Security system component with destruction detection and security network with at least one security system component
The security system component addresses the challenge of detecting unauthorized tampering by using a rigidly connected housing and detector component that only destruct upon tampering, ensuring reliable detection without false alarms.
Patent Information
- Application Number
- PCT/EP2024/085245
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-16
- Filing Date
- 2024-12-09
- Publication Date
- 2025-07-24
AI Technical Summary
Existing security systems lack effective mechanisms to detect and prevent unauthorized removal or tampering of safety-relevant devices without causing false alarms due to non-destructive movements.
A security system component with a housing section and detector component that are rigidly connected via predetermined breaking point arrangements, ensuring irreversible destruction upon attempted tampering, while remaining non-destructive to elastic movements.
Provides reliable detection of tampering attempts by irreversible destruction of the detector component, preventing false alarms from non-destructive actions and ensuring secure monitoring of the system's integrity.
Smart Images

Figure EP2024085245_24072025_PF_FP_ABST
Abstract
Description
[0001] Description
[0002] title with destruction detection and
[0003] Security network with at least one Sr
[0004] State of the art
[0005] The invention relates to a security system component. The invention also relates to a security network comprising at least one such security system component.
[0006] For devices used in safety-relevant applications, detectors are used to monitor the devices to ensure that they are not removed from their installation location through tampering or disassembly, or are only temporarily moved away.
[0007] The document DE 10 2010 029 802 A1 discloses a device for securing an object against changes, which device has a radiation-sensitive device, wherein the radiation-sensitive device has an image sensor for angle-resolved detection of the observation surface and for outputting image signals, wherein an evaluation unit monitors the two-dimensional images contained in the image signals in order to detect a change.
[0008] Disclosure of the invention
[0009] The invention relates to a security system component having the features of claim 1 and to a security network having the features of claim 13. Preferred or advantageous embodiments of the invention emerge from the subclaims, the following description and the attached figures.
[0010] The invention relates to a security system component, wherein the security system component is particularly suitable and / or designed for a security network. The security network can comprise a few, at least one, for example, up to 5 or 10, or a plurality, for example, more than 50 or more than 100, of such security system components. The functions or properties of the security system components can differ.
[0011] The security system component has a housing and security system electronics arranged in the housing. The security system electronics implements the respective function of the security system component. In particular, monitoring functions, observation functions, network functions, etc. can be implemented as functions. The security system electronics can in particular have a sensor for recording environmental measurements, such as a camera, a microphone, a temperature sensor, a fire sensor, a fire sensor and / or a network component, such as a bus interface, a signal converter, a data distributor, a data collector, a communication module, a transmitter, a receiver, etc. The security system electronics can be arranged completely or only partially in the housing. The housing can be realized in one part or in multiple parts.
[0012] From a mechanical perspective, the housing comprises a housing base body and a housing section for fastening the security system electronics to a fastening surface. For example, the fastening surface is designed as a wall surface, with the security system component being fastened to the wall surface via the housing section. The housing base body, like the housing, can be designed as a single piece or in multiple pieces. The housing section is connected to the housing base body. In particular, the housing section is connected to the housing base body or connecting sections thereof in one piece, from a single material, and / or as a common component. For example, the housing section is manufactured with a connecting section of the housing base body from a common material section, for example as a common and connected injection-molded part. The housing section is rigidly connected to the housing base body.In particular, the housing section is designed so that it cannot be displaced non-destructively relative to the housing base body. In particular, the housing section is rigidly connected to the housing base body in such a way that it cannot be elastically deflected. In particular, the housing section is connected to the housing base body either completely circumferentially or in sections circumferentially, so that the housing section cannot be mechanically deflected.
