Child carrier system

By designing an adjustable configuration of children's vehicle base, the high cost, inefficiency and complex installation problems caused by multiple bases in existing systems are solved, and more efficient, safe and convenient use of children's vehicle system is achieved.

CN120096408APending Publication Date: 2025-06-06GOODBABY CHILD PROD CO LTD
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Patent Information

Application Number
CN202510147065.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

In existing children's vehicle systems, car seats and strollers require separate bases, resulting in high cost, low storage efficiency, complex installation and error-prone.

Method used

A children's vehicle base with an adjustable configuration is designed that seamlessly transitions between the two configurations, accommodating the child seat and the stroller chassis respectively, for quick switching through an actuator handle and a movable anchor assembly.

Benefits of technology

The design simplifies switching between modes, reduces the need for multiple bases, reduces the risk of installation errors, improves user convenience and security, while reducing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a child carrier system. The system may include a child seat, a stroller chassis, and a base having a front portion and a rear portion. The base may include an actuator handle, a first movable anchor assembly, a first static anchor at a forward portion, a movable rod anchor assembly, and a first base hook at a rearward portion. The first movable anchor assembly has a first post rotatable about a first axis relative to the base and a first anchor located forward. The movable rod anchoring assembly has a rod rotatable relative to the base along a second axis and a first arm. The actuator may be dynamically coupled with the first movable anchor assembly and the movable rod anchor assembly to switch between configurations by repositioning the actuator handle, the first movable anchor assembly, and the rod.
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Description

Technical Field

[0001] The present invention relates to a child carrier system, and more particularly to a child carrier base with an adjustable configuration for seat and stroller integration. Background Art

[0002] Child carrier systems, including car seats and strollers, are essential for transporting children. These systems may utilize a base that is secured to a motor vehicle to secure the car seat or stroller within the vehicle. Each of the car seat and stroller may require a separate base to secure within the motor vehicle, resulting in a variety of configurations for different uses. Summary of the invention

[0003] The described embodiments relate to an improved child carrier system and related methods for a child carrier base with an adjustable configuration for seat and stroller integration. For example, in a first configuration, a child seat is releasably connected to a stroller chassis, and the combination of the child seat and stroller chassis is releasably connected to the base. In another example, the same child seat is releasably connected to the same base, with the stroller chassis located in between. This multi-configuration base enables flexible securing of various parts of a child carrier system, such as in a car. In other words, the base is connectable to the stroller chassis, and in another configuration, the base is connectable to the child seat. Because the child seat is also connectable to the stroller chassis, the second configuration of the base utilizes a connection mechanism within the child seat that is also used when connecting the child seat to the stroller chassis.

[0004] In some examples, some embodiments may provide a child carrier system featuring a base with an actuator handle, a first movable anchor assembly, and a movable rod anchor assembly. This innovative design may allow the base to seamlessly transition between two configurations: one configuration that can accommodate a child seat alone, and another configuration that can support a stroller chassis with an attached child seat. The actuator handle may allow a user to easily change the configuration of the base with a single push or pull, thereby simplifying the process of switching between modes. This may eliminate the need for multiple bases, reduce confusion and installation errors, and improve user convenience.

[0005] In a first configuration, the base can be securely engaged with the stroller chassis using static anchors and base hooks. In a second configuration, the base can accommodate a child seat by engaging with the removable rod anchor assembly and the removable anchor assembly. This dual functionality can ensure that parents and caregivers can quickly and easily adapt the system to their needs, whether for vehicle use or mobility outside of the vehicle. By integrating these functions into a single, multi-configurable base, some embodiments can address the inefficiencies of existing systems and provide a more economical and user-friendly solution for transporting children.

[0006] A child carrier system is described. The system may include a child seat, a stroller chassis, and a base having a front portion and a rear portion. The base may include an actuator handle, a first movable anchor assembly having a first post and a first anchor rotatable relative to the base along a first axis, wherein the first movable anchor may be located at the front portion; a first static anchor located at the front portion; a movable rod anchor assembly having a rod and a first arm rotatable relative to the base along a second axis, wherein the first axis may be parallel to the second axis, and the movable rod anchor assembly may be located at the rear portion of the base; and a first base hook, which may be located at the rear portion. The actuator handle may be dynamically connected to the first movable anchor assembly and the movable rod anchor assembly, such that in a first configuration of the base, the actuator handle may be located in a first position, the first anchor may be rotatably positioned to a forward position, and the rod may be positioned to a rearward position, and in a second configuration of the base, the actuator handle may be located in a second position, the first anchor may be rotatably positioned to a rearward position, and the rod may be positioned to a forward position engaged by the first base hook.

[0007] A method of using a child carrier system is described. The method may include connecting a child seat, a stroller chassis, and a base having a front portion and a rear portion. The connection may include: moving an actuator handle; positioning a first movable anchor assembly having a first post and a first anchor rotatable relative to the base along a first axis so that the first movable anchor assembly protrudes forward, wherein the first movable anchor may be located at the front portion; and exposing a first static anchor at the front portion as the first movable anchor moves. The connection may also include: positioning a movable rod anchor assembly by movement of the actuator handle, the movable rod anchor assembly having a rod and a first arm rotatable relative to the base along a second axis, wherein the first axis may be parallel to the second axis; and positioning the movable rod anchor assembly at the rear portion, and exposing a first base hook at the rear portion by positioning the movable rod anchor assembly. The actuator can be dynamically connected to the first movable anchor assembly and the movable rod anchor assembly such that in a first configuration of the base, the actuator handle can be in a first position, the first anchor can be rotatably positioned to a forward position, and the rod can be positioned to a rearward position, and in a second configuration of the base, the actuator handle can be in a second position, the first anchor can be rotatably positioned to a more rearward position (e.g., oriented substantially vertically relative to the base), and the rod can be positioned to a forward position engaged with the first base hook.

[0008] In some examples of the techniques and related methods described herein, a stroller chassis can be hooked to a first base in a first configuration.

[0009] In some examples of the techniques and related methods described herein, a stroller chassis can be coupled to a first static anchor in a first configuration.

[0010] In some examples of the techniques and related methods described herein, a stroller chassis can be coupled to a child seat in a first configuration, wherein the stroller chassis is positioned between the base and the child seat.

[0011] In some examples of the techniques and related methods described herein, a child seat can be coupled to a first anchor in a second configuration.

[0012] In some examples of the techniques and related methods described herein, a child seat can be coupled to the rod in a second configuration.

