The present application claims priority to and incorporates by reference the entire contents of Japanese Patent Application No. 2016-010077 filed in Japan on Jan. 21, 2016.
1. Field of the Invention
The present invention relates to an electrical equipment module.
2. Description of the Related Art
As a conventional electrical equipment module applied to vehicles, for example, Japanese Patent Application Laid-open No. 2003-146150 discloses an instrument panel wire harness device that includes: an instrument panel wire harness arranged in an instrument panel and having a standard circuit having no effect on vehicle grade and variation and a standard multipoint connection section; and a plurality of submodules connected to the instrument panel wire harness and having a branch line harness routed according to vehicle grade and variation and routed and terminated.
The instrument panel wire harness device described in Japanese Patent Application Laid-open No. 2003-146150 still has some room for improvement, for example, in mountability.
In view of the above-described circumstances, an object of the present invention is to provide an electrical equipment module capable of improving mountability into vehicles.
In order to achieve the above mentioned object, an electrical equipment module according to one aspect of the present invention includes a main line module that includes a width direction extending member mounted in a vehicle and extending along a vehicle width direction of the vehicle, and a mounting main line section provided in the width direction extending member and including a circuit body mounted with an electronic component; and a submodule that is connected to the main line module and to which power is distributed via the circuit body.
According to another aspect of the present invention, in the electrical equipment module, it is possible to configure that the width direction extending member is configured with an air-conditioning duct that has a hollow shape and inside which air is allowed to be circulated.
According to still another aspect of the present invention, in the electrical equipment module, it is possible to configure that the width direction extending member is configured with a support member for supporting an interior member of the vehicle.
According to still another aspect of the present invention, in the electrical equipment module, it is possible to configure that the width direction extending member is configured with a back plane bus base formed of a resin material.
According to still another aspect of the present invention, in the electrical equipment module, it is possible to configure that the circuit body includes a printed circuit body printed on a surface of the width direction extending member.
According to still another aspect of the present invention, in the electrical equipment module, it is possible to further include that a communication control connector configured to electrically connect the submodule and the mounting main line section, to perform communication between the submodule and the mounting main line section, and to control a device included in the submodule.
According to still another aspect of the present invention, in the electrical equipment module, it is possible to configure that the electronic component includes at least one of a connection functional component for connection to the submodule, a power supply distribution functional component for distributing power to the submodule, a control functional component for controlling a device mounted in the vehicle, a power supply backup functional component for backing up a power supply mounted in the vehicle, and a wireless communication functional component for performing wireless communication.
According to still another aspect of the present invention, in the electrical equipment module, it is possible to configure that the main line module is arranged inside an instrument panel of the vehicle, and the submodule includes an instrument panel display module having a display configured to cover the instrument panel and be capable of visually displaying information.
The above and other objects, features, advantages and technical and industrial significance of this invention will be better understood by reading the following detailed description of presently preferred embodiments of the invention, when considered in connection with the accompanying drawings.
Embodiments according to the present invention will be described below in detail based on the drawings. It should be noted that the invention is not limited by the embodiments. Besides, constituent elements in the following embodiments include those replaceable and easy to conceive by persons skilled in the art, or those substantially equivalent thereto.
