ഞാന് പറഞ്ഞതില് ഉറച്ചുനില്ക്കുന്നു. നിങ്ങള് """""ആദ്യം"""" ( time--3:02 to 3:05 ) കാണിച്ചിട്ട് പറയുന്നുണ്ട് " >>>ഇത് 6 amp MCB ആണ് എന്ന്
@nidhinpk41336 жыл бұрын
Shariyanu...
@bannuchubb78517 жыл бұрын
Anchor i love you
@Malapuram-mapila6 жыл бұрын
നിങ്ങൾ എല്ലാവരും വിവരം മുള്ളവരാ സമ്മതിച്ചു ഇതിൽ എത്രപേർ ജീവിടത്തിൽ ഒരിക്കൽപോലും സർക്യുട് ഷോട്ടാവാതെ വയറിങ് ചെയ്തിട്ടുണ്ട് തെറ്റ് എല്ലാവർക്കും പറ്റും ഹും തെറ്റു തിരുത്തൽ ആവാം പക്ഷെ പരിഹാസം വേണ്ടാ അല്ലെങ്കിലും എലേക്ട്രീഷന്മാരിൽ ഭൂരിഭാഗവും ഇങ്ങനെയാ അവനേകാട്ടിലും വലിയ പണിക്കാരൻ ഭൂമിയിൽ ഉണ്ടാവില്ലന്ന് അങ്ങുവിചാരിക്കും എന്നിട്ടോ ആ ഫെയ്സിൽ ഒന്നു കയ് തട്ടിയാൽ ഒന്നുനോക്കും നാലുപാഗത്തേക്കും ആരെങ്കിലും കണ്ടോന്ന്ന്, ആദ്യംനാം ശരിയാണൊഎന്നു നോക്കാം എന്നിട്ട് അവനാ കളിയാകുന്നദ്
@jafarswadik47025 жыл бұрын
കരക്റ്റ്
@commonman838 жыл бұрын
ചേട്ടായി........... നിങ്ങള് ആദ്യം കാണിച്ചത് വെറും mcb അല്ല. അതാണ് elcb. mcb യ്ക്ക് സെപരേറ്റ് ബ്രീകിംഗ് ബട്ടന് ഞാന് ഇതുവരെ കണ്ടിട്ടില്ല...ആളുകള് കാണുന്ന ഷോ അല്ലെ?കയ്യില് കിട്ടിയത് വച്ച അടിയ്ച്ചുവിടണ്ട...
@safeeqshafeeqkc40817 жыл бұрын
write
@naiksadplty7 жыл бұрын
ഇതൊന്നും ഫോളോ ചെയ്യണ്ട ചുമ്മാ ശോ ആയി കൂട്ടിയാല് മതി
@PraveenKumar-gg2lk7 жыл бұрын
Yes
@xYz-qn1gk6 жыл бұрын
അതെ ഇത് elcb അതവാ rccb ആണ്. mcb, db യിൽ വരുന്ന ഫ്യൂസ് ആണ് അതവാ miniature circuit breakers.
@JashidAP6 жыл бұрын
Ath ee programminte editorude kuzhappamaanu...video close aayi kaanikkunna clip maari ittathaa
@muhammadshafeek59795 жыл бұрын
എഡിറ്റർ ക്ക് തെറ്റ് പറ്റിയത് ആണ്. അദ്ദേഹം കയ്യിൽ എടുത്തത് MCB ആണ്
@lijomonmg76246 жыл бұрын
Ee kanikkunnathu DP RCCB (Double Pole Residual Current Circuit Breaker) annu.athine eduthu MCB (Miniature Circuit Breaker) ennu parayunnatheu enthinannu? Atho ethine kurichu ariyan padillathathu kondanno?
@jithinprakash85314 жыл бұрын
ഹോഹോ അങ്ങനെയോ 😆
@lightningprotectionsystemk29686 жыл бұрын
Damage from electrical transients or surges, is one of the leading causes of electrical/electronics equipment failure. An electrical transient is a short duration, high-energy impulse that is imparted on the normal electrical power system whenever there is a sudden change in the electrical circuit. They can originate from a variety of sources, both internal and external to a facility. Power surges are short duration voltage and current impulses that occur continuously in electrical distribution systems. Lightning, utility activities such as load or capacity bank switching and surges from motor drivers are all examples of power surges. The most obvious source is from lightning, but surges can also come from normal utility switching operations, or unintentional grounding of electrical conductors (such as when an overhead power line falls to the ground). Surges may even come from within a building or facility from such things as air conditioners, elevators, motors/pumps or arc welders, to name a few. In each case, the normal electric circuit is suddenly exposed to a large dose of energy that can adversely affect the equipment being supplied power. A surge protection device (SPD) is designed to divert high-current surges to ground and bypass your equipment, thereby limiting the voltage that is impressed on the equipment. The best means of protecting your electrical equipment from high-energy electrical surges is to install SPDs strategically throughout your facility. Considering that surges can originate from both internal and external sources, SPDs should be installed to provide maximum protection regardless of the source location. For this reason, a "Zone of Protection" approach is generally employed. The first level of defense is achieved by installing an SPD on the main service entrance equipment (i.e., where the utility power comes into the facility). This will provide protection against high energy surges coming in from the outside, such as lightning or utility transients. However, the SPD installed at the service entrance will not protect against internally generated surges. In addition, not all of the energy from outside surges is dissipated to ground by the service entrance device. For this reason, SPD’s should be installed on all distribution panels within a facility that supply power to critical equipment. Similarly, a third zone of protection would be achieved by installing SPD’s locally for each piece of equipment being protected, such as PLC’s, computers or computer controlled devices. Each zone of protection adds to the overall protection of the facility as each helps to further reduce the voltage exposed to the protected equipment. The service entrance SPD provides the first line of defense against electrical transients for a facility by diverting high-energy, outside surges to ground. It also lowers the energy level of the surge entering the facility to a level that can be handled by downstream devices closer to the load. Electrical transients are not confined to the electrical distribution system. They can enter a facility through phone/fax lines, cable or satellite systems, and local area networks (LAN). Therefore, in order to achieve maximum protection from surge damage, SPD’s should be installed on all systems susceptible to electrical transients. For maximum protection, SPD’s should be installed as close to the equipment (depends upon the type of arresters) being protected as possible. Cable lengths should be as short and straight as possible to minimize the resistive path of the circuit to ground. A solid connection to the system grounding conductor is essential for proper operation of the SPD’s. The surge protectors should be equipped with indicators that show if the circuit is grounded and operating properly, and the units installed so these indicators can be easily inspected. Main Distribution Panel : Spark Gap Lightning & Surge Arrester .{8/20 25kA -10/350 100kA} Sub Distribution Panel : MOV Lightning & Surge Arrester .{8/20 40kA - 10/350 20kA} At the equipment level : RJ11,RJ45,CCTV,Coaxial Cables.{8/20 20kA 10/350 5kA} M/s. RESCUE ELECTRIC COMPANY (ISO 9001:2008 Certified Company) St.AUGUSTIONE CHURCH BUILDING PRAVITHANAM,PALA,KOTTAYAM Dt. KERALA-686 651 PH- 04822 271246 +91 9496380272 Emal: info@reclpsindia.com- reckerala@india.com ........................................................................................................................................................................................................................................................................... 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