CN202693714U - Portable multifunctional electricity mixing detector - Google Patents

Portable multifunctional electricity mixing detector Download PDF

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CN202693714U
CN202693714U CN 201220203008 CN201220203008U CN202693714U CN 202693714 U CN202693714 U CN 202693714U CN 201220203008 CN201220203008 CN 201220203008 CN 201220203008 U CN201220203008 U CN 201220203008U CN 202693714 U CN202693714 U CN 202693714U
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transistor
battery
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杨博涛
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Maintenance Branch of State Grid Hebei Electric Power Co Ltd
State Grid Corp of China SGCC
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Maintenance Branch of State Grid Hebei Electric Power Co Ltd
State Grid Corp of China SGCC
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Abstract

本实用新型涉及一种便携式多功能串电检测器,适用于检测变电站交直流混接的故障。本实用新型包括壳体和非接触式验电单元;所述非接触式验电单元包括一对电磁感应片、交流电压放大器、驱动及声光报警电路、单刀三掷开关SA和电池E;所述一对电磁感应片的一端并接在所述交流电压放大器的输入端,所述交流电压放大器的输出端接驱动及声光报警电路的输入端,所述电池E经单刀三掷开关SA分别接在交流电压放大器和驱动及声光报警电路的电源端。本实用新型的优点是灵敏度高、操作简单、携带方便、准确可靠。

Figure 201220203008

The utility model relates to a portable multi-functional series electricity detector, which is suitable for detecting faults of alternating current and direct current hybrid connections in substations. The utility model includes a shell and a non-contact electric inspection unit; the non-contact electric inspection unit includes a pair of electromagnetic induction sheets, an AC voltage amplifier, a drive and sound and light alarm circuit, a single-pole three-throw switch SA and a battery E; One end of the pair of electromagnetic induction sheets is connected in parallel to the input end of the AC voltage amplifier, the output end of the AC voltage amplifier is connected to the input end of the drive and sound and light alarm circuit, and the battery E is respectively Connect to the power supply end of the AC voltage amplifier, drive and sound and light alarm circuit. The utility model has the advantages of high sensitivity, simple operation, convenient portability, accuracy and reliability.

Figure 201220203008

Description

便携式多功能串电检测器Portable Multifunctional Series Electricity Detector

技术领域 technical field

本实用新型涉及一种便携式多功能串电检测器,适用于检测变电站交直流混接的故障。  The utility model relates to a portable multi-functional series electricity detector, which is suitable for detecting faults of alternating current and direct current hybrid connections in substations. the

背景技术 Background technique

基建变电站存在交直流混接的问题,尤其500kV超高压变电站,保护屏柜、端子箱和汇控柜内的二次电缆繁多,端子排上的二次接线密密麻麻,投运前的验收工作任务量大,而且尤为重要,稍有疏忽影响正常送电,给电网稳定带来隐患。目前检查及处理交直流混接的方法,利用二次图纸,对图查线,此方法耗时费力。  Infrastructure substations have the problem of AC and DC hybrid connections, especially in 500kV ultra-high voltage substations. There are many secondary cables in the protection screen cabinet, terminal box and control cabinet, and the secondary wiring on the terminal block is densely packed. Large, and especially important, a slight negligence will affect the normal power transmission and bring hidden dangers to the stability of the power grid. The current method of checking and processing the mixed connection of AC and DC uses secondary drawings to check the lines on the drawings, which is time-consuming and laborious. the

用万用表测量时,交直流电压档混用也存在问题:(1)交流电压档测量直流电压,电压表有可能无读数或者比实际直流电压高一倍,具体误差大小,与表内整流是半波还是全波有关。总之,表的取值是没有意义的。(2)直流电压档测量交流电压,由于频率的原因,会影响指针的摆动速率,长时间使用会造成万用表的损坏。  When measuring with a multimeter, there are also problems with the mixed use of AC and DC voltage files: (1) When measuring DC voltage with AC voltage files, the voltmeter may have no reading or be twice as high as the actual DC voltage. The specific error is half-wave with the rectification in the meter It's still about the whole wave. In short, the value of the table is meaningless. (2) The DC voltage range measures the AC voltage. Due to the frequency, it will affect the swing rate of the pointer, and long-term use will cause damage to the multimeter. the

