CN201013949Y - Remote control radiator temperature control valve - Google Patents
Remote control radiator temperature control valve Download PDFInfo
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- CN201013949Y CN201013949Y CNU200620164878XU CN200620164878U CN201013949Y CN 201013949 Y CN201013949 Y CN 201013949Y CN U200620164878X U CNU200620164878X U CN U200620164878XU CN 200620164878 U CN200620164878 U CN 200620164878U CN 201013949 Y CN201013949 Y CN 201013949Y
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Abstract
本实用新型是一种可遥控的散热器温控阀,包括CPU处理器(2)、红外接收器(3)、微电机(4)、阀位感应器(5)、球阀(6)、球阀转轴(7)、变速器(8)、电池(9)和水管(10),并通过该水管接口安装在用户室内散热器的进水管上;CPU处理器分别与红外接收器(2)、阀位感应器(5)、微电机(4)和电池(9)相连,微电机(4)与球阀转轴(7)之间通过变速器(8)相连;温控阀通过红外接收器(3)接收遥控器发出的调节指令,CPU处理器(2)按照该调节指令通过阀位感应器测定球阀的开度,通过微电机实施对球阀开度的调节。本实用新型无需人工操作,具有定时调节和即时调节阀门开度的优点,能方便有效地实现采暖节能的温控。
The utility model is a remote control radiator temperature control valve, comprising a CPU processor (2), an infrared receiver (3), a micro motor (4), a valve position sensor (5), a ball valve (6), a ball valve Rotating shaft (7), speed changer (8), battery (9) and water pipe (10), and are installed on the water inlet pipe of user's indoor radiator through this water pipe interface; CPU processor is connected with infrared receiver (2), valve position respectively The sensor (5), the micromotor (4) is connected to the battery (9), and the micromotor (4) is connected to the ball valve shaft (7) through the transmission (8); the temperature control valve receives the remote control through the infrared receiver (3) According to the adjustment instruction issued by the device, the CPU processor (2) measures the opening degree of the ball valve through the valve position sensor according to the adjustment instruction, and implements the adjustment of the opening degree of the ball valve through the micro-motor. The utility model does not need manual operation, has the advantages of timing adjustment and real-time adjustment of the valve opening, and can conveniently and effectively realize the temperature control of heating and energy saving.
Description
(一)所属技术领域:(1) Technical field:
本实用新型涉及一种可遥控的散热器温控阀。The utility model relates to a temperature control valve for a radiator that can be remotely controlled.
(二)背景技术(2) Background technology
冬季采暖地区的住宅用户,利用室内热水采暖系统通过户内散热器向房间供热,而采暖温控是实现采暖节能的有效途径。对于采暖温控设备,人们期望的是具有简便操作功能且能定时温控和智能温控的设备。现有技术中,采暖温控的实现是在户内散热器的进水管上安装手动式调节阀或者自力式温控阀。手动式调节阀或自力式温控阀都是通过对阀门开度的调节以实现对散热器热水流量的调节。手动式调节阀具有造价低廉的优点,但存在着需要人工经常操作且易失灵的缺陷;自力式温控阀,是一种不需要外部能源或驱动力、依靠内置的感温元件和相应的调节机构,通过比较所设定的室温温度和室内温度变化实现阀门开度的自动调节,但它存在着不能定时调节阀门的缺陷。Residential users in winter heating areas use indoor hot water heating systems to supply heat to rooms through indoor radiators, and heating temperature control is an effective way to achieve heating and energy saving. For heating temperature control equipment, what people expect is the equipment with easy operation function and capable of timing temperature control and intelligent temperature control. In the prior art, the realization of heating temperature control is to install a manual regulating valve or a self-operated temperature control valve on the water inlet pipe of the indoor radiator. The manual regulating valve or the self-operated temperature control valve realizes the regulation of the hot water flow of the radiator by adjusting the opening of the valve. The manual control valve has the advantage of low cost, but it has the defect that it needs to be manually operated frequently and is prone to failure; the self-operated temperature control valve is a kind of control valve that does not require external energy or driving force, and relies on built-in temperature sensing elements and corresponding adjustments. The mechanism realizes the automatic adjustment of the valve opening by comparing the set room temperature and the indoor temperature change, but it has the defect that the valve cannot be adjusted regularly.
(三)发明内容(3) Contents of the invention
为克服现有技术中用于住宅采暖散热器上的手动式调节阀需人工操作的缺陷,以及自力式温控阀不能定时调节的缺陷,本发明提出了一种可遥控的散热器温控阀。In order to overcome the defect that manual control valves used in residential heating radiators require manual operation and the defects that self-operated temperature control valves cannot be adjusted regularly, the present invention proposes a remote control radiator temperature control valve .
