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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
101 Reducing gear-train of an electronic watch with analog display US715829 1976-08-19 US4090352A 1978-05-23 Pierre M. Jeannet; Michel Girardin
The reducing gear train of an electronic watch with analog display comprises a driving pinion of a step-by-step motor, a second wheel and pinion, a third wheel and pinion and a great wheel. A cannon pinion non-coaxially mounted in relation to the great wheel meshes with an intermediate wheel meshing with a great-wheel-arbor pinion frictionally coupled to the great wheel.
102 Watch movement US48426074 1974-06-28 US3901019A 1975-08-26 KOCHER HANS; HAENZI WERNER; MUFF ERWIN; GYGAZ CLAUDE-ANDRE
A watch movement comprises a barrel holding a mainspring, a third wheel, and a center seconds wheel. The barrel directly drives the third wheel which in turn directly drives the center seconds wheel thereby eliminating the use of a center wheel. An automatic winding mechanism is provided, the winding mechanism comprising a rotor and a single reduction gear interposed between a pinion mounted on the rotor and a ratchet on the barrel.
103 Clutch and gear train utilizing same US33362073 1973-02-20 US3845668A 1974-11-05 UNDERWOOD D
A series of plastic gears is coupled to a series of metal gears through a combination plastic gear and a metal gear carried on a common shaft. A gear train is carried in a housing on a support plate carried by the bottom of the housing. The clutch includes a first rotating member carrying a spring biased pivotly mounted pawl and a stop means engaging the pawl, the pawl also engaging a second rotating member carried about the first rotating member.
104 Watch US3613353D 1968-05-03 US3613353A 1971-10-19 KOCK BRUCE A
A SHOCK RESISTANT WATCH OF RELATIVELY FEW PARTS AND CONSEQUENT INEXPENSIVE CONSTRUCTION EMPLOYING A DUMBELL BALANCE FREELY PIVOTED ON A STAFF WITH THE ONLY CONNECTION BETWEEN THE BALANCE AND THE STAFF BEING A LEAF SPRING THE ENTIRE GEAR TRAIN OF THE WATCH IS ARRANGED ON TWO SHAFTS AND THE MINUTE AND HOUR HANDS ARE BOTH DRIVEN DIRECTLY BY AN INTERMEDIATE WHEEL. THE ENTIRE WATCH IS ASSEMBLED WITHOUT SCREWS, NUTS OR BOLTS.
105 Motion transforming device for electronic timepieces and the like US3540206D 1969-03-25 US3540206A 1970-11-17 HETZEL MAX
106 Horological instruments US39778164 1964-09-21 US3286456A 1966-11-22 VICTORIEN BARLOW BORIS
107 Clockwork mechanism US56626456 1956-02-17 US2821063A 1958-01-28 SUNDT EDWARD V
108 Time instrument US68935 1935-01-07 US2036050A 1936-03-31 MARSH KENERSON STANLEY
109 Clock movement US19008426 1926-08-18 US1615664A 1927-01-25 WARREN HENRY E
110 Horological instrument. US1911620965 1911-04-14 US1203690A 1916-11-07 BORRESEN HELGE A
111 lugirin US360777D US360777A 1887-04-05
112 Improvement in clock-movements US200534D US200534A 1878-02-19
113 DEVICE FOR WINDING UP A WATCH WITH SELF-WINDING MECHANISM PCT/EP2014055662 2014-03-20 WO2014166719A3 2015-06-25 WILLEMIN MICHEL; BORN JEAN-JACQUES; KLOPFENSTEIN FRANÇOIS; RAGOT PATRICK
Device (300) for winding automatic watches, comprising at least one electrical power supply means or an electric accumulator cell, and at least one support (301) acting as a receptacle for a watch, said receptacle support (301) comprising a bearing surface (302) intended to have the back of a watch resting against it. Said device (300) comprises means (310) of generating a magnetic and/or electrostatic field which means are placed in a fixed position underneath said bearing surface (302) and generate, at least in one angular sector (304) of a substantially annular emission zone (303) at least one magnetic and/or electrostatic field directed orthogonal to said bearing surface (302) and of intensity and/or direction that can vary as a function of time. Watch (200) comprising an automatic winding mechanism (10) with an oscillating mass (1) comprising a ferromagnetic internal first part and a peripheral second part made of heavy metal, and/or a paramagnetic conducting disc (20) coaxial with said oscillating mass (1).
114 PROCEDE DE FORMATION D'UNE SURFACE DECORATIVE SUR UNE PIECE MICROMECANIQUE HORLOGERE ET LADITE PIECE MICROMECANIQUE HORLOGERE EP15184187.1 2015-09-08 EP3141966B1 2018-05-09 Dubois, Philippe
115 Dispositif de remontage de montre à remontage automatique EP13163158.2 2013-04-10 EP2650735B1 2018-03-14 Willemin, Michel; Born, Jean-Jacques; Klopfenstein, François; Ragot, Patrick
116 Mécanisme de correction rapide d'horlogerie EP14168333.4 2014-05-14 EP2945026B1 2018-01-03 Rüfenacht, Christian; Courvoisier, Raphaël; Merino, Antonio; Cappadona, Giuseppe
117 EBAUCHE DE MOUVEMENT HORLOGER EP17164653.2 2017-04-03 EP3226083A1 2017-10-04 YOAKIM, Nicolas; BRUTTIN, Gregory

