Sensor and method for producing a sensor
A sensor comprises a sensor element configured to provide a sensor signal representing at least one measurand detected by the sensor element, an electrical circuit configured to process the sensor signal to form a data signal, a photovoltaic cell configured to provide electrical energy for the sensor element and the electrical circuit, and a housing, in which the sensor element, the electrical circuit and the photovoltaic cell are positioned, the housing including a recess in which the photovoltaic cell is positioned, and a rim surrounding the recess and protruding beyond the photovoltaic cell. A method is also provided.
1. A sensor comprising:
a sensor element configured to provide a sensor signal representing at least one measurand detected by the sensor element;
an electrical circuit configured to process the sensor signal to form a data signal;
a photovoltaic cell configured to provide electrical energy for the sensor element and the electrical circuit; and
a housing including a first housing part and a second housing part, the first housing part including a recess in a front side of the first housing part in which the photovoltaic cell is positioned, and a rim surrounding the recess and protruding beyond the photovoltaic cell, the sensor element and the electrical circuit being mounted to a rear side of the first housing part opposite the recess and enclosed on the rear side by the second housing part,
wherein the rim is formed from a printed circuit board material.
2. The sensor as claimed in claim 1 , further comprising a junction region between the photovoltaic cell and the first housing part that is sealed in a region of a solar-active surface of the photovoltaic cell with a protective medium that is at least partially transparent to solar radiation.
3. The sensor as claimed in claim 1 , the sensor element and/or the electrical circuit being positioned on a light-insensitive side of the photovoltaic cell.
4. The sensor as claimed in claim 1 , wherein the second housing part is formed by a potting compound and the sensor element and/or the electrical circuit is potted at least partially in the potting compound.
5. The sensor as claimed in claim 1 , further comprising electrical conductor tracks positioned in the rim, wherein the photovoltaic cell is electrically contacted in the rim at least on one side by the conductive tracks by feedthroughs.
6. The sensor as claimed in claim 1 , wherein the photovoltaic cell is surrounded by the rim such that there is contact at least on all sides with the surfaces of the photovoltaic cell, at least in sub-regions of the surfaces.
7. The sensor as claimed in claim 1 , wherein a solar-active side of the photovoltaic cell is covered at least in part by the rim.
8. The sensor as claimed in claim 1 , further comprising electrical connectors on the rim and/or on the rear side of the first housing part opposite the recess.
9. A method for producing a sensor comprising:
providing a sensor element, an electrical circuit and a photovoltaic cell, the photovoltaic cell being connected to the electrical circuit and the electrical circuit being connected to the sensor element; and
positioning the sensor element, the electrical circuit and the photovoltaic cell in a housing, the housing having a first housing part and a second housing part, the photovoltaic cell being positioned in a recess in a front side of the first housing part, the sensor element and the electrical circuit being mounted to a rear side of the first housing part opposite the recess and enclosed on the rear side by the second housing part,
wherein a rim of the housing surrounds the recess and protrudes beyond the photovoltaic cell, the rim being formed from a printed circuit board material.
10. A method comprising:
providing a plurality of arrangements formed of a sensor element, an electrical circuit and a photovoltaic cell, wherein the photovoltaic cell of each arrangement is connected to a respective electrical circuit of each arrangement, and the electrical circuit of each arrangement is connected a respective sensor element of each arrangement;
positioning each of the plurality of arrangements in a common housing; and
separating the housing into a plurality of sub-housings,
wherein each sub-housing includes a first part and a second part, the first part including a recess in a front side in which the photovoltaic cell of a respective one of the plurality of arrangements is positioned, the sensor element and the electrical circuit of the respective one of the plurality of arrangements being mounted to a rear side of the first part opposite the recess and enclosed on the rear side by the second housing part, and
wherein the first part of each of the sub-housings includes a rim that surrounds the recess and protrudes beyond the photovoltaic cell positioned in the recess, the rim being formed from a printed circuit board material.