![]() Indication device, communication, electrical supply,rmeasurement and/or control of installations (M
专利摘要:
Device for indication, communication, power supply, measurement and/or control of facilities. In this document, a device (1) is described in a detailed and concise manner that allows to carry out operations of indication and/or control in facilities, given their configuration, to be embedded in walls and to have independent and interchangeable fronts, these being equipped with intelligence and data collection elements that allow optimal operation through interaction with the user. The device (1) described here presents a series of communication capabilities both with the elements or modules that comprise it and with other similar devices, to work collectively and interact with each other through a single device. (Machine-translation by Google Translate, not legally binding) 公开号:ES2586596A1 申请号:ES201630746 申请日:2016-06-03 公开日:2016-10-17 发明作者:Inmaculada RUIZ GONZÁLEZ;Alfred BATET VILAR;Daniel MANSILLA CANOVAS;Héctor MIRANDA JOVE;Francesc Xavier VÁZQUEZ VILLA;Miguel GRAGERA GIL 申请人:Simon SA; IPC主号:
专利说明:
INDICATION DEVICE COMMUNICATION. ELECTRICAL POWER SUPPLY. MEASUREMENT AND / OR CONTROL OF FACILITIES D E S C R I P C I O N 5 OBJECT OF THE INVENTION The object of the invention belongs to the technical field of indicators, switches, plugs, sensors and electrical control elements. 10 More specifically, the object of the present invention is a device that allows to efficiently control different types of applications, such as electrical installations, especially in fixed electrical installations. 15 BACKGROUND OF THE INVENTION The controls of electrical or home automation installations such as luminaires, blinds or other elements that make use of direct or indirect communication with the different elements to be controlled are known. twenty In this sense, the well-known recessed switches that have direct electrical outlet are used as conventional control. Normally, said switches have a current or control mechanism 25 that allows the current to be cut or passed by basically managing elements such as luminaires. Normally use is made of a configuration of two main elements, a front and a recessed base in the wall and that together with the front configure the device. These 30 devices are commonly used in electrical and home automation installations and have unique configurations in such a way that the different modules that configure the device allow a unique configuration of them, and therefore these devices once installed are not easily removable for the user. It would be necessary to have devices that allow, on the same basis, to have several types of front that are interchangeable and allow adapting the devices to the application that is required without using a device dedicated solely and exclusively to said application. 5 DESCRIPTION OF THE INVENTION The device object of the invention has two independent elements or modules, a front module that is the user interface and a built-in module that connects directly to the load, which are independent, but both modules are equipped with 10 anchoring means of the frontal module in the recessed module; providing the device with the ability to have interchangeable modules, mainly the front ones, being able to change functionalities and forms of control easily. The built-in module that connects directly to the load has the 15 power cables connected physically and is also responsible for providing electrical power to the front module. The front module acts as an interface with the user and is the physical means by which the user accesses the information indicated by it and / or the load control. twenty Both elements are totally independent and have their own enclosure, which allows their installation independently and interchangeably with other elements of the device. 25 In a preferred embodiment, the built-in module is responsible for activating / deactivating the load as indicated by the user interface through a bus that interconnects them. While the frontal module that acts as an interface with the user is the physical means by which the user accesses the control of the load, communicating this through the bus that interconnects it with the direct controller of the load and indicating how he wants it to be Behave the load. 30 In another preferred embodiment of the invention, the built-in module is an auxiliary module and does not comprise any control unit, serving only as the power supply to the front module. This auxiliary built-in module does not establish communication with the front module. In this embodiment, the recessed module is installed embedded in a wall or any another location where electrical power is received. In another preferred embodiment, in which there is communication between both modules, front and recessed, the recessed module is installed recessed in the location where it is desired to act on the load in the same way as is done with traditional switch-type actuation systems to two wires, while the frontal module is in itself the key that the user activates in order to order the load to be activated / deactivated or regulates its intensity. The frontal module allows the scalability of the set since depending on the version of 10 software that it has, or if it integrates the wireless