[0013] The safety system component has a detector component, wherein the detector component is mechanically coupled, in particular connected, to both the housing section and the housing base body. The coupling is designed such that the detector component is destroyed in the event of a particularly destructive displacement of the housing section relative to the housing base body. In the event of the destructive displacement, in particular, the rigid connection between the housing section and the housing base body is destructively removed. The safety system component is designed such that the detector component is not destroyed in the event of a non-destructive load on the housing section.
[0014] The detector component is designed to detect the destruction of the detector component. In particular, the detector component has a detector element for detecting the destruction of the detector component. Thus, in particular in the case of an elastic displacement of the housing section, the detector component is not destroyed and / or no destruction of the detector component is detected. In the case of a plastic displacement, in particular destruction of the connection between the housing section and the housing base body, the detector component is destroyed and / or the destruction of the detector component is detected. In particular, the detector component is connected mechanically, electrically, and / or electronically to the safety system component.After the safety system component is fastened and / or can be fastened to the fastening surface via the housing section, an attempt to change the position of the safety system component relative to the fastening surface will result in the housing section being displaced relative to the housing base body. This displacement is an indication that the safety system component has been or is intended to be tampered with.The displacement of the housing section destroys the detector component, so that the displacement and thus the possible displacement of the housing section and thus the possible manipulation of the security system component is clearly proven by the destruction of the detector component. If the respective security system component is protected with a corresponding structure with a detector component, it can always be monitored whether the respective security system component has been manipulated and therefore needs to be repaired or excluded from the security network, etc.
[0015] It is therefore an idea of the invention that the design of the security system component prevents manipulation of the
[0016] The safety system component can be reliably detected by detecting the destruction of the detector component. It is advantageous for the detector component to operate in a non-destructive and / or non-reversible manner, but rather to react in a destructive and / or irreversible manner to a displacement, particularly a destructive displacement, of the housing section relative to the housing base body. In contrast, in the case of an elastic displacement of the housing section relative to the housing base body, preferably no destruction is detected, thus avoiding false detections.
[0017] The security system component preferably has a fastening means, wherein the housing section has a housing section interface for the passage of the fastening means for fastening the security system component to the fastening surface. In the simplest case, the housing section interface is designed in the housing section as a circumferentially closed through-opening. Alternatively, the through-opening is open at the edge. The fastening means can, for example, be implemented as a screw which is passed through the through-opening. The fastening means and the housing section interface are preferably coordinated with one another in such a way that, when the fastening means is arranged as intended, the housing section is positively held by the fastening means. In other words, the housing section cannot be pulled off the fastening means, regardless of the direction.Alternatively or additionally, the housing section is secured by the fastening means in a force-fitting manner, for example the housing section is pressed against the fastening surface by the fastening means. Thus, any attempt to pull the housing section off the fastening means results in a displacement of the housing section relative to the housing base body, so that such manipulation is detected by the destruction of the detector component.
[0018] Alternatively or additionally, the detector component has a detector component interface for the passage of the fastening means. The detector component is held in place by the fastening means arranged as intended for fastening in a form-fitting manner. In other words, the detector component cannot be pulled off the fastening means, regardless of the direction. Alternatively or additionally, the detector component is secured in a force-fitting manner by the fastening means, for example, the detector component is pressed towards the fastening surface by the fastening means when installed. This means that the detector component cannot be separated from the fastening means either; rather, the detector component, together with the housing section, is connected to the fastening means in a form-fitting and / or force-fitting manner and secured to the fastening surface.In the simplest case, the detector component interface is designed as a circumferentially closed through-hole in the detector component. Alternatively, the through-hole is open at the edges.
[0019] In a preferred structural embodiment of the invention, the housing has a predetermined breaking point arrangement, wherein the housing section is connected to the housing base body via the predetermined breaking point arrangement. The predetermined breaking point arrangement is designed to break upon displacement of the housing section relative to the housing base body. In particular, breaking open the predetermined breaking point arrangement leads to destruction of the detector component. Thus, the destruction of the detector component does not occur upon a slight contact with the safety system component, but only when the predetermined breaking point arrangement is broken open by displacement of the housing section relative to the housing base body.