The electrical equipment module 1 according to the present embodiment illustrated in
Here, in the vehicle V to which the electrical equipment module 1 is applied, the “vehicle longitudinal direction X” typically corresponds to the length direction of the vehicle V, and more specifically, corresponds to a direction along the forward and backward movement direction of the vehicle V. The “vehicle width direction Y” typically corresponds to the width direction of the vehicle V, and more specifically, corresponds to the vehicle right and left direction of the vehicle V. The “vehicle height direction Z” typically corresponds to the vehicle height direction of the vehicle V. The vehicle longitudinal direction X serving as a first direction, the vehicle width direction Y serving as a second direction, and the vehicle height direction Z serving as a third direction intersect one another at right angles, and in a state in which the vehicle V is located in a horizontal plane, the vehicle longitudinal direction X and the vehicle width direction Y are along the horizontal direction, and the vehicle height direction Z is along the vertical direction. Furthermore, in the following description, in the vehicle longitudinal direction X, a side to which the vehicle V moves forward and a side to which the vehicle V moves backward are sometimes expressed as “forward” and “backward”, respectively. In the vehicle width direction Y, the left side when facing forward in the vehicle longitudinal direction X (the left side in
There will be described, as an example, a case in which the vehicle V adopting the electrical equipment module 1 according to the present embodiment is a vehicle capable of automatic driving that is advanced enough not to require steering operation by a driver. In the description herein, the vehicle V is considered as a non-reinforced vehicle that is not equipped with a structural reinforcing member, what is called a reinforcement, extending along the vehicle width direction Y inside the instrument panel IP and supporting a steering ST on the body BO. For example, the vehicle V has what is called a steering-by-wire system in which steering ST has no mechanical connection with steering wheels, and the steering ST is supported on the floor of the body BO by a support arm AR. The vehicle V may be configured such that, for example, the steering ST is allowed to be accommodated in a predetermined accommodation position together with various pedals at the time of, for example, automatic driving, which does not require operations by a driver. It should be noted that, in the description herein, the electrical equipment module 1 is applied to a non-reinforced vehicle V, but not limited to this, and may be applied to a vehicle having a reinforcement.
The electrical equipment module 1 according to the present embodiment is configured such that, after various kinds of electronic components 24 are mounted in a main line module 2 extending along the vehicle width direction Y inside the instrument panel IP, various kinds of submodules 3 are connected to the main line module 2 so as to improve mountability into the vehicle V. Hereinafter, the configuration of the electrical equipment module 1 will be described in detail with reference to the drawings.
Specifically, the electrical equipment module 1 includes a main line module 2, a submodule 3, and a communication control connector 4. The main line module 2 is an in-instrument-panel structural module extending along the vehicle width direction Y inside an instrument panel IP, more specifically, inside an accommodation space section SP. The main line module 2 includes a width direction extending member 21 and a mounting main line section 22 provided in the width direction extending member 21.
The width direction extending member 21 is a member mounted in the vehicle V and extending along the vehicle width direction Y inside the instrument panel IP, more specifically, inside the accommodation space section SP. The width direction extending member 21 according to the present embodiment is configured with an air-conditioning duct 23 that has a hollow shape and inside which air is allowed to be circulated (refer to
The mounting main line section 22 is provided in the width direction extending member 21, has a circuit body 25 on which the electronic components 24 are mounted, and is connected to the later-described submodule 3. The mounting main line section 22 according to the present embodiment is configured separately from the air-conditioning duct 23 constituting the width direction extending member 21, and placed on the upper surface of the air-conditioning duct 23 in the vehicle height direction Z. Here, the mounting main line section 22 has a substrate 26 placed on the upper surface of the air-conditioning duct 23 in the vehicle height direction Z, and the circuit body 25 is provided on the substrate 26, and the electronic components 24 are mounted so as to be connected to the circuit body 25, whereby the mounting main line section 22 becomes a substrate as a whole. As the mounting main line section 22, use may be made of what is called a printed circuit board (PCB) obtained in such a manner that, on the surface (mounting surface) of a substrate 26 formed of an insulating resin material, such as epoxy resin, glass epoxy resin, paper epoxy resin, or ceramic, a wiring pattern (print pattern) serving as the circuit body 25 is printed by a conductive material such as copper to be a printed circuit body; or use may be made of a busbar plate obtained in such a manner that a busbar serving as a circuit body 25 formed of a conductive metal material is coated with an insulating resin material to form a substrate 26. The circuit body 25 constitutes a circuit that electrically connects a plurality of the electronic components 24 and has a required function. In the embodiment illustrated in
The mounting main line section 22 is configured with the electronic components 24, the circuit body 25, and the substrate 26 so as to become a substrate as a whole, having an integral structure into which a function as a main line connected to the submodules 3, a function of distributing power to the submodules 3 connected to the main line, and other functions are integrated. That is, it can be said that the mounting main line section 22 is configured such that the functions of what is called an electrical connection box, such as a junction block, a fuse box, or a relay box, for distributing electric power supplied from a power source to various devices connected to the mounting main line section 22 are incorporated into a main line. Furthermore, the mounting main line section 22 may be configured with the electronic components 24, the circuit body 25, and the substrate 26 so as to become a substrate as a whole, having an integral structure into which functions as various electronic control units (ECUs) serving as control sections for controlling devices mounted in the vehicle V, a power supply backup function of backing up a power supply mounted in the vehicle V, for example, a generator such as an alternator and a battery, a function of performing wireless communications, and other functions are incorporated. That is, it can be said that the mounting main line section 22 is an electronic component unit configured such that, using the electronic components 24, the circuit body 25, and the substrate 26, a main line connected with the submodules 3 is made into a substrate, thereby having no wire harness (no electric wire), and, into the main line in the form of a substrate, various functions, such as power supply distribution, control of various sections, power supply backup, and wireless communications, are integrated.