[0013] In some examples of the techniques and related methods described herein, in the first configuration, the first static anchor can be higher on the base than the first anchor.

[0014] In some examples of the techniques and related methods described herein, in the second configuration, the first anchor can be taller on the base than the first static anchor.

[0015] In some examples of the techniques and related methods described herein, in a first configuration, the rod may be higher on the base than in a second configuration.

[0016] Some examples of the technology and related methods described herein may also include a second movable anchor assembly having a second post and a second anchor rotatable relative to the base along a first axis. The second movable anchor may be located in the front portion. The technology and methods may also include a second static anchor, wherein the first static anchor may be located in the front portion and the second base hook is located in the rear portion. The movable post anchor assembly may have a second arm rotatable relative to the base along a second axis.

[0017] In some examples of the techniques and related methods described herein, a stroller chassis can be connected with a first base hook and a second base hook in a first configuration.

[0018] In some examples of the techniques and related methods described herein, a stroller chassis can be coupled with a first static anchor and a second static anchor in a first configuration.

[0019] In some examples of the techniques and related methods described herein, a child seat can be coupled with a first anchor and a second anchor in a second configuration.

[0020] In some examples of the techniques and related methods described herein, in a first configuration, the first static anchor and the second static anchor can be higher on the base than the first anchor and the second anchor.

[0021] In some examples of the techniques and related methods described herein, in the second configuration, the first anchor and the second anchor can be higher on the base than the first static anchor and the second static anchor.

[0022] In some examples of the techniques and related methods described herein, the actuator handle can be configured to rotate the first post in response to a user input.

[0023] In some examples of the techniques and related methods described herein, the chassis may also include a wheel guard positioned adjacent the rear portion.

[0024] In some examples of the techniques and related methods described herein, the first movable anchor assembly can include a protrusion that engages the child seat in the second configuration.

[0025] In some examples of the techniques and related methods described herein, a rod may be configured to engage a retaining hook on a child seat.

[0026] In some examples of the techniques and related methods described herein, the actuator handle can be connected to the first arm via a linkage.

[0027] In some examples of the techniques and related methods described herein, the front of the base can include a plate supporting the first static anchor.

[0028] In some examples of the techniques and related methods described herein, the stroller chassis can include a rod, such as an axle, that engages with the first base hook.

[0029] In some examples of the techniques and related methods described herein, an actuator handle can be located on the front of the base.

[0030] In some examples of the techniques and related methods described herein, the first movable anchor assembly can be configured to rotate the first post to a forward position in the first configuration.

[0031] In some examples of the techniques and related methods described herein, in a first configuration, a first static anchor can be positioned above a first movable anchor assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 An illustration of a child carrier is shown in a first configuration that supports the technology of a child carrier base with an adjustable configuration for seat and stroller integration according to various aspects of the present invention.

[0033] Figure 2 A perspective view of a base capable of securing a first configuration of a stroller chassis is shown, the base supporting the technology for a child carrier base with an adjustable configuration for seat and stroller integration according to various aspects of the present invention.

[0034] Figure 3 The various aspects of the present invention are shown Figure 2 A top view of the base in FIG.

[0035] Figure 4 A first configuration according to various aspects of the present invention is shown. Figure 2 A top-down perspective view of the mechanical components of the base's internal structure.

[0036] Figure 5 A first configuration according to various aspects of the present invention is shown. Figure 2 A bottom-up perspective view of the mechanical components of the base's internal structure.

[0037] Figure 6 The first configuration according to various aspects of the present invention is shown. Figure 2 The base edge Figure 3 A transverse cross-sectional view taken along cutting line 6-6.

[0038] Figure 7 The various aspects of the present invention are shown Figure 1 A lateral cross-sectional view of a child restraint system.

[0039] Figure 8 An illustration of a child carrier design in a second configuration is shown in accordance with various aspects of the present invention, which supports the technology for a seat-integrated child carrier base with an adjustable configuration.

[0040] Fig. 9 A perspective view of the base in a second configuration capable of securing a child seat is shown, supporting the techniques for a seat-integrated child carrier base with an adjustable configuration according to various aspects of the present invention.

[0041] Fig.10 The various aspects of the present invention are shown Fig. 9 A top view of the base in FIG.

[0042] Fig.11 The second configuration according to various aspects of the present invention is shown. Fig. 9 A top-down perspective view of the internal structure of the base mechanical components.

[0043] Fig.12 The second configuration according to various aspects of the present invention is shown. Fig. 9 A bottom-up perspective view of the internal structure of the base mechanical components.

[0044] Fig.13 The second configuration is shown Fig. 9 The base edge Fig.10A transverse cross-sectional view taken along cutting line 13-13.

[0045] Fig.14 Shows Figure 8 A cross-section of a child carrier system supporting the technology of a child carrier base with an adjustable configuration for seat and stroller integration according to various aspects of the present invention. DETAILED DESCRIPTION

[0046] The described embodiments relate to improved child carrier systems and related methods for child carrier bases with adjustable configurations for seat and stroller integration. In some examples, existing child carrier systems present significant challenges to parents and caregivers. Car seats and stroller accessories require separate bases, resulting in cost, storage, and installation inefficiencies. Switching between configurations typically involves uninstalling and reinstalling different bases, which can be time-consuming and increase the risk of improper installation. This complexity can be particularly overwhelming for busy parents who need to make quick adjustments. In addition, using multiple bases can lead to clutter in the vehicle and reduce available seating space. Current solutions may not provide a single adaptable base that can safely accommodate both separate child seats and stroller-child seat combinations. The lack of such a solution may compromise convenience, safety, and cost-effectiveness, resulting in a market lacking a more efficient and user-friendly system.

[0047] The contemplated concept includes a base for a child carrier system that is adjustable between a first configuration in which a stroller chassis can be directly secured thereto and a second configuration in which a child seat can be directly secured thereto. For example, in the first configuration, the child seat is releasably connected to the stroller chassis, and the combination of the child seat and stroller chassis is releasably connected to the base. In another example, the same child seat is releasably connected to the same base without the need for a stroller chassis in between. This multi-configuration base allows for flexible securing of various parts of a child carrier system, such as in a car. In other words, the base is capable of being connected to a stroller chassis, and in another configuration, the base is capable of being connected to a child seat. Because the child seat is also capable of being connected to the stroller chassis, the second configuration of the base utilizes a connection mechanism within the child seat that is also used when connecting the child seat to the stroller chassis.

