MSI Summit E13 Flip Evo – i7-1360P – 16GB – 1TB SSD – Iris Xe The MSI Summit E13 Flip Evo – i7-1360P – 16GB – 1TB SSD – Iris Xe is a premium 2-in-1 convertible laptop designed for professionals and creatives seeking performance, portability, and versatility. With its Intel Core i7-1360P processor and Intel Iris Xe graphics, this laptop delivers exceptional performance for multitasking, content creation, and productivity tasks. MSI Summit E13 Flip Evo Performance / Functionality Equipped with the Intel Core i7-1360P processor, featuring 12 cores (4 Performance-cores and 8 Efficient-cores) and a maximum turbo frequency of 5.0GHz, the Summit E13 Flip Evo offers powerful performance for demanding applications. The 16GB LPDDR5 RAM ensures smooth multitasking, while the 1TB PCIe 4.0 NVMe SSD provides ample storage and fast data access. Intel Iris Xe Graphics deliver enhanced visuals for creative work and multimedia consumption. Compatibility Running on Windows 11 Home, the Summit E13 Flip Evo supports a wide range of professional applications and peripherals. Its 360° flip design allows for flexible use in laptop, tablet, or tent modes, making it suitable for various work environments. The laptop includes Thunderbolt 4 ports for high-speed data transfer and external display connectivity. Safety / Convenience Designed with security in mind, this laptop features an IR webcam for facial recognition login and a backlit keyboard for typing in low-light conditions. Its lightweight and durable chassis ensures portability without compromising on build quality. Design / Build The Summit E13 Flip Evo boasts a sleek and modern design with a CNC-machined aluminum chassis in an Ink Black finish. The 13.4″ FHD+ touchscreen display offers a 120Hz refresh rate and 100% sRGB color gamut, providing vibrant visuals for work and entertainment. Usage Tips MSI Summit E13 Flip Evo To maximize performance, regularly update drivers and firmware. Utilize the 360° flip design to switch between laptop and tablet modes as needed. Ensure proper ventilation during intensive tasks to maintain optimal cooling.