The electronic components 24 mounted in the mounting main line section 22 are various elements for performing the above-described various functions, and including various functional components. The electronic components 24 include at least one of a connection functional component for connection to the submodule 3 and other devices, a power supply distribution functional component for distributing power to the submodule 3, a control functional component for controlling devices mounted in the vehicle V, a power supply backup functional component for backing up a power supply mounted in the vehicle V, and a wireless communication functional component for performing wireless communications. Examples of the connection functional component include various types of connectors, and external connection units such as an I/O port. Examples of the power supply distribution functional component include a relay, a fuse, a resistor, a transistor, intelligent power switch (IPS), and a power supply control box obtained by unitizing these. Examples of the control functional component include electronic control units, and an ECU, including a microcomputer. The power supply backup functional component is, in other words, a distributed power supply functional component, such as a condenser, a capacitor, a secondary battery unit, or a sheet-type thin battery. Examples of the wireless communication functional component include an antenna, and transmission and reception units having various systems, for example, near field communication (NFC), such as W-LAN, Wifi (registered trademark), and Bluetooth (registered trademark). The antenna may receive ETC, GPS, TEL, or VICS (registered trademark) information. Furthermore, the antenna may be configured, for example, by forming an antenna pattern on the circuit body 25 printed as a printed circuit body on the surface of the substrate 26. This allows the number of constituent components to be reduced. Furthermore, the antenna may be configured, for example, by unitizing a casing and an antenna body in the case where the circuit body 25 is mounted in a region in which the circuit body 25 is hard to print as a printed circuit body.
In the embodiment illustrated in
Incidentally, the mounting main line section 22 constituting the main line module 2 may be electrically connected to other vehicle-mounted modules in an engine compartment located outside a cabin across the wall surface of the body BO on the front side in the vehicle longitudinal direction X from the cabin. In this case, as illustrated in
The submodule 3 is configured such that various devices are electrically connected via a routing circuit body such as an electric wire or a busbar and modularized to form a high-density and high-efficient circuit according to an arrangement area in the vehicle V. The submodule 3 is connected to the main line module 2, whereby power is distributed to the submodule 3 via at least the circuit body 25 of the mounting main line section 22. The submodule 3 is connected to the mounting main line section 22, whereby power supply and signal communications between the submodule 3 and various devices are performed via the electronic components 24 and the circuit body 25. The submodule 3 is typically connected to the connection functional component mounted as an electronic component 24 in the mounting main line section 22 via a connector (for example, the later-described communication control connector 4) or a routing circuit body 31 (refer to
The steering module 3A includes various devices, such as various switches provided in the steering ST and operating audios, multimedia, and air conditioning equipment, and various sensors for detecting, for example, steering angle of the steering ST. The steering module 3A is connected to the connection functional component mounted as an electronic component 24 in the mounting main line section 22 to perform power supply and signal communications. The steering module 3A may perform some of the signal communications by various types of wireless communications via the wireless communication functional component mounted as an electronic component 24 in the mounting main line section 22.