[0020] In this case, the breaking open of the housing predetermined breaking point arrangement can be designed as a partial or section-wise breaking open of the housing predetermined breaking point arrangement.
[0021] It is particularly preferred that the housing section is rigidly connected to the housing base body via the housing predetermined breaking point arrangement. For example, the housing predetermined breaking point arrangement has at least three predetermined breaking points, so that pivoting of the housing section relative to the housing base body is not possible. Alternatively or additionally, the housing predetermined breaking point arrangement is geometrically designed such that pivoting of the housing section relative to the housing base body is prevented. In this way, destruction of the detector component only occurs when the housing section is at least partially separated from the housing base body by breaking open the housing predetermined breaking point arrangement, and not when the housing section elastically deflects.
[0022] In a preferred specific embodiment, the detector component comprises a detector component base body, a detector component section, and a detector component predetermined breaking point arrangement. The detector component section is connected to the detector component base body via the detector component predetermined breaking point arrangement. The detector component base body or - preferably - the detector component section is mechanically coupled to the housing section, the other component is mechanically coupled to the housing base body. Preferably, the detector component section is mechanically coupled to the housing section, in particular rigidly connected, so that upon displacement of the housing section relative to the housing base body and / or upon breaking open the housing predetermined breaking point arrangement, the
[0023] Detector component predetermined breaking point arrangement is broken and the detector component is or will be mechanically destroyed.
[0024] In particular, the housing predetermined breaking point arrangement and the detector component predetermined breaking point arrangement are mechanically coupled so that they break open together. The housing predetermined breaking point arrangement thus destructively monitors the connection of the safety system component to the fastening surface, whereby the housing predetermined breaking point arrangement is broken open in the event of tampering. The detector component predetermined breaking point arrangement thus destructively monitors the housing predetermined breaking point arrangement, whereby the detector component predetermined breaking point arrangement is broken open in the event of the housing predetermined breaking point arrangement being broken open. The detector component thus indirectly monitors the connection of the safety system component to the fastening wall surface, whereby, in particular, only the destruction of the housing predetermined breaking point arrangement leads to the destruction of the detector component predetermined breaking point arrangement.
[0025] It is preferred that the detector component has at least one conductor loop as a detector element, wherein the conductor loop extends over the detector component's predetermined breaking point arrangement and / or between the detector component and the detector component's base body. By breaking open the detector component's predetermined breaking point arrangement, the conductor loop is thus severed, so that the detector component detects the destruction of the detector component by severing the conductor loop.
[0026] In a particularly simple and cost-effective implementation, the detector component has a circuit board, wherein the detector component base body, the detector component section, and the detector component predetermined breaking point arrangement each have and / or form a section of the common circuit board. This allows the detector component to be manufactured cost-effectively as a circuit board. For example, the detector component predetermined breaking point arrangement can be realized during circuit board production by a free space between the detector component base body and the detector component section. It is particularly preferred that the housing section and the detector component section are congruent and / or at least overlap with one another. The detector component section is preferably designed in such a way that it does not block displacement of the housing section due to collision with the housing base body.
[0027] It is further particularly preferred that the housing section interface and the detector component interface are arranged so as to overlap in the alignment and / or projection direction of the fastening means. In this embodiment, the fastening means, such as a screw, can be screwed through the respective interfaces, so that the respective sections are simultaneously positively captured and / or non-positively secured.
[0028] The security system component preferably has an evaluation device, wherein the evaluation device is electronically and in particular signal-wise connected to the detector component. The evaluation device is designed to detect the destruction of the detector component and provide a destruction signal. During further signal processing, the destruction signal can be interpreted as a manipulation signal.