communication medium, it gives an option to a range of different configurations of the same indicator, communications medium, controller of the load ... just by changing the key accessed by the user. In the embodiments in which there is communication between both modules, front and recessed, the connectivity between the two is carried out by means of the implementation of at least two connections, on the one hand, pogo-pins preferably use two power pins and Two signal pins that provide reliability and guarantee of not suffering mechanical stress during installation and uninstallation with the recessed module, by providing a degree of freedom in movement, making it stable against mechanical stress. twenty In the embodiment in which the recessed module does not establish communications, the signal pins have only the mechanical connection function between the front module and the recessed module. In this embodiment the power pins, as in the other embodiments, are responsible for providing electrical power to the front module. 25 In another preferred embodiment of the invention, both the front module and the recessed module have been provided with respective microprocessors that can communicate with each other. For this, a bidirectional communication bus is established, preferably based on a connector that makes use of the I2C protocol, through which they can exchange information related to the type of device that can be controlled, firmware / hardware version, state of the load and configuration to apply in the load. In this regard, it should be noted that the device may be provided with at least one of the following: a display that is a means of data visualization, a user interface, data input means, an on / off switch, an actuator intended drive relays and a regulator of intensity; Likewise, the front module can be additionally equipped with at least one additional sensor intended to capture data that is selected from the group consisting of: temperature, gas, humidity, fire, detection of people, seismic, auditory, barometric, air quality , and CO2. 5 In order for the interaction between both modules to be effective, the assignment of pogo-pin signals in all module variants (with and without a process unit or microcontroller) follows a determined method of mechanical connection so that all are fixed together. the same way and therefore be interchangeable. 10 In another embodiment, the rear part of the front module that joins the recessed module has fixing means that allow pivoting and tilting when joined, generating the necessary contacts between the modules. 15 DESCRIPTION OF THE DRAWINGS To complement the description that is being made and in order to help a better understanding of the characteristics of the invention, in accordance with a preferred example of practical realization thereof, an interplay of said description is accompanied by a set of Drawings where the following has been illustrated and not limited to: Figure 1.- Schematically shows a perspective view of the set of elements that make up the preferred embodiment of the device for indication, communication, power supply, measurement and / or control of facilities. Figure 2.- Shows a diagram of the configuration of the preferred embodiment of the frontal module of the device for indication, communication, power, measurement and / or control of facilities. 30 PREFERRED EMBODIMENT OF THE INVENTION The device object of the invention, as shown in Figure 1, corresponds to a device (1) for indicating, communicating and / or controlling facilities such as electrical installations, especially in fixed electrical installations; device (1) typically comprising a front module (2), which is the interface with the user and which in turn can comprise a button (21) associated with a switch mechanism (22), and a built-in module (3) that It is the direct controller of the load and is intended to receive the front module (2), said recessed module (3) comprising a wiring for connection to the power supply network and an electronic control associated with applications and electrical installations, especially in fixed electrical installations. The front module (2) comprises a process unit (25) to which a power connector (23) is connected, comprises at least two connecting pins distributed in such a way that a positive pin is in the front module ( 2) and a negative pin is in the recessed module (3) or vice versa and is intended to establish an electrical supply connection to the front module (2) from the recessed module (3), and a communication connector (24) intended to establish a connection of 15 data with the built-in module (3). In a preferred embodiment, the front module (2) additionally comprises at least one data input means (26) that can comprise a sensor or a series of sensors. Additionally, the front module comprises a control unit that causes a control 20 depending on the signals of the at least one data input means (26). Alternatively, an analog switch (27) connected between the process unit (25) and the data input means (26) can be arranged in the front module (2). In another preferred embodiment, the front module (2) further comprises wireless communication means (31) intended to establish wireless communications with at least one of: the built-in module (3), a data network and another