Bluetooth tire pressure detection device
12194790 ยท 2025-01-14
Assignee
Inventors
Cpc classification
International classification
Abstract
A tire pressure detection device includes a chip, a Bluetooth receiving circuit, a Bluetooth antenna, a battery, an LF trigger coil, a power switch, an LF trigger switch and a monitor respectively connected to a case. The Bluetooth receiving circuit is electrically connected to the chip and the Bluetooth antenna. The LF trigger coil, the power switch, the LF trigger switch and the monitor are respectively connected to the chip. A user holds and inserts the tire pressure detection through a double rims. The chip sends an LF signal via the LF trigger coil to activate a Bluetooth tire pressure detector at the inner rim to detect tire pressure. A pressure signal of an inner tire is sent to the chip via the Bluetooth antenna and the Bluetooth receiving circuit. The chip displays the tire pressure of the inner tire on the monitor to be checked by the user.
Claims
1. A tire pressure detection device comprising: a case; a chip, a Bluetooth receiving circuit, a Bluetooth antenna, a battery, an low frequency trigger coil, a power switch, an low frequency trigger switch and a monitor respectively connected to the case, wherein the Bluetooth receiving circuit is electrically connected to the chip and the Bluetooth antenna, the low frequency trigger coil, the power switch, the low frequency trigger switch and the monitor are respectively connected to the chip, and the case including a grip, a first section and a second section, the first section having a first end thereof slidably connected to the grip, a second end of the first section pivotably connected to the second section.
2. The tire pressure detection device as claimed in claim 1, wherein the battery and the chip are located in the grip, the power switch and the monitor are located on one of multiple sides of the grip.
3. The tire pressure detection device as claimed in claim 1, wherein the Bluetooth receiving circuit and the Bluetooth antenna are located in the grip.
4. The tire pressure detection device as claimed in claim 1, wherein the low frequency trigger coil is connected to the second section and does not protrude beyond an outside of the second section, the low frequency trigger switch is connected to one of the multiple sides of the grip.
5. The tire pressure detection device as claimed in claim 1, wherein when the first section is retracted toward an axial direction of the grip, and the second section is pivoted and faces the grip, the tire pressure detection device is in a folded status, when the first section is expanded toward a direction away from the axial direction of the grip, and the second section is pivoted and does not faces the grip, the tire pressure detection device is in an operational status.
6. The tire pressure detection device as claimed in claim 5, wherein a first imaginary line is formed along an axial direction of the second section, a second imaginary line is formed along the axial direction of the grip, the first imaginary line is parallel to the second imaginary line.
7. The tire pressure detection device as claimed in claim 1, wherein the case includes a grip, an extension section and an operation section, the operation section is integrally formed with the grip and the extension section.
8. The tire pressure detection device as claimed in claim 7, wherein the grip and the extension respectively extend toward two opposite directions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(12) Referring to
(13) As shown in
(14) There are more tires 300 for trucks and trailers and these tires 300 are heavy. In order to transport goods under heavy load, most of the trucks and trailers have double rims 310, and each double rim 310 has an inner tire and an outer tire. The Bluetooth tire pressure detectors 200 of these tires 300 are required not to be interfered with each other, so that each Bluetooth tire pressure detector 200 has an individual identification code. When the tire pressure detection device 100 is paired with the specific Bluetooth tire pressure detectors 200, by checking the identification code, the user is acknowledged that the Bluetooth tire pressure detectors 200 of the specific tire is paired with the tire pressure detection device 100 so as to precisely detect the tire pressure.
(15) The chip 110 displays the tire pressure of the identification code and the tire pressure on the monitor 180 so that the user is acknowledged the tire pressure of the specific tire 300.
(16) When the Bluetooth tire pressure detectors 200 is not in use, the power energy can be saved. Therefore the Bluetooth tire pressure detectors 200 needs to be activated in order to allow the user to check the tire pressure. The user holds the tire pressure detection device 100 and inserts the tire pressure detection device 100 through the double rims 310, and moves the LF trigger coil 150 to close to the Bluetooth tire pressure detector 200 at the inner tire 300 of the double rim 310 as shown the tire 300 at the left side of
(17) The case includes a grip 410, a first section 420 and a second section 430. The first section 420 has the first end thereof slidably connected to the grip 410, and the second end of the first section 420 is pivotably connected to the second section 430. When the first section 420 is retracted toward the axial direction of the grip 410, and the second section 430 is pivoted and faces the grip 410, the tire pressure detection device 100 is in a folded status. When the first section 420 is expanded toward a direction away from the axial direction of the grip 410, and the second section 430 is pivoted and does not faces the grip 410, the tire pressure detection device 100 is in an operational status. The pivotal angle of the second section 430 is up to 180 degrees.
(18) When the tire pressure detection device 100 is in the folded status, it is compact and convenient for storage. When using the tire pressure detection device 100, the tire pressure detection device 100 can be expanded to be an elongate device to easily be inserted through the double rims 310 to precisely activate the Bluetooth tire pressure detector 200 that is located at the inner tire while the Bluetooth tire pressure detector 200 at the outer tire is not activated. The user's hand does not need to be inserted into and contact the double rims 310 to avoid from being injured during operation.
(19) The so called inner tire is located at the inner side of the double rims 310.
(20) As shown in
(21) The LF trigger switch 170 includes a toggle switch, and the power switch 160 is a push-button switch which is located at a distance from the LF trigger switch 170.
(22) In addition, the first section 420 includes multiple sub-sections which are retractable with each other. In this embodiment, there are two sub-sections of the first section 420. The first section 420 and the second section 430 are pivotably connected to each other by a pivot 440, so that the second section 430 is manipulated and pivotable relative to the grip 410.
(23) The battery 140 and the chip 110 are located in the grip 410. The power switch 160 and the monitor 180 are located on one of multiple sides of the grip 410. The Bluetooth receiving circuit 120 and the Bluetooth antenna 130 are located in the grip 410. The LF trigger coil 150 is connected to the second section 430 and does not protrude beyond the outside of the second section 430. The LF trigger switch 170 is connected to one of the multiple sides of the grip 410.
(24) The LF trigger coil 150 does not protrude beyond the outside of the second section 430, and is protected by the second section 430, so that the LF trigger coil 150 is not hit by the double rims 310 when being inserted through the double rims 310.
(25) When the tire pressure detection device 100 is folded, the second section 430 covers up the power switch 160 and the LF trigger switch 170 to avoid from being touched unintentionally. The monitor 180 is also protected from being scratched.
(26) As shown in
(27)
(28) While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.