[0029] The housing can have a plurality of housing parts, such as a cover part, a base part, etc. Optionally, the security system component has a further detector component, wherein the further detector component is mechanically coupled to a first and a second housing part of the housing in such a way that when the first housing part is displaced relative to the second housing part, the further detector component is destroyed, wherein the further detector component is designed to detect the destruction. The further detector component can be designed like the detector component described above. It can optionally be monitored in the same way by the evaluation device or a further evaluation device, wherein the evaluation device is designed to detect the destruction of the further detector component and to provide a further destruction signal.In particular, it can be provided that one of the housing parts has a further predetermined breaking point arrangement, via which it is connected to the other housing part, e.g., by means of a further fastening means, wherein destruction of the further detector component only and / or exclusively occurs when the further predetermined breaking point arrangement is broken. The further detector component thus monitors the further predetermined breaking point arrangement.
[0030] It is particularly preferred that the security system component is designed as a monitoring device, in particular as an intrusion detection device, as a fire detection device, as a CO2 detection device, surveillance camera device, as a network component device for the security network, as a power supply for the security network or one of the other devices or as an output device, such as a lighting device, an acoustic or optical warning device, an escape route lighting device and / or display.
[0031] A further subject matter of the invention relates to a security network having a plurality of security system components, wherein at least one of the security system components is designed as described above, wherein the security network is designed to monitor the detection of the destruction of the detector component and optionally additionally of the further detector component.
[0032] The monitoring center can be designed as or comprise a digital data processing device, in particular a server arrangement. The monitoring center can also be implemented in a decentralized manner, for example, in the cloud.
[0033] The security network preferably has a monitoring center, wherein the security network is configured such that the destruction signal or the further destruction signal of the security system component is evaluated in the monitoring center and / or the detector component and / or the further detector component can be evaluated and the destruction signal or further destruction signal can be determined. The destruction signal(s) can then be interpreted by the monitoring center as manipulation events of the at least one system component, and countermeasures can be initiated automatically or by monitoring personnel, such as initiating a repair, monitoring the security system component, or triggering an alarm.
[0034] Further features, advantages, and effects of the invention will become apparent from the following description of a preferred embodiment of the invention and the accompanying figures. These show:
[0035] Figure 1 a, b, c shows a section of a security system component as a first embodiment of the invention;
[0036] Figure 2 is a schematic plan view of a detector component for the security system components;
[0037] Figure 3 a, b shows a schematic, three-dimensional representation of a second embodiment of a security system component;
[0038] Figure 4 a, b shows a schematic, three-dimensional representation of a third embodiment of a security system component.
[0039] Figures 1a, b, and c show a first exemplary embodiment of a security system component 1 in various assembly stages as an exemplary embodiment of the invention. The security system component 1 can be designed as part of a security network and perform various functions. In this exemplary embodiment, the security system component 1 is designed, for example, as a fire detector.
[0040] The safety system component 1 has a housing 2 and a safety system electronics 3, which is shown in a highly schematic manner and which is arranged in the housing 2.
[0041] The housing 2 is formed, for example, as an injection-molded part and / or realized as a plastic housing. The housing 2 comprises a housing base body 4 and a housing section 5. The housing 2 or the housing base body 4 can be formed as a single piece or in multiple pieces. In particular, the housing 4 can comprise additional housing parts, such as a cover, an intermediate plate, or the like.
[0042] The housing section 5 is designed to fasten the security system component 1 to a fastening surface 6. The fastening surface 6 is designed, for example, as a wall or a ceiling. For this purpose, the housing section 5 has a housing section interface 7, wherein the housing section interface 7 in this example is designed as a through-opening in the shape of a key. The key shape allows a fastening means 8, in this example a screw, to first be pushed with the screw head through the larger, free diameter of the through-opening, and then the housing 2 can be rotated so that the fastening means 8 is arranged in a region of the through-opening with a narrower, free diameter, such that the housing 2 and in particular the housing section 5 can be fastened to the fastening surface 6 in a force-fitting and partially form-fitting manner.
