Abstract:
A handle fixture device, comprising, a cooking vessel; a retaining element attached to the cooking vessel; and a contact is provided between the retaining element on one side and a handle-side retaining device on the other side, wherein the contact is at least one of point shaped and line shaped.
Abstract:
A handle (1) for a cooking vessel has a handle body (3) with a hollow space (2) and at least one flange area (4, 4′) for connecting the handle (1) to the cooking vessel. At least one sealing element (5, 5′) made of plastic is provided and can be inserted into the hollow space (2) of the handle body (3) from the flange area (4, 4′). The sealing element (5, 5′) seals the hollow space (2) to the outside.
Abstract:
A radial fan (1) with a housing (2) and a fan impeller (3) disposed therein, an air inlet (4) and an air outlet (5) is provided, a pressure space (6) being formed between the latter, and in front of the air inlet (4) a laminar element (7) being disposed which, in a bypass (8) formed therein, has a sensor (9) for recording at least one parameter of the medium flowing through the air inlet (4).
Abstract:
A release mechanism for actuating a friction clutch between an internal combustion engine and a transmission of a motor vehicle that is designed for concentric assembly on a guide sleeve mounted on a transmission shaft in order to bear against a release spring of the friction clutch where the guide sleeve and the friction clutch each having a respective center axis. The release mechanism includes a clutch release bearing. The release mechanism also includes a first device for compensating for at least one of a tilt between the center axes and wobbling eccentricity of the release spring where the first device includes a spherical surface between the release bearing and the guide sleeve, and a second device for compensating for offset between the center axes.
Abstract:
A method for starting a combustion device, in particular after a first ignition failure, in particular for starting a gas burner under unknown basic conditions, wherein a characteristic diagram of a start air ratio depending on the burner temperature known from empirical analysis is stored for the combustion device in a memory, wherein a calibration of the starting process is performed, wherein the ratio of opening of the gas valve (w) to air volume mL necessary for ignition is iteratively determined by variation of the gas and/or air volume; and in case of ignition, the combustion device is started and the applicable air ratio (λ)IGNITION is stored.
Abstract:
A handle (1) for a cooking vessel has a handle body (3) with a hollow space (2) and at least one flange area (4, 4′) for connecting the handle (1) to the cooking vessel. At least one sealing element (5, 5′) made of plastic is provided and can be inserted into the hollow space (2) of the handle body (3) from the flange area (4, 4′). The sealing element (5, 5′) seals the hollow space (2) to the outside.
Abstract:
A method is proposed for regulating a firing device taking into account the temperature and/or the burner load, in particular with a gas burner, comprising the regulation of the temperature (Tactual) produced by the firing device using a characteristic which shows a value range corresponding to a desired temperature (Tdesired) dependent upon a first parameter (mL, VL) corresponding to the burner load (Q), wherein when representing the characteristic, a second parameter, preferably the air ratio (λ), defined as the ratio of the actually supplied quantity of air to the quantity of air theoretically required for optimal stoichiometric combustion, is constant.
Abstract:
A radial fan (1) with a housing (2) and a fan impeller (3) disposed therein, an air inlet (4) and an air outlet (5) is provided, a pressure space (6) being formed between the latter, and in front of the air inlet (4) a laminar element (7) being disposed which, in a bypass (8) formed therein, has a sensor (9) for recording at least one parameter of the medium flowing through the air inlet (4).
Abstract:
Basic cells (GZ) that are composed of at least three p-channel transistors (TP) and of three n-channel transistors (TN) are employed for constructing a read-only memory. Only the outwardly disposed transistors (TP1, TP2) or, respectively, TN1, TN2) are employed for storing the information, whereas the inwardly disposed transistors (TN3, TP3) are not used. An information is stored in that the gate electrode (G) of one transistor (TP, TN) is connected to a word line (W), the drain electrode is connected to a bit line and the source electrode is connected to a fixed supply voltage (VDD, VSS) or is not connected thereto. The layout of the basic cell (GZ) is executed such that the gate terminals ensue in the inner region of the basic cell and the word lines (W) and bit lines (B) are conducted over the basic cell perpendicularly relative to one another. Read-only memories of arbitrary size can be realized by joining such basic cells in rows and columns.
Abstract:
A gate array arrangement provides basic cells in a core region, with logic functions or storage functions being realized by wiring these basic cells. The basic cells are composed of six or seven transistors in CMOS technology, with three p-channel transistors (TR1) in a a first region (BE1) and three n-channel transistors (TR2) in a second region (BE2), with the terminals (GTA) of the gate electrodes (GT1, GT2) of the transistors being arranged between these two regions (BE1, BE2). A further transistor (TR3) that has a smaller channel width than the remaining transistors (TR1, TR2) is arranged outside of the region (BE2) for the n-channel transistors (TR2). The gate electrode (GT3) of the further transistor lies parallel to the electrodes (GT2) connected to the gates of the n-channel transistors (TR2) but is shorter. The terminal (GTB) of the gate electrode (GT3) of the further transistor (TR3) faces toward the line for the supply voltage (VSS). The terminals (GTA) of the gate electrodes of the n-channel and p-channel transistors lie next to one another and can thus be connected to one another by the shortest possible path, and adequate space is available over the regions (BE1, BE2) to conduct wiring lines above the cell.