[0048] In the first configuration, the actuator handle is positioned rearwardly in the front portion of the base, causing the linkage mechanism to position the first movable anchor assembly and the second movable anchor assembly in a forward position, which allows the first static anchor and the second static anchor to be exposed to engage the stroller chassis. In the first configuration, the actuator handle and the linkage mechanism also position the movable rod anchor assembly in a rearward position at the rear of the base. When in this first configuration, the movable rod assembly is positioned close to the upright portion of the base so as not to interfere with the engagement between the hook of the stroller chassis and the base. In the second configuration, the handle actuator can be pulled to a forward position, which causes the linkage mechanism to rotate the first movable anchor assembly and the second movable anchor assembly to a more rearward position, causing each movable anchor assembly to protrude upright on the base and be able to engage a child car seat to secure the child car seat to the base. Moreover, in the second configuration, the movable rod anchor assembly is rotated forwardly to engage with the hook of the base. The rod of the movable rod anchor assembly is positioned to engage with the child car seat to be secured to the base.

[0049] According to some embodiments, the child carrier system may include a base designed to accommodate only a child seat or a combination of a child seat and a stroller chassis. The base may have a front portion and a rear portion, and the base may be configured to allow easy modification between the two configurations.

[0050] The base may include an actuator handle that can be pushed or pulled. The actuator handle may be dynamically connected to the first movable anchor assembly and the movable rod anchor assembly. By operating the actuator handle, a user may modify the configuration of the base by rotating the movable anchor assembly.

[0051] The first movable anchor assembly may include a first column that can rotate relative to the base along a first axis. The assembly may also include a first anchor and may be located within a front portion of the base. The movable rod anchor assembly may include a rod and a first arm that can rotate relative to the base along a second axis. The first axis and the second axis may be parallel to each other. The movable rod anchor assembly may be located within a rear portion of the base.

[0052] The base can include a first base hook, which can be located in the rear portion. The first base hook can engage with the rod when the base is in a particular configuration. The base can include a first static anchor, which can be located in the front portion. In one configuration, the first static anchor can be located at a higher position on the base than the first anchor.

[0053] Some embodiments may include a second movable anchor assembly. The second movable anchor assembly may include a second post that can rotate relative to the base along the first axis. The second movable anchor assembly may also include a second anchor and may be located in the front portion of the base. The base may include a second static anchor that may also be located in the front portion. In one configuration, the second static anchor may be located at a higher position on the base than the first anchor and the second anchor. The base may include a second base hook that may be located in the rear portion and may engage with the rod in a particular configuration.

[0054] The base can be operated in two configurations. In the first configuration, the actuator handle can be in a first position (e.g., positioned more rearward than the second position), the first anchor can be rotated to a forward position, and the rod can be positioned to a rearward position. In the second configuration, the actuator handle can be in the second position, the first anchor can be rotated to a rearward position, and the rod can be positioned to a forward position in which the rod can engage with the first base hook. In some cases, the forward position of the first anchor is a substantially horizontal configuration, which allows the first anchor to avoid mechanical interference with a stroller chassis secured to the base. Similarly, in some cases, the rearward position of the first anchor places the first anchor in a protruding position extending substantially vertically from the base, which allows the first anchor to engage with a car seat.

[0055] The base can include a mechanism for coupling with other components. In a first configuration, the stroller chassis can be coupled to the first base hook and the second base hook. The stroller chassis can be coupled to the first static anchor and the second static anchor. In a second configuration, the child seat can be coupled to the rod of the movable anchor assembly, the first anchor, and the second anchor.

[0056] Operation of the base may involve pushing or pulling an actuator handle to rotate the movable anchor assembly, thereby changing the configuration of the base. When the base is in a first configuration, the stroller chassis may be connected to the base hooks and static anchors. When the base is in a second configuration, a child seat may be connected to the rod and the rod and anchors of the movable anchor assembly.

[0057] The base may include additional components to facilitate its operation. The base may include a plate fixed to the housing of the base, a first movable plate and a second movable plate. The first movable plate may be connected to the handle housing and two first connecting rods, which may be connected to the rod. The second movable plate may be connected to the actuator and may be movable relative to the first movable plate. The base may include sliders, stops and pulling units, which may interact with the actuator to modify the configuration. Protrusions, parts and gains may be included to drive the movement and rotation of the anchor assembly and the rod.

[0058] Various aspects of the subject matter described in the present invention may be implemented to achieve one or more of the following potential advantages. The described technology may be implemented to support a more streamlined and efficient child carrier system. The base may be designed to accommodate a child seat and a stroller chassis, which may reduce the need for multiple bases and save valuable space in the vehicle. The actuator handle may allow for quick and easy switching between configurations, which may enhance user convenience and reduce the time required for installation. Consistent use of a single base may improve safety by minimizing the risk of installation errors. This design may be more economical for families because it may eliminate the need to purchase multiple bases for different configurations. The base may include various components, such as removable plates, sliders, and pull units, which may facilitate its operation and enhance its functionality. The ability to change the base configuration with a single push or pull of the handle may provide a user-friendly solution for parents and caregivers.

[0059] Aspects of the invention are initially described in the context of a child carrier system. Aspects of the invention are also illustrated and described with reference to example embodiments. Aspects of the invention are further illustrated and described by flow charts relating to methods of manufacturing a child carrier system.

[0060] Figure 1 A child carrier system 100 is shown in accordance with various aspects of the present invention, which supports the technology of a seat and stroller integrated base with an adjustable configuration. Figure 1 As shown, the child carrier system 100 includes a stroller chassis 102 , a base 200 , a child seat 106 , and / or other components.

[0061] The stroller chassis 102 can include a structural frame designed to support various configurations of the child carrier system 100. The stroller chassis 102 can be constructed of durable materials to ensure stability during use. The frame can be designed to accommodate different accessories, such as a child seat 106. In some embodiments, the stroller chassis 102 can include adjustable components to fit various child seat models. The stroller chassis 102 can be equipped with connection points for securely attaching to the base 200 of the child carrier system 100. The stroller chassis 102 is configured to releasably connect with the child seat 106. The stroller chassis is configured to releasably connect with the base 200. The child seat 106 is configured to releasably connect with the base 200.

[0062] The child seat 106 may include a seat structure configured to securely hold a child during use. The child seat 106 may be designed with features such as safety belts and padding to protect the child. In some embodiments, the child seat 106 may be adjustable to accommodate children of different sizes and ages. The child seat 106 may be detachable from the stroller chassis 102, allowing it to be used independently or with other compatible bases. The child seat 106 may be constructed of materials that provide comfort and support for the child during travel.

