Patent Description:
A printed circuit board (Printed Circuit Board, PCB) is an important part in an electronic product, and printed circuit boards may be connected by using a board-to-board connector (Board-to-board connectors, BTB).

Many electronic elements are disposed on the periphery of the board-to-board connector for functions such as filtering. After the board-to-board connector is connected to the printed circuit board, these electronic elements are disposed on a surface of the printed circuit board and surround the board-to-board connector. During actual production, assembly, and repair at a service center, the electronic elements are easily damaged due to impact, and consequently poor functions are caused.

<CIT> provides a circuit board and an electronic device and relates to the technical field of electronic device manufacture. The circuit board comprises a circuit board body; a board-to-board connector arranged on the circuit board body; a patch device arranged on the circuit board body; and an anti-collision structure arranged on the circuit board body and used for isolating the patch device from the board-to-board connector, wherein the surface mounted patch device is accommodated in a cavity provided in the anti-collision structure.

<CIT> relates to a shield (electromagnetic shielding) structure of a three-dimensional electronic circuit device in which a circuit board on which electronic components are mounted is relayed using a relay board or the like to form a three-dimensional structure, wherein electronic components are accommodated in hollow portions provided in the relay board.

<CIT> relates to an electronic component comprising at least one multilayer circuit carrier which is equipped with a number of mechanical and/or electronic components. The circuit carrier is formed from a number of circuit carrier layers, at least one of the mechanical components being embedded in the circuit carrier and being accessible or exposable from the outside.

<CIT> relates to a first printed board on which a ground pattern is provided and an electronic part is mounted and a second printed board on which a ground pattern is provided and an electronic part is mounted which are oppositely arranged, and circuits of the first printed board and the second printed board are connected by a connector with a frame-like shield. In the connector with a shield, a frame body is formed of an insulator such as a resin, a connection terminal is provided inside the frame body, and a conductor is provided on the entire outer periphery of the frame body. In the conductor, the shield is formed by both the ground pattern of the first printed board and the ground pattern of the second printed board. The frame body shields the electronic parts.

<CIT> relates to an electronic component assembly mounted on a circuit board that comprises an intermediate connector mounted on the circuit board and having a first space for accommodating first electronic components provided on the circuit board and a unit body provided on the intermediate connector and connected to the circuit board through the intermediate connector. The unit body comprises a connector member having a second space and a mounting member having second electronic component accommodated in the second space.

An objective of this application is to provide a circuit board assembly and an electronic device, so that peripheral electronic elements are not damaged by impact during production, assembly or repair of the board-to-board connector.

According to a first aspect, a circuit board assembly is provided, including:.

The accommodation portion is provided on the backing plate, and the electronic element is accommodated in the accommodation portion, so that the electronic element is located in the space under the board-to-board connector. Therefore, not only damage caused by impact of the electronic element can be prevented, but also space of the circuit board assembly can be greatly saved.

The accommodation portion is a blind via provided on the backing plate, and the blind via is recessed from one side that is of the backing plate and that is close to the circuit board to one side close to the board-to-board connector.

The accommodation portion is arranged as the blind via, so that the electronic element can be shielded to a certain extent, which is applicable to an electronic element with a shielding requirement.

An inner wall of the accommodation portion is provided with a shield layer. The shield layer is provided so that the electronic element can be further shielded.

The shield layer may be formed by plating gold and nickel on a copper layer.

In a possible implementation, a first soldering pad is further included, where the electronic element is fastened and electrically connected to the circuit board by using the first soldering pad. The first soldering pad may be a soldering pad of an electronic shielding component, so that the electronic element does not interfere with work of another component.

In a possible implementation, a second soldering pad is further included, where the board-to-board connector is fixedly connected to the backing plate by using the second soldering pad. The second soldering pad is disposed so that the board-to-board connector can be further elevated, thereby further providing larger accommodation space for the electronic element.