The console module 3B includes various devices, such as a connection device to external devices, such as 100V receptacle, 12V socket, USB socket, and HDMI (registered trademark) socket. Furthermore, the console module 3B may include various devices, such as various types of transmission and reception units capable of wireless communications with various types of non-contact power supply devices capable of contactless-charging drag-in terminal devices, such as smart phones, tablets, and game machines, and wireless communications with such drag-in terminal devices. The console module 3B is connected to the connection functional component mounted as an electronic component 24 in the mounting main line section 22 to perform power supply and signal communications. The console module 3B may perform some of the signal communications by various types of wireless communications via the wireless communication functional component mounted as an electronic component 24 in the mounting main line section 22.
The instrument panel display module 3C includes various devices, such as a display 32 configured to cover the instrument panel IP and allow a visual display of information (refer to
Incidentally, in the instrument panel display module 3C, an antenna for receiving, for example, ETC, GPS, TEL, or VICS (registered trademark) information may be configured by forming an antenna pattern in a printed circuit body printed on the surface of the display 32. The instrument panel display module 3C including the antenna may be connected to the main line module 2. In the description above, this electrical equipment module 1 is configured such that the display 32 constituting the instrument panel IP is provided so as to cover the approximate entirety of the instrument panel IP in a range visible from a driver's seat or the like. However, in this case, in a region of the instrument panel IP which region is not provided with the display 32, for example, in a lower end portion of the instrument panel IP in the vehicle height direction Z, an opening-and-closing section for work IPW (refer to
The communication control connector 4 is a connection functional component for electrically connecting the submodule 3 and the mounting main line section 22 of the main line module 2. More specifically, the communication control connector 4 electrically connects the submodule 3 and the mounting main line section 22 of the main line module 2 to perform communications between the submodule 3 and the mounting main line section 22 of the main line module 2 and to control devices included in the submodule 3. As illustrated in
The above-described electrical equipment module 1 includes: the main line module 2 having the width direction extending member 21 mounted in a vehicle V and extending along the vehicle width direction Y of the vehicle V, and the mounting main line section 22 provided in the width direction extending member 21 and including the circuit body 25 mounted with the electronic components 24; and the submodule 3 that is connected to the main line module 2 and to which power is distributed via the circuit body 25.
Thus, in the electrical equipment module 1, the main line module 2 is configured by providing the width direction extending member 21 with the mounting main line section 22 having an integral structure obtained by integrating a function as a main line connected to the submodule 3 and a function of power supply distribution, by the electronic components 24 and the circuit body 25. The main line module 2 and the submodule 3 are mounted to the vehicle V and connected to each other, whereby the electrical equipment module 1 can be mounted to the vehicle V. As a result, the electrical equipment module 1 allows the work of main line routing or the like to be reduced and mounting work to be made more efficient, thereby improving the mountability to the vehicle V. Furthermore, in the electrical equipment module 1, various electronic components 24 are mounted on the mounting main line section 22 of the main line module 2, whereby the main line module 2 has a simplified form and a more compact and space-saving configuration, and thus, the workability of assembly can be improved and the number of constituent components can be reduced, whereby manufacturing efficiency can be improved.
Furthermore, in the foregoing electrical equipment module 1, the width direction extending member 21 is configured with the air-conditioning duct 23 that has a hollow shape and inside which air is allowed to be circulated. Thus, in the electrical equipment module 1, the provision of the mounting main line section 22 to the air-conditioning duct 23 configured as the width direction extending member 21 allows the main line module 2 to be configured by making use of the air-conditioning duct 23, which is a structure typically mounted to the vehicle V, and accordingly, the number of constituent components can be reduced. Thus, the electrical equipment module 1 allows, for example, a further improvement in the mountability to the vehicle V and a reduction in manufacturing costs.
Furthermore, in the foregoing electrical equipment module 1, the width direction extending member 21 is configured with the air-conditioning duct 23 doubling as a support member for supporting the instrument panel IP serving as the interior member of the vehicle V. Thus, in the electrical equipment module 1, the provision of the mounting main line section 22 to the air-conditioning duct 23 configured as the width direction extending member 21 allows the main line module 2 to be configured by making use of the air-conditioning duct 23 doubling as a support member for supporting the instrument panel IP, and accordingly, the number of constituent components can be reduced. In other words, this electrical equipment module 1 allows one member to perform all of the functions of the air-conditioning duct 23, a support member of the instrument panel IP, and the width direction extending member 21. Accordingly, also in terms of this, the number of constituent components can be reduced. Thus, the electrical equipment module 1 allows, for example, a further improvement in the mountability to the vehicle V and a reduction in manufacturing costs.
