Patent classifications
B62K19/02
System and method for embedding a communication device into carbon fiber structures
A remote frequency communication device is embedded into a physical product build from carbon fiber materials whereby the communication device can interact with an interrogation device such as a mobile phone or tablet. The present invention specifies a method to layer the communication device in a way that prevents the conductive carbon fiber material from short-circuiting the electro-magnetic field of the interrogating device by integrating insulating and protective layers around the communication device.
Fiber Reinforced Resin Material Plate-shaped Member
In the vicinity of a front end of a plate-shaped member of a fiber reinforced resin material having long fibers, to suppress deterioration in strength due to waviness of the long fibers during press-molding. The plate-shaped member is formed by a discontinuous fiber reinforced resin having long fibers. A flat surface part of the plate-shaped member is provided with a hole part, and a side wall is integrally formed to a semicircular end of the flat surface part located closer to the hole part. The side wall is arranged in a region between an opening edge of the hole part closer to a front end, and the front end so as to extend around its outer circumference.
System and Method for Embedding a Communication Device into Carbon Fiber Structures
A remote frequency communication device is embedded into a physical product build from carbon fiber materials whereby the communication device can interact with an interrogation device such as a mobile phone or tablet.
The present invention specifies a method to layer the communication device in a way that prevents the conductive carbon fiber material from short-circuiting the electro-magnetic field of the interrogating device by integrating insulating and protective layers around the communication device.
E-Bike Frame
An e-bike frame includes a top tube, a downtube and a seat tube. Further, a bottom bracket is arranged in a housing which may be a bottom bracket receptacle element. An electric motor is also provided in the housing. A battery is connected with the downtube. A channel element is arranged laterally beside the battery. The same serves to receive wires, shift cables, brake cables and/or hydraulic lines.
E-Bike Frame
An e-bike frame includes a top tube, a downtube and a seat tube. Further, a bottom bracket is arranged in a housing which may be a bottom bracket receptacle element. An electric motor is also provided in the housing. A battery is connected with the downtube. A channel element is arranged laterally beside the battery. The same serves to receive wires, shift cables, brake cables and/or hydraulic lines.
ELECTRIC ASSIST BICYCLE
Embodiments disclosed herein include an electric assist bicycle adapted for a both personal and public use, and subcomponents of the bicycle. The electric assist bicycle can include a hollow frame with one or more cables routed within the hollow frame. The hollow frame can be configured with an internal battery compartment. The electric assist bicycle can further include a modular electronic locking system.
ELECTRIC ASSIST BICYCLE
Embodiments disclosed herein include an electric assist bicycle adapted for a both personal and public use, and subcomponents of the bicycle. The electric assist bicycle can include a hollow frame with one or more cables routed within the hollow frame. The hollow frame can be configured with an internal battery compartment. The electric assist bicycle can further include a modular electronic locking system.
AERODYNAMIC PROFILE
Aerodynamic symmetrical profiled element (1) for a wheeled vehicle (V) having, in cross section perpendicular to the plane of symmetry (12), at least 90% of the central part of a sage leaf profile with at least 5 arcs of circle, with a ratio between maximum spacing (E) measured perpendicular to the plane of symmetry (12) and cord (C) measured in the plane of symmetry (12) comprised between 0.1 and 0.3. Said profiled element is adapted to create a force always directed towards the leading edge (16) of the profiled element for all the resultants combining the speed of the wind and the forward speed of the vehicle.
AERODYNAMIC PROFILE
Aerodynamic symmetrical profiled element (1) for a wheeled vehicle (V) having, in cross section perpendicular to the plane of symmetry (12), at least 90% of the central part of a sage leaf profile with at least 5 arcs of circle, with a ratio between maximum spacing (E) measured perpendicular to the plane of symmetry (12) and cord (C) measured in the plane of symmetry (12) comprised between 0.1 and 0.3. Said profiled element is adapted to create a force always directed towards the leading edge (16) of the profiled element for all the resultants combining the speed of the wind and the forward speed of the vehicle.
Bicycle with Integral Electrical Generator
A bicycle includes a frame formed of various interconnected tubes with a front wheel and a rear wheel mounted thereon. The frame includes a headlight module and taillight module that are each powered by an internal rechargeable battery. A pair of pedals at the lower end of the frame operate an internal generator to automatically recharge the battery whenever the rider is pedaling.