KR0142937B1 - Method for water purifier of supply - Google Patents

Method for water purifier of supply

Info

Publication number
KR0142937B1
KR0142937B1 KR1019950028226A KR19950028226A KR0142937B1 KR 0142937 B1 KR0142937 B1 KR 0142937B1 KR 1019950028226 A KR1019950028226 A KR 1019950028226A KR 19950028226 A KR19950028226 A KR 19950028226A KR 0142937 B1 KR0142937 B1 KR 0142937B1
Authority
KR
South Korea
Prior art keywords
pump
current value
water purifier
singular
predetermined time
Prior art date
Application number
KR1019950028226A
Other languages
Korean (ko)
Other versions
KR970009845A (en
Inventor
김효수
Original Assignee
이영서
동양매직주식회사
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 이영서, 동양매직주식회사 filed Critical 이영서
Priority to KR1019950028226A priority Critical patent/KR0142937B1/en
Publication of KR970009845A publication Critical patent/KR970009845A/en
Application granted granted Critical
Publication of KR0142937B1 publication Critical patent/KR0142937B1/en

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D37/00Processes of filtration
    • B01D37/04Controlling the filtration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/14Safety devices specially adapted for filtration; Devices for indicating clogging

Landscapes

  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)
  • Water Treatment By Sorption (AREA)

Abstract

본 발명은 정수기의 단수감지 방법에 관한 것으로서, 특히 펌프의 전류값감지의 주기를 제거하고 펌프가 작동되면 펌프가 계속해서 전류치를 감지하고 기준전류이하로 일정시간동안 지속하게 되면 단수로 판단되도록 하여 단수판단에 보다 빠르게 제어하는 방법을 갖는 정수기의 단수감지방법에 관한 것이다.The present invention relates to a singular detection method of a water purifier, and in particular, to remove the cycle of detecting the current value of the pump and when the pump is operated, the pump continuously detects the current value and is judged to be the singular when the pump continues for a predetermined time below the reference current. The present invention relates to a singular detection method of a water purifier having a method of controlling the judgment more quickly.

정수기 단수제어방법에 있어서, 펌프가 작동하게 되면 항상 기준전류치(A)와 비교하여 펌프로 흐르게 되어 기준전류치(A)보다 낮은 전류값(Ip)이 소정시간이(T1)경과되면 단수로 판단되는 방법을 갖는 것을 특징으로 하는 구성으로 일정 주기 시간동안 단수를 감지하고 그 이외의 시간에도 단수를 감지하게 되므로 계속 펌프가 작동되는 전류값 감지의 주기 그 자체를 제거하게 되어 펌프가 작동하게 되어 펌프가 멈추지 않는 한 계속 전류치를 감지하고 기준치 전류 이하로 일정시간동안 지속하게 되면 단수로 판단 되는 잇점을 제공받는 발명이다.In the water purifier stage control method, when the pump is operated, it always flows to the pump compared to the reference current value (A), and the current value (Ip) lower than the reference current value (A) is determined as the stage when the predetermined time (T1) has elapsed. In the configuration characterized in that having a number of stages for a certain period of time to detect the number of stages and other times, so that the pump itself is operated to remove the cycle itself of the current value detection that the pump continues to operate The invention is provided with the advantage that it is judged to be singular if it continuously detects the current value and continues for a predetermined time below the reference current.

Description

정수기의 단수감지 방법How to detect water purifier

제1도면은 종래의 단수감지 방법을 나타내는 흐름도1 is a flow chart showing a conventional singular detection method

제2도면은 본 발명의 제어 방식을 나타내는 흐름도2 is a flowchart showing a control method of the present invention.

*도면의 주요부분에 대한 부호의 설명* Explanation of symbols for main parts of the drawings

IP:펌프의 전류치값 A:기준치전류IP: Pump current value A: Reference current

T1~T3:소정 시간T1-T3: Predetermined time

본 발명은 정수기의 단수감지 방법에 관한 것으로서, 특히 펌프의 전류값 감지의 주기를 제거하고 펌프의 작동으로 계속해서 전류치를 감지하며 일정 시간 동안 기준전류 이하값이 지속하게 되면 단수로 판단되는 방법으로 단수감지에 있어 보다 빠르게 제어하는 정수기의 단수감지방법에 관한 것이다.The present invention relates to a singular detection method of a water purifier, in particular, to remove the cycle of detecting the current value of the pump and to continuously detect the current value by the operation of the pump, and if the value below the reference current for a predetermined time is determined as the singular The present invention relates to a singular detection method of a water purifier that controls the detection more quickly.

