KR0124092Y1 - Continued high-pressure spark generating circuit for a gas range - Google Patents

Continued high-pressure spark generating circuit for a gas range

Info

Publication number
KR0124092Y1
KR0124092Y1 KR2019950039170U KR19950039170U KR0124092Y1 KR 0124092 Y1 KR0124092 Y1 KR 0124092Y1 KR 2019950039170 U KR2019950039170 U KR 2019950039170U KR 19950039170 U KR19950039170 U KR 19950039170U KR 0124092 Y1 KR0124092 Y1 KR 0124092Y1
Authority
KR
South Korea
Prior art keywords
battery
constant
circuit
pressure spark
cycle
Prior art date
Application number
KR2019950039170U
Other languages
Korean (ko)
Other versions
KR970043936U (en
Inventor
이규동
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 KR2019950039170U priority Critical patent/KR0124092Y1/en
Publication of KR970043936U publication Critical patent/KR970043936U/en
Application granted granted Critical
Publication of KR0124092Y1 publication Critical patent/KR0124092Y1/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23QIGNITION; EXTINGUISHING-DEVICES
    • F23Q3/00Igniters using electrically-produced sparks
    • F23Q3/006Details
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23QIGNITION; EXTINGUISHING-DEVICES
    • F23Q3/00Igniters using electrically-produced sparks
    • F23Q3/002Igniters using electrically-produced sparks using piezoelectric elements

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Dc-Dc Converters (AREA)

Abstract

본 고안은 가스렌지의 점화용 연속 고압 스파크발생회로에 관한 것으로서, 특히 가스렌지 착화용 건전지식 고압 스파크 발생장치의 일정주기 방전회로로서 정류회로를 부착하여 건전지 전압의 변화에 따라 방전주기가 일정하도록 하여 전지의 전력소모를 줄이는데 있다.The present invention relates to a continuous high-pressure spark generating circuit for ignition of a gas stove, and in particular, a constant-cycle discharge circuit of a battery-type high-pressure spark generator for gas stove ignition so that the discharge cycle is constant according to the change of battery voltage by attaching a rectifying circuit. This is to reduce the power consumption of the battery.

인버터용 트랜지스터(TR)에 미이너스전위의 정류회로를 연결하여 건전지(B)전압의 변화에 따라 방전주기가 일정하도록 인버터트랜지스터(TR)의 베이스단 전류를 제어하는 일정주기 방전회로로 방전주기를 전지전압에 관계없이 일정하게 제어하므로 건전지(B)의 사용초기 및 말기 관계없이 일정하게 전력소모를 발생시켜 건전지(B)의 수명을 연장시키고 항상 일정한 방전주기를 출력하므로 착화조건을 최적화 할 수 있는 효과를 얻는다.Connect the rectifier circuit of minus potential to inverter transistor TR and control the base cycle current of inverter transistor TR so that the discharge cycle is constant according to the change of battery voltage. Irrespective of the battery voltage, it can be used to optimize the ignition condition because it extends the life of the battery (B) and always outputs a constant discharge cycle by generating constant power consumption regardless of the beginning or end of the use of the battery (B). Get the effect.

Description

가스렌지 점화용 연속 고압 스파크발생회로Continuous high pressure spark generation circuit for gas stove ignition

제1도는 종래의 고압 스파크발생회로.1 is a conventional high pressure spark generation circuit.

제2도는 본 고안의 고압 스파크발생회로.2 is a high pressure spark generating circuit of the present invention.