本实用新型包括CPU处理器、红外接收器、微电机、阀位感应器、球阀、球阀转轴、齿轮变速器、电池和具有管螺纹接口的水管,并由水管接口被安装在用户室内散热器的进水管上。其中,CPU处理器分别与红外接收器、阀位感应器、微电机和电池相连,微电机与球阀转轴之间通过齿轮变速器相连,球阀设置在水管的中部。CPU处理器通过向微电机的供电管理,由微电机来驱动球阀开度的变化;当遥控器向红外接收器发送即时调节或定时调节的指令后对即时调节指令立即执行,而将定时调节指令存储在CPU存储器中。对于即时调节指令,CPU处理器由阀位感应器持续测定球阀的开度并与即时调节指令所给定的阀门开度作比较,由微电机实施对球阀开度的持续调节,直到阀位感应器所测定的球阀开度与即时调节指令所给定的阀门开度相同为止;对于存储在CPU存储器中的定时调节指令,CPU处理器按照事先人为设定的时间间隔,核对CPU存储器中定时调节指令所制定的调节时间,当CPU的时钟与定时调节指令所指定的调节时间相同时,CPU处理器将该定时调节指令转换为即时调节指令,并按照即时调节指令方式执行。The utility model includes a CPU processor, an infrared receiver, a micro motor, a valve position sensor, a ball valve, a ball valve shaft, a gear transmission, a battery and a water pipe with a pipe thread interface, and the water pipe interface is installed in the user's indoor radiator. on the water pipe. Wherein, the CPU processor is respectively connected with the infrared receiver, the valve position sensor, the micro-motor and the battery, and the micro-motor is connected with the rotating shaft of the ball valve through a gear transmission, and the ball valve is arranged in the middle of the water pipe. The CPU processor manages the power supply to the micro-motor, and the micro-motor drives the change of the opening of the ball valve; when the remote control sends an instruction for instant adjustment or timing adjustment to the infrared receiver, the immediate adjustment instruction is executed immediately, and the timing adjustment instruction is executed immediately. stored in CPU memory. For the real-time adjustment command, the CPU processor continuously measures the opening of the ball valve by the valve position sensor and compares it with the valve opening given by the real-time adjustment command. The micro-motor implements continuous adjustment of the ball valve opening until the valve position is sensed The ball valve opening measured by the device is the same as the valve opening given by the real-time adjustment command; for the timing adjustment command stored in the CPU memory, the CPU processor checks the timing adjustment in the CPU memory according to the time interval artificially set in advance. The adjustment time specified by the instruction, when the clock of the CPU is the same as the adjustment time specified by the timing adjustment instruction, the CPU processor converts the timing adjustment instruction into an immediate adjustment instruction, and executes it in the manner of the instant adjustment instruction.
由于本实用新型采用的技术方案,克服了现有技术中手动式调节阀需人工操作的缺陷以及自力式温控阀不能定时调节的缺陷,具有定时调节和即时调节阀门开度的优点,能方便有效地实现采暖节能的温控。Due to the technical scheme adopted by the utility model, it overcomes the defect that the manual control valve needs manual operation in the prior art and the defect that the self-operated temperature control valve cannot be adjusted regularly, and has the advantages of timing adjustment and real-time adjustment of the valve opening, which can be convenient Effectively realize the temperature control of heating and energy saving.
(四)附图说明:(4) Description of drawings:
图1是遥控式散热器温控阀的结构示意图。Figure 1 is a structural schematic diagram of a remote-controlled radiator temperature control valve.
图2是温控阀控制程序图。Figure 2 is a diagram of the temperature control valve control program.
图3是温控阀的各零件关系图。其中:Fig. 3 is a relational diagram of various parts of the temperature control valve. in:
1.温控阀 2.CPU处理器 3.红外接收器 4.微电机 5.阀位感应器1.
6.球阀 7.球阀转轴 8.齿轮变速器 9.电池 10.水管6.
(五)具体实施方式:(5) Specific implementation methods:
现结合附图对本发明作进一步描述:The present invention will be further described now in conjunction with accompanying drawing:
实施例一Embodiment one
本实施例包括CPU处理器(2)、红外接收器(3)、微电机(4)、阀位感应器(5)、球阀(6)、球阀转轴(7)、齿轮变速器(8)、电池(9)和具有管螺纹接口的水管(10),并由水管接口被安装在用户室内散热器的进水管上。This embodiment includes a CPU processor (2), an infrared receiver (3), a micro-motor (4), a valve position sensor (5), a ball valve (6), a ball valve shaft (7), a gear transmission (8), and a battery (9) and have the water pipe (10) of pipe thread interface, and be installed on the water inlet pipe of user's indoor radiator by water pipe interface.
