Personal care devices

The personal care device addresses alignment and friction issues by using an inclined cylinder with a lever mechanism, ensuring compatibility with eccentric drives and improving assembly efficiency.

JP7846443B2Active Publication Date: 2026-04-15KONINKLIJKE PHILIPS NV
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-04-03
Publication Date
2026-04-15

AI Technical Summary

Technical Problem

Existing personal care appliances face issues with eccentric mechanisms becoming unsuitable due to load when the motor is spaced apart from the drive bridge, and using a lever with a thin drive bridge leads to alignment difficulties due to stacking tolerances.

Method used

A personal care device design featuring a lever with an inclined cylinder inserted into the drive bridge slot, where the cylinder's diameter to height ratio is greater than 1, allowing compatibility with both eccentric and lever mechanisms, and incorporating guides and ramps for easy assembly.

Benefits of technology

The design ensures compatibility with eccentric mechanisms while reducing friction and simplifying alignment, enhancing assembly efficiency and effectiveness of the personal care device.

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Abstract

The subject matter of the present disclosure relates to a personal care appliance having a handle, a functional device at a head of the handle, a drive bridge for driving the functional device, the drive bridge including a slot, a motor in the handle, and a lever connected between the motor and the drive bridge for reciprocatingly driving the drive bridge, the lever including a cylinder at a tip inserted into the slot of the drive bridge, the cylinder being inclined relative to the drive bridge.
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Description

Technical Field

[0006] , ,

[0001] The subject matter of the present disclosure relates to a personal care appliance having a drive bridge driven by a motor.

Background Art

[0002] Personal care appliances such as razors include a functional device (e.g., a cutter), a drive bridge coupled to the cutter, a motor, and a linkage extending between the motor and the drive bridge. The selection of the linkage depends on the position of the motor relative to the drive bridge. A motor in proximity to the drive bridge can employ an eccentric. The eccentric can be adapted to fit into a slot of the drive bridge, and the slot forms opposing drive surfaces for the eccentric to be pressed against.

Summary of the Invention

Problems to be Solved by the Invention

[0003] However, when the motor is spaced apart from the drive bridge, the eccentric may become unsuitable due to the load on the eccentric.

[0004] Therefore, a lever can be employed as the linkage. However, a drive bridge designed for use with a motor eccentric may not be suitable for a lever. This is mainly because the drive surfaces used with the eccentric are generally small, for example, because the drive bridge is relatively thin. Thus, friction can be reduced. However, when a thin drive bridge is used with a lever, it may be difficult to align the lever with the slot of the drive bridge due to stacking tolerances along the length of the personal care appliance.

[0005] The object of the subject matter of the present disclosure is to improve the prior art.

Means for Solving the Problems

[0006] According to a first aspect of the present invention, a personal care device is provided, which comprises a handle, a functional device located at the head of the handle, a drive bridge for driving the functional device, the drive bridge including a slot, a motor located in the handle, and a lever connected between the motor and the drive bridge for reciprocating the drive bridge, the lever including a cylinder at its tip inserted into the slot of the drive bridge, the slot being located between opposing drive surfaces, the cylinder being inclined with respect to the drive bridge, and the ratio D / H of the diameter D of the cylinder to the height H of the individual drive surfaces being greater than 1.

[0007] The fact that the cylinder is inclined relative to the drive bridge means that the drive bridge, designed to engage with the motor eccentric, can be used in conjunction with the lever. As a result, the motor can be moved away from the drive bridge.

[0008] In one embodiment, the inclination angle of the cylinder relative to the drive bridge is between 10 and 30 degrees.

[0009] In one embodiment, the inclination angle is approximately 20 degrees.

[0010] In one embodiment, the ratio D / H is approximately 2.2.

[0011] In one embodiment, the length of the cylinder is between approximately 4 mm and 8 mm.

[0012] In one embodiment, the length of the cylinder is governed by L = e / tan(α) + L_start, where L is the length of the cylinder measured in mm, e is the error range between the highest and lowest positions of the cylinder in the slot measured in mm, α is the inclination angle of the cylinder relative to the slot, and L_start is the starting value of the cylinder length measured in mm, assuming e is zero.

[0013] In one embodiment, the error e is approximately 1 mm.

[0014] In one embodiment, the cylinder axis is substantially parallel to the axis of rotation of the lever.

[0015] In one embodiment, the lever has a motor end opposite to the tip, the motor end has a slot, and the motor has an eccentric drive mechanism that extends in the direction of the axis from which the handle extends, and the eccentric drive mechanism is housed in the slot of the motor end of the lever.