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

D1~D4 : 다이오드 C : 콘덴서D1 ~ D4: Diode C: Capacitor

R : 저항 Q : 트렌지스터R: Resistance Q: Transistor

T1~T2 : 변압기 B : 건전지T1 ~ T2: Transformer B: Battery

S : 스위치S: switch

본 고안은 방전주기가 일정한 가스렌지의 연속 고압 스파크발생회로에 관한 것으로서 특히 가스렌지 착화용 건전지식 고압 스파크 발생장치의 일정주기 방전회로로서 정류회로를 부착하여 건전지 전압의 변화에 따라 방전주기가 일정하도록 하여 전지의 전력소모를 줄이는데 있다.The present invention relates to a continuous high-pressure spark generating circuit of a gas stove with a constant discharge cycle. In particular, as a constant cycle discharge circuit of a battery-type high voltage spark generator for ignition of a gas stove, a rectifying circuit is attached and a discharge cycle is constant according to a change in battery voltage. This is to reduce the power consumption of the battery.

종래의 가스렌지의 연속 고압 스파크발생회로는 제1도에 보는 바와 같이 스파크가 발생되는 권선이 건전지(B)에 회선으로 연결되어 있는 두개의 승압변전기(T1~T2)로 이루어진 것을 특징으로 하여 스위치(S)가 접점되면 전지의 전류가 흘러 트랜지스터(Q)의 베이스단에 흘러들어 트랜지스터를 급격히 작동시키며 베이스전류는 iB=VB/R으로 일정하고 T1의 LP를 흐르는 전류(iC)는 시간에 비례하여 증가한다.The continuous high-pressure spark generating circuit of the conventional gas stove is characterized by consisting of two boosting transformers T1 to T2 in which a winding in which the spark is generated is connected in a line to the battery B as shown in FIG. When the switch S is contacted, the current of the battery flows into the base of the transistor Q to operate the transistor rapidly. The base current is constant at iB = VB / R, and the current iC flowing through the LP of T1 is Increases in proportion

따라서, ichfeib가 되는 시점부터 트랜지스터는 활성영역으로 이행하고 Vce를 증가시키므로 ic는 더욱 작아져 결국은 트랜지스터(Q)가 정지된다. 트랜지스터가 정지되면 다시 전지의 전류가 트랜지스터의 베이스단 경로로 흐르므로 1의 상태가 되어 트랜지스터가 동작되고, 트랜지스터가 정지되어 T1의 LP에 흐르는 전류 icp에 의해 LP에 축적된 에너지가 T2의 2차측으로 유기되어 다이오드를 통하여 콘덴서를 충전하게 된다.Therefore, since the transistor shifts to the active region and increases Vce from the point of ichfeib, ic becomes smaller and eventually the transistor Q is stopped. When the transistor is stopped, the current of the battery flows back to the base terminal path of the transistor, and thus the transistor is operated in a state of 1, and the energy is stored in the LP by the current icp flowing in the LP of the transistor T1. Is charged to charge the capacitor through the diode.

이러한 과정을 고속 반복진행되면 콘덴서의 양단전압이 증가하고 이 전압이 시텍트의 던온 전압과정과 같으면 SD가 동작하여 콘덴서에 충전된 전하를 SD를 통하여 T2의 1차측에 가하게 된다.When this process is repeated at high speed, the voltage across the capacitor increases, and if the voltage is the same as the dunton voltage of the Sect, the SD is operated and the charge charged in the capacitor is applied to the primary side of T2 through the SD.

콘덴서에 충전된 전하가 T2의 1차측 권선으로 방전하므로 T2에는 순간적으로 고압이 유기되어 고압불꽃을 유기시킨다.Since the charge charged in the capacitor discharges to the primary winding of T2, a high voltage is instantaneously induced in T2 to induce a high-pressure flame.

즉 T1의 LP에 축적된 에너지 1/2ic2Lp가 다이오드(D2)에 축적되어 1/2VC2의 형태로 축적되고 VC가 SIDAC동작전압에 도달될때 까지의 시간은 ic의 크기에 반비례 한다.That is, the time until the energy 1 / 2ic 2 Lp accumulated in the LP of T1 is accumulated in the diode D2, accumulated in the form of 1 / 2VC 2 , and VC reaches the SIDAC operating voltage is inversely proportional to the size of ic.

즉 전지의 전압이 높아지면 ic가 커지므로 VC를 빨리 충전시키므로 방전주기가 빨라진다.In other words, as the voltage of the battery increases, ic increases, so that the VC is quickly charged, so that the discharge cycle is faster.