实用新型内容 Utility model content

本实用新型所要解决的技术问题是提供一种灵敏度高、操作简单、携带方便、准确可靠的便携式多功能串电检测器。  The technical problem to be solved by the utility model is to provide a portable multi-function serial current detector with high sensitivity, simple operation, convenient portability, accuracy and reliability. the

本实用新型采用如下技术方案:  The utility model adopts the following technical solutions:

本实用新型包括壳体和非接触式验电单元;所述非接触式验电单元包括一对电磁感应片、交流电压放大器、驱动及声光报警电路、单刀三掷开关SA和电池E;所述一对电磁感应片的一端并接在所述交流电压放大器的输入端,所述交流电压放大器的输出端接驱动及声光报警电路的输入端,所述电池E经单刀三掷开关SA分别接在交流电压放大器和驱动及声光报警电路的电源端。 The utility model includes a shell and a non-contact electric inspection unit; the non-contact electric inspection unit includes a pair of electromagnetic induction sheets, an AC voltage amplifier, a driving and sound-light alarm circuit, a single-pole three-throw switch SA and a battery E; One end of the pair of electromagnetic induction sheets is connected in parallel to the input end of the AC voltage amplifier, the output end of the AC voltage amplifier is connected to the input end of the drive and sound and light alarm circuit, and the battery E is respectively Connect to the power supply end of the AC voltage amplifier, drive and sound and light alarm circuit.

所述非接触式验电单元还包括照明电路,所述照明电路的电源端经单刀三掷开关SA接电池E。  The non-contact electric testing unit also includes a lighting circuit, and the power supply end of the lighting circuit is connected to the battery E through a single-pole three-throw switch SA. the

所述串电检测器还包括接触式验电单元,所述接触式验电单元包括螺丝刀式传感器、整流电路、第一至第三放大及光报警电路和按钮开关SB;  The series detector also includes a contact-type electric test unit, and the contact-type electric test unit includes a screwdriver sensor, a rectifier circuit, the first to third amplification and light alarm circuits, and a button switch SB;

所述螺丝刀式传感器的金属杆的后端接整流电路的输入端,所述整流电路的输出端分别接第一至第三放大器光报警电路的输入端,所述电池E经按钮开关SB分别接第一至第三放大及光报警电路的电源端。 The rear end of the metal rod of the screwdriver sensor is connected to the input end of the rectification circuit, and the output ends of the rectification circuit are respectively connected to the input ends of the first to third amplifier light alarm circuits, and the battery E is respectively connected to each other through the button switch SB. The power terminals of the first to third amplification and light alarm circuits.

本实用新型的积极效果如下:  The positive effects of the present utility model are as follows:

(1)本实用新型大大提高了二次回路基建验收工作效率,比较以往的对图查线方法既方便又省时,最重要的是更准确更可靠。以前查找一条500kV线路开关汇控柜和端子箱是否串电需要2人/天,采取本串电检测器后,需要1人/半天即可高效完成。大大节省了人力、物力和财力。 (1) The utility model has greatly improved the work efficiency of the secondary circuit infrastructure inspection. Compared with the previous method of checking the line on the map, it is convenient and time-saving, and most importantly, it is more accurate and reliable. In the past, it took 2 people/day to find out whether a 500kV line switch control cabinet and terminal box are in series. After using this series detector, it takes 1 person/half a day to complete it efficiently. Greatly save manpower, material and financial resources.