[0016] In one embodiment, the eccentric drive mechanism has a substantially spherical tip that is contained within a slot at the motor end of the lever. This makes it less likely for the tip of the eccentric drive mechanism to get stuck in the slot.

[0017] In one embodiment, the motor end of the lever has a guide for guiding the eccentric drive mechanism there during assembly. This makes assembly easier and faster.

[0018] In one embodiment, the guide at the motor end of the lever has opposing ramps.

[0019] In one embodiment, the drive bridge has a guide for guiding the tip of the lever into a slot in the drive bridge during assembly. This makes assembly quick and easy.

[0020] In one embodiment, the guide of the drive bridge has opposing inclined surfaces.

[0021] In one embodiment, the lever extends in a direction substantially parallel to the axis from which the handle extends, and optionally, the motor is located at the distal end of the handle relative to the head.

[0022] In one embodiment, the personal care device is a shaver, and the functional device has a cutter.

[0023] According to one example, a personal care appliance is provided, which includes a handle, a functional device at the head of the handle, a drive bridge for driving the functional device, the drive bridge including a slot, a motor within the handle, and a lever coupled between the motor and the drive bridge for reciprocally driving the drive bridge. The lever includes a cylinder at a tip inserted into the slot of the drive bridge, and the cylinder is inclined with respect to the drive bridge.

[0024] These and other aspects of the invention will become apparent from the embodiments described below and will be described with reference to the embodiments.

Brief Description of the Drawings

[0025] [Figure 1] FIG. showing a perspective view of the head portion of a personal care appliance including a drive bridge and a motor eccentric within its slot. [Figure 2] FIG. showing a perspective view of a cross-section of the head portion of the personal care appliance of FIG. 1. [Figure 3] FIG. showing a perspective view of the head portion of a personal care appliance including a drive bridge and a lever within its slot. [Figure 4] FIG. showing a cross-sectional view of the head portion of FIG. 3. [Figure 5] FIG. showing a perspective view of the head portion of a personal care appliance according to one or more embodiments, including a drive bridge and a lever having a tip portion with a cylinder within the slot of the drive bridge. [Figure 6] FIG. showing a cross-sectional view of the head portion of FIG. 5. [Figure 7] FIG. showing an enlarged portion of the cross-sectional view of FIG. 6.

Modes for Carrying Out the Invention

[0026] Embodiments of the present invention can be most preferably understood by referring to the accompanying drawings.

[0027] Exemplary embodiments are described with reference to the elements, modules, and units discussed herein, but such functional elements may be combined into fewer elements or separated into additional elements. Various combinations of optional features are described herein, but it should be understood that the features described can be combined in any suitable combination. In particular, features of any one exemplary embodiment may be combined with features of any other embodiment as appropriate, unless such combinations are mutually exclusive. Throughout this document, the terms “having” or “including” mean including the specified element, but do not exclude the existence of other elements.

[0028] Personal care devices can be, for example, handheld devices used for personal care or grooming. Personal care devices include cleaning devices, skin treatment devices, hair removal devices, massage devices, etc. Generally, personal care devices are used to perform treatments or actions on the body of a human or animal.

[0029] Hair cutting instruments and hair grooming instruments are well known in the art and may include, for example, shavers, razors, trimmers, epilators, hair styling instruments, and combinations thereof. Generally, hair grooming instruments have an electric motor configured to drive a cutting unit (or cutter), such as a set of blades, to perform hair cutting and / or grooming actions. More generally, hair cutting instruments are also called grooming instruments.

[0030] Referring to Figures 1 and 2, a personal care device in the form of a hair cutting instrument or shaver is provided. The personal care device includes a guard 102, a functional device (in this case, a cutter) 104, a drive bridge 106, and a linkage 108. Both the cutter 104 and the guard 102 have multiple teeth. The cutter 104 cooperates with the guard 102 by moving back and forth in a reciprocating manner to cut the hair between the individual teeth. The cutter 104 is connected to the drive bridge 106. The drive bridge includes a slot 110. The slot is oriented perpendicular to the direction of movement of the drive bridge 106.

[0031] The linkage 108 in Figures 1 and 2 is an eccentric drive mechanism. This is because the motor (not shown) is positioned close to the drive bridge 106. The eccentric drive mechanism has an elongated stem that extends parallel to the motor's rotation axis. However, the elongated stem is not in series with the motor's rotation axis, but is offset. Thus, the stem provides the eccentric drive mechanism.