[0063] In some embodiments, the stroller chassis 102 can be positioned to align with the base 200, thereby allowing the wheels 104 to engage with designated slots on the base 200. The child seat 106 can be attached to the stroller chassis 102, wherein the actuator handle 226 is positioned to facilitate conversion between the following configurations: the child seat 106 is connected to the base 200 through the stroller chassis 102, wherein the base 200 is in the first configuration; and the child seat 106 is directly connected to the base 200, wherein the base 200 is in the second configuration.

[0064] The base 200 is typically installed in a car, such as a sedan. The base 200 is typically kept in the car, and the child seat 106 is removed from the car by detaching the child seat 106 from the base 200. In this example, a stroller chassis 102 having wheels 104 is connected to the child seat 106. The combination of the child seat 106 and the stroller chassis 102 forms a stroller that is convenient for transporting children. In some cases, when the child seat 106 is fixed in the car, the user may wish to keep the stroller chassis 102 attached to the child seat 106. Therefore, as will be discussed herein, the base 200 can be configured to be attached to the stroller chassis 102 to fix the combination of the stroller chassis 102 and the child seat 106 to the car.

[0065] Figure 2 A base 200 is shown in accordance with various aspects of the present invention, which supports the technology of a base 200 with an adjustable configuration for seat and stroller integration. Figure 2 As shown, the base 200 may include one or more of a first anchor 204, a second anchor 212, a first static anchor 234, a first column 206, a second column 214, an actuator handle 226, a first arm 222, a second arm 224, a first base hook 228, a second base hook 230, a rod 220, a second static anchor 236 and / or other components.

[0066] The actuator handle 226 can be dynamically connected to the first movable anchor assembly 202, the base hook and the movable rod anchor assembly 218, so that the stroller chassis 102 and / or the child seat 106 can be securely connected to the base 200. The wheels 104 can be designed to rotate and lock in place, ensuring stability during operation. The child seat 106 can include a button mechanism that interacts with the protrusions and hooks on the base 200 to facilitate installation and removal. The actuator handle 226 can control the movement of the hooks and stops, positioning them to accommodate the stroller chassis 102 with the child seat 106 or the child seat 106 alone.

[0067] The first anchor 204 can be part of the base 200. The first anchor 204 is a component such as a metal-shaped rod that helps to secure the child seat 106 to the base 200. The first anchor 204 can be designed to rotate relative to the base 200, thereby allowing the base 200 to have different configurations. The first anchor 204 is connected to the base 200 through the first column 206 and can be moved by actuation of the actuator handle 226 to achieve its function. In some embodiments, the first anchor 204 can be made of metal or a durable plastic material.

[0068] The second anchor 212 can be positioned adjacent to the first anchor 204. The second anchor 212 can serve a similar function to the first anchor 204, providing an additional attachment point for the child seat 106. The second anchor 212 can also be rotatable and can work with the first anchor 204 to secure the child seat 106. The second anchor 212 can be positioned so that it is aligned with the first anchor 204 when the base 200 is in a particular configuration. In some embodiments, the second anchor 212 can be used to provide additional stability to the child seat 106.

[0069] The first static anchor 234 can include a fixed structure within the base 200. The first static anchor 234 can be designed to remain stationary and provide a stable attachment point in the first configuration, while not being used in the second configuration. The first static anchor 234 can be located within the front of the base 200. The first static anchor 234 can interact with the stroller chassis 102 to secure it in place. In some embodiments, the first static anchor 234 can be made of a high-strength material to ensure durability.

[0070] The second static anchor 236 can include a fixed structure within the base 200. The second static anchor 236 can be designed to remain stationary and provide a stable attachment point in the first configuration, but not used in the second configuration. The second static anchor 236 can be located within the front of the base 200. The second static anchor 236 can interact with the stroller chassis 102 to secure it in place. In some embodiments, the second static anchor 236 can be made of a high-strength material to ensure durability.

[0071] The first column 206 can rotate relative to the base 200. The first column 206 and the first anchor 204 are part of the first movable anchor assembly 202. The first column 206 can rotate and change the position of the first anchor 204. The first column 206 can be aligned parallel to the second column 214, thereby allowing coordinated movement. In some embodiments, the first column 206 can be connected to the actuator handle 226 to facilitate its rotation.

[0072] The second post 214 can be aligned parallel to the first post 206. The second post 214 and the second anchor 212 are part of the second movable anchor assembly 210. The second post 214 can allow the second anchor 212 to rotate in a similar manner as the first anchor 204. The second post 214 can be located within the front of the base 200. In some embodiments, the second post 214 can be made of the same material as the first post 206 to ensure consistency.

[0073] The actuator handle 226 can be dynamically connected to various components of the base 200 and effectively convert the push / pull force applied by the user into rotational movement of the first movable anchor assembly 202, the second movable anchor assembly 210 and the movable rod anchor assembly 218 via the connecting rod.

[0074] In some embodiments, the actuator handle 226 can be located near the front of the base 200 and can be dynamically connected to the first column 206 and the second column 214, and the first column 206 and the second column 214 can rotate along a first axis. The first axis can be parallel to Figure 2 The Z axis shown in Figure 2 2, the front to rear of the base 200 extends along the X-axis, and the top to bottom of the base 200 extends along the Y-axis. The first anchor 204 and the second anchor 212 can be attached to the first column 206 and the second column 214, respectively, and can be rotated between a forward position and a rearward position based on the movement of the actuator handle 226. The first static anchor 234 can remain fixed in the front of the base 200, while the first base hook 228 and the second base hook 230 can be located in the rear of the base 200 to engage with the rod 220 during a particular configuration.

[0075] In some embodiments, the rod 220 can be connected to a first arm 222 and a second arm 224, both of which can rotate along a second axis. The movement of the actuator handle 226 may cause the rod 220 to move between a forward position (e.g., in a first configuration) and a rearward position (e.g., in a second configuration), thereby allowing it to interact with the first base hook 228 and the second base hook 230 when in the forward position. The first arm 222 and the second arm 224 can coordinate their rotation to maintain alignment with the rod 220, thereby ensuring proper engagement with the hook. The arrangement of these components can achieve synchronized movement between the front position and the rear position. In one example, the rod 220 terminates at each end with a structure such as a ring having a larger diameter than the body of the rod 220. This increased size termination helps prevent the child seat 106 from moving laterally (i.e., from one side to the other) when fixed to the rod 220. In an example, it is conceivable that the child seat hook engages with the rod 220 between the corresponding arm and the termination structure such as a ring. This limits the lateral movement of the child seat relative to the rod 220 when a lateral force is applied. Mechanical interference is created by the arm and terminal structure to limit lateral movement along the rod 220.

