Abstract:
An isothermal clock device for mechanical and/or functional components of a watch, the device being provided with a bracelet and a casing including an enclosure wherein a case of said watch is capable of being arranged and a reversible fastening device fastening the case of a watch in the enclosure of the casing by keeping it away from the set of elements of the casing defining this enclosure, the fastening device including at least two connecting members each connected to an attachment area of the case from at least one telescopic bar.
Abstract:
A micro-electromechanical systems (MEMS) driving arrangement for an electronic device, the micro-electromechanical systems (MEMS) driving arrangement including a driven wheel; a driving actuation assembly for causing rotation of the driven wheel; an indicator assembly including an indicator; and a force absorbing assembly coupled intermediate the indicator assembly and the driven wheel; whereby a force acting upon the indicator assembly is absorbed by the force absorbing assembly so as to inhibit rotation of the driven wheel relative to the driving actuation assembly.
Abstract:
A wristwatch is described, including a middle having a side wall, defining a median plane and further having attachment members for securing respective first and second ends of a strap to the middle, and a cover capable of pivoting, relative to the middle, between a first closed position in which the ends of the strap are locked onto the middle, and a second open position in which the ends of the strap are free to be separated from the middle. The cover is arranged so as pivot about a rotational axis parallel to the median plane, each attachment member including a hole provided in the side wall and intended for receiving the corresponding end of the strap by insertion in a direction substantially parallel to the median plane.
Abstract:
An enclosure, such as an electrical enclosure, includes a base having a series of walls that define an interior, and a cover. The base and cover include a hinge arrangement that enables the cover to be secured to the base for movement between a closed position and an open position. The hinge arrangement enables the cover to be hinged to either a first wall of the base or an opposite, second wall of the base. A latch member is configured to be selectively engaged with either the first wall of the base or the second wall of the base, and is engaged with the second wall of the base when the cover is hinged to the first wall of the base and is engaged with the first wall of the base when the cover is hinged to the second wall of the base.
Abstract:
Method for manufacturing an electroformed timepiece component: the same first alloy including a first precious metal is selected to make both functional inserts and an electroformed shell; these inserts are made; an electroforming substrate having a complementary profile to the inner profile of this component is formed in a second sacrificial material; these inserts are inserted into housings made on this substrate, to form an equipped sacrificial substrate, which is provided with the resists necessary to obtain, by means of an electroforming process, a bare electroformed component, with deposition of material on this substrate, acting as a core to form this electroformed shell, and on each accessible surface of each insert to secure the insert to this electroformed shell; then this sacrificial substrate is destroyed and all of these resists are removed.
Abstract:
A structure includes a wristwatch case; an inner frame arranged inside the wristwatch case and having an upper surface provided with a positioning fitting recess; a timepiece module arranged as being positioned inside the inner frame; and a parting plate which is provided with a positioning pin that is provided on a lower surface of the parting plate facing the upper surface of the inner frame, and that is fitted into the positioning fitting recess of the inner frame, thereby positioning the parting plate with respect to respect to the inner frame. As a result, in a state where the timepiece module is arranged and positioned inside the inner frame arranged in the wristwatch case, the positioning pin of the parting plate can be fitted into the positioning fitting recess of the inner frame. Accordingly, the parting plate can be accurately positioned with respect to the inner frame.
Abstract:
A damping member includes a body provided between a device case and a module encased within the case and damping an external shock applied on the case. The body includes a holding member having upper and side surfaces and disposed between an inner peripheral surface of the case and an outer peripheral surface of the module, a first shock absorbing member covering a predetermined part of the upper and side surfaces of the holding member, deformed elastically when the shock is applied on the case, and elastically absorbing the shock, and a second shock absorbing member covering the other part of the holding member, getting the shock earlier than the first shock absorbing member when the shock is applied on the case, each changing its volume in accordance with the shock, and absorbing and escaping the shock. A damping structure used for an electronic device uses the damping member.
Abstract:
The present invention relates to a buffer member, a shock buffering structure of an electronic device, and an electronic device. A buffer member interposed between a wristwatch case and a watch module therein is composed of a viscoelastic body which, when the wristwatch case receives shock, reduces shock to be transmitted to the watch module by changing its shape while converting the kinetic energy to heat energy, and quickly reduces elastic force on the watch module by reducing the conversion of the kinetic energy to elastic energy accompanying the shape change. The viscoelastic body includes a first viscoelastic body section formed to cover the top and side surfaces of the module, a second viscoelastic body section arranged in predetermined portions of the first viscoelastic body section, and a third viscoelastic body section arranged along the inner peripheral edge of the top surface of the first viscoelastic body section.
Abstract:
The timepiece comprises a body forming a case inside which is accommodated a clockwork-movement. This body comprises an upper case (1), which has a front face having first display means (16), and a lower case (2), which has a front face having second display means (26). One of the cases is mounted pivoting on the other about a pivoting axis (X) substantially perpendicular to the general plane of the cases and can occupy a closed position, in which the upper case is superposed on the lower case, and an open position, in which the upper case has pivoted sideways and lets the second display means (26) be seen. The clockwork-movement comprises respective portions (100, 200), accommodated in the upper and lower cases to drive the first and second display means, and a drive mechanism (5) ensuring a kinematic link between the two portions of the clockwork-movement. This kinematic link is interrupted when the cases are put in the open position.
Abstract:
The timepiece comprises a body forming a case inside which is accommodated a clockwork-movement. This body comprises an upper case (1), which has a front face having first display means (16), and a lower case (2), which has a front face having second display means (26). One of the cases is mounted pivoting on the other about a pivoting axis (X) substantially perpendicular to the general plane of the cases and can occupy a closed position, in which the upper case is superposed on the lower case, and an open position, in which the upper case has pivoted sideways and lets the second display means (26) be seen. The clockwork-movement comprises respective portions (100, 200), accommodated in the upper and lower cases to drive the first and second display means, and a drive mechanism (5) ensuring a kinematic link between the two portions of the clockwork-movement. This kinematic link is interrupted when the cases are put in the open position.