device. The wireless communication medium (31) uses a communication protocol Z-Wave, WiFi, ZigBee, Bluetooth, ANT, WiMAX or proprietary RF protocol 343MHz, 868MHz, 915MHz, 30 27MHz, 2.4GHz, 5GHz ... or of any other type. In those situations where it is required, the front module (2) may additionally have lighting means (28) associated with the data input means (26) and / or the process unit (25) as well as some signaling means acoustics (29) associated to the process unit (25) and intended to emit acoustic signals based on commands generated by said process unit (25). While the built-in module (3) that is intended to be installed on a similar wall or 5 and receive the front module (2), includes a wiring for connection to the power grid and a control electronics associated with applications and electrical installations , therefore it includes contacts (Phase, Neutral, Earth Socket), screw emborminers (Phase, Neutral, Earth Socket), at least one helix shutter acting as a safety element that prevents the insertion of conductive foreign bodies), a contact-holder housing 10 (includes part of the insulation partitions or skirts), contact cover housing (includes part of the insulation partitions or skirts) and the electronic part (power / supply); additionally it can comprise a microprocessor similar or equal to the microprocessor of the process unit (25) of the front module (2) and which can communicate with at least the latter. fifteen The union of both modules (2,3) is carried out by means of temporary fixing means destined to temporarily fix the frontal module (2) in the recessed module (3), preferably a collapsible union that allows the correct assembly and contact of the different components that require such contact, such as the connection of electrical supply to the front module (2) from the built-in module (3), or the communication connector (24) intended to establish a data connection with the module built-in (3). In a possible particular embodiment of the invention the front module also comprises a button (21) associated with a switch mechanism (22) that acts as a means of switching off and on; while in a preferred embodiment the front module (2) is a display, which acts as a means of data input (26) that can comprise a series of sensors and one or more indicators, an auxiliary device or any other device. In a preferred embodiment, the recessed module (3) has a configuration corresponding to at least one of the following applications: a switch, a light intensity regulator, shutter regulator and / or an auxiliary used as a power supply for the module front (2). In a preferred embodiment of the device (1), any of the front modules (2) of the above described embodiments is replaceable by any other of these same embodiments and also any of the embodiments of the built-in module (3) is replaceable by another obtaining asl The desired interchangeability. 5 In a preferred embodiment, the device (1) as a result of the temporary or permanent union between the front module (2) and the built-in module (3) can perform one or more functions that are classified as basic, such as off / on. , raise / lower, regulation; and advanced that in turn can be classified as 10 temperature sensors, gas, humidity, fire, people detection, seismic, auditory, barometric, air quality, CO2; and in indication functions such as configuration functions, information, weather station, digital payment systems, any imaginable digital function (group programming, scenes, environment control, sound, etc.) fifteen In a possible embodiment of the device (1) of the invention, it is implemented in a luminaire, in such a way that it configures a system of regulation of intensity of light known by its English nomenclature "dimmer", that is, the device (1 ) regulates the intensity of the light by proximity and by displacement of an element, such as the finger of a user, on the surface of a key and turns the light on and off with a starting point at any light intensity; this is achieved since there is at least one sensor that is located on a surface of the key that acts as a means of data entry (26) such that the sensor can capture contact data of a user with said surface 25 For this, the data input means (26) are defined as a key or button in which each point in the length of the key is associated with a light intensity that is indicated both when the light is on and off. The displacement of the element in the longitudinal extension of the key causes the indication of a greater intensity of light 30 in one of the directions and the decrease thereof in the opposite direction, this function can occur both with the light on and off and It is shown by an indicator that is located along the bottom edge of the front of the key. In this way, by pressing on the front of the key, the light is switched on and off, by moving the element on the front of the key, the intensity of the light is increased and decreased. The area of actuation of both the intensity control and the on and off is the entire surface of the key in this way 5 it is achieved that the configuration of the elements of the device (1) allows its integration into a key with maximum actuation area and that in an embodiment of the object of the invention an integration of several elements is carried out in the data input means (26). 