(2)本实用新型还具有灵敏度高,操作方便,携带方便和准确可靠的特点。  (2) The utility model also has the characteristics of high sensitivity, convenient operation, convenient portability, accuracy and reliability. the

本检测器除了检查交直流串接问题,它还具有如下用途:  In addition to checking the AC and DC series connection problems, this detector also has the following uses:

(1)可以轻松判断60V~220V交流电源线是否带电; (1) Can easily judge whether the 60V ~ 220V AC power line is live;

(2)测量一定范围内交流电压的高低; (2) Measure the level of AC voltage within a certain range;

(3)方便测定电线芯的折断位置。 (3) It is convenient to determine the breaking position of the wire core.

附图说明 Description of drawings

附图1为本实用新型实施例1的原理方块图(采用非接触式验电单元)。  Accompanying drawing 1 is the principle block diagram of embodiment 1 of the present utility model (adopting non-contact electrometry unit). the

附图2为图1的电路原理图。  Accompanying drawing 2 is the schematic circuit diagram of Fig. 1. the

附图3为接触式验电单元的原理方块图。  Accompanying drawing 3 is the principle block diagram of the contact type electric test unit. the

附图4为图3的电路原理图。  Accompanying drawing 4 is the schematic circuit diagram of Fig. 3. the

图5为本实用新型壳体的主视图。  Fig. 5 is a front view of the housing of the present invention. the

图6为本实用新型壳体的后视图。  Fig. 6 is a rear view of the housing of the utility model. the

    在图1-6中,1电磁感应片、2电磁感应片、3螺丝刀式传感器、4壳体、5第二至第四发光二级管LD2-LED4的带数字字样的玻璃屏罩、6按钮开关(SB)、7单刀三掷开关(SA)、8自聚光照明灯泡(DL)、9电池盒盖、10扬声器出声孔、11第一发光二极管(LED1)。  In Figure 1-6, 1 electromagnetic induction sheet, 2 electromagnetic induction sheet, 3 screwdriver sensor, 4 housing, 5 second to fourth light-emitting diode LD2-LED4 glass screen with numbers, 6 buttons Switch (SB), 7 single-pole three-throw switch (SA), 8 self-concentrating lighting bulb (DL), 9 battery box cover, 10 speaker sound hole, 11 first light-emitting diode (LED1). the

具体实施方式 Detailed ways

实施例1(只包含非接触式验电单元,参见图1、图2、图5和图6):  Embodiment 1 (contains only non-contact electrometry unit, see Figure 1, Figure 2, Figure 5 and Figure 6):

本实施例包括壳体4和非接触式验电单元;所述非接触式验电单元包括一对电磁感应片1、2、交流电压放大器、驱动及声光报警电路、单刀三掷开关SA和电池E;所述一对电磁感应片1、2的一端并接在所述交流电压放大器的输入端,所述交流电压放大器的输出端接驱动及声光报警电路的输入端,所述电池E经单刀三掷开关SA分别接在交流电压放大器和驱动及声光报警电路的电源端。 The present embodiment includes a housing 4 and a non-contact electric test unit; the non-contact electric test unit includes a pair of electromagnetic induction sheets 1, 2, an AC voltage amplifier, a drive and sound and light alarm circuit, a single-pole three-throw switch SA and Battery E; one end of the pair of electromagnetic induction sheets 1, 2 is connected in parallel to the input end of the AC voltage amplifier, the output end of the AC voltage amplifier is connected to the input end of the drive and sound and light alarm circuit, and the battery E The single-pole three-throw switch SA is respectively connected to the power supply end of the AC voltage amplifier and the drive and sound and light alarm circuit.