[0043] The housing 2 has a predetermined breaking point arrangement 9, wherein the housing section 5 is rigidly connected to the housing base body 4 via the predetermined breaking point arrangement 9. The predetermined breaking point arrangement 9 is formed by a plurality of support webs which are distributed in the circumferential direction around the housing section 5 and connect the housing section 5 and the housing base body 4 to one another. Free spaces are provided between the support webs. Alternatively, the predetermined breaking point arrangement 9 can also be realized by continuous, but weakened areas between the housing section 5 and the housing base body. The support webs and / or the predetermined breaking point arrangement 9 is / are realized in such a way that the housing section 5 cannot be displaced from an installed position, in particular pivoted out, without breaking the predetermined breaking point arrangement 9.Thus, the housing section 5 is rigidly, in particular non-deflectionally, connected to the housing base body 4 by the predetermined breaking point arrangement 9. The housing base body 4 and the housing section 5, as well as the predetermined breaking point arrangement 9, are made in one piece and / or from a single material and / or from a common, continuous material section.
[0044] By fastening the housing 2 and in particular the housing section 5 to the fastening surface 6 via the fastening means 8, it is achieved that a mechanical manipulation, such as an attempt to lift the housing 2 from the fastening surface 6, leads to a breaking open of the housing predetermined breaking point arrangement 8.
[0045] Figure 1b shows a detector component 10 as a component of the security system component 1, which is arranged congruently with the housing section 5. The detector component 10 has a detector component base body 11, a detector component section 12, and a detector component predetermined breaking point arrangement 13. The detector component section 12 is connected to the detector component base body 11 via the detector component predetermined breaking point arrangement 13. The detector component 10 comprises a circuit board 14, wherein the detector component base body 11, the detector component section 12, and the detector component predetermined breaking point arrangement 13 each form a section of the circuit board 14. To implement the detector component predetermined breaking point arrangement 13, free spaces are introduced into the circuit board 14 so that support webs are formed between the detector component section 12 and the detector component base body 11, which support webs form the detector component predetermined breaking point arrangement 13.The detector component base body 11 is supported in the direction of the fastening surface on the housing base body 4 or is connected to it.
[0046] The detector component predetermined breaking point arrangement 13 and / or the support webs are designed such that mechanical deflection of the detector component section 12 relative to the detector component base body 11 is mechanically prevented. Instead, a displacement of the detector component section 12 relative to the detector component base body 11 leads to a breakage of the detector component predetermined breaking point arrangement 13.
[0047] The detector component 10 and in particular the detector component section 12 has a detector component interface 16, wherein the detector component interface 16 is designed to be congruent with the housing section interface 7 and is also realized as a through-opening in the shape of a key, so that the fastening means 8 can be passed through the detector component interface 16 in the same way and also fixes the detector component section 12 to the fastening surface 6 in a force-fitting manner and at least in sections in a form-fitting manner.
[0048] The detector component section 12 and the housing section 5 are thus fixed in parallel and / or in a double layer via the fastening means 8 to the fastening surface 6, as shown in Figure 1 c.
[0049] Figure 2 shows a schematic plan view of the detector component 10, wherein again the detector component base body 11 and the detector component section
[0050] 12 and the detector component predetermined breaking point arrangement 13 with the support webs can be seen.
[0051] The detector component 10 has a conductor loop 17, wherein the conductor loop 17 is designed as a conductor track over the detector component predetermined breaking point arrangement
[0052] 13 and in particular over the support webs. In particular, the conductor loop 17 runs between the detector component base body 11 and the detector component section 12, so that when the detector component predetermined breaking point arrangement 13 is broken, the conductor loop 17 is severed and transitions from a conductive state to a non-conductive state.
[0053] Thus, the detector component 10, with the conductor loop 17 as the detector element, detects the destruction of the detector component 10. The conductor loop 17 can be read, for example, by an evaluation device 18 arranged locally in the security system component or by a monitoring center (not shown) from the security network, and a destruction signal of the detector component 10 can be derived based on the state of the conductor loop 17.