Furthermore, the foregoing electrical equipment module 1 includes the communication control connector 4 configured to electrically connect the submodule 3 and the mounting main line section 22, perform communication between the submodule 3 and the mounting main line section 22, and control devices included in the submodule 3. Thus, the electrical equipment module 1 allows communication between the submodule 3 and the mounting main line section 22 and the control of the devices included in the submodule 3 to be integrally performed by the communication control connector 4 without individually connecting the devices included in the submodule 3 to the mounting main line section 22. Accordingly, the work of routing or the like can be further reduced and the mountability to the vehicle V can be further improved.
Furthermore, in the foregoing electrical equipment module 1, the electronic components 24 include at least one of a connection functional component for connection to the submodule 3, a power supply distribution functional component for distributing power to the submodule 3, a control functional component for controlling devices mounted in the vehicle V, a power supply backup functional component for backing up a power supply mounted in the vehicle V, and a wireless communication functional component for performing wireless communication. Thus, the electrical equipment module 1 allows the main line module 2 to be configured with the mounting main line section 22 in which, by the electronic components 24 and the circuit body 25, there are integrated various functions such as the function of a main line to which the submodule 3 is connected and the function of power supply distribution, in addition, the function of controlling devices mounted in the vehicle V, the power supply backup function, and the wireless communication function. Therefore, the mounting of components related to these functions to the vehicle V can be collectively carried out by mounting the main line module 2 to the vehicle V. As a result, the mountability of the electrical equipment module 1 into the vehicle V can be further improved.
Furthermore, in the foregoing electrical equipment module 1, the main line module 2 is arranged inside the instrument panel IP of the vehicle V, and the submodule 3 includes the instrument panel display module 3C having a display 32 configured to cover the instrument panel IP and be capable of a visual display of information. Thus, the electrical equipment module 1 can visually display various information via the display 32 configured to cover the instrument panel IP, and in addition, the mountability of the electrical equipment module 1 including the instrument panel display module 3C to the vehicle V can be improved.
An electrical equipment module 201 according to the present embodiment illustrated in
The width direction extending member 221 is a member mounted in a vehicle V and extending along the vehicle width direction Y inside the instrument panel IP, more specifically, inside an accommodation space section SP. The width direction extending member 221 is configured with a back plane bus base 223 formed of an insulating resin material. In the above description, the width direction extending member 21 (refer to
Incidentally, the back plane bus base 223 constituting the width direction extending member 221 according to the present embodiment also function as an accommodation member for accommodating an air-conditioning duct AD between the back plane bus base 223 and the wall surface of the body BO on the front side in the vehicle longitudinal direction X. The air-conditioning duct AD has approximately the same configuration as the foregoing back plane bus base 223 although differing therefrom in shape, and is a member that is formed in a hollow shape and inside which air is allowed to be circulated.
The mounting main line section 222 is provided in the width direction extending member 221, includes a circuit body 225 mounted with the electronic components 24, and is connected to the submodule 3. The mounting main line section 222 according to the present embodiment is configured in a surface (typically, the largest surface) of the rectangular main body section 223a of the back plane bus base 223 constituting the width direction extending member 221, the surface facing the rear side in the vehicle longitudinal direction X, in other words, a surface thereof opposite to the surface provided with the plurality of bracket sections 223b. In the mounting main line section 222, the surface of the rectangular main body section 223a which surface is opposite to the surface provided with the plurality of bracket sections 223b functions as a mounting surface 222a for the electronic components 24. Here, the circuit body 225 is provided in the mounting surface 222a, and the electronic components 24 are mounted so as to be connected to the circuit body 225, whereby the mounting main line section 222 becomes a back plane bus as a whole. In the mounting main line section 222 according to the present embodiment, on a surface of the width direction extending member 221, more specifically, on the mounting surface 222a of the rectangular main body section 223a of the back plane bus base 223 constituting the width direction extending member 221, a wiring pattern (print pattern) serving as the circuit body 225 is printed using a conductive material such as copper to form a printed circuit body. In other words, here, the circuit body 225 is a printed circuit body printed on the mounting surface 222a, and the electronic components 24 are mounted thereon via through holes or the like. The circuit body 225 electrically connects a plurality of the electronic components 24, and constitutes a circuit having a required function.
