Attribute | Value |
---|---|
Product Category: | |
Manufacturer: | TE Connectivity |
Manufacturer Part Number: | TE Connectivity 2007667-5 |
Series: | QSFP/QSFP+ |
Mount Type: | Board Mount |
Termination Method: | Through Hole - Press-Fit |
Number of Ports: | 4 |
Data Interface: | QSFP+ |
Data Rate: | 14 Gb/s |
Application: | Standard |
GPL: | K71 |
Port Matrix Configuration: | 1 x 4 |
Tail Length: | .086 in, 2.2 mm |
Packaging: | Box & Tray |
Operating Temperature Range: | -55 - 105 °C, -67 - 221 °F |
Circuit Application: | Signal |
PCB Contact Termination Area Plating: | Tin |
PCB Thickness (Recommended): | .057 in, 1.45 mm |
Sealable: | Yes |
GPL Description: | Data and Devices |
Connector and Contact Terminate To: | Printed Circuit Board |
Product Code: | G570 |
EMI and RFI Protection Type: | Customer Applied Gasket |
Connector System: | Cable-to-Board |
Connector Product Type: | Cage |
ECCN: | EAR99 |
Cage Type: | Ganged |
Rear EONs Per Port Column: | 1 |
Cage Material: | Nickel Silver |
Heat Sink Compatible: | Yes |
Lightpipe Included: | No |
Enhancements: | Standard |
Material Flammability Standard: | UL 94V-0 |
Part Aliases: | 2007667-5 |
SKU: | AMP2007667-5 |
2007667-5
Specifications
Detailed Description
Designed for high-speed data transmission applications, the 2007667-5 QSFP/QSFP+ Cage boasts a rugged Board Mount construction with Through Hole - Press-Fit termination method, ensuring secure and reliable connectivity in standard operating environments. This cage features 4 ports in a 1 x 4 port matrix configuration, accommodating the demands of modern networking systems with a data rate of 14 Gb/s. With UL 94V-0 flammability standard compliance and a wide operating temperature range of -55 to 105 °C, this cage guarantees safety and performance. Its nickel silver construction and tin-plated PCB contacts offer durability and signal integrity, while the optional customer applied gasket provides EMI and RFI protection. RoHS compliant and ECCN EAR99, the 2007667-5 is an ideal choice for data and device applications, meeting the stringent requirements of today's connectivity landscape.