IP Library › Granted Patent US 10,088,379
Granted Patent B2
US 10,088,379 · App. 15/353,124 · Granted Oct 2, 2018

Data transmitting device capable of configuring different operating frequencies for use by tire pressure monitoring detector

Inventors: San-Chuan Yu (Fuxing Township, Changhua County, TW); Tsan-Nung Wang (Fuxing Township, Changhua County, TW); Chao-Ching Hu (Fuxing Township, Changhua County, TW); Chi-Hung Chen (Fuxing Township, Changhua County, TW); Wei-Hung Ma (Fuxing Township, Changhua County, TW)
Assignee: CUB ELECPARTS INC.
G01L17/00B60C23/0452B60C23/0455B60C23/0462H03L7/099H04B1/0458
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Quick Facts
Patent No.
US 10,088,379
App. No.
15/353,124
Granted
Oct 2, 2018
Kind
B2
Abstract

A data transmitting device capable of configuring different operating frequencies for use by a tire pressure monitoring detector includes: a standard oscillator; a phase locked loop including a phase frequency comparator, a filter, and a pressure-controlling oscillator; a microcontrol unit electrically connected to the standard oscillator and the phase frequency comparator and adapted to store a first ratio and a second ratio; and a signal output unit electrically connected to the output end of the pressure-controlling oscillator and the microcontrol unit. The microcontrol unit allows a user to select and send the first or second ratio to the phase frequency comparator. The phase locked loop generates a target frequency signal according to the first or second ratio selected by the user. The microcontrol unit sends a data to the signal output unit, and the signal output unit outputs the data according to the frequency of the target frequency signal.

Claims (12)

1. A data transmitting device capable of configuring different operating frequencies for use by a tire pressure monitoring detector, comprising:

a standard oscillator for providing an oscillation signal of a fixed frequency and using the fixed frequency as a standard frequency;

a phase locked loop comprising a phase frequency comparator, a filter, and a pressure-controlling oscillator, with the phase frequency comparator being electrically connected to the standard oscillator, the filter being electrically connected to the phase frequency comparator, and the pressure-controlling oscillator being electrically connected to the filter, wherein the pressure-controlling oscillator has an output end electrically connected to the phase frequency comparator;

a microcontrol unit electrically connected to the standard oscillator and the phase frequency comparator and adapted to store a first ratio and a second ratio; and

a signal output unit electrically connected to the output end of the pressure-controlling oscillator and the microcontrol unit,

wherein the microcontrol unit allows a user to select the first ratio or the second ratio and sends the first ratio or the second ratio selected by the user to the phase frequency comparator,

wherein the phase locked loop receives an oscillation signal from the standard oscillator, generates a target frequency signal according to the first ratio or the second ratio selected by the user, and sends the target frequency signal from the output end to the phase frequency comparator and the signal output unit,

wherein the microcontrol unit sends a data to the signal output unit, and the signal output unit outputs the data according to the frequency of the target frequency signal.

2. The data transmitting device capable of configuring different operating frequencies for use by a tire pressure monitoring detector according to claim 1 , wherein, after the phase locked loop has entered a phase-locked state, the phase frequency comparator sends a phase-locked signal to the microcontrol unit.

3. The data transmitting device capable of configuring different operating frequencies for use by a tire pressure monitoring detector according to claim 1 , wherein the standard oscillator is integrated into the microcontrol unit.

4. The data transmitting device capable of configuring different operating frequencies for use by a tire pressure monitoring detector according to claim 1 , wherein the signal output unit further has a variable impedance antenna and adjusts impedance of the variable impedance antenna according to frequency of the target frequency signal sent from the output end of the pressure-controlling oscillator, so as to match the frequencies, thereby sending out wirelessly the data through the variable impedance antenna according to the frequencies.

5. The data transmitting device capable of configuring different operating frequencies for use by a tire pressure monitoring detector according to claim 1 , wherein the microcontrol unit uses the first ratio as a default ratio.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 23, 2016
From: YU, SAN-CHUAN; WANG, TSAN-NUNG; HU, CHAO-CHING; CHEN, CHI-HUNG; MA, WEI-HUNG
To: CUB ELECPARTS INC.
Reel/Frame 040410/0237 →
Priority Claims (1)
TW 105131726 A · Sep 30, 2016 · national
Continuity (1)
Related Publication 20180094996A1 · Apr 5, 2018