일반적으로 정수기는 등나무정수기를 시작하여 필터식정수기로 이어져 정수기 도입단계에서 이온정수기로 들어오면서 정수기의 성장을 본격적으로 시작하게 되었다.In general, the water purifier started with a rattan water purifier, followed by a filter type water purifier, and then, when the water purifier was introduced into the ion purifier, the water purifier began to grow in earnest.

89-90년에는 각종 정수기의 난입으로 소비자의 정수기 선택에의 어려움과 언론의 정수기 불신보도는 자연 여과식 정수기 시장을 축소시키고 정수능력이 탁월한 역삼투 방식의 정수기 시장이 확대되는 계기를 마련하게 되었다.Difficulties in consumer choice of water purifiers due to the infiltration of various water purifiers in the 89-90 period, and the press distrust of the water purifiers of the press reduced the natural filter water purifier market and provided the opportunity for the expansion of the reverse osmosis water purifier market with excellent water purifying ability. .

종래의 구성은 제2도면에서 보는 바와 같이 정수기의 단수감지 제어 방법에 있어서, 소정시간(T2)시간 동안 계속 전류치(IP)를 감지하고 전류치(IP)가 기준치(A)이하이면 단수로 판단하며, 기준치(A) 이상일 경우에는 소정시간(T3)경과되면 초기 상태로 돌아가고 소정시간(T3)완료하지 못하면 경과될때까지 펌프전류(IP)를 계속 읽어 단수여부를 판단 가능한 제어 방법을 갖는 것을 특징으로 하고 있었다.In the conventional configuration, as shown in FIG. 2, in the singular detection control method of the water purifier, the current value IP is continuously detected for a predetermined time T2 time, and the current value IP is determined as the singular number when the current value IP is less than or equal to the reference value A. If the reference value (A) or more, if the predetermined time (T3) has elapsed, the initial state, and if the predetermined time (T3) is not completed, the pump current (IP) is continuously read until the elapsed is characterized in that it has a control method there was.

이러한 구성을 갖는 종래의 작용효과를 상세히 설명하면 다음과 같다.Referring to the conventional operation effect having such a configuration in detail as follows.

제2도면에서 보는 바와 같이 원수가 수로를 통과하여 펌프에 도착되면 단수 감지 과정을 거치게 되는데 단수감지 시작으로 소정 시간(T1;4분∼5분)이 경과되기 까지 기다린 후 경과되면 펌프의 전류값(Ip)을 읽고 나면 기준치전류(A)와 비교하게 된다.As shown in Fig. 2, when raw water arrives at the pump through the water channel, it undergoes a stage detection process. When the stage starts, it waits for a predetermined time (T1; 4 to 5 minutes) to elapse and then passes the current value of the pump. After reading (Ip), it is compared with the reference value current (A).

여기에서 펌프전류(Ip)값이 기준치전류값(A:200mA)이하이면 소정시간(T2:50초이내)가 경과하여 단수판단 여부를 묻고나서 작동이 정지되고 경보음이 발생된다.Here, if the pump current Ip is less than or equal to the reference current value (A: 200 mA), a predetermined time (T2: less than 50 seconds) elapses, and the operation is stopped after the determination of the number of stages, and an alarm sound is generated.

또한, 펌프전류값이 기준치이상, 즉 IPA(200mA)이면 소정시간(T3:1분∼2분)을 지나고 다시 소정시간(T1:4분∼5분)을 경과하게 되는데, 상기 소정시간(T3:1분∼2분)에서 시간이 경과되지 못하면 기준치전류(A)와 펌프전류(IP)와 비교하게 된다.If the pump current value is higher than the reference value, i.e., IPA (200 mA), the predetermined time (T1: 4 minutes to 5 minutes) passes again after a predetermined time (T3: 1 minute to 2 minutes). (1 minute to 2 minutes), if the time has not elapsed, the reference current (A) and the pump current (IP) are compared.