所述一对电磁感应片1、2的结构相同,均为5×10×0.5mm的铜片。  The structure of the pair of electromagnetic induction sheets 1 and 2 is the same, and both are copper sheets of 5×10×0.5 mm. the

所述交流电压放大器由N沟道场效应管VT1、电阻R1组成;所述N沟道场效应管VT1的栅极g接所述一对电磁感应片1、2的并接端,其漏极d依次经电阻R1、单刀三掷开关SA接电池E的正极,其源极s接电池E的负极;  The AC voltage amplifier is composed of an N-channel field effect transistor VT1 and a resistor R1; the gate g of the N-channel field effect transistor VT1 is connected to the parallel terminals of the pair of electromagnetic induction sheets 1 and 2, and its drains d are in turn Connect the positive pole of the battery E through the resistor R1 and the single-pole three-throw switch SA, and connect the source s to the negative pole of the battery E;

所述驱动及声光报警电路由晶体管VT2-VT3、电阻R2-R3、第一发光二极管LED1和扬声器HA组成;晶体管VT2的基极经电阻R1接N沟道场效应管VT1的漏极d,晶体管VT2的集电极经单刀三掷开关SA接电池E的正极,晶体管VT2的发射极接晶体管VT3的基极,晶体管VT3的发射极接电池E的负极,晶体管VT3的集电极依次经电阻R3、第一发光二极管LED1、扬声器HA和单刀三掷开关SA接电池E的正极。 The drive and sound and light alarm circuit is composed of transistors VT2-VT3, resistors R2-R3, first light-emitting diode LED1 and speaker HA; the base of transistor VT2 is connected to the drain d of N-channel field effect transistor VT1 through resistor R1, and the transistor The collector of VT2 is connected to the positive pole of the battery E through the single-pole three-throw switch SA, the emitter of the transistor VT2 is connected to the base of the transistor VT3, the emitter of the transistor VT3 is connected to the negative pole of the battery E, and the collector of the transistor VT3 passes through the resistor R3 and the first pole in turn. A light-emitting diode LED1, a speaker HA and a single-pole three-throw switch SA are connected to the positive pole of the battery E.

所述非接触式验电单元还包括照明电路,所述照明电路的电源端经单刀三掷开关SA接电池E。  The non-contact electric testing unit also includes a lighting circuit, and the power supply end of the lighting circuit is connected to the battery E through a single-pole three-throw switch SA. the

所述照明电路由自聚光灯泡DL组成。  The lighting circuit is composed of self-concentrating bulbs DL. the

所述壳体4为倒“T”字形,所述一对电磁感应片1、2对称的装在倒“T”字形壳体下端的水平臂的两端部内。  The housing 4 is in the shape of an inverted "T", and the pair of electromagnetic induction sheets 1 and 2 are symmetrically installed in both ends of the horizontal arm at the lower end of the inverted "T"-shaped housing. the

实施例1的工作原理如下:  The working principle of embodiment 1 is as follows:

当一对电磁感应片接近交直流混接电路时,交流电压产生的交变磁场,作用在一对电磁感应片上,类似于做切割磁感线运动,使一对电磁感应片上产生感应电动势,这样就捕获到交流电压信号,一对电磁感应片离带电体越近,越灵敏,进而产生的感应电动势越大。 When a pair of electromagnetic induction sheets is close to the AC-DC hybrid circuit, the alternating magnetic field generated by the AC voltage acts on the pair of electromagnetic induction sheets, which is similar to cutting the magnetic induction line, so that an induced electromotive force is generated on the pair of electromagnetic induction sheets, so that As soon as the AC voltage signal is captured, the closer the pair of electromagnetic induction sheets are to the charged body, the more sensitive they are, and the greater the induced electromotive force generated.

