New type of earphones attached to the temples of glasses
Eyeglass temple mounted earphones address the discomfort of traditional earphone designs for glasses wearers by using a securely attached hook on the glasses temples, reducing ear pressure and improving comfort, and incorporating bone conduction technology for effective audio delivery.
Patent Information
- Application Number
- JP2025000485U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-01-15
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-08
- Estimated Expiration
- 2035-02-17
AI Technical Summary
Current earphone designs are inconvenient and uncomfortable for individuals who wear glasses, as they concentrate weight and pressure on the ears, leading to discomfort and fatigue during prolonged use.
The design of eyeglass temple mounted earphones, which feature a hook molded integrally with the earphone body to securely attach to the temples of glasses, reducing ear pressure and improving comfort. These earphones include a bone conduction speaker, battery, circuit board, and Bluetooth module for wireless connectivity.
This design significantly reduces the burden on the ears by distributing the weight of both glasses and earphones across the temples, enhancing comfort and reducing ear fatigue, while also providing reliable wireless audio connectivity.
Smart Images

Figure 0003251187000001_ABST
Abstract
Description
[Technical field]
[0001] This utility model relates to the field of earphone technology, in particular to a new type of eyeglass temple-mounted earphone. [Background technology]
[0002] In the modern age of rapid development of science and technology, earphones, as a common audio output device, are widely used in various aspects of people's daily life. However, despite the advancement of earphone technology, the problem of how to wear earphones has long remained unsolved for people who wear glasses. Currently, most earphones on the market adopt a traditional wearing method that hangs on the ear. This method is inconvenient for users who wear glasses and causes discomfort.
[0003] Wearing glasses and earphones puts a double burden on the ears. First, the temples of the glasses rest on the ears for a long time, putting pressure on the ears. In addition, the earphones rest on the ears, which further increases the burden on the ears. Especially when used for a long time, it can increase discomfort in the ears and cause pain and fatigue. As a result, it seriously affects the user's experience.
[0004] Recently, bone conduction earphones have appeared, providing a new option to reduce the strain on the ears. This technology can reduce the pressure on the ears to some extent by transmitting sound through the skull. However, there is still room for improvement when it comes to using bone conduction earphones in combination with glasses. The wearing structure of bone conduction earphones may cause interference when used simultaneously with glasses. For example, the fixed part of the earphones may interfere with the temples of the glasses, or the fit between the earphones and the head may decrease after wearing glasses, reducing the effectiveness of sound transmission. For this reason, there is a strong demand for innovative earphone designs. Summary of the Invention
[0005] The purpose of this utility model is to overcome the above problems and provide a new type of eyeglass temple-mounted earphone. To achieve the above objective, this utility model adopts the following technical solutions:
[0006] A new type of eyeglass temple-mounted earphone includes an earphone body, an eyeglass temple hook, and a speaker, the eyeglass temple hook is provided at the upper end of the earphone body and is integrally molded with the earphone body, the speaker is embedded in the lower right end of the earphone body, and a battery, a circuit board, and a Bluetooth module are further provided inside the earphone body. The earphone body is the core of the entire earphone and is the base frame that houses various important components. The body supports other functional parts and also provides the physical structure that users can operate and touch.
[0007] The eyeglass temple hook is located at the top of the earphone body, and the one-piece molded design ensures the strength and stability of the structure. This design prevents the hook from coming off or being damaged during use, ensuring the normal use of the earphones. The main function of the hook is to hang the earphones on the temples of the glasses, which is a change from the traditional ear-hanging method, effectively avoiding the problem of the weight of both the glasses and the earphones being concentrated on the ears, greatly reducing the burden on the user's ears and improving comfort when wearing them.
[0008] The speaker is an important component that realizes audio output and is embedded in the lower right corner of the earphone body. When the user hangs the earphone on the temple of their glasses with the temple hook, the speaker can effectively deliver sound close to the ear. The quality and performance of the speakers directly affect the audio output of the earphones, and are important factors in determining characteristics such as sound quality and volume.
[0009] In addition, the battery provides power to the entire earphones, allowing them to operate normally. Battery capacity and performance are important factors that affect the continuous usage time of the earphones, and determine the time they can be used without charging.
[0010] The circuit board coordinates the operation of each component, processes the signals received from the Bluetooth module, converts the digital audio signal into an analog signal that the speaker can recognize, and also handles operations such as adjusting the volume and changing songs.
[0011] The Bluetooth module is used to wirelessly connect the earphones to external audio devices (smartphones, PCs, tablets, etc.). Users can pair the earphones with the device through the Bluetooth module and use them freely on the move without being restricted by traditional wired connections. This frees users from the hassle of cables and greatly improves convenience.