이러한 종래의 작용은 일정주기 시간동안에 단수를 감지하고 단수를 감지하지 않는 주기 동안에도 단수가 감지되어 일정주기 시간동안에 계속 펌프가 작동되어 많은 시간이 소요데는 문제점이 있었다.This conventional action has a problem in that it takes a lot of time to detect the singular during a certain period of time and the pump is operated continuously for a certain period of time because the singular is detected even during the period of not detecting the singular.

이와 같은 종래의 제반 문제점을 해결하고자 본 발명의 목적은 펌프가 작동하게 되면 항상 펌프의 전류값을 감지하게 되면 전류치가 기준값 이하로 떨어지게 되어 소정의 시간이 지속되는가의 여부를 판단하여 단수을 판단하게 하는 제어 방법으로 일정시간 주기동안 계속펌프가 작동되어 많은 시간을 소요되는 단점을 해결하는데 있다.An object of the present invention to solve the above conventional problems is to determine the number of stages by judging whether the current value falls below the reference value when the pump is always operated and the current value falls below the reference value. As a control method, the pump is operated for a certain period of time to solve the disadvantage of spending a lot of time.

이하 첨부된 도면에 의해 본 발명의 상세한 기술적 구성을 설명하면 다음과 같다.Hereinafter, detailed technical configurations of the present invention will be described with reference to the accompanying drawings.

제2도면에서 보는 바와 같이 정수기 단수제어방법에 있어서, 펌프가 작동하게되면 항상 기준전류치(A)와 비교하여 펌프로 흐르게 되어 기준전류치(A)보다 낮은 전류값(IP)이 소정시간(T1)을 경과하게 되면 단수 판단되는 방법을 갖는 것을 특징으로 한다.As shown in FIG. 2, in the water purifier stage control method, when the pump is operated, the pump always flows to the pump compared to the reference current value A, so that the current value IP lower than the reference current value A is a predetermined time T1. When elapsed is characterized in that it has a method of determining the singular.

이와 같이 구성되는 본 발명의 작용효과를 설명 하면 다음과 같다.Referring to the effects of the present invention configured as described above are as follows.

수도전으로부터 원수를 공급받아 압력 스위치의 다이어프로그램이 눌러져 마이크스위치의 접점을 눌러주게 되면 주제어기에서 감지하게 된다. 또한 원수가 세디먼트필터에서 5밀크론정도의 미세한필터를 통해 먼지, 찌꺼기 각종 부유물이 제거되며 솔레노이드벨브 및 펌프에 의해 원수를 소정의 압력을 가해 주게되는데, 상기의 펌프에 흐르는 전류값(Ip)을 단수감지를 하는 주제어기가 읽어 기준치전류값(A:200mA)과 비교하게 된다.When the raw water is supplied from the tap water and the pressure switch's dial program is pressed and the contacts of the microphone switch are pressed, the main controller detects it. In addition, the raw water is removed from the sediment filter through a fine filter of about 5 mils, and dust and debris are removed. The master controller reads the single stage and compares it with the reference current value (A: 200mA).

이때 펌프전류값(IP)이 기준치전류값(A)이하 일 때, 즉(IPA)되면 소정의 시간(T1:1분이내)이 경과하게 되며, 기준전류치(A)보다 펌프전류값(IP)이 이상이 되면 기준전류치(A)와 펌프전류값(IP)을 다시 비교하게 된다.At this time, when the pump current value IP is equal to or less than the reference value current value A, that is, (IPA), a predetermined time (within T1: 1 minute) elapses, and the pump current value IP is larger than the reference current value A. If abnormal, the reference current value A and the pump current value IP are compared again.

또한, 소정시간(T1)이 경과되지 않으면 펌프전류 값과 기준치 전류값을 다시 비교하며 소정의 시간이 경과 되면 단수판단 되어 정수기의 살균처리 과정이 중지되고 경고음을 발생하여 사용자에게 단수되었음을 알리게 된다.In addition, if the predetermined time T1 has not elapsed, the pump current value and the reference value current value are compared again, and when the predetermined time elapses, the water is determined to stop the sterilization process of the water purifier and generates a warning sound to inform the user of the water shortage.

