flash finish not only enhances conductivity but also provides superior resistance to environmental factors, ensuring long-term reliability and minimizing signal degradation. Key attributes of the 123A-58B00 connector include its comprehensive 67-pin configuration, supporting various communication protocols such as PCI Express (PCIe), SATA, and USB, offering maximum flexibility for system design.
This adaptability allows designers to create versatile solutions that can accommodate different M.2 module types and configurations. The robust construction ensures durability and long-term reliability, even in harsh environments. Its broad range of applications makes it an invaluable component for laptops, desktops, servers, and embedded systems. From high-performance SSDs to cutting-edge wireless communication modules, this M.2 connector delivers exceptional performance and reliability. Moreover, the connector's design minimizes signal interference, ensuring optimal data transfer rates and maximizing system performance. Choose the 123A-58B00 M.2 connector for a robust, reliable, and versatile solution to your connectivity needs.
With its gold flash finish, 67 pins, and SMT compatibility, it seamlessly integrates into your PCB, ensuring optimal performance for your devices. Don't compromise on connectivity - order your 123A-58B00 M.2 connector today and unlock the full potential of your M.2 modules. Ensure the reliability and performance of your devices with this exceptional connector. Invest in performance, invest in reliability, invest in the 123A-58B00.
| Product Name | 123A-58B00 Connector: M.2 (NGFF); horizontal; SMT; gold flash; PIN: 67; 0.5A |
|---|---|
| SKU | 123A-58B00 |
| Price | £5.99 |
| 123A-58B00 Connector: M.2 (NGFF); horizontal; SMT; gold flash; PIN: 67; 0.5A Color | As per image |
| Category | Connectors |
| Brand | Nikko Electronics ltd |
| Product Code | 123A-58B00 |
| Availability | Yes |
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The 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector is designed to offer broad compatibility across various M.2 module types, leveraging the standardized 67-pin M.2 interface. While the connector itself is a universal M.2 socket, its specific keying slot determines which modules can physically fit. This connector typically supports a wide array of M.2 modules, including SATA-based SSDs (B+M key), PCIe NVMe SSDs (M-key), Wi-Fi modules (A+E key), Bluetooth modules, WWAN modules, and other advanced peripherals. The 67 pins provide the necessary electrical contacts for various data lanes (PCIe, SATA, USB, UART, etc.) and power delivery. When integrating the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector, designers should verify the specific keying of their target M.2 module (e.g., B, M, A, E, B+M) to ensure mechanical compatibility with the chosen connector variant, although the 67-pin count is standard for the M.2 form factor's versatility.
The horizontal Surface Mount Technology (SMT) form factor of the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector offers significant advantages for compact and low-profile electronic designs. Its horizontal orientation allows M.2 modules to lay parallel to the PCB, minimizing overall Z-height, which is crucial for thin devices like laptops, tablets, and embedded systems. This design also facilitates automated pick-and-place assembly, streamlining manufacturing processes and reducing production costs. From a PCB design perspective, critical considerations include ensuring adequate clearance around the connector for the M.2 module, proper pad layout for robust SMT soldering, and impedance matching for high-speed signal traces. It's essential to design the PCB with precise tolerances for the connector's footprint to guarantee reliable solder joints and optimal signal integrity, especially for PCIe and SATA lanes. Thermal considerations for the module also become important with a horizontal layout.
The gold flash finish on the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector is a critical feature for ensuring long-term reliability and superior electrical performance. Gold is highly resistant to oxidation and corrosion, which prevents the formation of insulative layers that could degrade signal integrity or increase contact resistance over time, especially in varying environmental conditions. This low contact resistance ensures stable and efficient electrical connections, crucial for high-speed data transfer and reliable power delivery. Furthermore, the 0.5A current rating per pin guarantees that the connector can safely and efficiently supply power to connected M.2 modules without overheating or experiencing voltage drops. This rating provides sufficient headroom for typical M.2 SSDs and wireless modules, optimizing their performance and extending their operational lifespan. Together, the gold flash and appropriate current rating ensure a robust, dependable, and high-performance interconnect solution.
Yes, the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector is engineered to reliably support high-speed data transfer protocols, including PCIe Gen3 (up to 8 GT/s per lane), PCIe Gen4 (up to 16 GT/s per lane), and SATA III (6 Gb/s). The M.2 standard itself is protocol-agnostic, meaning the connector's design must facilitate these speeds. The use of a gold flash finish on the contacts is instrumental in maintaining signal integrity by minimizing contact resistance and preventing signal degradation due to oxidation, which is vital for high-frequency signals. Furthermore, the SMT design allows for shorter trace lengths and optimized PCB layouts, reducing impedance discontinuities. While the connector provides the physical interface, the actual achieved speeds also depend on the quality of the host controller, the M.2 module itself, and the overall PCB trace routing. Proper impedance control and routing practices on the host board are essential to fully leverage the high-speed capabilities of this connector.
Integrating the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector, especially with high-performance M.2 modules like NVMe SSDs, necessitates careful thermal management. While the connector itself generates minimal heat, the attached M.2 module, particularly an SSD under heavy load, can produce significant heat. The horizontal SMT orientation means the module lies parallel to the PCB, potentially limiting direct airflow or space for large heatsinks compared to vertically mounted options. Designers must consider the overall system's thermal envelope, ensuring adequate ventilation or dedicated cooling solutions (e.g., thermal pads, heatsinks on the module, or system-level airflow) to prevent thermal throttling of the M.2 module. The PCB design around the connector should also avoid creating thermal traps. Effective thermal management is crucial for maintaining the performance and longevity of the M.2 module and the stability of the entire system when using the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector.
For mass production assembly of the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector, standard SMT processes are recommended. This includes automated pick-and-place for precise component positioning and reflow soldering. A well-designed stencil is crucial for applying solder paste accurately to the connector's pads, ensuring optimal solder volume for strong, reliable joints without bridging. Manufacturers should follow the connector's specific reflow profile recommendations, typically a standard lead-free profile, to prevent damage to the connector or PCB. Careful handling is advised to prevent bent pins or damage to the gold flash contacts. For rework, localized hot air or infrared soldering techniques can be used, but extreme care must be taken to avoid overheating adjacent components or the connector's plastic housing. Using appropriate flux and ensuring thorough cleaning after rework are also important to maintain the integrity of the 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector and the overall assembly.
The 67-Pin M.2 (NGFF) Horizontal SMT Gold Flash Connector is engineered for robust mechanical durability, but its mating cycle rating is a key consideration, especially for applications involving frequent module swaps. Typically, M.2 connectors are rated for 25 to 50 mating cycles. This rating reflects the number of times an M.2 module can be inserted into and removed from the connector before wear on the contacts or housing might begin to affect performance or reliability. The gold flash finish on the contacts contributes to this durability by providing a hard, wear-resistant surface that maintains low contact resistance over multiple cycles. For applications like development kits, test fixtures, or systems where M.2 modules are frequently changed, users should be mindful of this rating. For permanent or 'install-and-forget' applications, the connector's robust design ensures long-term mechanical and electrical integrity well within its specified lifespan.