[0054] The housing section 5 and the detector component section 12 are mechanically coupled to one another via the fastening means 8, so that breaking open the housing predetermined breaking point arrangement 5 leads to breaking open the detector component predetermined breaking point arrangement 13. The safety system component 1 is mechanically coordinated so that the housing predetermined breaking point arrangement 5 and the
[0055] Detector component predetermined breaking point arrangement 13 always assume the same state with regard to breaking open: It can therefore only happen that both predetermined breaking point arrangements 5, 13 are not broken open, so that no destruction signal is detected, or that both predetermined breaking point arrangements 5, 13 are broken open and a destruction signal is detected.
[0056] The detector component 10 thus implements manipulation monitoring of the security system component 1 by detecting its own destruction and, in particular, by detecting the breaking open of the detector component predetermined breaking point arrangement 13, wherein manipulations that occur due to a local displacement of the housing 2 relative to the fastening surface 6 are detected.
[0057] Figures 3a, b show another security system component 1, which is designed as a network component. The security system electronics 3 can be designed, for example, as a network distributor. In Figures 3a, b, identical components are designated by the same reference numerals as before.
[0058] In contrast to the previous exemplary embodiment, the housing section interface 7 and the detector component interface 16 are designed as two through holes and one elongated hole. If the fastening means 8 is inserted through the through holes and the security system component 1 is thereby fastened to the fastening surface 6, the housing section 5 and the detector component section 12 are positively retained, so that any local manipulation of the security system component 1 relative to the fastening surface 6, regardless of the direction, leads to the breaking open of the housing predetermined breaking point arrangement 9 and thus simultaneously of the detector component predetermined breaking point arrangement 13.
[0059] Figures 4 a, b show a further embodiment of a security system component 1 in a three-dimensional representation in a plan view of the fastening surface 6. In Figures 4 a, b, the same components are designated with the same reference numerals as before.
[0060] In this embodiment, the housing predetermined breaking point arrangement 9 is formed by four support webs and the detector component predetermined breaking point arrangement 13 is also formed by four support webs, which are regularly distributed in the circumferential direction around the housing section interface 7 and / or the detector component interface 16, which are each designed as a circular through-opening and which have a diameter which is smaller than the screw head of the screw as fastening means 8.
[0061] Furthermore, a cabling 19 is shown which connects the conductor loop 17 to the evaluation device 18 for reading out the state of the conductor loop 17 as a detector element.
[0062] Figure 4a shows a further detector component 20, which is designed like the previously described detector component 10, so that reference is made to the preceding description. The further detector component 20 has a further detector component predetermined breaking point arrangement 23. The further detector component 20 monitors the relative position of two different housing parts of the housing 2. One housing part is connected to the other housing part via a further fastening means 21 - designed as a screw. One of the housing parts has a further housing predetermined breaking point arrangement 22 for connecting the further fastening means 21, which can be designed like the previously described housing predetermined breaking point arrangement 9, so that reference is made to the relevant explanation.The additional detector component 20 is positively connected to the additional detector component predetermined breaking point arrangement 23 and, just as before, is coupled to the destruction function, so that if the system component 1 is tampered with by changing the relative position of the housing parts, the additional detector component 20 is destroyed. The tampering can thus be detected via the evaluation device 18 and a further destruction signal can be output. Figure 4b shows the system component 1 from the underside, showing the housing predetermined breaking point arrangement 9 with the support webs and the housing section interface 7, designed as a round through-opening.
