摘要:
An apparatus (1) for compensating the maladjustment of a power control means (2) by changes to the ambient temperature operates at least on a partial path against the flat spring (31) of a correcting device (30), after which at least part of the ambient temperature sensor (20) of the apparatus (1) is fixed against further deflection by a stop (34), so that the actual values of the power setting correspond to the set desired values substantially independently of the ambient temperature. For the correction spring (31) or for the stop (34) it is not necessary to provide a separate component, if use is made for the same of the already present twisting preventer (28) or a carrier (18).
摘要:
An energy control device comprises a switching device and a control system. The switching device is provided with a switch contact adjacent to a counter-contact on one side and to a counter-stopper on the other side thereof. The counter-stopper is arranged on an springy arm which is made of a round steel spring-wire and has on one end thereof a spiral spring segment. The spiral spring segment makes it possible to mount the springy arm on an elongated supporting rod in such a way that it is displaceable in a longitudinal direction, thereby displaying a certain clearance. The springy arm is applied with the other end thereof to an eccentric disc, thereby making it possible to modify the position and consequently place of the counter-stopper.
摘要:
For reducing the click rate and improving the setting accuracy, in the case of a power control unit (11) for electric heating appliances, a contact separation (D) of two contacts (14, 15) can be varied independently of a position change of an appliance switch (12) with a snap-action element (16). Preferably, the position of the counterstop (33) is modified by an application thereof to a separation cam disk (36). The appliance switch position is fixed by means of a power cam disk (28) and determines the power level.In this way it is possible to randomly set within wide limits the click rite for each setting of the relative on period.
摘要:
A temperature sensor for a radiant heater has a first tubular expansion element which is connected to its housing and contains a second rod-like expansion element, the two expansion elements having different coefficients of thermal expansion. The temperature sensor has two switching springs for different switching points. In order to adjust a second switching spring, which is fastened to a second switching spring base, the second switching spring base can be moved in the longitudinal direction of the rod and is then permanently fixed by bending or welding.
摘要:
A temperature sensor for a radiant heater has a first tubular expansion element which is connected to its housing and contains a second rod-like expansion element, the two expansion elements having different coefficients of thermal expansion. The temperature sensor has two switching springs for different switching points. In order to adjust a second switching spring, which is fastened to a second switching spring base, the second switching spring base can be moved in the longitudinal direction of the rod and is then permanently fixed by bending or welding.
摘要:
An electromechanical temperature detection device for a cooking appliance comprises a first rod-shaped sensor part and a second tubular-shaped sensor part. The first sensor part and the second sensor part are made from materials having different thermal expansion co-efficients. The first sensor part is positioned inside the second sensor part. An end area of the first sensor part is connected to the second sensor part in the end area of the second sensor part and the opposite end area of the first sensor part is connected to a switching device. The second sensor part consists of a sheet metal stamped part which is embodied along a longitudinal axis such that it surrounds a longitudinal area in a tubular like manner with a first sensor part positioned inside the tubular part.
摘要:
An electromechanical temperature detection device for a cooking appliance comprises a first rod-shaped sensor part and a second tubular-shaped sensor part. The first sensor part and the second sensor part are made from materials having different thermal expansion coefficients. The first sensor part is positioned inside the second sensor part. An end area of the first sensor part is connected to the second sensor part in the end area of the second sensor part and the opposite end area of the first sensor part is connected to a switching device. The second sensor part consists of a sheet metal stamped part which is embodied along a longitudinal axis such that it surrounds a longitudinal area in a tubular like manner with a first sensor part positioned inside the tubular part.