Abstract:
A tool box unit contains: a body, at least one upper cover, at least one drawer, and a controlling mechanism. The body includes at least one first accommodating space defined therein; the at least one upper cover is rotatably fixed on an upper side of the body; the at least one drawer is slidably fixed in the at least one first accommodating space of the body and has at least one receiving portion for accommodating tools. The controlling mechanism includes at least one trench formed on two first side plates of the body, and each trench has a control member fixed therein and at least one hooking element rotatably connected with each side plate, the control member has at least one oblique push face for pushing the at least one hooking element to rotate.
Abstract:
A handheld illumination device contains a body held by a user and including a through hole defined in the body, a connecting portion formed on a front end of the body, and a holding portion arranged on a rear end of the body; an operating member including a working segment defined on a front end thereof, a shank formed on a rear end of the operating member and inserted into the connecting portion of the body, the shank having a groove defined therein and communicating with the working segment; a lamp module fixed in the holding portion of by using the seat in which a light-emitting element, a battery pack, and a control button are disposed, the light-emitting element emitting light via the through hole and the groove so as to illuminate an work position relative to the working segment of the operating member.
Abstract:
A rotary tool box contains a base including a plurality of receiving portions for receiving plural tools and at least one accommodation room for holding at least one driving tool, at least one end of which extends out of the at least one accommodation room; a covering member covered on the base and including at least one orifice defined on a top surface thereof so as to take or place the at least one driving tool, the covering member also including at least one slot formed on an outer surface thereof so that the at least one end of the at least one driving tool extends out of the accommodation room and is engaged.
Abstract:
An optical detection apparatus which is capable of measuring a sample is provided. The optical detection apparatus includes a plurality of light emission units, a light receiving unit, a driving unit, and an analyzing unit. Each of the light emission units is capable of emitting a light beam. The light receiving unit is capable of receiving the light beam passing through the sample and is capable of converting the received light beam to an electrical signal. The driving unit is capable of changing the relative position of the light emission units and the sample. The analyzing unit is electrically connected to the light receiving unit and is capable of measuring a property of the sample by using the electrical signal. A number of the light receiving unit is less than a number of the light emission units. An optical measurement system including the optical detection apparatus is also provided.
Abstract:
A connecting rod device for tools contains: a base, a connector, and a limiting element. The base includes a fitting portion, an accommodation portion and at least two locking grooves. The connector includes a spherical knob formed on a first end thereof and accommodated in the accommodation portion of the base, and the connector also includes a drive portion arranged on a second end thereof, wherein the spherical knob has at least two receiving grooves defined therein and corresponding to the at least two locking grooves of the base respectively so as to accommodate at least two balls respectively, and the at least two balls rotatably retain with and drives the at least two locking grooves of the base individually. The limiting element is housed in the accommodation portion of the base so as to limit the spherical knob of the connector in the accommodation portion of the base.
Abstract:
A tool holder contains: a connector and a fixer. The connector includes at least one body, and each body has a first side plate and a second side plate. The connector also includes a fixing mount connecting with the first side plate and the second side plate. The first side plate has a first fitting portion, and the second side plate has a second fitting portion. The first fitting portion and the second fitting portion define a fitting zone, and the first side plate further has a first locking projection. Among the first side plate, the second side plate and the fixing mount is defined a cavity. The fixer is housed in the cavity of the connector to limit the first side plate and the second side plate to drive the first fitting portion and the second fitting portion to deform.
Abstract:
A holding device for a tool contains a body, a base, and a limiting mechanism. The body includes an accommodating chamber, a side lid for covering the accommodating chamber, and at least one stop extension extend outwardly from a bottom end of the body. The base includes a fitting seat, at least one locking tab disposed on two sides of the fitting seat and movably corresponding to the at least one stop extension, and a driving insertion arranged on a top end of the fitting seat and inserting into the accommodating chamber. The limiting mechanism includes a confining block connecting with the driving insertion and includes a limitation groove defined on the side lid of the body. The limitation groove has a limiting section formed therein and has an expansion section formed on an open segment of the limiting section.
Abstract:
A controllable on/off device for an auxiliary light contains: a lamp module having a body in which a driving unit connecting with an illuminating element, the body including a first conducting piece coupling with a cathode contact point of the driving unit and a second conducting piece coupling with a negative contact point of the driving unit; a base fixed under the lamp module and including a conduction element corresponding to the first conducting piece and the second conducting piece; a pivotal clutch mechanism defined between the lamp module and the base so that the lamp module is axially rotated and shifted between a first rotating range and a second rotating range and drives the lamp module to move vertically, such that the first conducting piece and the second conducting piece are driven to contact with or leave from the conduction element, thus turning on or off the illuminating element.
Abstract:
A scanning and printing device for scanning a first paper and printing a second paper is provided. The scanning and printing device includes a carriage, a sensing module, and a printing module. The carriage slides back and forth along an axial direction. The carriage has a top surface and a base surface opposite to each other. The top surface faces the first paper, and the base surface faces the second paper. The sensing module is disposed on the top surface of the carriage to capture an image on the first paper. The printing module is disposed on the base surface of the carriage to print the image to the second paper.
Abstract:
An optical detection apparatus which is capable of measuring a sample is provided. The optical detection apparatus includes a plurality of light emission units, a light receiving unit, a driving unit, and an analyzing unit. Each of the light emission units is capable of emitting a light beam. The light receiving unit is capable of receiving the light beam passing through the sample and is capable of converting the received light beam to an electrical signal. The driving unit is capable of changing the relative position of the light emission units and the sample. The analyzing unit is electrically connected to the light receiving unit and is capable of measuring a property of the sample by using the electrical signal. A number of the light receiving unit is less than a number of the light emission units. An optical measurement system including the optical detection apparatus is also provided.