[0032] Slot 110 is provided between opposing drive surfaces. During operation, the eccentric drive mechanism pushes the drive surface, causing the drive bridge 106 to reciprocate as the motor rotates. To reduce friction between the eccentric drive mechanism and the drive surface, the drive surface can be made relatively thin. Thus, the drive surface has a small contact surface with the motor eccentric. The drive bridge has opposing ramps 112 that help guide the eccentric drive mechanism into the drive bridge 106 during assembly.

[0033] Referring to Figures 3 and 4, a personal care device is provided in which the motor is located away from the drive bridge, compared to the personal care devices in Figures 1 and 2. In other words, the motor is distal to the drive bridge. To accommodate the distally located motor, the linkage is a lever. The lever includes a tip 114, a hub 116, and a motor end. The tip includes a substantially spherical ball to reduce friction with the drive surface. The hub 116 includes a hole for mounting to a shaft (not shown) fixed to the handle of the personal care device. The center of the hub provides the axis of rotation for the lever.

[0034] The motor end 118 includes a fork 120 that provides a slot 121 for receiving a motor eccentric 122.

[0035] It should be understood that the tolerances stacked along the personal care device will cause alignment problems between the tip 114 and the slot 110.

[0036] This problem is solved by the shaver-shaped personal care devices shown in Figures 5 to 7. Although not shown in Figures 5 to 7, features common to the personal care devices described in relation to Figures 1 to 4 can be considered to have the same reference numeral incremented by 100.

[0037] Referring to Figures 5 to 7, the personal care device comprises a handle (not shown), a functional device 203 located on the head of the handle, a drive bridge 206 for driving the functional device, a motor (not shown) located inside the handle, and a lever 208 located between the motor and the drive bridge 206 for reciprocating the drive bridge. The motor is positioned at the distal end of the handle relative to the head.

[0038] In this case, the functional device has a cutter 204 because the personal care device is a shaver. The functional device also includes a guard 202, similar to the personal care devices in Figures 1 to 4.

[0039] Similarly, the drive bridge 206 has a slot 210. The slot 210 is formed between two opposing surfaces of the drive bridge, which may be called the drive surface. The drive surface has a height H. The drive bridge has a guide 230 for guiding the tip 214 of the lever 208 into the slot 210 during assembly. The guide 230 includes opposing inclined surfaces.

[0040] Lever 208 extends in substantially the same direction as the motor's axis of rotation, which is substantially the same as the axis from which the handle extends.

[0041] The lever 208 has a cylinder 232 at its tip 214. The cylinder 232 has a diameter D. The cylinder 232 is inserted into a slot 210 of the drive bridge 206. The drive bridge 206 is inclined with respect to the cylinder. In other words, the cylinder 232 is inclined with respect to or relative to the slot 210. To put it another way, the direction in which the slot extends is inclined with respect to the central axis of the cylinder. Thus, it is easier to align the cylinder 232 with the drive surface of the drive bridge 206 compared to a configuration in which the slot 210 extends in a direction parallel to or along the central axis of the cylinder 232. The central axis of the cylinder 232 may be parallel to the axis of rotation of the lever. Furthermore, the diameter D of the cylinder 232 is greater than the height H of the drive surface. Therefore, the ratio of the diameter D of the cylinder 232 to the height H of the drive surface is greater than 1. The ratio D / H is, for example, in the range of 1.2 to 5. The ratio D / H can be, for example, 1.2, 1.26, 1.5, 2, 2.2, 2.5, 3, 3.4, 4, 4.5, 5, etc. The optimal D / H ratio for controlling manufacturing tolerances would be approximately 2.2. Figure 7 shows a D / H ratio of approximately 2.2. By making the D / H ratio greater than 1, the drive bridge 206 used to drive the functional device is suitable for, in other words, maintains compatibility with, an eccentric drive mechanism having an elongated stem of diameter D. Thus, it will be understood by those skilled in the art that the inclined drive bridge 206 for driving the functional device can be adapted to a personal care device incorporating either an eccentric drive mechanism or a lever 208, as described in the context of the present invention.

[0042] In some embodiments, the inclination angle of the cylinder relative to the drive bridge is between 10 and 30 degrees. The inclination angle can be approximately 20 degrees. Taking this into consideration, the length of the cylinder can be between 4 and 8 mm. The length of the cylinder can be governed by the following equation (1). TIFF0007846443000001.tif1353

[0043] In equation (1), L is the length of the cylinder measured in mm, e is the error between the highest and lowest positions of the cylinder in the slot measured in mm, α is the inclination angle of the cylinder relative to the slot, and L_start is the starting value of the cylinder length measured in mm, assuming e is zero. The error e can be approximately 1 mm.