N沟道场效应管VT1是一种电压控制元件,并且它的输入阻抗较高,只要在输入端栅极给以变化的电压就能控制输出电流的变化,对50Hz工频电压变化尤为敏感。当一对电磁感应片没有感应电动势时,VT1处于零偏状态,由于VT1为耗尽型,所以其漏极d和源极s之间始终饱和导通状态,VT2基极通过R2获得的偏压低于0.65V,故VT2、VT3处于截止状态。当一对电磁感应片感应到微弱交流电压时,经过VT1放大后,就会从其漏极d输出放大了的50Hz交流电压信号,从而使VT2、VT3也以相同频率不断地导通与截止。  The N-channel field effect transistor VT1 is a voltage control element, and its input impedance is relatively high. As long as a variable voltage is applied to the input gate, the change of the output current can be controlled, and it is particularly sensitive to the change of the 50Hz power frequency voltage. When a pair of electromagnetic induction plates has no induced electromotive force, VT1 is in a zero-bias state. Since VT1 is a depletion type, its drain d and source s are always in a saturated conduction state, and the bias voltage obtained by the base of VT2 through R2 is low. At 0.65V, VT2 and VT3 are in the cut-off state. When a pair of electromagnetic induction chips senses a weak AC voltage, after being amplified by VT1, an amplified 50Hz AC voltage signal will be output from its drain d, so that VT2 and VT3 are also continuously turned on and off at the same frequency. the

当晶体管VT3导通时,驱使扬声器HA发出连续声音,并点亮LED1,提醒人们注意,一对电磁感应片处已检测到有交流电压存在。  When the transistor VT3 is turned on, the speaker HA is driven to emit continuous sound, and LED1 is lit to remind people that there is an AC voltage detected at a pair of electromagnetic induction plates. the

当单刀三掷开关SA开关打到1的位置,启动非接触验电单元;SA打到2的位置,处于关闭状态,检测器不耗电;当SA打到3的位置,启动照明回路,既可在夜晚用于短时间照明,又可在检修电气装置时照亮二次回路。  When the SA switch of the single-pole three-throw switch is at the 1 position, the non-contact electrometry unit is started; when the SA is at the 2 position, it is in the off state, and the detector does not consume power; when the SA is at the 3 position, the lighting circuit is started, both It can be used for short-term lighting at night, and it can also illuminate the secondary circuit when repairing electrical devices. the

实施例2(既包含非接触式验电单元,又包含接触式验电单元,见图1-6):  Embodiment 2 (contains both non-contact electric test unit and contact electric test unit, see Figure 1-6):

实施例2与实施例1不同的是它还包括接触式验电单元,所述接触式验电单元包括螺丝刀式传感器3、整流电路、第一至第三放大及光报警电路和按钮开关SB; The difference between embodiment 2 and embodiment 1 is that it also includes a contact-type electric test unit, which includes a screwdriver sensor 3, a rectifier circuit, the first to third amplification and light alarm circuits, and a button switch SB;

所述螺丝刀式传感器3的金属杆的后端接整流电路的输入端,所述整流电路的输出端分别接第一至第三放大器光报警电路的输入端,所述电池E经按钮开关SB分别接第一至第三放大及光报警电路的电源端。 The rear end of the metal rod of the screwdriver sensor 3 is connected to the input end of the rectification circuit, and the output ends of the rectification circuit are respectively connected to the input ends of the first to third amplifier light alarm circuits. Connect to the power supply terminals of the first to third amplification and light alarm circuits.

所述螺丝刀式传感器3为“一”字形或“十”字形改锥;所述改锥的金属杆后端。  The screwdriver sensor 3 is a "one" or "ten" screwdriver; the metal rod rear end of the screwdriver. the

所述第一至第三放大及光报警电路由晶体管VT4-VT6、电位器RW1-RW3、电阻R4-R6、电容C1-C3和第二至第四发光二极管LED2-LED4组成;  The first to third amplification and light alarm circuits are composed of transistors VT4-VT6, potentiometers RW1-RW3, resistors R4-R6, capacitors C1-C3 and second to fourth light-emitting diodes LED2-LED4;

