Abstract:
A bevel inspection module for capturing images of a substrate is provided. The module includes a rotational motor, which is attached to a substrate chuck and is configured to rotate the substrate chuck thereby allowing the substrate to revolve. The module further includes a camera and an optic enclosure, which is attached to the camera and is configured to rotate, enabling light to be directed toward the substrate. The camera is mounted from a camera mount, which is configured to enable the camera to rotate on a 180 degree plane allowing the camera to capture images of at least one of a top view, a bottom view, and a side view of the substrate. The module yet also includes a backlight arrangement, which is configured to provide illumination to the substrate, thereby enabling the camera to capture the images, which shows contrast between the substrate and a background.
Abstract:
Systems and methods for providing registration at a remote site that may include, for example, a monitoring module that may communicate with a remote site. A registration protocol may be used by the monitoring module and the remote site in generating the messages communicated during the registration process. The monitoring module may gather and generate various identification information to be included in the registration protocol messages. The registration information provided by the monitoring module may be stored at the remote site in a database server having a database. A confirmation message may be communicated from the remote site to the monitoring module that may either acknowledge successful registration or report that an error occurred during the registration process.
Abstract:
Method of fabricating an artificial haircell. A cilium, a strain gauge connected to the cilium, and a ductile hinge are microfabricated on a substrate by surface micromachining. The cilium and the strain gauge are raised with respect to the substrate by application of a magnetic field, thus bending the hinge.
Abstract:
A sensor chip, comprising a flexible, polymer-based substrate, and at least one microfabricated sensor disposed on the substrate and including a conductive element. The at least one sensor comprises at least one of a tactile sensor and a flow sensor. Other embodiments of the present invention include sensors and/or multi-modal sensor nodes.
Abstract:
The cylinder structure for a pneumatic tool includes a first and second cylinder placed inside the pneumatic tool, and a first and second piston placed inside the first and second cylinder. The one-piece structure of the first and second cylinder are inside the pneumatic tool, and the air inlet of the first cylinder and the air inlet of the second cylinder can be connected by a first bypass. The lower air chamber of the first cylinder is connected to the second piston of the second cylinder at the bottom by a second bypass. The double cylinder of the pneumatic tool avoids being hit by external forces, which extends the life of usage. The invention makes the manufacturing process simpler and more effective, and the end product looks more unified.
Abstract:
The present invention provides an anti-misfit structure for a nail cartridge, which resolves the problems of a typical nail cartridge. For example, when a short collated nail is mistakenly inserted, it is likely lead to different triggering strength, and easier swinging and jamming of nail bodies against stability and safety. The swinging end of the spring of the nail cartridge is provided with a stopper. So, when the nailer head of a short collated nail is mistakenly inserted into the long nailer head dent, the stopper blocks the collated nail, thus preventing any misalignment and subsequent triggering of a nailer for higher stability and safety.
Abstract:
A method is disclosed for amortizing the authentication overhead of data transmissions. The method comprises establishing a first secure transmission of data between a transmitter and a receiver by transmitting at least one token to the receiver during the first secure transmission. There may be any number of senders and receivers, and any receivers may be a sender and vice versa. The method also comprises establishing at least one additional transmission of data between the sender and the receiver and transmitting the data and at least one token during the at least one additional transmission. In addition, the method compares the at least one token transmitted during the at least one additional transmission to the token transmitted during the first secure transmission to guarantee the authenticity of that at least one additional transmission. The method may also include transmitting a preselected number of tokens during the first secure transmission. The number of additional transmissions may or may not correspond to the preselected number of tokens. The at least one additional transmission may be conducted over an unsecure connection using open communication. The first secure transmission may be protected or encrypted.
Abstract:
A mattress and coil-in-coil assembly. The mattress includes a cover, a frame, a plurality of spacing coils, and a plurality of coil-in-coil assemblies. The coil-in-coil assembly includes a first coil and a second coil positioned substantially within the first coil. The second coil is pocketed and projects out of a first end of the first coil.
Abstract:
A microdischarge device has a semiconductor layer, an intermediate layer, and a conductive layer. A tapered cavity is disposed in at least the semiconductor layer.
Abstract:
A vending machine cabinet that is retained in a closed position by a hook that is engaged by a vertically moveable latch bar can be latched closed without actuating a solenoid by means of a cam attached to one of the hooks. To engage the latch bar, the hook extends through an opening in the latch bar. Prior to the hook passing through the opening, an angled surface of the cam engages an upper surface defined by the opening in the latch bar. As the door is closed, the cam rotates through an angle less than ninety degrees, thereby lifting the latch bar until the upwardly extending finger of the hook can move through the opening of the latch plate. When the door is fully closed, the surface of the cam is moved from beneath the upper edge of the opening in the latch plate thereby allowing the latch plate to drop behind the hook, latching the door closed.