In a possible implementation, the backing plate is provided with a first via, an inner wall of the first via is provided with a first conductive layer, the first conductive layer is electrically connected to the board-to-board connector by using the second soldering pad, and the first conductive layer is electrically connected to the circuit board. The first conductive layer is provided to facilitate electrical connection between the board-to-board connector and the circuit board.

Copper may be plated in the first via to form the first conductive layer.

In a possible implementation, the circuit board is provided with a second via, and an inner wall of the second via is provided with a second conductive layer; and
the second conductive layer is electrically connected to the electronic element.

The second via and the second conductive layer are provided so that the electronic element can be led out to be connected to another related component, so as to meet a design requirement of a circuit.

Copper may be plated in the second via to form the second conductive layer.

In a possible implementation, the circuit board is provided with a third via, and the third via communicates with the first via;.

Copper may be plated in the third via to form the third conductive layer. The fourth conductive layer may be buried in the circuit board, to electrically connect the third conductive layer to the second conductive layer.

According to an example, which is not covered by the claims, a circuit board assembly is provided, including:.

In the circuit board assembly and the electronic device provided in this application, the electronic element is accommodated in the accommodation portion, and the accommodation portion is provided in the body of the board-to-board connector, so that the electronic element is located in the space under the board-to-board connector. Therefore, not only damage caused by impact of the electronic element can be prevented, but also space of the circuit board assembly can be greatly saved.

According to a second aspect, an electronic device is provided, including more than two circuit board assemblies, where each of the more than two circuit board assemblies includes a board-to-board connector, the more than two circuit board assemblies are connected by using respective board-to-board connectors, and at least one circuit board assembly is the circuit board assembly as defined in claim <NUM>.

At least one circuit board assembly is arranged as the circuit board assembly provided in this application, so that the at least one circuit board assembly saves space occupied by an electronic element, thereby facilitating miniaturization and thinning of a mobile phone.

The technical solutions provided in this application may achieve the following beneficial effects: In the circuit board assembly and the electronic device provided in this application, the electronic element is accommodated in the accommodation portion, and the accommodation portion may be provided on the backing plate, or may be provided in the body of the board-to-board connector, so that the electronic element is located in the space under the board-to-board connector. Therefore, not only damage caused by impact of the electronic element can be prevented, but also space of the circuit board assembly can be greatly saved, thereby facilitating miniaturization and thinning of the electronic device.

The terms used in the embodiments of this application are merely for the purpose of illustrating specific embodiments, and are not intended to limit this application. The terms "a", "said" and "the" of singular forms used in the embodiments and the appended claims of this application are also intended to include plural forms, unless otherwise specified in the context clearly.

It should be noted that, direction terms such as "top", "bottom", "left", and "right" described in the embodiments of this application are described from an angle shown in the accompanying drawings, and should not be construed as a limitation to the embodiments of this application. In addition, in the context, it should be further noted that, when it is mentioned that an element is connected to the "top" or "bottom" of another element, the element cannot only be directly connected to the "top" or "bottom" of the another element, but may also be indirectly connected to the "top" or "bottom" of the another element by using an intermediate element.

An embodiment of this application provides an electronic device. The electronic device may be a mobile phone, a tablet computer, or another electronic product. These electronic devices usually include mainboards. A mobile phone is used as an example, a mainboard may be connected to a circuit board of a component such as a camera, a battery, or a USB by using a board-to-board connector, and other circuit boards may also be connected by using board-to-board connectors. An electronic element such as a capacitor, an inductor, or a resistor is disposed on the periphery of the board-to-board connector. With deeper development of an integrated and miniaturized design of the mobile phone, layout space of the mainboard or other circuit boards becomes increasingly limited, and these electronic elements are easily damaged by impact during assembly or repair. A circuit board assembly and the electronic device provided in the embodiments of this application can resolve the technical problem that layout space of a circuit board is limited and electronic elements are damaged.

An embodiment of this application provides an electronic device, including more than two circuit board assemblies, where one circuit board assembly may include a mainboard of the electronic device, and other circuit board assemblies may include other circuit boards on the electronic device. Each of the more than two circuit board assemblies may include a board-to-board connector, and the more than two circuit board assemblies are connected by using respective board-to-board connectors. At least one circuit board assembly is the circuit board assembly provided in any embodiment of this application.

