Abstract:
In an electronic apparatus (1), an electric power circuit (3) is completely, directly housed in a outer sealed casing (2) and directly immersed in an electrically insulating, cooling liquid contained within the sealed casing (2) itself.
Abstract:
The present invention relates to a device for fastening two elements to one another, comprising a rod-like member (1) having opposite ends (2, 3) which are aligned on a common longitudinal axis (X-X) and a threaded portion (4) formed in the region of a first end (2). A characteristic of the rod-like member (1) is that it comprises a tapered portion (5) formed in the external wall of the rod-like member (1), the tapered portion (5) having the vertex of its taper facing towards the threaded portion (4) and a taper angle (a), measured relative to the longitudinal axis (X-X), that is within a range variable between 2° and 6°.
Abstract:
A led source (1) of light has at least one led emitter assembly (2) adapted to emit a light beam and housed in an outer sealed casing (10), which houses a cooling liquid and is at least partially made of metal material to perform a function of heat exchanging with the outside.
Abstract:
The present invention concerns a magnetic apparatus for magnetic clamping of ferrous elements (P1), comprising a support structure (11) with at least one pole piece (30A) held within its thickness (S), first and second sides (12, 13) being formed in said support structure (11, 11A) at the opposed larger surfaces, said pole piece (30A) comprising at least one first pole piece collector (50), said first pole piece collector (50) being adapted to convey at least one first magnetic flux (F1) generated by said magnetic apparatus to said first side (12, 13). The invention is characterized in that said at least one first pole piece collector (50) is held within the thickness (S) of said support structure (11) and is formed of one piece with said support structure (11).
Abstract:
The present invention refers to a magnetic device for clamping ferromagnetic workpieces comprising a frame (2) having a first magnetic circuit (3) configured to generate a first magnetic field adapted to clamp a ferromagnetic workpiece to be processed; a second magnetic circuit (4) configured to generate a second magnetic field adapted to clamp said ferromagnetic workpiece (1) to a machine tool bed; said first magnetic circuit (3) and said second magnetic circuit (4) being adapted to be controlled to turn on and/off independently one from the other. The modular magnetic device is characterized in that it comprises first (6, 10) and second (5, 11) mechanical and electrical connection means for mechanically and electrically connecting said magnetic device, when in operation, to corresponding second and first complementary mechanical and electrical connection means of other modular magnetic devices located adjacent thereto, to create a series of modular magnetic devices mechanically and electrically connected together.
Abstract:
The present invention relates to a one-piece multipole plate for a magnetic clamping apparatus, a process for making such plate and a magnetic apparatus having such plate (11), wherein the magnetic apparatus has a plurality of pole pieces (13) and said plurality of pole pieces (13) extend from said plate (11) and are formed of one piece with said plate (13).
Abstract:
The present invention relates to magnetic anchorage equipment (1) comprising a frame (2) able to contain a plurality of polar units, each of the plurality of polar units having a ferromagnetic polar element which identifies an anchorage surface (3) and a self-testing unit (4) for checking the magnetic equipment (1). The magnetic anchorage equipment (1) is characterized in that the self-testing unit (4) for checking the magnetic equipment (1) is at least partly integrated in the frame (2).
Abstract:
The present invention relates to a device for fastening two elements to one another, comprising a rod-like member (1) having opposite ends (2, 3) which are aligned on a common longitudinal axis (X-X) and a threaded portion (4) formed in the region of a first end (2). A characteristic of the rod-like member (1) is that it comprises a tapered portion (5) formed in the external wall of the rod-like member (1), the tapered portion (5) having the vertex of its taper facing towards the threaded portion (4) and a taper angle (α), measured relative to the longitudinal axis (X-X), that is within a range variable between 2° and 6°.
Abstract:
The present invention relates to a multiconnection coil structure (1) comprising a support (2) of predetermined profile (2A) and at least one electric conductor (3) wound on said support (2) to form a winding (4). The multiconnection coil structure (1) has for each winding (4) at least two (5, 6) electric conductor means, each extending between a first (7) and a second (8) points of said profile (2A). Further, each conductor means (5, 6) are electrically connected to one of the terminal ends of the conductor (3), and include at least two distinct electric connection elements (5A, 5B, 6A, 6B), so that when one connection element (5A, 5B) of each conductor means (5, 6) is connected to a power source (V), said power source (V) is also applied to at least another connection element (6A, 6B) of each conductor means (5, 6).
Abstract:
The present invention relates to a magnetic apparatus for clamping ferromagnetic workpieces, comprising a first magnetic clamping plate (2) with a first magnetic circuit therein for generating a first magnetic flux when said first magnetic circuit is on, to define a magnetically active portion of said first magnetic plate (2), acting as a magnetic clamping surface (2D). The present invention is characterized in that the apparatus further comprises a spacer (3) extending in a predetermined direction of extension (Y-Y), a second magnetic clamping plate (4) with a second magnetic circuit therein for generating a second magnetic flux when said second magnetic circuit is on, to define a magnetically active portion of said second magnetic plate (4), acting as a magnetic clamping surface (4D), said spacer (3) being interposed between said first magnetic plate (2) and said second magnetic plate (4), said spacer (3), said first magnetic plate (2) and said second magnetic plate (4) being rigidly and integrally connected together, wherein the first magnetic flux generated- by said first circuit is higher than the second magnetic flux generated by said second magnetic circuit, with the clamping surfaces (2D, 4D) defined in said first magnetic plate (2) and said second magnetic plate (4) having the same area.