Claims
Claims 1. A security system component (1) comprising a housing (2) and a security system electronics unit (3), wherein the security system electronics unit (3) is arranged in the housing (2), wherein the housing (2) comprises a housing base body (4) and a housing section (5) for fastening the security system component (1) to a fastening surface (6), wherein the housing section (5) is rigidly connected to the housing base body (4), and comprising a detector component (10), wherein the detector component (10) is mechanically coupled to the housing section (5) and to the housing base body (4) in such a way that upon displacement of the housing section (5) relative to the housing base body (4), the detector component (10) is destroyed, wherein the detector component (10) is designed to detect the destruction 2. Safety system component (1) according to claim 1, characterized in that the safety system component (1) comprises a fastening means (8) and that the housing section (5) has a housing section interface (7) for the passage of the fastening means (8) for fastening the safety system component (1) to the fastening surface (6), wherein the housing section (5) is positively caught and / or non-positively secured by the fastening means (8) arranged as intended for fastening 3. Safety system component (1) according to claim 2, characterized in that the detector component (10) has a detector component interface (16) for the passage of the fastening means (8), wherein the detector component (10) is positively caught and / or non-positively secured by the fastening means (8) arranged as intended for fastening 4. Safety system component (1) according to one of the preceding claims, characterized in that the housing (2) has a housing predetermined breaking point arrangement (9), wherein the housing section (5) is connected to the housing base body via the housing predetermined breaking point arrangement (9) (4), wherein the housing predetermined breaking point arrangement (9) is designed to break when the housing section (5) is displaced relative to the housing base body (4).
5. Safety system component (1) according to claim 4, characterized in that the housing section (5) with the housing base body (5) is rigidly connected via the housing predetermined breaking point arrangement (9) 6. Security system component (1) according to claim 5, characterized in that the detector component (10) has a detector component base body (11), a detector component section (12) and a detector component predetermined breaking point arrangement (13), wherein the detector component section (12) is connected to the detector component base body (11) via the detector component predetermined breaking point arrangement (13), wherein one of the two is mechanically coupled to the housing section (5), so that upon displacement of the housing section (5) relative to the housing base body (4) and / or upon breaking of the housing predetermined breaking point arrangement (9), the detector component predetermined breaking point arrangement (13) breaks, so that the detector component (10) is mechanically destroyed.
7. Safety system component (1) according to one of the preceding claims, characterized in that the detector component (10) has at least one conductor loop (17) as a detection element, wherein the conductor loop (17) runs over the detector component predetermined breaking point arrangement (13) and / or between the detector component base body (11) and the detector component section (12), so that the conductor loop (17) is severed in the event of destruction of the detector component (10) and / or in the event of breakage of the detector component predetermined breaking point arrangement (13).
8. Security system component (1) according to one of the preceding claims, characterized in that the detector component (10) is a circuit board (14), wherein the detector component base body (11), the detector component section (12) and the detector component predetermined breaking point arrangement (13) each have or form a section of the circuit board (14).
9. Security system component (1) according to one of the preceding claims, characterized in that the housing section (5) and the detector component section (12) are formed congruently with one another.
10. Security system component (1) according to one of the preceding claims, characterized in that the housing (2) has a plurality of housing parts, and in that the security system component (1) has a further detector component (20), wherein the further detector component (20) is mechanically coupled to a first and a second housing part of the housing (2) in such a way that when the first housing part is displaced relative to the second housing part, the further detector component (10) is destroyed, wherein the further detector component (20) is designed to detect the destruction.
11. Safety system component (1) according to one of the preceding claims, characterized in that it has an evaluation device (18), wherein the evaluation device (18) is electronically and / or electrically connected to the detector component (10), wherein the evaluation device (18) is designed to detect the destruction of the detector component (10) and to provide a destruction signal.
12. Security system component (1) according to one of the preceding claims, characterized in that the security system component (1) is designed as a monitoring device, network component device and / or as an output device for a security network.
13. A security network comprising a plurality of security system components (1), wherein at least one of the security system components (1) is designed according to one of claims 1 to 12, characterized in that the security network is designed for Monitoring the detection of the destruction of the detector component (10) and optionally additionally of the further detector component.
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