In other words, in the electronic device provided in this embodiment of this application, at least one circuit board assembly has a compact layout structure, so that space occupied by electronic elements can be reduced, thereby implementing miniaturization and thinning of the electronic device, and preventing the electronic elements from being damaged by impact during assembly and repair.

<FIG> is a schematic exploded diagram of a structure of a circuit board assembly. This embodiment of this application provides a circuit board assembly <NUM>, including a circuit board <NUM>, a backing plate <NUM>, one or more electronic elements <NUM>, and a board-to-board connector <NUM>. The electronic elements <NUM> in this embodiment of this application may include one or more electronic elements.

<FIG> is a sectional drawing of a structure of a circuit board assembly according to an embodiment which is not covered by the claims. Referring to the circuit board assembly <NUM> in <FIG>, the backing plate <NUM> is fixedly connected to one side of the circuit board <NUM>. In a possible implementation, the backing plate <NUM> may be fastened to one side of the circuit board <NUM> through welding, and the backing plate <NUM> is provided with an accommodation portion <NUM>.

The electronic element <NUM> is accommodated in the accommodation portion <NUM> and connected to the circuit board <NUM>. In a possible implementation, the electronic element <NUM> may be welded to the circuit board <NUM>, so that not only the electronic element <NUM> can be fastened, but also the electronic element <NUM> can be electrically connected to the circuit board <NUM>.

The board-to-board connector <NUM> is fixedly connected to one side that is of the backing plate <NUM> and that is away from the circuit board <NUM>. In a possible implementation, the board-to-board connector <NUM> may be fastened to the backing plate <NUM> through welding.

The electronic element <NUM> may be a filtering element, such as an electronic element having a function of a capacitive component, a resistive component, a common-mode inductor, or a protection diode (such as a TVS), used for the board-to-board connector <NUM>. In a height direction H in <FIG>, the electronic element <NUM> is accommodated in the interior space (namely, the accommodation portion <NUM>) of the backing plate <NUM> under the board-to-board connector <NUM>. Therefore, not only damage caused by impact of the electronic element <NUM> can be prevented, but also space of the circuit board assembly <NUM> can be greatly saved.

As shown in <FIG>, in a specific implementation, the accommodation portion <NUM> may be a through via provided on the backing plate <NUM>, the through via passes through the backing plate <NUM> along the height direction H of the circuit board assembly <NUM>, and the board-to-board connector <NUM> covers the through via.

In this embodiment, the through via is made on the backing plate <NUM>, the electronic element <NUM> is disposed in the through via, and the electronic element <NUM> may be welded to the circuit board <NUM>, so that the electronic element <NUM> can be fixedly connected to the circuit board <NUM>, and can also be electrically connected to the circuit board <NUM>. The process of making the through via on the backing plate <NUM> is simple and can be implemented conveniently. The electronic element <NUM> may include an electronic element having a function of a capacitive component, a resistive component, a common-mode inductor, or a protection diode (such as a TVS). According to an actual design requirement, some of these electronic elements may be disposed in the accommodation portion <NUM>, or all of these electronic elements may be disposed in the accommodation portion <NUM>. This is not limited herein.

<FIG> is a sectional drawing of a structure of a circuit board assembly according to another embodiment which is not covered by the claims. As shown in <FIG>, in a specific implementation, an accommodation portion <NUM> may be a blind via provided on the backing plate <NUM>, and the blind via is recessed from one side that is of the backing plate <NUM> and that is close to the circuit board <NUM> to one side close to the board-to-board connector <NUM>.

In other words, in a height direction of the circuit board assembly <NUM>, the accommodation portion <NUM> does not pass through the backing plate <NUM>. This structure can shield the electronic element to a certain extent, and is applicable to an electronic element with a shielding requirement.