10 The data input means (26) comprise a series of sensors that can be associated with a displacement ("slider" by its analogue linear English nomenclature) by at least two capacitive sensors.This architecture allows obtaining a range of values in linear appearance and defined by the resolution of the Analog-Digital converters integrated in the controller that operates the process unit (25) .This feature offers the user to control with his finger the "slider" a sensation equivalent to that of a classic potentiometer. The size of the sensors is given by the maximum area available on the surface of the front module (3), considering the necessary guarding limitations to guarantee the electrical safety of the device (1) as well as the minimum guard with an antenna (311) integrated into it that offers the best adaptation to its environment. The sensors as well as the antenna (311) can be housed in a polyamide circuit of thickness 70um dedicated solely to that function, said circuit can be located between the user's contact surface and an enclosure or housing of the front module (2) in such a way that the connectivity between this circuit and that which contains all the electronics of the front module (2) is carried out by means of strapping. In this exemplary embodiment, an integration of the sensors has been carried out together with the plastic elements of the envelope, causing them to perform electronic functions as well as structural and aesthetic ones. On the internal surface of a bezel of the front module (2) a micron PCB circuit is integrated by printing or gluing, so that this besides being an aesthetic element of the front module (2) is used as electronic support. For example, in the case of this embodiment of a "dimmer", a PCB including sensors for the control of light intensity and the antenna (311), will be printed or pasted on the back of the bezel of the key ie the sensors are located on a surface of the media data input (26) such that the sensors can capture contact data of a user with said surface. The recessed module (3) integrates the mechanical elements and the electrical elements so that the device (1) once mounted both modules (2,3) can be completely embedded in the wall. The electrical components include a 10-on-off system that can comprise a relay synchronized with the power supply and management of the on / off control via the microcontroller that manages communications and a communication unit adapted to establish wireless communications, where the unit of communication destined to establish communications with at least one of: the frontal module (2), a data network and another device (1) and that 15 allows sending and receiving data with the frontal module (2) and / or with others devices (1) when it is a wireless communication unit since this communication unit is selected between physical connectors and wireless connection elements according to WiFi or Z-Wave protocols having the antenna (311) associated with them and located in the front module (2). twenty In a possible alternative embodiment of the device (1) of the invention, the application has to be the control of a blind, the device (1) being characterized in that the recessed module (3) comprises associated with the control electronics: at least a relay and a limit switch. 25 In a possible even more alternative embodiment of the device (1) of the invention, the application has to control a luminaire, the device (1) being characterized in that the recessed module (3) comprises associated with the control electronics: a short circuit protection unit, a power measurement unit, a 30 voltage measurement unit and a current measurement unit. In any of the possible embodiments of the device (1) of the invention, the cover of the plug has plastic skirts that smooth the elements of the metal dust (carbon) circuit that is generated with the plugging and unplugging; also the module The front (2) can additionally comprise autonomous feeding means (30) controlled by the process unit (25) and with access to the power connector (23) for loading.
权利要求:
Claims (14) [1] 5 10 fifteen twenty 25 30 R E I V I N D I C A C I O N E S 1. Device (1) for indication, communication, power supply, measurement and / or control of facilities comprising: • a front module (2), and • a built-in module (3) intended to receive the front module (2) and comprising an electrical network connection wiring for power supply, the device (1) being characterized in that it comprises: • temporary fixing means intended to temporarily fix the front module (2) in the recessed module (3), and because • the front module (2) comprises a process unit (25) with which they are associated: or a power connector (23) intended to establish an electrical supply connection with an electrical supply connector of the front module (29) from the recessed module (3), and or a communication connector (24) intended to establish a data connection with at least the recessed module (3). [2] 2. Device (1) for indication, communication, electric power, measurement and / or control according to revindication 1 characterized in that the power connector (23) comprises pin type contacts intended to provide electrical power to the front module (2) through its connection . [3] 3. Device (1) for indication, communication, power supply, measurement and / or control according to revindication 2 characterized in that the recessed module (3) additionally comprises: • a control unit adapted to control facilities, and • a communication unit designed to establish communications with at least one of: the front module (2), a data network and another device (1). [4] 4. Device (1) for indication, communication, power, measurement and / or control according to revindication 1 characterized in that the front module (2) comprises data input means (26) comprising at least one sensor. 