The mounting main line section 222 is configured with the electronic components 24, the circuit body 225, and the back plane bus base 223 so as to become a back plane bus as a whole, having an integral structure into which a function of a main line to which the submodule 3 is connected, a function of distributing power to the submodule 3 connected to the main line, and other functions are integrated. In other words, it can be said that the mounting main line section 222 is configured such that the functions of what is called an electrical connection box are incorporated into a main line. Furthermore, the mounting main line section 222 may be configured with the electronic components 24, the circuit body 225, and the back plane bus base 223 so as to become a back plane bus as a whole, having an integral structure into which functions of various ECUs, a power supply backup function, a wireless communication function, and other functions are integrated. In other words, it can be said that the mounting main line section 222 is an electronic component unit configured such that a main line to be connected to the submodule 3 is configured with the electronic components 24, the circuit body 225, and the back plane bus base 223 so as to become a back plane bus, thereby having no wire harness (no electric wire), and, into the main line in the form of a back plane bus, various functions, such as power supply distribution, control of various sections, power supply backup, and wireless communication, are integrated. The main line module 202 according to the present embodiment is configured such that the circuit body 225 is printed on a surface of the back plane bus base 223 constituting the width direction extending member 221 to be configured as a printed circuit body, whereby the width direction extending member 221 and the mounting main line section 222 can be integrally configured.
The electronic components 24 mounted in the mounting main line section 222 are various elements for performing the foregoing various functions, and including various functional components. As is the case with the above, the electronic components 24 include at least one of a connection functional component, a power supply distribution functional component, a power supply backup functional component, and a wireless communication functional component.
Here, more specifically, the connection structure section 24e according to the present embodiment includes a protruding section 24ea protruding from the mounting surface 222a of the back plane bus base 223 constituting the mounting main line section 222, as illustrated in
Incidentally, in the electrical equipment module 201, a common connector may be applied in place of the foregoing connection structure section 24e. In this case, the connector can be configured so as to allow the electronic components 24 to be suitably added as necessary at a reduced manufacturing cost, for example, by providing many connectors having a type in common.
As is the case with the foregoing mounting main line section 22, the mounting main line section 222 constituting the main line module 202 may be electrically connected to other vehicle-mounted modules in an engine compartment. In this case, as illustrated in
In the foregoing electrical equipment module 201, the main line module 202 is configured by providing the width direction extending member 221 with the mounting main line section 222 having an integral structure obtained by integrating a function as a main line connected to the submodule 3 and a function of power supply distribution, by the electronic components 24 and the circuit body 225. Furthermore, the main line module 202 and the submodule 3 are mounted to the vehicle V and connected to each other, whereby the electrical equipment module 201 can be mounted to the vehicle V. As a result, the electrical equipment module 201 allows the work of main line routing or the like to be reduced and mounting work to be made more efficient, thereby improving the mountability to the vehicle V. Furthermore, in the electrical equipment module 201, various electronic components 24 are mounted on the mounting main line section 222 of the main line module 202, whereby the main line module 202 has a simplified form and a more compact and space-saving configuration, and thus, the workability of assembly can be improved and the number of constituent components can be reduced, whereby manufacturing efficiency can be improved.
Furthermore, in the foregoing electrical equipment module 201, the width direction extending member 221 is configured with the back plane bus base 223 formed of a resin material. Therefore, in the electrical equipment module 201, the provision of the mounting main line section 222 to the back plane bus base 223 configured as the width direction extending member 221 allows the main line module 202 to be configured with, for example, an exclusive component different from a structure typically mounted to the vehicle V, whereby the electrical equipment module 201 can be mounted to various types of vehicles, thereby increasing the versatility.