따라서, 전지의 전압에 따라 스파크방전주기가 변하는 문제점을 가지고 있다.Therefore, there is a problem that the spark discharge cycle is changed according to the voltage of the battery.

이와 같은 종래의 제반 문제점을 해결하기 위한 본 고안의 목적은 가스렌지 착화용 건전지식 고압 스파크 발생장치의 일정주기 방전회로로서 정류회로를 부착하여 건전지 전압의 변화에 따라 방전주기가 일정하도록 하여 전지의 전력소모를 줄이는 데 있다.The purpose of the present invention for solving the above conventional problems is to attach a rectifier circuit as a constant cycle discharge circuit of the battery-type high-pressure spark generator for gas stove ignition so that the discharge cycle is constant according to the change of battery voltage It is to reduce power consumption.

이하 첨부된 도면에 의해 본 고안의 기술적 구성을 상세히 설명하면 다음과 같다.Hereinafter, the technical configuration of the present invention with reference to the accompanying drawings in detail.

인버터용 트랜지스터(TR)에 미이너스전위의 정류회로를 연결하여 건전지(B)전압의 변화에 따라 방전주기가 일정하도록 인버터용트랜지스터(TR)의 베이스단 전류를 제어하는 일정주기방번회로를 갖는 것을 특징으로 한다.A rectifier circuit having a constant period counter circuit for controlling the base terminal current of the inverter transistor TR so that the discharge cycle is constant according to the change in the voltage of the battery B by connecting a rectifier circuit having a negative potential to the inverter transistor TR. It features.

이와 같이 구성된 본 고안의 작용효과를 상세히 설명하면 다음과 같다.Referring to the effect of the present invention configured in this way in detail as follows.

다이오드(D3, D4)와 콘덴서(C)가 첩부되어 있으며 다이오드D3와 콘덴서(C)로 부 전원의 정류회로를 구성하여 다이오드( D4)의 베이스전류를 일부 제어하여 방전주기를 일정하게 한다. 즉 건전지(B) 전원이 상승할때 iB가 커지는 것을 다이오드(D4)가 억제하게 된다. 건전지 전원전압이 커졌을 경우 A지점의 전위가 하강하므로 상대적으로 저항(R)에서 다이오드(D4)로 흐르는 전류가 커지므로 iB를 내린다. 변압기(T1)의 1차 권선에서 유기되는 역기전력의 크기에 반비례하는 iB를 트랜지스터(Q)에 흘려주므로 부궤환을 걸어 변압기(T1)의 LP에 축적되는 에너지가 전지의 전압에 관계없이 일정하도록 하면 결국 방전주기로 일정하게 된다.The diodes D3 and D4 and the capacitor C are attached to each other, and the diode D3 and the capacitor C form a rectifying circuit of the negative power source to control part of the base current of the diode D4 so that the discharge cycle is constant. That is, the diode D4 suppresses iB from growing when the battery B is powered up. When the battery power supply voltage is increased, the potential at the point A drops, so the current flowing from the resistor (R) to the diode (D4) becomes relatively large, so iB is lowered. Since iB, which is inversely proportional to the magnitude of the counter electromotive force induced by the primary winding of the transformer T1, flows to the transistor Q, the negative feedback causes the energy stored in the LP of the transformer T1 to be constant regardless of the voltage of the battery. Eventually, the discharge cycle is constant.

또한, 방전주기를 전지전압에 관계없이 일정하게 제어하므로 건전지(B)의 사용초기 및 말기 관계없이 일정하게 전력소모를 발생시켜 건전지(B)의 수명을 연장시키고 항상 일정한 방전주기를 추력하므로 착화조건을 최적화 할 수 있는 효과를 얻는다.In addition, since the discharge cycle is constantly controlled regardless of the battery voltage, the power consumption is consistently extended by generating constant power consumption regardless of the beginning and end of the use of the battery B. Therefore, the discharge cycle is always thrust. Get the effect to optimize.