이러한 작용으로 얻어진 효과는 일정 주기 시간 동안 단수를 감지하고 그 이외의 시간에도 단수를 감지하게 되므로 계속 펌프가 작동되는 전류값 감지의 주기 그 자체를 제거하게 되어 펌프가 작동하게 되어 펌프가 멈추지 않는 한 계속 전류치를 감지하고 기준치 전류 이하로 일정시간동안 지속하게 되면 단수로 판단 되는 잇점을 제공받는 신규유용의 발명이다.The effect obtained by this action is to detect the number of stages for a certain period of time, and to detect the number of stages at other times, thus eliminating the cycle of current value sensing in which the pump continues to operate, so that the pump operates and the pump does not stop. It is a new useful invention that provides the advantage that it is judged to be singular if it continuously detects the current value and lasts for a predetermined time below the reference current.

Claims (1)

정수기 단수제어방법에 있어서, 펌프가 작동하게 되면 항상 기준전류치(A)와 비교하여 펌프로 흐르게 되어 기준전류치(A)보다 낮은 전류값(Ip)이 소정시간이(T1)경과되면 단수로 판단되는 방법을 갖는 것을 특징으로 하는 정수기의 단수감지 제어 방법.In the water purifier stage control method, when the pump is operated, it always flows to the pump compared to the reference current value (A), and the current value (Ip) lower than the reference current value (A) is determined as the stage when the predetermined time (T1) has elapsed. The stage detection control method of the water purifier, characterized in that it has a.
KR1019950028226A 1995-08-31 1995-08-31 Method for water purifier of supply KR0142937B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1019950028226A KR0142937B1 (en) 1995-08-31 1995-08-31 Method for water purifier of supply

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1019950028226A KR0142937B1 (en) 1995-08-31 1995-08-31 Method for water purifier of supply

Publications (2)

Publication Number Publication Date
KR970009845A KR970009845A (en) 1997-03-27
KR0142937B1 true KR0142937B1 (en) 1998-07-15

Family

ID=19425601

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1019950028226A KR0142937B1 (en) 1995-08-31 1995-08-31 Method for water purifier of supply

Country Status (1)

Country Link
KR (1) KR0142937B1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6881375B2 (en) * 2018-03-30 2021-06-02 株式会社豊田自動織機 Piston compressor

Also Published As

Publication number Publication date
KR970009845A (en) 1997-03-27

Similar Documents

Publication Publication Date Title
KR100710872B1 (en) Automatic flushing apparatus of membrane filter in water purifier
JPH105556A (en) Discharge water controller for water purifier
KR0142937B1 (en) Method for water purifier of supply
US5871639A (en) Impurity filtration system for drinking water and monitoring device therefor
KR0142936B1 (en) Process for control of water purifier
KR0142939B1 (en) Process for control of water purifier
KR0142938B1 (en) Process for control of water purifier
KR100666559B1 (en) Ion water purifier
JP4553449B2 (en) Method for cleaning electrolytic ion water generator
KR19980077111A (en) Clogging Detection Method of Water Purifier Filter
KR100623672B1 (en) Control method for ion water purifier
KR100644945B1 (en) Control method for ion water purifier , and method for cleaning electrolytic cell
KR0172704B1 (en) Method for controlling a water purifier depending on the hydraulic pressure
KR970007523B1 (en) Washing machine with water-cleaning function
JP3635690B2 (en) Alkaline ion water conditioner
JP3248260B2 (en) Water purifier
KR100502305B1 (en) Method for preventing water leakage in hot and cool ionization and purification system
KR0137769Y1 (en) System for monitoring feed valve malfunction of reverse osmotic purifier
KR100515396B1 (en) Coldness and warmth clean water device system
JP3310312B2 (en) Electrolyzed water generator with water purifier
KR100704479B1 (en) ionic water supplying an apparatus with a wall tapestry type boiler
JPH09174039A (en) Drinking water making apparatus
KR0175893B1 (en) Control apparatus and method of a water purifier
KR100613362B1 (en) Washing device of Ion water purifier and Control method the same
JPH0731970A (en) Method for regenerating adsorbent of water purifying and sterilizing device

Legal Events

Date Code Title Description
A201 Request for examination
E701 Decision to grant or registration of patent right
GRNT Written decision to grant
FPAY Annual fee payment

Payment date: 20040407

Year of fee payment: 7

LAPS Lapse due to unpaid annual fee