L'ébauche de mouvement horloger (1) selon l'invention comprend une vitrocéramique comprenant une phase cristalline représentant au moins 50% en volume de ladite vitrocéramique, le reste de la vitrocéramique étant une matrice vitreuse, ladite phase cristalline étant au moins à 50% de type mica.

118 MOUVEMENT HORLOGER ELECTRONIQUE COMPRENANT UN AFFICHAGE ANALOGIQUE DE PLUSIEURS INFORMATIONS EP15710526.3 2015-03-19 EP3152626A2 2017-04-12 LAGORGETTE, Pascal; ZANESCO, Vittorio; GRUENIG, Daniel
The electronic clock movement comprises an analog display device with a date ring (6) and a stop watch hand (4) associated with a graduation (5) of a usual small counter. This ring and this hand are driven by one and the same electric motor (10) via a set of permanent gears, the stop watch hand being mounted on a wheel of this set of permanent gears which wheel is arranged between the driving pinion (14) and a runner comprising a date drive wheel (24). The date ring and the date drive wheel respectively comprise two tooth sets forming a permanent mesh with a relatively large amount of lash making it possible to define a determined angular dead zone for the date drive wheel because the date ring is positioned by a jumper. This angular dead zone is used to drive the stop watch hand independently of the date ring. The set of permanent gears is arranged in such a way that the torque for positioning the rotor gives rise, at the date drive wheel, to enough of a blocking torque to perform a shock-proof function.
119 PROCÉDÉ DE FABRICATION D'UN COMPOSANT HORLOGER RENFORCÉ, COMPOSANT HORLOGER ET PIÈCE D'HORLOGERIE CORRESPONDANTS EP15164536.3 2015-04-21 EP2937311A1 2015-10-28 Bossart, Richard; Favez, Denis

Le procédé de fabrication réalise une pièce (10), à partir d'un matériau micro-usinable, la pièce (10) constituant une ébauche du composant horloger et ayant au moins une surface présentant une rugosité initiale. Il comprend une étape de traitement de renforcement mécanique de la pièce par un fluide d'attaque destiné à diminuer la rugosité de ladite surface. Par exemple, on se munit d'un substrat dudit matériau micro-usinable, on recouvre au moins partiellement le substrat d'un revêtement protecteur ménageant au moins une ouverture, on grave le substrat à travers l'ouverture du revêtement protecteur et obtenir ainsi une surface gravée, on applique le traitement de renforcement mécanique sur ladite surface gravée à travers l'ouverture du revêtement protecteur puis on enlève le revêtement protecteur. Le fluide d'attaque peut être un plasma ou un liquide d'attaque chimique.

120 Roue d'horlogerie surmoulée EP11194064.9 2011-12-16 EP2605080B1 2014-09-10 Villar, Ivan; Kaelin, Laurent; Tinguely, Xavier
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