Abstract:
A LED head sink module includes a LED module, which comprises a circuit substrate, a LED chip installed in the circuit substrate, a packing cup molded on the circuit substrate around the LED chip and a lens molded on the packing cup over the LED chip, a heat sink, which has a base and a flat mounting block located on the bottom side of the base for stopping against the circuit substrate of the LED module for absorbing waste heat, a bracket, which has a center opening that receives the circuit substrate of the LED module, first retaining members for fastening to a retaining portion at the periphery of the packing cup and second retaining members for fastening to the flat mounting block of the heat sink, and a water seal sandwiched between the LED module and the bracket to seal off outside moisture and dust.
Abstract:
A light-emitting unit adapter module includes a mounting base for mounting, a circuit board accommodated in the mounting base and having electrode pins connectable to an external power source, a light-emitting unit mountable in the mounting base, and a holding-down device fastenable to the mounting base to hold down the light-emitting unit, keeping the tubular electrodes of the light-emitting unit in positive contact with the electrode pins of the circuit board for power input and the heat sink of the light-emitting unit suspending outside the mounting base for quick dissipation of waste heat during operation of the light-emitting devices of the light-emitting unit.
Abstract:
An electronic implement replacement structure includes a housing body (102) and an electronic module (300). The housing body (102) has a base (110) and a connecting ring (120) connected to the base (110). The connecting ring (120) includes press portions (124) and notches (122) spaced apart from one another and respectively disposed between each two adjacent press portion (124). A guiding groove (126) is formed on an outer surface of each of the press portions (124). The electronic module (300) is disposed on the base (110) and corresponding to the connecting ring (120). The electronic module (300) includes an electronic unit (310) and a rotatable ring (330) enclosing the electronic unit (310). An inner wall of the rotatable ring (330) has a sliding block (332) correspondingly and rotatably engaged with the guiding groove (126). Therefore, assembling and disassembling can be achieved without any tools.
Abstract:
An electronic device replacement structure (100) includes a housing body (102) and an electronic module (200, 200′). The housing body (102) includes a base (110) and at least one clasping member (120) connected with one side of the base (110). The base (110) is disposed inside the housing body (102), and a first plate (130) is protrudingly disposed on the base (110). The electronic module (200, 200′) is disposed on the base (110) and corresponding to the clasping member (120). The electronic module (200, 200′) includes a casing (210) and a fastening implement (300) connected to the casing (210). The fastening implement (300) has at least one elastic locking element (310) and a second plate (320). The elastic locking element (310) is engaged with the clasping member (120). The second plate (320) protrudes toward the first plate (130) and contacts against the first plate (130).
Abstract:
A method of fabricating a LED module by: bonding one or multiple LED chips and multiple conducting terminals to a circuit substrate, and then molding a packing cup on the circuit substrate over by over molding for enabling the LED chip(s) and the conducting terminals to be exposed to the outside of the packing cup, and then molding a lens on the packing cup and the LED chip(s) by over-molding. By means of directly molding the lens on the packing cup and the LED chip(s), no any gap is left in the lens, avoiding deflection, total reflection or light attenuation and enhancing luminous brightness and assuring uniform distribution of output light.
Abstract:
A light-emitting device pressure ring structure includes a mounting base for mounting, a circuit board accommodated in the mounting base and having electrode pins connectable to an external power source, a holder member insertable in the mounting base, a light-emitting unit fixedly mounted in the holder member with a bottom heat sink thereof suspending outside the holder member and tubular electrodes thereof connectable to the electrode pins of the circuit board for power input, and a pressure ring cap detachably threaded onto the mounting base to hold down the holder member and to keep the heat sink of the light-emitting unit outside the mounting base for quick dissipation of waste heat from the light-emitting devices of the light-emitting unit.
Abstract:
The present disclosure related to an effort-saving crank structure (1) of a bicycle (8), which includes: a crank mechanism (10) having a crank (11), a shaft end gear (12) and a treadle end gear (13) disposed on the crank (11); a transmission mechanism (20) disposed in the crank (11) and having a rotation shaft (21) and a first gear (22) and a second gear (23) connected to the rotation shaft (21), the first gear (22) and the shaft end gear (12) are engaged for transmission, and the second gear (23) and the treadle end gear (13) are engaged for transmission; a rotation arm unit (30) having a first rotation arm (31) and a second rotation arm (32), two ends of the second rotation arm (32) are respectively connected to the first rotation arm (31) and the treadle end gear (13).