<FIG> is a sectional drawing of a structure of a circuit board assembly according to an embodiment of the invention. As shown in <FIG>, according to the invention, an inner wall of the accommodation portion <NUM> is provided with a shield layer <NUM>. The shield layer <NUM> is provided to further shield the electronic element <NUM>, thereby improving a filtering effect of a filtering component. The shield layer <NUM> may be formed by plating gold and nickel on a copper layer.

Still referring to <FIG>, in a specific implementation, a first soldering pad <NUM> is disposed between the circuit board <NUM> and the electronic element <NUM>, and the electronic element <NUM> is fastened and electrically connected to the circuit board <NUM> by using the first soldering pad <NUM>. The first soldering pad <NUM> may be a soldering pad of an electronic shielding component. The first soldering pad <NUM> is disposed so that the electronic element <NUM> can be fastened and electrically connected to the circuit board <NUM>. In addition, the first soldering pad <NUM> can further enable the electronic element <NUM> not to interfere with work of another component.

Still referring to <FIG>, in a specific implementation, a second soldering pad <NUM> may be further disposed between the backing plate <NUM> and the board-to-board connector <NUM>, and the board-to-board connector <NUM> is fixedly connected to the backing plate <NUM> by using the second soldering pad <NUM>. The second soldering pad <NUM> is disposed so that the board-to-board connector <NUM> can be further elevated, thereby further providing larger accommodation space for the electronic element <NUM>.

In a specific implementation, the backing plate <NUM> is provided with a first via <NUM>, an inner wall of the first via <NUM> is provided with a first conductive layer <NUM>, the first conductive layer <NUM> is electrically connected to the board-to-board connector <NUM> by using the second soldering pad <NUM>, and the first conductive layer <NUM> is electrically connected to the circuit board <NUM>. The first conductive layer <NUM> is provided to facilitate electrical connection between the board-to-board connector <NUM> and the circuit board <NUM>. For example, copper may be plated in the first via <NUM> to form the first conductive layer <NUM>.

Specifically, the first conductive layer <NUM> may be electrically connected to the second soldering pad <NUM>, so that the first conductive layer <NUM> can be electrically connected to the board-to-board connector <NUM>. The first conductive layer <NUM> may also be connected to the circuit board <NUM> by using a soldering pad or in another manner. This is not limited herein.

In a specific implementation, the circuit board <NUM> is provided with a second via <NUM>, an inner wall of the second via <NUM> is provided with a second conductive layer <NUM>, and the second conductive layer <NUM> is electrically connected to the electronic element <NUM>.

The second via <NUM> and the second conductive layer <NUM> are provided so that the electronic element <NUM> can be led out to be connected to another related component, so as to meet a design requirement of a circuit. Copper may be plated in the second via <NUM> to form the second conductive layer <NUM>.

As mentioned above, the first conductive layer <NUM> is provided to facilitate electrical connection between the board-to-board connector <NUM> and the circuit board <NUM>. The first conductive layer <NUM> may be connected to the board-to-board connector <NUM> by using the second soldering pad <NUM> and connected to the circuit board <NUM> and the electronic element <NUM> by using the second conductive layer <NUM>.

In a specific implementation, the circuit board <NUM> is provided with a third via <NUM>, the third via <NUM> communicates with the first via <NUM>, an inner wall of the third via <NUM> is provided with a third conductive layer <NUM>, and the third conductive layer <NUM> is electrically connected to the first conductive layer <NUM>. The circuit board <NUM> is further provided with a fourth conductive layer <NUM>, and the fourth conductive layer <NUM> is electrically connected to the third conductive layer <NUM> and the second conductive layer <NUM> separately.

Copper may be plated in the third via <NUM> to form the third conductive layer <NUM>. The fourth conductive layer <NUM> may be buried in the circuit board <NUM>, to electrically connect the third conductive layer <NUM> to the second conductive layer <NUM>. In the embodiment shown in <FIG>, the board-to-board connector <NUM> is connected to the first soldering pad <NUM> by using the second soldering pad <NUM>, the first conductive layer <NUM>, the third conductive layer <NUM>, the fourth conductive layer <NUM>, and the second conductive layer <NUM>.