本实施例中,CPU处理器2分别与红外接收器3、阀位感应器5、微电机4和电池9相连,微电机4与球阀转轴7之间通过齿轮变速器8相连,球阀设置在水管10的中部。CPU处理器2通过微电机4驱动球阀6开度的变化;当遥控器向红外接收器3发送即时调节或定时调节的指令后,CPU处理器2对即时调节指令立即执行,而将定时调节指令存储在CPU存储器中。对于即时调节指令,CPU处理器2由阀位感应器5持续测定球阀的开度并与即时调节指令所给定的阀门开度作比较,由微电机4实施对球阀6开度的持续调节,直到阀位感应器5所测定的球阀6开度与即时调节指令所给定的阀门开度相同为止;对于存储在CPU存储器中的定时调节指令,CPU处理器每隔5分钟核对一次CPU存储器中定时调节指令所指定的调节时间,当CPU的时钟与定时调节指令所指定的调节时间相同时,CPU处理器将该定时调节指令转换为即时调节指令,并按照即时调节指令方式执行。In this embodiment, the
实施例二Embodiment two
本实施例包括CPU处理器(2)、红外接收器(3)、微电机(4)、阀位感应器(5)、球阀(6)、球阀转轴(7)、齿轮变速器(8)、电池(9)和具有管螺纹接口的水管(10),并由水管接口被安装在用户室内散热器的进水管上。This embodiment includes a CPU processor (2), an infrared receiver (3), a micro-motor (4), a valve position sensor (5), a ball valve (6), a ball valve shaft (7), a gear transmission (8), and a battery (9) and have the water pipe (10) of pipe thread interface, and be installed on the water inlet pipe of user's indoor radiator by water pipe interface.
本实施例中,CPU处理器2分别与红外接收器3、阀位感应器5、微电机4和电池9相连,微电机4与球阀转轴7之间通过齿轮变速器8相连,球阀设置在水管10的中部。CPU处理器2通过微电机4驱动球阀6开度的变化;当遥控器向红外接收器3发送即时调节或定时调节的指令后,CPU处理器2对即时调节指令立即执行,而将定时调节指令存储在CPU存储器中。对于即时调节指令,CPU处理器2由阀位感应器5持续测定球阀的开度并与即时调节指令所给定的阀门开度作比较,由微电机4实施对球阀6开度的持续调节,直到阀位感应器5所测定的球阀6开度与即时调节指令所给定的阀门开度相同为止;对于存储在CPU存储器中的定时调节指令,CPU处理器每隔8分钟核对一次CPU存储器中定时调节指令所指定的调节时间,当CPU的时钟与定时调节指令所指定的调节时间相同时,CPU处理器将该定时调节指令转换为即时调节指令,并按照即时调节指令方式执行。In this embodiment, the
Claims (1)
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU200620164878XU CN201013949Y (en) | 2006-12-29 | 2006-12-29 | Remote control radiator temperature control valve |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU200620164878XU CN201013949Y (en) | 2006-12-29 | 2006-12-29 | Remote control radiator temperature control valve |
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| CN201013949Y true CN201013949Y (en) | 2008-01-30 |
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| CNU200620164878XU Expired - Fee Related CN201013949Y (en) | 2006-12-29 | 2006-12-29 | Remote control radiator temperature control valve |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101818828A (en) * | 2010-04-15 | 2010-09-01 | 上海应用技术学院 | Thermodynamic regulating valve with remote control function |
| CN107289149A (en) * | 2016-03-30 | 2017-10-24 | 五冶集团上海有限公司 | A kind of remote control temperature-adjusting water-mixing valve |
| CN109114282A (en) * | 2018-09-13 | 2019-01-01 | 南阳市衡仪表计科技有限公司 | A kind of infrared intelligent time control valve |
-
2006
- 2006-12-29 CN CNU200620164878XU patent/CN201013949Y/en not_active Expired - Fee Related
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101818828A (en) * | 2010-04-15 | 2010-09-01 | 上海应用技术学院 | Thermodynamic regulating valve with remote control function |
| CN107289149A (en) * | 2016-03-30 | 2017-10-24 | 五冶集团上海有限公司 | A kind of remote control temperature-adjusting water-mixing valve |
| CN109114282A (en) * | 2018-09-13 | 2019-01-01 | 南阳市衡仪表计科技有限公司 | A kind of infrared intelligent time control valve |
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Legal Events
| Date | Code | Title | Description |
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| C14 | Grant of patent or utility model | ||
| GR01 | Patent grant | ||
| C17 | Cessation of patent right | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20080130 Termination date: 20101229 |