Furthermore, in the foregoing electrical equipment module 201, the circuit body 225 includes a printed circuit body printed on the surface of the width direction extending member 221, herein, the surface of the back plane bus base 223. Therefore, in the electrical equipment module 201, the back plane bus base 223 constituting the width direction extending member 221 and the mounting main line section 222 are integrally configured, and accordingly, the number of constituent components can be reduced. Thus, the electrical equipment module 201 can, for example, achieve further improvement in the mountability to the vehicle V and a reduction in manufacturing costs.
It should be noted that the electrical equipment modules according to the foregoing embodiments of the present invention are not limited to the foregoing embodiments, and can be modified in various manners within the scope described in the claims. The electrical equipment modules according to the foregoing embodiments may be configured by suitably combining the constituents of the foregoing embodiments and modification.
The foregoing back plane bus base 223 constituting the width direction extending member 221 was described as being fixed to the wall surface of the body BO on the front side in the vehicle longitudinal direction X by the bolts 223d or the like, but is not limited to this. As illustrated in
The foregoing mounting main line sections 22 and 222 were described as being configured such that the main line to be connected with the submodule 3 is made into a substrate or a back plane bus, thereby having no wire harness (no electric wire), but the mounting main line sections 22 and 222 are not limited to this, and only required to be configured so as to include at least the respective circuit bodies 25 and 225 mounted with the electronic components 24. For example, as illustrated in
Incidentally, as illustrated in
The foregoing electrical equipment modules 1, 201, 201A, and 201B were described as being applied to a vehicle having no reinforcement, but are not limited to this, and may be applied to a vehicle having a reinforcement, for example, the respective width direction extending members may be a reinforcement made of a metal material or a resin material. Alternatively, the width direction extending members may be a support member for an interior member of the vehicle V, the member being configured separately from the air-conditioning duct 23. Alternatively, the width direction extending member may be, for example, the instrument panel IP itself, and for example, a mounting main line section may be configured in such a manner that a circuit body to be printed as a printed circuit body is provided in a surface of the instrument panel IP on the accommodation space section SP side, and an electronic component is mounted to the circuit body. Likewise, the circuit body may be configured with, for example, a printed circuit body directly printed on a surface of the casing of the air-conditioning duct 23 or the like not via the substrate 26 illustrated in
In the above description, there are provided three submodules 3 in total, namely, the steering module 3A, the console module 3B, and the instrument panel display module 3C, but the invention is not limited to this. Furthermore, the instrument panel display module 3C was described as including the display 32 provided so as to cover the approximate entirety of the instrument panel IP in a visible range, but is not limited to this, and may be configured without the display 32. In this case, the electrical equipment module may allow information to be displayed so as to cover the approximate entirety of the instrument panel IP in a visible range, for example, by projecting an image on the instrument panel IP via a rear projector that is included in another submodule provided on the rear side of the vehicle V in the vehicle longitudinal direction X.
The foregoing electrical equipment modules 1, 201, 201A, and 201B were described as being provided with the communication control connector 4, but are not limited to this.
The foregoing electrical equipment modules 1, 201, 201A, and 201B were described as an instrument panel module arranged along the vehicle width direction Y inside the instrument panel IP of the vehicle V, but are not limited to this, and may be a vehicle-mounted module arranged in another position of the vehicle V.
In the electrical equipment module according to the present embodiments, a mounting main line section having an integral structure obtained by integrating a function as a main line to which a submodule is connected by an electronic component and a circuit body and a function of performing power supply distribution is provided in a width direction extending member, whereby a main line module is configured. The main line module and the submodule are mounted into a vehicle and connected to each other, whereby the electrical equipment module can be mounted into the vehicle. As a result, the electrical equipment module can achieve the advantageous effect of reducing the work of main line routing or the like and enhancing mounting work efficiency, thereby improving mountability into vehicles.
Although the invention has been described with respect to specific embodiments for a complete and clear disclosure, the appended claims are not to be thus limited but are to be construed as embodying all modifications and alternative constructions that may occur to one skilled in the art that fairly fall within the basic teaching herein set forth.
Number | Date | Country | Kind |
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2016-010077 | Jan 2016 | JP | national |