所述第一至第三放大及光报警电路的结构相同,其中第一放大及光报警电路由晶体管VT4、电位器RW1、电阻R4、电容C1和第二发光二极管LED2组成;所述晶体管VT4的基极经电位器RW1接所述整流二极管D的负极,所述晶体管VT4的发射极接所述电池E的负极,所述晶体管VT4的集电极依次经第二发光二极管LED2、电阻R4、按钮开关SB接所述电池E的正极; The structures of the first to third amplification and light alarm circuits are the same, wherein the first amplification and light alarm circuit is composed of transistor VT4, potentiometer RW1, resistor R4, capacitor C1 and the second light emitting diode LED2; the transistor VT4 The base is connected to the negative pole of the rectifier diode D through the potentiometer RW1, the emitter of the transistor VT4 is connected to the negative pole of the battery E, and the collector of the transistor VT4 is sequentially connected to the second light-emitting diode LED2, the resistor R4, and the button switch. SB is connected to the positive pole of the battery E;

所述晶体管VT5-VT6的基极分别经电位器RW2、RW3接所述整流二极管的负极。 The bases of the transistors VT5-VT6 are respectively connected to the cathodes of the rectifier diodes via the potentiometers RW2 and RW3.

所述螺丝刀式传感器3固定在倒“T”字形壳体的上端。  The screwdriver sensor 3 is fixed on the upper end of the inverted "T" shaped housing. the

实施例2中的接触式验电单元的工作原理如下:  The working principle of the contact type electrometer unit in embodiment 2 is as follows:

长约55mm的一字螺丝刀3,既可以当作螺丝刀使用,同时又当作接触式探头,它可直接和带电体接触,但壳体4要保证绝缘。 The flat-head screwdriver 3 of about 55mm can be used as a screwdriver and also as a contact probe at the same time. It can be directly contacted with the charged body, but the housing 4 should be insulated.

当按下按钮开关SB按钮后,将螺丝刀式传感器3和某一未知交流电源接触,则交流电经整流二极管D整流后,输入第一至第三放大及声报警电路。根据待测电压的高低,调整RW1、RW2及RW3的阻值(电源断开情况下进行),经过调试后,若VT4导通,LED2亮,则所测电压≤60V;若VT4~VT5导通,LED2~LED3亮,则所测电压约为110V;若VT4~VT6导通,LED2~LED4亮,则所测电压为≥220V。  When the button switch SB is pressed, the screwdriver sensor 3 is contacted with an unknown AC power source, and the AC power is rectified by the rectifier diode D, and then input to the first to third amplification and sound alarm circuits. Adjust the resistance values of RW1, RW2 and RW3 according to the voltage to be measured (when the power supply is disconnected). After debugging, if VT4 is on and LED2 is on, the measured voltage is ≤60V; if VT4~VT5 is on , LED2~LED3 lights up, the measured voltage is about 110V; if VT4~VT6 is turned on, LED2~LED4 lights up, then the measured voltage is ≥220V. the

带数字字样的玻璃屏罩5是根据测量交流电压的大小,依次显示60V、110V、220V三个数值,当交流信号小于60V时,只有60V字样点亮,并且亮度较弱;当交流信号大于220V时,60V、110V、220V三个字样全亮,并且亮度较强。R4~R6是LED2-LED4的限流电阻,将电流限制在15-20mA额定值内。电容C1~C3为防干扰电容。RW1~RW3、R4-R6的阻值均在电源断开的情况下调试。  The glass screen 5 with digital characters displays three values of 60V, 110V, and 220V in sequence according to the measured AC voltage. When the AC signal is less than 60V, only the word 60V lights up, and the brightness is weak; when the AC signal is greater than 220V , the three words 60V, 110V, and 220V are all bright, and the brightness is relatively strong. R4~R6 are the current limiting resistors of LED2-LED4, which limit the current within the rated value of 15-20mA. Capacitors C1-C3 are anti-interference capacitors. The resistance values of RW1~RW3 and R4-R6 are all debugged when the power supply is disconnected. the