[0076] Figure 3 The various aspects of the present invention are shown Figure 2 A top view of the base 200 in FIG. Figure 3 As shown, the mechanical device diagram may include one or more of the base front 302, the first column 206, the first anchor 204, the second column 214, the second anchor 212, the base rear 304, the first base hook 228, the second base hook 230, the first wheel cover 318, the second wheel cover 320, the actuator handle 226, the rod 220 and / or other components.

[0077] The front portion of the base 302 may include structural elements for supporting the child carrier system 100. The front portion of the base 302 may be designed to accommodate components such as the first column 206 and the second column 214. The front portion of the base 302 may include a recessed portion to accommodate the first anchor 204 and the second anchor 212. In some embodiments, the front portion of the base 302 may be constructed of materials such as reinforced plastic or metal to ensure durability. The front portion of the base 302 and the rear portion of the base 304 form a unitary structure, and the boundary between the front and rear portions is located at the midline of the front-to-back direction of the base 200.

[0078] The rear portion of the base 304 may include components for securing the child carrier system 100. The rear portion of the base 304 may house components such as the first base hook 228 and the second base hook 230. The rear portion of the base 304 may include attachment points for the first wheel guard 318 and the second wheel guard 320. In some embodiments, the rear portion of the base 304 may be designed to accommodate the pole 220 as part of the movable pole anchor assembly 218. The rear portion of the base 304 may be configured to seamlessly engage with the front portion of the base 302.

[0079] A first wheel cover 318 can be attached to the base rear portion 304. The first wheel cover 318 can be designed to protect the wheels of the stroller chassis 102 from debris or damage. The first wheel cover 318 can be constructed of materials such as plastic or metal to ensure durability. The first wheel cover 318 can be positioned to align with the second wheel cover 320 to provide comprehensive coverage. In some embodiments, the first wheel cover 318 can include decorative elements or branding.

[0080] A second wheel guard 320 can be attached to the base rear portion 304. The second wheel guard 320 can function similarly to the first wheel guard 318, protecting the wheels of the stroller chassis 102. The second wheel guard 320 can be designed to complement the first wheel guard 318 in size and shape. The second wheel guard 320 can be secured to the base rear portion 304 using fasteners or adhesives. In some embodiments, the second wheel guard 320 can include features such as a reflective surface for visibility.

[0081] In some embodiments, the front portion 302 of the base can house the first column 206 and the second column 214 that can rotate along a first axis. The first anchor 204 and the second anchor 212 can be connected to the first column 206 and the second column 214, respectively, allowing them to rotate between a forward position and a rearward position. The actuator handle 226 can be located in the center of the base and dynamically connected to these components to facilitate their movement.

[0082] In some embodiments, the base rear portion 304 may include a first base hook 228 and a second base hook 230 designed to engage the pole 220. The pole 220 may be connected to a movable pole anchor assembly 218 including a first arm 222 and a second arm 224, each of which may rotate along a second axis parallel to the first axis. A first wheel guard 318 and a second wheel guard 320 may be located on either side of the base rear portion 304 to protect the vehicle from wheel-related debris and maintain stability during operation.

[0083] Figure 4 The first configuration according to various aspects of the present invention is shown. Figure 2 A top-down perspective view of the mechanical components of the internal structure of the base 200. Figure 4 As shown, the mechanical assembly diagram may include one or more of the first plate 402, the first column 206, the first anchor 204, the first static anchor 234, the second column 214, the second anchor 212, the second static anchor 236, the actuator handle 226, the first arm 222, the first link 232, the first base hook 228, the second arm 224, the second link 426, the second base hook 230, the rod 220 and / or other components.

[0084] The first plate 402 may include structural features to support the assembly of other components in the child carrier base. The first plate 402 may be configured as a housing fixed to the base. The first plate 402 may have a side wall with a longitudinally inclined groove disposed thereon. The first plate 402 may interact with a pair of first shafts and a pair of second shafts, the pair of first shafts and the pair of second shafts passing through two pairs of first gains disposed on opposite sides of the first movable plate and movably disposed in the first gain. In some embodiments, as described herein, the first plate 402 may be the same or similar to a plate fixed to the housing of the base.

[0085] The second link 426 may include a connection mechanism between the second arm 224 and other components. The second link 426 may be connected to the second arm 224 and the rod 220. When the actuator handle 226 is operated, the second link 426 may facilitate the movement of the rod 220.

[0086] In some embodiments, the first plate 402 can be centrally located within the base, serving as a structural element to which other components are attached. The first post 206 and the second post 214 can be mounted on opposite sides of the first plate 402, thereby allowing rotational movement along a first axis. The first anchor 204 and the second anchor 212 can be connected to the first post 206 and the second post 214, respectively, so that they can rotate between a forward position and a rearward position. The first static anchor 234 and the second static anchor 236 can be fixedly attached to the front of the base, thereby providing a stable connection point.

[0087] In some embodiments, the actuator handle 226 can be located at the top of the base, connected to the first plate 402 and designed to control the movement of various components. The first arm 222 and the second arm 224 can be part of the movable rod anchor assembly 218, and the rod 220 connects them and allows coordinated movement along the second axis. The first link 232 and the second link 426 can connect the first arm 222 and the second arm 224 to the first base hook 228 and the second base hook 230, respectively, to achieve a fixed attachment point for the child seat 106 or the stroller chassis 102. The interaction between these components can make the base smoothly transition between various configurations to accommodate different seating arrangements.

[0088] Figure 5 Shows Figure 2 A bottom-up perspective view of the internal components of the base in the first configuration. Figure 5 As shown, the mechanical assembly components may include one or more of the first column 206, the first anchor 204, the first plate 402, the second column 214, the second anchor 212, the second plate 512, the actuator handle 226, the first arm 222, the first link 232, the first base hook 228, the second arm 224, the second link 426, the second base hook 230, the rod 220, and / or other components.

[0089] The second plate 512 can move relative to the first plate 402. The second plate 512 can be fixedly connected to the actuator. The second plate 512 can have an inclined groove that interacts with the slider. The second plate body 512 can slide to drive other components to rotate and unlock. In one example, the movement of the first plate 402 and the second plate 512 is conducive to the movement and fixation of the components of the base 200. For example, the first movable anchor assembly 202, the second movable anchor assembly and the movable rod anchor assembly 218 can move between the first configuration and the second configuration, and be fixed in one or more of those configurations through the interaction and action of the first plate 402 and the second plate 512.

