Voltage Compatibility】
When using electrical appliances, please note that they are designed for Japanese voltage specifications (90-110V), so if you use them with a different voltage, it may cause a malfunction.
【Plug Type】
Our products use Japanese plug types (A or B type).
Please use a conversion adapter if necessary.
【Important Note on Transformers and Adapters】
A transformer adjusts voltage to match your device’s requirements.
A conversion adapter only changes the plug shape and does not adjust voltage.
Using only a conversion adapter without a transformer may result in damage to the product.
【Liability】
We are not responsible for malfunctions or damages caused by improper use, such as operating the product without a transformer.
NGFF M.2 NVMe Motherboard to CF Express Extension Adapter, M2 M-Key, CFE Type B Compatible, R5, Z6, Z7, and Xbox Memory Card Compatible.
Bandwidth speed: PCIe 4.0 gen4 x2 (Supports CFexpress B specification full speed)
Product Usage: Suitable for extending CFExpress cards into M.2 NVMe slots. (Not compatible with XQD cards).
Material advantages: High-quality gold-plated connectors are used, and the PCB is made of high-quality materials with high frequency and low resistance. The PCB is precisely manufactured.
Design advantages: Differential signal enhancement layout design, no CAF micro-short circuit phenomenon, high-speed signal data transfer, no parasitic capacitance, no parasitic inductance signal attenuation interference.
NGFF M.2 NVMe motherboard to CF Express extension adapter M2 M key, CFE Type-B compatible, R5 Z6 Z7 XBOX memory card.
Bandwidth speed: PCIe 4.0 gen4 x2 (CFexpress B specification full speed compatible)
Product Use: Suitable for extending CFexpress cards to M.2 NVMe slots. (XQD cards are not supported).
Material advantages: High-quality gold-plated connectors are used, and the PCB is made of high-quality materials with high frequency and low resistance. The PCB is precisely manufactured.
Design advantages: Differential signal enhancement layout design, no CAF micro-short circuit phenomenon, high-speed signal data transmission, no parasitic capacitance, no parasitic inductance signal attenuation interference.