本实用新型可以在距被测交流电源线2cm~15cm处测出它是否带电。使用它的非接触验电功能时,距离端子排二次接线6cm处,沿端子排自上而下缓慢移动,当声光报警时,说明此处存在交流电压,此时再比对线头号和图纸是否一致,并使用本检测器的另一端,启动接触式验电功能,进一步判断哪根电缆芯带电并测量所带交流电压的幅值。当检测交流、直流是否混接时,断开各直流回路空开,只合交流回路空开,这样的检测效果更佳。  The utility model can detect whether the AC power line is electrified at a distance of 2 cm to 15 cm from the measured AC power line. When using its non-contact electrical inspection function, move slowly from top to bottom along the terminal row at a distance of 6cm from the secondary wiring of the terminal row. When the sound and light alarm, it means that there is an AC voltage here. At this time, compare the line number and Check whether the drawings are consistent, and use the other end of the detector to start the contact electric test function to further judge which cable core is charged and measure the amplitude of the AC voltage carried. When detecting whether the AC and DC are mixed, disconnect the circuit breakers of each DC circuit and only close the circuit breaker of the AC circuit, so that the detection effect is better. the

用本检测器还可以检测电线芯的断头位置,只要给被测线芯通以220V电压,将本检测器靠近被测线,使扬声器发声、发光二极管LED1发光,再沿着该线长度方向逐步移动,一边移动,一边检查。LED1熄灭的地方就是断芯的确定部位。  This detector can also detect the broken end position of the wire core, as long as the 220V voltage is applied to the tested wire core, the detector is close to the tested line, the speaker makes a sound, and the light-emitting diode LED1 emits light, and then along the length direction of the line Move gradually, checking as you go. The place where LED1 goes out is the definite part of broken core. the

Claims (10)