[0090] In some embodiments, the first column 206 and the second column 214 can be arranged along a first axis (eg, parallel to the Figure 2 The first and second anchors 204, 212 may be rotatably connected to their respective posts. The first and second plates 402, 512 may be disposed adjacent the posts, with the actuator handle 226 centrally located to interact with the two plates. The first and second arms 222, 224 may extend rearwardly from the rod 220, which may be oriented along a second axis and connected to the first and second links 232, 426. The first and second base hooks 228, 230 may be located near the rear of the base, aligned to engage with the arms during a particular configuration.

[0091] In some embodiments, the actuator handle 226 can drive the movement of the first plate 402 and the second plate 512, which in turn can affect the rotation of the first column 206 and the second column 214. The movement can cause the first anchor 204 and the second anchor 212 to rotate between the forward position and the rearward position. When the first link 232 and the second link 426 translate the movement of the plates, the rod 220 can rotate along the second axis. The first arm 222 and the second arm 224 can pivot relative to the base to engage or disengage with the first base hook 228 and the second base hook 230, depending on the configuration.

[0092] Figure 6 In a first configuration according to various aspects of the present invention, Figure 3 Cutting line 6-6 Figure 2 A transverse cross-sectional view of the base 200. Figure 6 As shown, the base 200 may include one or more of a base front 302 , a base rear 304 , a first base hook 228 , a first arm 222 , a rod 220 , and / or other components.

[0093] Figure 7 The various aspects of the present invention are shown Figure 1 sectional view of a child carrier system 100. Figure 7 As shown, the child carrier system 100 may include one or more of the child seat 106, the stroller chassis 102, the base front 302, the first anchor 204, the first column 206, the first static anchor 234, the fixed hook 714, the base rear 304, the first base hook 228, the rod 220 and / or other components.

[0094] The securing hook 714 may engage with other components to secure the child seat 106 to the stroller chassis 102. The securing hook 714 may be designed to engage with a locking element integrated into the stroller chassis 102, thereby allowing the child seat 106 to be releasably secured to the stroller chassis 102.

[0095] In some embodiments, the child seat 106 can be located above the base front 302 and the base rear 304, with the stroller chassis 102 extending outwardly from the base front 302. The first anchor 204 can be rotatably connected to the first post 206, which can be fixed within the base front 302. The first static anchor 234 can remain fixed within the base front 302, and the fixed hook 714 can be aligned to interact with a component of the stroller chassis 102. The rod 220 can extend longitudinally within the base rear 304 and can engage with the first base hook 228 during a particular configuration.

[0096] In some embodiments, the first anchor 204 can rotate about the first post 206 to transition between a forward position and a rearward position, depending on the configuration of the base front 302. The rod 220 can move within the base rear 304 to engage or disengage with the first base hook 228, thereby allowing coordinated operation with the first anchor 204. The fixed hook 714 can remain stationary to interact with the stroller chassis 102, while the first static anchor 234 can provide a stable connection point for the stroller chassis 102 during operation.

[0097] Figure 8 An illustration of a child carrier design is shown in a second configuration in accordance with various aspects of the present invention, which supports the technology of a base 200 with an adjustable configuration for seat integration.

[0098] The first movable anchor assembly 202 can include a first column 206 and a first anchor 204. The first movable anchor assembly 202 can be located in the front of the base 200 and can rotate about a first axis. The first movable anchor assembly 202 can be dynamically connected to the actuator handle 226 to allow position adjustment. In some embodiments, the first movable anchor assembly 202 can include components such as the first column 206 and the first anchor 204.

[0099] In some embodiments, when the base 200 is in a particular configuration, a movable rod anchor assembly 218 including a rod 220 can engage with a first base hook 228. An actuator handle 226 can facilitate movement of the rod 220 to the front or rear of the base 200, depending on the desired configuration. The coordinated movement of the first arm 222 and the first post 206 along parallel axes can ensure that the child seat 106 or stroller chassis 102 is properly aligned and securely attached to the base 200.

[0100] Fig. 9 A perspective view of a base 200 capable of securing a second configuration of a child seat 106 is shown, supporting techniques for a seat-integrated child carrier base with an adjustable configuration according to various aspects of the present invention.

[0101] The first protrusion 408 can interact with the first gain on the base 200. The first protrusion 408 can be a structural feature that can extend outward from a component of the base 200. The first protrusion 408 can interact with the first gain to affect the movement or positioning of other components. The first protrusion 408 can be connected to or integrated with the first movable plate. In some embodiments, the first protrusion 408 can be replaced with an alternative protrusion design that can achieve similar functions.

[0102] The second protrusion 918 can interact with the second gain on the base 200. The second protrusion 918 can be a structural element that can extend outward from a component of the base 200. The second protrusion 918 can interact with the second gain to affect the movement or positioning of other components. The second protrusion 918 can be connected to or integrated with the second movable plate. In some embodiments, the second protrusion 918 can be replaced with an alternative protrusion design that can achieve similar functions.

[0103] In some embodiments, the actuator handle 226 can be located in the center of the base for easy access and operation. The first column 206 and the second column 214 can be located on opposite sides of the actuator handle 226 so that the first anchor 204 and the second anchor 212 can move in coordination. The first arm 222 and the second arm 224 can be connected to the rod 220, which extends through the base and interacts with the first base hook 228 and the second base hook 230. The first protrusion 408 and the second protrusion 918 can be located near the corresponding anchors, allowing them to engage with the stroller chassis 102 or the child seat 106 as needed.

[0104] In some embodiments, the components can operate together in a synchronized manner. When the actuator handle 226 is moved, it can cause the first column 206 and the second column 214 to rotate, which in turn can rotate the first anchor 204 and the second anchor 212. This rotation can reposition the first arm 222 and the second arm 224, moving the rod 220 to engage or disengage with the first base hook 228 and the second base hook 230. The first protrusion 408 and the second protrusion 918 can move in tandem with the anchors, ensuring that the base can securely accommodate the stroller chassis 102 or the child seat 106 in the desired configuration.

[0105] Fig.10 The various aspects of the present invention are shown Fig. 9 A top view of the base 200 in FIG.

[0106] Fig.11 A second configuration according to various aspects of the present invention is shown. Fig. 9 A top-down perspective view of the internal structural mechanical components of the base 200.

[0107] Fig.12 A second configuration according to various aspects of the present invention is shown. Fig. 9 A bottom-up perspective view of the internal structural mechanical components of the base 200.

