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Manufacturer of Module Store. IC chip Store. FXI Electronics Co.BC is a common and general purpose bipolar junction transistor available in TO package. Due to its general purpose features it can be used in variety of general switching and amplification applications in electronic circuits. The collector-emitter voltage of the transistor is V therefore it can be used to drive loads upto V DC with max mA current.
With mW collector dissipation Pc value and to DC current gain value this transistor can also be used in variety of general signal amplification and audio preamplification purposes. As described above it is a general purpose device so a user can use it in variety of general electronic application for example it can be used as a preamplifier or in preamplifier stages of an electronic circuits.
It can also be used as an audio amplifier or in audio amplifier stages of a circuit and any type of general signal amplification purpose. On the other hand we can use it as a switch to drive loads under mA. The mA collector current is quite enough to drive small loads in electronic circuits like relays, LEDs, high power transistors and many other components of an electronic circuit. Moreover with the -5V emitter-base voltage this transistor can also be used at the output of microcontrollers.
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Search a Component.Isso vale para todos. Digo isso porque tive muitos problemas devido a isso. Wellington, isso depende do projeto. Boa tardevoce pode me indicar um transistor para substituir o transistor pcr ??? Ola tudo bem. Era para ter funcionado. Procura o diagrama dos dois Triac e compara os pinos.
Muito legal essa tabela! B, A,A A,64,65 e A A, Aacrescentar mica isolante. C,D, D K, P6N60FI. K, P6N60FI. BT E Triac. BTA Triac 26 Amp.
BTA Triac 41Amp. Para substituir estes transistores observe a voltagem e a amperagem, substitua sempre por um maior que resolve o problema.
Transistor A733 PNP
FQPF 12N60 pequeno, subst. H 6NA80FI.Packaging should be the same as what is found in a retail store, unless the item was packaged by the manufacturer in non-retail packaging, such as an unprinted box or plastic bag.
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In the event that a suitable replacement is not available then a refund will be issued. Shipping, handling and insurance fees are non refundable. Return shipping is to be paid by the Buyer. Welcome to wholesale.It has a maximum gain value of and a high collector to emitter voltage of 65V making it also suitable for high voltage audio amplifier applications.
The Transistor has a gain value of with a transition frequency of MHz, the transistor is also know for its low noise feature. The BC has very low Continuous current of mA with a collector to emitter voltage of 65V, hence it cannot be used to switch heavy loads. So it can be used in places where the load current is less than mA. BC is a NPN transistor hence the collector and emitter will be left open Reverse biased when the base pin is held at ground and will be closed Forward biased when a signal is provided to base pin.
It is a low current transistor hence the maximum amount of current that could flow through the Collector pin Ic is mA, hence we cannot connect loads that consume more than mA and load voltage more than 30V using this transistor. BC has a decent gain value h fe up to ; this value determines the amplification capacity of the transistor. When this transistor is fully biased then it can allow a maximum of mA to flow across the collector and emitter.
This stage is called Saturation Region. When base current is removed the transistor becomes fully off, this stage is called as the Cut-off Region. If you are designing a PCD or Perf board with this component then the following picture from the BC Datasheet will be useful to know its package type and dimensions. Subscribe to stay updated with industry's latest Electronics components and news.
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Component Datasheet. BC Transistor Datasheet. Tags NPN Transistor. Get Our Weekly Newsletter! Littelfuse F Series Fuse. Amphenol Millimeter Wave Interconnects. Amphenol SV Microwave features their high-frequency millimeter wave coaxial connectors.
Stewart SS Series. AVX Position Sensors.Either the type of transistor may not be to hand, or it may not be available. Fortunately it is normally possible to use a replacement transistor type as there is often a considerable degree of overlap between the specifications of different types of transistor, and by looking at the basic specifications it is normally possible to choose the correct transistor replacements.
This explanation is focussed on bipolar transistors, but it is possible to apply similar logic to other electronic components including field effect transistors to ensure that suitable replacements can be found. When looking for suitable transistor replacements it is necessary to look at the main specifications for the transistor. Once the transistor specifications and parameters have been ascertained, it is possible to check for other replacement transistor types with similar parameters that will be able to operate within the circuit in question.
When considering any possible replacement transistors, it is necessary to look at a variety of parameters. These will include the basic parameters of the transistor operation performance. They will also include the environmentally related parameters, and the physical parameters. All these need to be taken into account when choosing a suitable replacement transistor. Fortunately many transistors used in electronic circuit design are general purpose types.
Their specifications are not particularly exacting and a variety of general purpose transistors could be used. Today, the performance of even general purpose transistors is exceedingly high and they can be used in a variety of applications. However a much closer look must be taken at transistors that fulfil a more exacting role. Their specifications need to be examined more closely to ensure that any substitutes will have a similar specification.
When looking for a suitable transistor replacement some of the basic transistor parameters that need to be considered include the following:. Other types are normally only used in very specialist applications. It is important to know what type the transistor is because there is a difference in the base emitter forward bias voltage drop. For germanium it is around 0. The circuit will be designed around a particular voltage drop.
Possible application types may include: switching, analogue, low power, RF amplifier, low noise, etc. Put in the correct type and it may not perform well. For example a low power general-purpose transistor is unlikely to work well in a switching application even if it has a high ft or frequency limit.
It is often necessary to match the replacement transistor package as closely as possible to enable the transistor to physically fit. Also the package may give an indication of other parameters.
Transistor parameters such as Vceo, etc need to be checked. Although they are slightly different, for all circuit equivalences of this nature these transistor parameters are the same. Choosing a replacement transistor with approximately the same current gain is necessary. Normally it is not a problem to choose a replacement transistor with a higher gain. Often a lower current gain may be acceptable. These are the main parameters that are of importance in most applications, but be on the look out for any other transistor parameters that may need to be included in the selection of the replacement transistor.
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