[0012] The eyeglass temple hook has a hook shape that fits the shape of the eyeglass temple, allowing the earphone body to be stably attached to the eyeglass temple. The hook fits snugly around the eyeglass temple, preventing the earphone from slipping off or becoming displaced during daily activities. The speaker is a bone conduction speaker and is electrically connected to the electronic components inside the earphone body. The outer surface of the earphone body is evenly covered with an anti-slip coating to prevent your hands from slipping during operation and improve operability and comfort.
[0013] The advantages of this utility model are as follows: This utility model designs an innovative hook for eyeglass temples, which is molded integrally with the earphone body, making the structure very stable. The shape also fits perfectly with the eyeglass temples, allowing for a tight fit. In addition, the outside of the earphone body is uniformly coated with an anti-slip coating, which ensures that the earphones are firmly fixed to the eyeglasses during daily use and sports, and will not easily slip or fall off. This fundamentally improves the traditional way of wearing earphones, and significantly improves comfort when wearing them, without the user wearing glasses feeling the strain of both the eyeglasses and the earphones on their ears at the same time. [Brief description of the drawings]
[0014] [Figure 1] Schematic diagram of a new type of eyeglass temple-mounted earphone in an embodiment [Diagram 2] A front view of a new type of eyeglass temple-mounted earphone in an embodiment. [Diagram 3] A left side view of a new type of eyeglass temple-mounted earphone in an embodiment. [Figure 4] Plan view of a new type of eyeglass temple-mounted earphone in an embodiment DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0015] Example 1 In this embodiment, a new type of eyeglass temple-mounted earphone is disclosed. As shown in FIGS. 1 to 4, the new eyeglass temple-mounted earphone includes an earphone main body 1, an eyeglass temple hook 2, and a speaker 3.
[0016] The eyeglass temple hook 2 is installed at the upper end of the earphone body 1 and is integrally molded with the earphone body 1. The integrally molded design ensures the strength and stability of the structure, prevents the hook from coming off or being damaged from the earphone body 1 during use, and ensures normal use of the earphone. The main function of the hook is to hook the earphones onto the temples of the glasses, which is a change from the traditional ear-hanging method, effectively avoiding the problem of the weight of both the glasses and the earphones being concentrated on the ears, greatly reducing the burden on the user's ears and improving comfort when wearing them.
[0017] The speaker 3 is embedded in the lower right end of the earphone body 1. When a user hangs the earphone on the temple of their glasses using the temple hook 2, the speaker 3 can effectively deliver sound close to the ear. The quality and performance of the speaker 3 directly affect the sound output of the earphone, and are important factors that determine characteristics such as sound quality and volume.
[0018] Furthermore, a battery, a circuit board, and a Bluetooth module are provided inside the earphone body 1. The battery provides power to the entire earphones and allows them to operate normally. Battery capacity and performance are important factors that affect the continuous usage time of the earphones and determine the time they can be used without charging. The circuit board is responsible for coordinating the operation of each component. It processes the signal received from the Bluetooth module and converts the digital audio signal into an analog signal that the speaker 3 can recognize. It also handles operations such as adjusting the volume and switching songs. The Bluetooth module is used to wirelessly connect the earphones to external audio devices (smartphones, PCs, tablets, etc.). Users can pair the earphones with the device through the Bluetooth module and use them freely on the move without being restricted by traditional wired connections. This frees users from the hassle of cables and greatly improves convenience.
[0019] The eyeglass temple hook 2 has a hook shape that fits the shape of the eyeglass temple, allowing the earphone main body 1 to be stably attached to the eyeglass temple. The hooks fit snugly around the temples of your glasses, preventing the earphones from slipping off or moving out of place during everyday activities. The speaker 3 is a bone conduction speaker and is electrically connected to the electronic components inside the earphone body 1. The outer surface of the earphone body 1 is uniformly covered with an anti-slip coating. The uniformly applied anti-slip coating prevents users' hands from slipping during operation, allowing them to precisely control the earphone functions, and improves the fit when holding the earphones, greatly improving operability and comfort. [Explanation of symbols]
[0020] 1 Earphone body 2 Hooks for eyeglass temples 3 speakers
Claims
1. A new type of eyeglasses temple-mounted earphone comprising an earphone body, an eyeglasses temple hook, and a speaker, characterized in that the eyeglasses temple hook (2) is provided at the upper end of the earphone body (1) and is integrally molded with the earphone body (1), the speaker (3) is embedded in the lower right end of the earphone body (1), and a battery, a circuit board, and a Bluetooth module are further provided inside the earphone body (1).
2. The new eyeglass temple-mounted earphone as described in claim 1, characterized in that the eyeglass temple hook (2) has a hook shape that fits the shape of the eyeglass temple, and the earphone body (1) can be stably attached to the eyeglass temple.
3. The new eyeglass temple-mounted earphone according to claim 2, characterized in that the speaker (3) is a bone conduction speaker and is electrically connected to the electronic components inside the earphone body (1).
4. The new eyeglass temple-mounted earphone according to claim 3, characterized in that the outer surface of the earphone body (1) is uniformly covered with an anti-slip coating.