Abstract:
An optical device with a deformable membrane (2) including an anchor area (2.3) on a support (1) entrapping a liquid or gas fluid, a central area (2.1) reversibly deformable from a rest position, actuating means for moving the fluid (4) biasing the membrane (2) into an intermediate area between the anchor area (2.3) and the central area (2.1), the actuating means include a piezoelectric continuous crown accommodating several actuators (5.1), this crown surrounding the central area (2.1), the actuating means (5) being anchored to the membrane (2) in at least the intermediate area (2.2), the actuating means (5) and the membrane (2) to which they are anchored, forming at least one piezoelectric bimorph (B), the actuating means (5) radially contracting or extending upon actuation so as to generate a movement of said fluid (4) from the intermediate area (2.2) to the central area (2.1) of the membrane (2) or vice versa, aiming at deforming the central area (2.1) with respect to its rest position.
Abstract:
The invention pertains to a method for manufacturing a microelectronic device on a substrate comprising at least one first electrical component and one second electrical component distributed respectively in first and second levels stacked one on top of the other on the substrate, this method comprising: the manufacture of at least one first arm and one second arm of different lengths, each of these arms directly and mechanically linking an electrical pad to a fixed anchoring point on the substrate, and the electrical pad is made inside the first level and then shifted, prior to the electrical connection of the second component, to a position of connection wherein the upper face of the electrical pad is in contact with the interior of the second level parallel to the substrate.
Abstract:
Methods and systems for secure electronic data communication over public communication networks. A secure data communication component may be utilized to implement a communication protocol. New versions of the data communication component may be generated, with each version containing a different communication protocol. Source code of the data communication component may be modified using a polymorph engine to create a functionally-equivalent component having a different code structure. An anti-phishing component may intercept a link in an electronic communication activated by a user, analyze the link and the electronic communication, determine a phishing risk to the user posed by the link, and direct the user to a location indicated by the link or redirect the user to a valid location. A server authentication component may detect and prevent DNS attacks, injections, and defacing activities.
Abstract:
The fan impeller (10) comprises a hub (14) and blades (12) extending radially outward from the hub, the blades having a flattened airfoil profile cross section with a leading edge (24) and a trailing edge (26) between which a chord is defined. The blade (12) has a relative thickness that reached its maximum value (Emax) in the first quarter of the length of the chord measured from the leading edge (24), the relative thickness being defined by the ratio between the thickness of the blade and the length of the chord. The invention finds an application particularly in motor vehicle engine cooling fan impellers.
Abstract:
A fan module with an axial flow fan and a shroud member. The axial flow fan has a hub and a plurality of fan blades, each blade extending radially from the hub. At the tips of the blades are air guide members secured to respective fan blades and concentric with the hub. Each air guide member has an axially-extending arcuate portion, and a respective lip portion extending radially outwardly from each said arcuate portion. The axially-extending portion has an axial length substantially equal to or less than the axial length of said hub. The shroud member has a surface cooperating with the air guide members in an arrangement to reduce tip vortices.
Abstract:
Door of a motor vehicle comprising a body shell and at least one movable glass panel, likely to slide at least partially on the inside of the shell between a sealing position and at least one open position, characterized in that it comprises at least one strut bearing a watertight joint against which the side of the movable glass panel turned towards the inside of the vehicle leans, in the sealing position, and in that each of the struts bears at least one guide track allowing to slightly distance the movable glass panel from the watertight joint, in a sliding position in which the movable panel can slide without damaging the watertight joint, and to return the movable glass panel and the watertight joint to lean against each other, in the sealing position.
Abstract:
The invention pertains to a method for manufacturing a microelectronic device on a substrate comprising at least one first electrical component and one second electrical component distributed respectively in first and second levels stacked one on top of the other on the substrate, this method comprising: the manufacture of at least one first arm and one second arm of different lengths, each of these arms directly and mechanically linking an electrical pad to a fixed anchoring point on the substrate, and the electrical pad is made inside the first level and then shifted, prior to the electrical connection of the second component, to a position of connection wherein the upper face of the electrical pad is in contact with the interior of the second level parallel to the substrate.
Abstract:
An optical device with a deformable membrane (2) including an anchor area (2.3) on a support (1) entrapping a liquid or gas fluid, a central area (2.1) reversibly deformable from a rest position, actuating means for moving the fluid (4) biasing the membrane (2) into an intermediate area between the anchor area (2.3) and the central area (2.1), the actuating means include a piezoelectric continuous crown accommodating several actuators (5.1), this crown surrounding the central area (2.1), the actuating means (5) being anchored to the membrane (2) in at least the intermediate area (2.2), the actuating means (5) and the membrane (2) to which they are anchored, forming at least one piezoelectric bimorph (B), the actuating means (5) radially contracting or extending upon actuation so as to generate a movement of said fluid (4) from the intermediate area (2.2) to the central area (2.1) of the membrane (2) or vice versa, aiming at deforming the central area (2.1) with respect to its rest position.
Abstract:
A device for locking a sliding panel of a motor vehicle, which panel is mobile with respect to a stationary structure, including means for actioning of bolt(s), which are mobile with respect to said sliding panel and capable of adopting at least three positions: a resting position, in which said bolt(s) is (are) in a locked state with one of said complementary locking elements; and two unlocking positions, called left and right, in which said unlocking positions implement transmission means acting on said bolt(s), which are mounted symmetrically with respect to an axis perpendicular to the sliding axis of said sliding panel, so as to create similar actions on said bolt(s) in each of said locking positions, and to allow, in the same movement of a user: the change from the resting position to one of said unlocked positions; the sliding movement of said mobile panel in one or the other sliding directions, called right and left, according to the locking position selected.
Abstract:
A ventilation device is disclosed including a fan capable of being driven rotationally by an open electric motor which is firmly attached to a support intended for fixing said ventilation device, the fan having a plurality of blades which are distributed regularly around a bowl inside which there are arranged internal ribs capable of ventilating the open electric motor. Notably, the support includes a central part which is connected in a substantially sealed manner to at least one peripheral portion of the open electric motor.