Honor continues active development of an innovative foldable smartphone featuring a fundamentally new form factor. The main highlight of the upcoming novelty will be a significantly wider body, which is set to dramatically transform the user experience when interacting with a portable device. Initially, the tech community and industry experts expected the official gadget announcement before the end of the current 2026 year, but the manufacturer's plans have since shifted.
Release Timeline and Ecosystem Features
According to recent data from authoritative Chinese insider Wisdom Pikachu, the premiere of the long-awaited device will take place in January 2027. Furthermore, the source mentions a "very rich" ecosystem of proprietary accessories, directly indicating the company's serious intentions. Honor is clearly viewing this form factor not as a one-time experimental project, but as a full-fledged and strategically important direction for expanding its mobile device lineup.
Technical Specifications and Form Factor
A key difference between the new device and standard Honor Magic V foldables will be the modified screen proportions. According to leaks, the internal folding display diagonal will be approximately 7.6 inches, while the external screen will measure 5.5 inches with an increased body width resembling the Huawei Pura X Max model. Due to this design, the external screen when folded will adopt proportions more familiar to traditional smartphones. Performance will be driven by the Snapdragon 8 Elite Gen 6 processor, the main camera will feature a 200 MP sensor with a periscope telephoto lens, and the battery capacity will exceed an impressive 7,000 mAh.
Contradictory Data
It is worth noting certain discrepancies in insider reports regarding the exact release timeline. While early industry rumors pointed to a device release by the end of 2026, the latest fresh data from reputable analysts postpones the official presentation to January 2027. Such schedule shifts are traditionally associated with software refinement and the optimization of complex hinge mechanisms to accommodate the increased battery capacity.