5 10 fifteen twenty 25 [5] 5. Device (1) for indication, communication, power supply, measurement and / or control according to revindication 4 where the at least one sensor is located on a surface of at least one data input means (26) in such a way that The sensor can capture contact data of a user with said surface. [6] 6. Device (1) for indication, communication, electric power, measurement and / or control according to any one of claims 1 to 5, characterized in that the front module (2) additionally comprises wireless communication means (31) associated with a antenna (311) intended to establish communications with at least one of: the built-in module (3), a data network and another device (1). [7] 7. Device (1) for indication, communication, electric power, measurement and / or control according to claim 1 characterized in that the power connector (23) comprises at least two connection pins distributed in such a way that a positive pin is in the front module (2) and a negative pin is in the recessed module (3) or vice versa. [8] 8. Device (1) for indication, communication, power supply, measurement and / or control according to revindication 1 characterized in that the front module (2) additionally comprises an analog switch (27) connected between the process unit (25) and the minus a means of data entry (26). [9] 9. Device (1) for indication, communication, electrical supply, measurement and / or control according to any one of the preceding claims characterized in that the front module (2) additionally comprises autonomous feeding means (30) controlled by the process unit ( 25) and with access to the power connector (23) for charging. [10] 10. Device (1) for indication, communication, electric power, measurement and / or control according to any one of the preceding claims where the application is the control of a blind, the device (1) characterized in that the recessed module (3) It includes associated to the control electronics at least one relay and a limit switch. 5 10 fifteen twenty 25 [11] 11. Device (1) indication, communication, electrical supply, measurement and / or control according to any one of claims 1 to 9 where the application is the control of a luminaire, the device (1) being characterized in that the recessed module (3 ) includes associated with the control electronics: a short-circuit protection unit, a power measurement unit, a voltage measurement unit and a current measurement unit. [12] 12. Device (1) for indication, communication, power supply, measurement and / or control according to any one of the preceding claims characterized in that the front module (2) comprises at least one of the following: switch on / off, actuator intended to operate relays and intensity regulator. [13] 13. Device (1) for indication, communication, power supply, measurement and / or control according to any one of the preceding claims characterized in that the front module (2) comprises at least one additional sensor intended to capture data that is selected from entity the group consisting of: temperature, gas, humidity, fire, detection of people, seismic, auditory, barometric, air quality, and CO2. [14] 14. Device (1) for indication, communication, electric power, measurement and / or control according to any one of the preceding claims characterized in that the means of temporary fixing, intended to fix the modules (2,3), comprise a folding or pivoting fixing such that at least electrical contact is established between the modules (2,3) by bringing the power connector (23) and the power supply connector of the front module (29) into electrical contact.
类似技术:
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同族专利:
公开号 | 公开日 WO2017207851A1|2017-12-07| ES2586596B1|2017-07-21|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 DE102011008506B4|2011-01-13|2014-02-13|Abb Ag|Electrical / Electronic Flush-mounted Installation Device of House and Building Systems engineering or home communication technology| DE102011108210A1|2011-07-21|2013-01-24|Abb Ag|Electronic installation device for determining and displaying a temperature condition| US20150256355A1|2014-03-07|2015-09-10|Robert J. Pera|Wall-mounted interactive sensing and audio-visual node devices for networked living and work spaces|
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申请号 | 申请日 | 专利标题 ES201630746A|ES2586596B1|2016-06-03|2016-06-03|DEVICE FOR INDICATION, COMMUNICATION, POWER SUPPLY,MEASUREMENT AND / OR CONTROL OF FACILITIES|ES201630746A| ES2586596B1|2016-06-03|2016-06-03|DEVICE FOR INDICATION, COMMUNICATION, POWER SUPPLY,MEASUREMENT AND / OR CONTROL OF FACILITIES| PCT/ES2017/070372| WO2017207851A1|2016-06-03|2017-05-30|Device for display, communication, power supply, measuring and/or control of installations| 相关专利
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