Claims (2)

인버터용 트랜지스터(TR)에 미이너스전위의 정류회로를 연결하여 건전지(B)전압의 변화에 따라 방전주기가 일정하도록 인버터트랜지스터(TR)의 베이스단 전류를 제어하는 일정주기 방전회로를 갖는 것을 특징으로 가스렌지 점화용 연속 고압 스파크발생회로.It has a constant cycle discharge circuit for controlling the base terminal current of the inverter transistor (TR) to connect the rectifier circuit of the negative potential to the inverter transistor (TR) so that the discharge cycle is constant according to the change of the battery (B) voltage Continuous high pressure spark circuit for ignition gas stove. 제1항에 있어서, 전압의 변화에 따라 전력소모가 일정하여 건전지의 사용초기와 말기가 일정한 것을 특징으로 하는 가스렌지 점화용 연속 고압 스파크발생회로.The continuous high-pressure spark-generating circuit for ignition of a gas stove according to claim 1, wherein the power consumption is constant according to the change of the voltage so that the beginning and end of use of the battery are constant.
KR2019950039170U 1995-12-08 1995-12-08 Continued high-pressure spark generating circuit for a gas range KR0124092Y1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR2019950039170U KR0124092Y1 (en) 1995-12-08 1995-12-08 Continued high-pressure spark generating circuit for a gas range

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR2019950039170U KR0124092Y1 (en) 1995-12-08 1995-12-08 Continued high-pressure spark generating circuit for a gas range

Publications (2)

Publication Number Publication Date
KR970043936U KR970043936U (en) 1997-07-31
KR0124092Y1 true KR0124092Y1 (en) 1998-10-01

Family

ID=19432613

Family Applications (1)

Application Number Title Priority Date Filing Date
KR2019950039170U KR0124092Y1 (en) 1995-12-08 1995-12-08 Continued high-pressure spark generating circuit for a gas range

Country Status (1)

Country Link
KR (1) KR0124092Y1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102317710B1 (en) 2020-05-25 2021-10-27 센서나인(주) Spark generating apparayus for lighting

Also Published As

Publication number Publication date
KR970043936U (en) 1997-07-31

Similar Documents

Publication Publication Date Title
US4734624A (en) Discharge lamp driving circuit
US4301782A (en) Ignition system
ATE218765T1 (en) POWER SUPPLY FOR CONTROL CIRCUIT
US5505175A (en) Ignition system for internal combustion engine
MY134537A (en) Capacitively coupled power supply
JPH0119238B2 (en)
KR0124092Y1 (en) Continued high-pressure spark generating circuit for a gas range
US4266165A (en) High intensity discharge lamp starting circuit
US5696670A (en) Power supply for arc-discharge load
CN211524983U (en) Energy-controllable alternating-current ignition system
KR950013545B1 (en) Ignition apparatus for an internal combustion engine
CA2167758C (en) Ignitor
US5349605A (en) DC arc torch power supply
KR20030067897A (en) apparatus of lighting control for boiler
KR100313038B1 (en) Ignitor with timer for high intensity-discharge lamp
JPS5918949B2 (en) Switching regulator
KR0131391Y1 (en) An instant ignition of a gas range current control
KR200154970Y1 (en) High-frequency electro type igniter
KR200144347Y1 (en) Electronic ballast
KR940001184B1 (en) Neon stabilizer
KR200194987Y1 (en) Neon transformer
JP3029152B2 (en) Output short circuit protection circuit
JPS5923958Y2 (en) igniter
KR200174568Y1 (en) Ignitor with timer for high intensity-discharge lamp
KR100362636B1 (en) Power Supplier

Legal Events

Date Code Title Description
A201 Request for examination
E701 Decision to grant or registration of patent right
REGI Registration of establishment
FPAY Annual fee payment

Payment date: 20080609

Year of fee payment: 11

LAPS Lapse due to unpaid annual fee