[0108] Fig.13 A second configuration of the base 200 according to various aspects of the present invention is shown. Fig. 9 The base of the Fig.10 A transverse cross-sectional view taken along cutting line 13-13.

[0109] Fig.14 Shows Figure 8 1 is a cross-section of a child carrier system 100, which supports the technology of a child carrier base with an adjustable structure for seat and stroller integration according to various aspects of the present invention. As shown, the seat hook 1402 clamps the rod 220 to fix the child seat 106 to the base 200.

[0110] The following clauses support combinations of features contemplated in conjunction with various aspects of this document. The reference numerals provided in the following clauses are provided as examples and not absolutes. The reference numerals are intended to inform but not limit the interpretation of the intended concepts.

[0111] Example clause A: A child carrier system (100) may include: a child seat 106; a stroller chassis 102; and a base having a front portion and a rear portion, the base may include: an actuator handle (226); a first movable anchor assembly (202) having a first post (206) and a first anchor (204) rotatable relative to the base along a first axis, wherein the first movable anchor is located within the front portion; a first static anchor (234), wherein the first static anchor (234) is located within the front portion; a movable rod anchor assembly 218 having a rod (220) and a first arm (222) rotatable relative to the base along a second axis, wherein the first axis line parallel to the second axis, wherein the movable rod anchor assembly 218 is located within the rear portion; and a first base hook, wherein the first base hook is located within the rear portion, wherein the actuator is dynamically connected to the first movable anchor assembly (202) and the movable rod anchor assembly 218, so that in a first configuration of the base, the actuator handle (226) is in a first position, the first anchor (204) is rotatably positioned to a forward position and the rod (220) is positioned to a rearward position, and in a second configuration of the base, the actuator handle (226) is in a second position, the first anchor (204) is rotatably positioned to a rearward position, and the rod (220) is positioned to a forward position engaged with the first base hook.

[0112] Example clause B: The child carrier system 100 according to example clause A, wherein the stroller chassis 102 is connected to the first base hook in the first configuration.

[0113] Example clause C: The child carrier system 100 of example clause A or example clause B, wherein the stroller chassis 102 is connected to the first static anchor (234) in the first configuration.

[0114] Example clause D: The child carrier system 100 of any one of example clauses A to C, wherein the stroller chassis 102 is connected to the child seat 106 in the first configuration.

[0115] Example clause E: The child carrier system 100 of any one of example clauses A to D, wherein the child seat 106 is connected to the first anchor (204) in the second configuration.

[0116] Example clause F: The child carrier system 100 of any of example clauses A to E, wherein the child seat 106 is connected to the rod (220) in the second configuration.

[0117] Example clause G: The child carrier system 100 of any one of example clauses A to F, wherein in the first configuration, the first static anchor (234) is superior to the first anchor (204) on the base.

[0118] Example clause H: The child carrier system 100 of any one of example clauses A to G, wherein in the second configuration, the first anchor (204) is superior to the first static anchor (234) on the base.

[0119] Example clause I: The child carrier system 100 of any one of example clauses A to H, wherein in the first configuration, the rod (220) is located higher on the base relative to its position in the second configuration.

[0120] Example Clause J: The child carrier system 100 according to any of Example Clauses A to I may also include: a second movable anchor assembly (210) having a second column (214) and a second anchor (212) rotatable relative to the base along a first axis, wherein the second movable anchor is located in the front portion; a second static anchor (236), wherein the first static anchor (234) is located in the front portion of the second static anchor (236); and a second base hook located in the rear portion, wherein the movable rod anchor assembly 218 has a second arm (224) rotatable to the base along a second axis.

[0121] Example clause K: The child carrier system 100 of any one of example clauses A to J, wherein the stroller chassis 102 is connected to the first base hook and the second base hook in the first configuration.

[0122] Example clause L: The child carrier system 100 of any one of example clauses A to K, wherein the stroller chassis 102 is connected to the first static anchor (234) and the second static anchor (236) in the first configuration.

[0123] Example clause M: The child carrier system 100 of any of example clauses A to L, wherein the child seat 106 is connected to the first anchor (204) and the second anchor (212) in the second configuration.

[0124] Example clause N: A child carrier system 100 according to any of example clauses A to M, wherein in the first configuration, the first static anchor (234) and the second static anchor (236) are higher on the base than the first anchor (204) and the second anchor (212).

[0125] Example clause O: A child carrier system 100 according to any one of example clauses A to N, wherein, in the second configuration, the first anchor (204) and the second anchor (212) are higher on the base than the first static anchor (234) and the second static anchor (236).

[0126] Example Clause P: A base of a child carrier system 100, the base having a front portion and a rear portion, the base may include: an actuator handle (226); a first movable anchor assembly (202) having a first post (206) and a first anchor (204) rotatable relative to the base along a first axis, wherein the first movable anchor is located within the front portion; a first static anchor (234), wherein the first static anchor (234) is located within the front portion; a movable rod anchor assembly 218 having a rod (220) and a first arm (222) rotatable relative to the base along a second axis, wherein the first axis is parallel to the second axis and is movable relative to the base. a movable rod anchor assembly 218 located within the rear portion; and a first base hook, wherein the first base hook is located within the rear portion, and the actuator is dynamically connected to the first movable anchor assembly (202) and the movable rod anchor assembly 218, so that in a first configuration of the base, the actuator handle (226) is located in a first position, the first anchor (204) is rotatably positioned to a forward position and the rod (220) is positioned to a rearward position, and in a second configuration of the base, the actuator handle (226) is located in a second position, the first anchor (204) is rotatably positioned to a rearward position, and the rod (220) is positioned to a forward position engaged with the first base hook.

[0127] Example clause Q: The base of example clause P, wherein, in the first configuration, the first static anchor (234) is higher on the base than the first anchor (204).

[0128] Example clause R: The base of example clause P or example clause Q, wherein, in the second configuration, the first anchor (204) is higher on the base than the first static anchor (234).

[0129] Example clause S: ​​A base according to any of example clauses P to R, wherein the rod (220) is located higher on the base in the first configuration than in the second configuration.

[0130] Example Clause T: A base according to any one of Example Clauses P to S may also include a second movable anchor assembly (210) having a second column (214) and a second anchor (212) rotatable relative to the base along a first axis, wherein the second movable anchor is located in the front portion; a second static anchor (236), wherein the first static anchor (234) is located in the front portion; and a second base hook located in the rear portion, wherein the movable rod anchor assembly 218 has a second arm (224) rotatable to the base along a second axis.