1. a portable multi-function crosstalk detecting device is characterized in that comprising housing (4) and non-contact type electricity checking unit; Described non-contact type electricity checking unit comprises a pair of electromagnetic induction sheet (1,2), alternating voltage amplifier, driving and sound light alarming circuit, single-pole triple-throw (SPTT) switch S A and battery E; One end of described a pair of electromagnetic induction sheet (1,2) is attempted by the input end of described alternating voltage amplifier, the output termination driving of described alternating voltage amplifier and the input end of sound light alarming circuit, described battery E is connected on respectively the power end of alternating voltage amplifier and driving and sound light alarming circuit through single-pole triple-throw (SPTT) switch S A.
2. portable multi-function crosstalk detecting device according to claim 1 is characterized in that the structure of described a pair of electromagnetic induction sheet (1,2) is identical, is the copper sheet of 5 * 10 * 0.5mm.
3. portable multi-function crosstalk detecting device according to claim 2 is characterized in that described alternating voltage amplifier is comprised of N channel field-effect pipe VT1, resistance R 1; That the grid g of described N channel field-effect pipe VT1 connects described a pair of electromagnetic induction sheet (1,2) and connect end, its drain electrode d connects the positive pole of battery E successively through resistance R 1, single-pole triple-throw (SPTT) switch S A, and its source electrode s connects the negative pole of battery E;
Described driving and sound light alarming circuit are comprised of transistor VT2-VT3, resistance R 2-R3, the first LED 1 and loudspeaker HA; The base stage of transistor VT2 meets the drain electrode d of N channel field-effect pipe VT1 through resistance R 1, the collector of transistor VT2 connects the positive pole of battery E through single-pole triple-throw (SPTT) switch S A, the emitter of transistor VT2 connects the base stage of transistor VT3, the emitter of transistor VT3 connects the negative pole of battery E, and the collector of transistor VT3 connects the positive pole of battery E successively through resistance R 3, the first LED 1, loudspeaker HA and single-pole triple-throw (SPTT) switch S A.
4. according to claim 1 or 3 described portable multi-function crosstalk detecting devices, it is characterized in that described non-contact type electricity checking unit also comprises lighting circuit, the power end of described lighting circuit meets battery E through single-pole triple-throw (SPTT) switch S A.
5. portable multi-function crosstalk detecting device according to claim 4 is characterized in that described lighting circuit is comprised of Self-concentration bulb DL.
6. portable multi-function crosstalk detecting device according to claim 5 is characterized in that described housing (4) for falling " T " font, in the both ends of the horizontal arm that is contained in down " T " font housing lower end that described a pair of electromagnetic induction sheet (1,2) is symmetrical.
7. according to claim 1 or 6 described portable multi-function crosstalk detecting devices, it is characterized in that described crosstalk detecting device also comprises contact electrical verification unit, described contact electrical verification unit comprises screw blade type sensor (3), rectification circuit, the first to the 3rd amplification and optical alarm circuit and pushbutton switch SB;
The input end of the rear termination rectification circuit of the Metallic rod of described screw blade type sensor (3), the output terminal of described rectification circuit connects respectively the input end of the first to the 3rd amplifier optical alarm circuit, and described battery E connects respectively the power end of the first to the 3rd amplification and optical alarm circuit through pushbutton switch SB.
8. portable multi-function crosstalk detecting device according to claim 7 is characterized in that described screw blade type sensor (3) is " one " font or " ten " font screwdriver;
Described rectification circuit is comprised of commutation diode D; The positive pole of commutation diode D connects the Metallic rod rear end of described screwdriver.
9. portable multi-function crosstalk detecting device according to claim 8 is characterized in that described the first to the 3rd amplification and optical alarm circuit are comprised of transistor VT4-VT6, potentiometer RW1-RW3, resistance R 4-R6, capacitor C 1-C3 and the second to the 4th LED 2-LED4;
The structure of described the first to the 3rd amplification and optical alarm circuit is identical, and wherein the first amplification and optical alarm circuit are comprised of transistor VT4, potentiometer RW1, resistance R 4, capacitor C 1 and the second LED 2; The base stage of described transistor VT4 connects the negative pole of described commutation diode D through potentiometer RW1, the emitter of described transistor VT4 connects the negative pole of described battery E, and the collector of described transistor VT4 connects the positive pole of described battery E successively through the second LED 2, resistance R 4, pushbutton switch SB;
The base stage of described transistor VT5-VT6 connects respectively the negative pole of described commutation diode through potentiometer RW2, RW3.
10. portable multi-function crosstalk detecting device according to claim 9 is characterized in that described screw blade type sensor (3) is fixed on down the upper end of " T " font housing.
CN 201220203008 2012-05-08 2012-05-08 Portable multifunctional electricity mixing detector Expired - Lifetime CN202693714U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102636724A (en) * 2012-05-08 2012-08-15 河北省电力公司超高压输变电分公司 Portable multi-functional serial crosstalk detector
CN102662124A (en) * 2012-05-08 2012-09-12 河北省电力公司超高压输变电分公司 Portable type multifunctional serial electric detector
CN103645374A (en) * 2013-12-28 2014-03-19 周芸 Non-contact electricity measurement device
GB2529306A (en) * 2014-07-08 2016-02-17 Peter Bradley Electricity detection device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102636724A (en) * 2012-05-08 2012-08-15 河北省电力公司超高压输变电分公司 Portable multi-functional serial crosstalk detector
CN102662124A (en) * 2012-05-08 2012-09-12 河北省电力公司超高压输变电分公司 Portable type multifunctional serial electric detector
CN102636724B (en) * 2012-05-08 2014-08-13 国家电网公司 Portable multi-functional serial crosstalk detector
CN103645374A (en) * 2013-12-28 2014-03-19 周芸 Non-contact electricity measurement device
GB2529306A (en) * 2014-07-08 2016-02-17 Peter Bradley Electricity detection device
GB2529306B (en) * 2014-07-08 2018-03-07 Bradley Peter Electricity detection device

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