[0044] The lever 208 may have a motor end opposite to the tip 214. The motor end may include a slot 234. The motor may have an eccentric drive mechanism 236 extending in the direction of the axis from which the handle extends. The eccentric drive mechanism 236 may be housed in the slot 234 at the motor end of the lever 208.

[0045] The eccentric drive mechanism 236 may have a substantially spherical tip portion 240 contained within a slot 234 at the motor end of the lever 208. The motor end of the lever has a guide 238 that guides the eccentric drive mechanism during assembly. The guide 238 at the motor end of the lever has opposing ramps.

[0046] Although the present invention has been illustrated and described in detail in the figures and description, such illustrations and description are merely illustrative and not limiting. The present invention is not limited to the disclosed embodiments.

[0047] Other variations of the disclosed embodiments can be understood and practiced by those skilled in the art who practice the claimed invention, based on the drawings, description, and examination of the appended claims. In the claims, the word “has” does not exclude other elements or steps, and the indefinite article “a” or “an” does not exclude plurality. One processor or other unit can perform the functions of multiple items described in the claims. The mere fact that certain means are described in different dependent claims does not imply that combinations of these means cannot be used advantageously. Any reference numerals in the claims should not be construed as limiting the scope of the invention.

Claims

1. It is a personal care device, The handlebars and The functional device located on the head of the handle, A drive bridge for driving the aforementioned functional device, comprising a drive bridge including a slot, The motor inside the handle, The motor and the drive bridge are coupled together and a lever is provided to reciprocate the drive bridge, the lever including a cylinder at its tip inserted into a slot in the drive bridge, the slot being provided between opposing drive surfaces, The cylinder is inclined with respect to the drive bridge, A personal care device in which the ratio D / H of the diameter D of the cylinder to the height H of the individual drive surfaces is greater than 1.

2. The personal care device according to claim 1, wherein the inclination angle of the cylinder with respect to the drive bridge is between 10 degrees and 30 degrees, preferably the inclination angle is about 20 degrees.

3. The personal care device according to claim 1, wherein the ratio D / H is approximately 2.

2.

4. The personal care device according to claim 2 or 3, wherein the length of the cylinder is between approximately 4 mm and 8 mm.

5. The length of the cylinder is, L=e / tan(α)+L_start Dominated by, The personal care device according to claim 4, wherein L is the length of the cylinder measured in mm, e is the error range between the highest and lowest positions of the cylinder in the slot measured in mm, α is the inclination angle of the cylinder with respect to the drive bridge, and L_start is the starting value of the cylinder length measured in mm, assuming e is zero.

6. The personal care device according to claim 5, wherein the error e is approximately 1 mm.

7. The personal care device according to any one of claims 1 to 3, wherein the axis of the cylinder is substantially parallel to the rotation angle of the lever.

8. The personal care device according to any one of claims 1 to 3, wherein the lever has a motor end facing the tip, the motor end has a slot, the motor has an eccentric drive mechanism extending in the direction of the axis from which the handle extends, and the eccentric drive mechanism is housed in the slot of the motor end of the lever.

9. The personal care device according to claim 8, wherein the eccentric drive mechanism has a substantially spherical tip contained within a slot at the motor end of the lever.

10. The personal care device according to claim 9, wherein the motor end of the lever has a guide for guiding the eccentric drive mechanism during assembly.

11. The personal care device according to claim 10, wherein the guide at the motor end of the lever has opposing lamps.

12. The personal care device according to any one of claims 1 to 3, wherein the drive bridge has a guide that guides the tip of the lever into a slot of the drive bridge during assembly.

13. The personal care device according to claim 12, wherein the guide of the drive bridge has opposing inclined surfaces.

14. The lever extends in a direction substantially parallel to the axis from which the handle extends, and optionally, the motor is located at the distal end of the handle relative to the head. A personal care device according to any one of claims 1 to 3.

15. The personal care device according to any one of claims 1 to 3, wherein the personal care device is a shaver and the functional device has a cutter.

Citation Information

Patent Citations

  • JP1975098983U

  • Reciprocating electric razor

    JP1980076678A

  • Dry shaver

    JP1982052481A

  • Motion transmission unit, drive train, and hair cutting device

    JP2020526291A