[0131] Example clause U: The base of any of example clauses P to T, wherein the first base hook and the second base hook of the first configuration are configured to engage with the stroller chassis 102.

[0132] Example clause V: A base as described in any of example clauses P to U, wherein the first static anchor (234) and the second static anchor (236) of the first configuration are configured to engage with the stroller chassis 102.

[0133] Example clause W: The base of any of example clauses P to V, wherein the first anchor (204) and the second anchor (212) of the second configuration are configured to engage the child seat 106.

[0134] Example clause X: A base according to any of example clauses P to W, wherein, in the first configuration, the first static anchor (234) and the second static anchor (236) are higher on the base than the first anchor (204) and the second anchor (212).

[0135] Example clause Y: A base according to any of example clauses P to X, wherein, in the second configuration, the first anchor (204) and the second anchor (212) are higher on the base than the first static anchor (234) and the second static anchor (236).

[0136] Example Clause Z: A base (200) of a child carrier system (100) having a front portion and a rear portion, the base may include: a first movable anchor assembly (202) having a first post (206) and a first anchor (204) rotatable relative to the base along a first axis, wherein the first movable anchor is located within the front portion; a movable rod anchor assembly (218) having a rod (220) and a first arm (222) rotatable relative to the base along a second axis, wherein the first axis is parallel to a second axis, the movable rod anchor assembly (218) is located within the rear portion; the first movable anchor assembly (202) and the movable rod anchor assembly (218) can be positioned so that in a first configuration of the base (200), the first anchor (204) can be rotatably positioned to a forward position and the rod (220) can be positioned to a rearward position, and in a second configuration of the base, the first anchor (204) can be rotatably positioned to a rearward position and the rod (220) can be positioned to a forward position engaged with the first base hook.

[0137] The descriptions set forth herein in conjunction with the accompanying drawings illustrate various example configurations, but do not represent all examples that may be implemented or within the scope of the claims. The term "exemplary" as used herein means "used as an example, instance, or illustration," rather than "preferred" or "superior to other examples." The detailed description includes specific details for the purpose of providing an understanding of the described techniques. However, these techniques may be implemented without these specific details. In some cases, well-known structures and devices are shown in block diagram form to avoid obscuring the concepts of the described examples.

[0138] In the drawings, similar components or features may have the same reference number. In addition, various components of the same type may be distinguished by following the reference number with a dash and a second label to distinguish the similar components. If only the first reference number is used in the specification, the description applies to any one of the similar components having the same first reference number, regardless of the second reference number.

[0139] The information and signals described herein may be represented using any of a variety of different technologies and techniques. For example, the data, instructions, commands, information, signals, bits, symbols, and chips cited throughout the above description may be represented by voltage, current, electromagnetic waves, magnetic fields or particles, optical fields or particles, or any combination thereof.

[0140] The description herein is provided to enable those skilled in the art to make or use the present invention. Various modifications of the present invention will be apparent to those skilled in the art, and the general principles defined herein may be applied to other variations without departing from the scope of the present invention. Therefore, the present invention is not limited to the examples and designs described herein, but should be given the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A child carrier system (100), characterized in that: The system comprises: Child seats (106); a stroller chassis (102); and A base (200) having a base front portion (302) and a base rear portion (304), the base comprising: an actuator handle (226); a first movable anchor assembly (202) having a first post (206) and a first anchor (204) rotatable relative to the base along a first axis, wherein the first movable anchor assembly is positioned within a front portion of the base; a first static anchor (234) located within the front portion of the base; a movable rod anchor assembly (218) having a rod (220) and a first arm (222) rotatable relative to the base along a second axis, wherein the first axis is parallel to the second axis, the movable rod anchor assembly being positioned within a rear portion of the base; and a first base hook (228) located within the rear portion of the base, wherein the actuator handle is dynamically connected to the first movable anchor assembly and the movable rod anchor assembly such that in a first configuration of the base, the actuator handle is in a first position, the first anchor is rotatably positioned to a forward position, and the rod is positioned to a rearward position, and in a second configuration of the base, the actuator handle is in a second position, the first anchor is rotatably positioned to a rearward position, and the rod is positioned to a forward position engaged by the first base hook.

2. The child carrier system (100) according to claim 1, characterized in that: The stroller chassis (102) is hooked to the first base in the first configuration.

3. The child carrier system (100) according to claim 1, characterized in that: The stroller chassis (102) is connected to the first static anchor (234) in the first configuration.

4. The child carrier system (100) according to claim 1, characterized in that: The stroller chassis (102) is connected to the child seat (106) in the first configuration.

5. The child carrier system (100) according to claim 1, characterized in that: The child seat (106) is connected to the first anchor (204) in the second configuration.

6. The child carrier system (100) according to claim 1, characterized in that: The child seat (106) is connected to the rod (220) in the second configuration.

7. The child carrier system (100) according to claim 1, characterized in that: In the first configuration, the first static anchor (234) is higher on the base than the first anchor (204).

8. The child carrier system (100) according to claim 1, characterized in that: In the second configuration, the first anchor (204) is higher on the base than the first static anchor (234).

9. The child carrier system (100) according to claim 1, characterized in that: In the first configuration, the rod (220) is positioned higher on the base relative to the second configuration.

10. The child carrier system (100) according to claim 1, further comprising: a second movable anchor assembly (210) having a second post (214) rotatable relative to the base (200) along the first axis and a second anchor (212), the second movable anchor being positioned within the front portion; a second static anchor (236), said first static anchor (234) being positioned at said front portion; and A second base hook is positioned at the rear portion, wherein the movable pole anchor assembly (218) has a second arm (224) rotatable relative to the base along the second axis.

11. The child carrier system (100) according to claim 10, characterized in that: The stroller chassis (102) is connected to the first base hook and the second base hook in the first configuration.

12. The child carrier system (100) according to claim 10, characterized in that: The stroller chassis (102) is connected to the first static anchor (234) and the second static anchor (236) in the first configuration.

13. The child carrier system (100) according to claim 10, characterized in that: The child seat (106) is connected to the first anchor (204) and the second anchor (212) in the second configuration.

14. The child carrier system (100) according to claim 10, characterized in that: In the first configuration, the first static anchor (234) and the second static anchor (236) are higher on the base than the first anchor (204) and the second anchor (212).

15. The child carrier system (100) according to claim 10, characterized in that: In the second configuration, the first anchor (204) and the second anchor (212) are higher on the base than the first static anchor (234) and the second static anchor (236).

Citation Information

Cited By

  • Child carrier system

    WO2026166474A1