During use, a board-to-board connector of another circuit board assembly is connected to the board-to-board connector <NUM> in the embodiment shown in <FIG>, so that the another circuit board assembly can be connected to the circuit board assembly <NUM> in the embodiment shown in <FIG>. <FIG> is a sectional drawing of a structure of a circuit board assembly according to yet another embodiment which is not covered by the claims. In the embodiment shown in <FIG>, an accommodation portion <NUM> of the backing plate <NUM> of the circuit board assembly <NUM> is a through via, and is applicable to an electronic device without a shielding requirement. In this embodiment, the circuit board assembly <NUM> may also include a first soldering pad <NUM> and/or a second soldering pad <NUM>. A structure and a form of the first soldering pad <NUM> and the second soldering pad <NUM> may be the same as those in the embodiment shown in <FIG>, and details are not described herein again.

The backing plate <NUM> may also be provided with a first via <NUM>, an inner wall of the first via <NUM> is provided with a first conductive layer <NUM>, and the first conductive layer <NUM> may be electrically connected to the first soldering pad <NUM>.

<FIG> is a sectional drawing of a structure of a circuit board assembly according to still yet another embodiment which is not covered by the claims. As shown in <FIG>, the circuit board assembly <NUM> provided in this embodiment of this application includes a circuit board <NUM>, a board-to-board connector <NUM>, and an electronic element <NUM>. The board-to-board connector <NUM> is electrically connected to the circuit board <NUM>. The board-to-board connector <NUM> includes a body <NUM> and a conductive portion <NUM>. An accommodation portion 201a is provided inside the body <NUM>, the conductive portion <NUM> is embedded in the body <NUM>, the electronic element <NUM> is connected to the circuit board <NUM>, and the electronic element <NUM> is accommodated in the accommodation portion 201a.

The board-to-board connector <NUM> is electrically connected to the circuit board <NUM> by using the conductive portion <NUM>, or may be electrically connected to a board-to-board connector in another circuit board assembly by using the conductive portion <NUM>. In this embodiment, the body <NUM> is a plastic body, the conductive portion <NUM> is a metal spring, and the metal spring is embedded in the plastic body.

In this embodiment, a height of the body <NUM> may be increased, so that the body has space for disposing the accommodation portion 201a. The accommodation portion 201a may be a groove or a through groove provided on the body <NUM>. In the embodiment shown in <FIG>, the accommodation portion 201a is an internal through groove provided at a central position of the body <NUM>, and the electronic element <NUM> is accommodated in the accommodation portion 201a and connected to the circuit board <NUM>.

It may be understood that the embodiment shown in <FIG> is merely an example, and the electronic element <NUM> and the circuit board <NUM> may also be connected by providing a structure such as a soldering pad or a conductive layer. A shield layer may also be provided according to a design requirement of a circuit board.

An embodiment of this application further provides an electronic device, including more than two circuit board assemblies. Each of the more than two circuit board assemblies includes a board-to-board connector, and the more than two circuit board assemblies are connected by using respective board-to-board connectors. At least one circuit board assembly is the circuit board assembly provided in any embodiment of this application.

Claim 1:
A circuit board assembly, comprising:
a circuit board (<NUM>);
a backing plate (<NUM>) fixedly connected to one side of the circuit board (<NUM>), wherein the backing plate (<NUM>) is provided with an accommodation portion (<NUM>);
an electronic element (<NUM>) accommodated in the accommodation portion (<NUM>) and connected to the circuit board (<NUM>);
a board-to-board connector (<NUM>) fixedly connected to one side that is of the backing plate (<NUM>) and that is away from the circuit board (<NUM>); and
the accommodation portion (<NUM>) is a blind via provided on the backing plate (<NUM>), and the blind via is recessed from one side that is of the backing plate (<NUM>) and that is close to the circuit board (<NUM>) to one side close to the board-to-board connector (<NUM>), wherein an inner wall of the accommodation portion (<NUM>) is provided with a shield layer (<NUM>).