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Lets stay factual rather than reference marketing material produced by Philips. Adding link to Philips marketing PDF to further reading in next edit.
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==History and usage==
==History and usage==
The BC548 is a part of a family of NPN and PNP [[epitaxy|epitaxial]] silicon transistors that originated with the metal-cased [[BC108 family|BC108 family of transistors]]. This series, introduced in 1966 by [[Philips]], became the most used transistors in Australia<ref>{{cite web|title="MiniWatt:" DIGEST|url=http://www.kevinchant.com/uploads/7/1/0/8/7108231/philips_hendon_transistor_production_part_a.pdf|work=Vol 7 Number 2|publisher=Philips Australia|accessdate=17 March 2014|date=February 1968}}</ref> and was taken up by many European manufacturers. The BC548 is the modern plastic-packaged BC108;<ref name="Bishop2007">{{cite book|author=Owen Bishop|title=Robot Builder's Cookbook: Build and Design Your Own Robots|url=https://books.google.com/books?id=UxX6nk-EzY8C&pg=PA219|date=10 September 2007|publisher=Elsevier|isbn=978-0-08-055401-3|pages=219–}}</ref> the BC548 article at the Radiomuseum website<ref>{{cite web|title=BC548|url=http://www.radiomuseum.org/tubes/tube_bc548.html|website=Radiomuseum|accessdate=28 March 2017}}</ref> describes the BC548 as a successor to the BC238 and differing from the BC108 in only the shape of the package. Datasheets for the BC548 give specifications that are identical to, or exceed, those of the BC108, BC148 and BC238 predecessors. Thus the BC548 (or BC546 to 550) is a valid substitute in any circuit designed for the older BC108 (or BC148), which includes many Mullard and Philips published designs.{{Citation needed|date=March 2016}}
The BC548 is a part of a family of NPN and PNP [[epitaxy|epitaxial]] silicon transistors that originated with the metal-cased [[BC108 family|BC108 family of transistors]]. The BC548 is the modern plastic-packaged BC108;<ref name="Bishop2007">{{cite book|author=Owen Bishop|title=Robot Builder's Cookbook: Build and Design Your Own Robots|url=https://books.google.com/books?id=UxX6nk-EzY8C&pg=PA219|date=10 September 2007|publisher=Elsevier|isbn=978-0-08-055401-3|pages=219–}}</ref> the BC548 article at the Radiomuseum website<ref>{{cite web|title=BC548|url=http://www.radiomuseum.org/tubes/tube_bc548.html|website=Radiomuseum|accessdate=28 March 2017}}</ref> describes the BC548 as a successor to the BC238 and differing from the BC108 in only the shape of the package. Datasheets for the BC548 give specifications that are identical to, or exceed, those of the BC108, BC148 and BC238 predecessors. Thus the BC548 (or BC546 to 550) is a valid substitute in any circuit designed for the older BC108 (or BC148), which includes many Mullard and Philips published designs.{{Citation needed|date=March 2016}}


As of 2016, the BC548 is principally produced by [[ON Semiconductor]]<ref name="OnSemi-datasheet">{{cite web|title=BC548B: NPN Bipolar Transistor|url=http://www.onsemi.com/pub_link/Collateral/BC546-D.PDF|website=On Semiconductor|publisher=On Semiconductor|accessdate=8 March 2016}}</ref> and [[Fairchild Semiconductor]].<ref name="Fairchild-datasheet">{{cite web|title=BC546 / BC547 / BC548 / BC549 / BC550 NPN Epitaxial Silicon Transistor|url=https://www.fairchildsemi.com/datasheets/BC/BC547.pdf|website=Fairchild Semiconductor|publisher=Fairchild Semiconductor|accessdate=8 March 2016}}</ref>
As of 2016, the BC548 is principally produced by [[ON Semiconductor]]<ref name="OnSemi-datasheet">{{cite web|title=BC548B: NPN Bipolar Transistor|url=http://www.onsemi.com/pub_link/Collateral/BC546-D.PDF|website=On Semiconductor|publisher=On Semiconductor|accessdate=8 March 2016}}</ref> and [[Fairchild Semiconductor]].<ref name="Fairchild-datasheet">{{cite web|title=BC546 / BC547 / BC548 / BC549 / BC550 NPN Epitaxial Silicon Transistor|url=https://www.fairchildsemi.com/datasheets/BC/BC547.pdf|website=Fairchild Semiconductor|publisher=Fairchild Semiconductor|accessdate=8 March 2016}}</ref>

Revision as of 01:24, 13 October 2019

BC548 transistor

The BC548 is a general-purpose NPN bipolar junction transistor commonly used in European and American electronic equipment. It is notably often the first type of bipolar transistor hobbyists encounter and is often featured in designs in hobby electronics magazines where a general-purpose transistor is required.[1][2][3] The BC548 is low in cost[4][3] and widely available.

History and usage

The BC548 is a part of a family of NPN and PNP epitaxial silicon transistors that originated with the metal-cased BC108 family of transistors. The BC548 is the modern plastic-packaged BC108;[5] the BC548 article at the Radiomuseum website[6] describes the BC548 as a successor to the BC238 and differing from the BC108 in only the shape of the package. Datasheets for the BC548 give specifications that are identical to, or exceed, those of the BC108, BC148 and BC238 predecessors. Thus the BC548 (or BC546 to 550) is a valid substitute in any circuit designed for the older BC108 (or BC148), which includes many Mullard and Philips published designs.[citation needed]

As of 2016, the BC548 is principally produced by ON Semiconductor[7] and Fairchild Semiconductor.[8]

Pinout and specifications

The BC548 is supplied in a standard TO-92 3-pin package. The assignment of transistor elements (b,c,e) to leads, i.e. the "pinout", uses the same convention used by some - but not all - other TO-92 devices. As viewed in the top-right image, going from left to right, the pinout is as follows:

  • lead 1 (left in diagram) is the collector,
  • lead 2 is the base, and
  • lead 3 is the emitter.[9]

Sometimes the middle pin is supplied bent to form a triangle of leads (as found in TO-18 case transistors and, for example, the ZTX108-L) to match the pinout of the BC108 more exactly.

The BC548 part number is assigned by Pro Electron, which allows many manufacturers to offer electrically and physically interchangeable parts under one identification. Devices registered to this Pro Electron number must have the following minimum performance characteristics:[10]

  • Breakdown voltage, collector-to-emitter with base open-circuit VCEO = 30 V (see below)
  • Rated continuous collector current IC = 100 mA (Fairchild's BC548 at one time had a higher rating)
  • Rated total power dissipation Ptotal = 500 mW (some manufacturers may specify 625 mW - see below)
  • Transition frequency (gain-bandwidth product) ft = 150 MHz minimum (300 MHz typical)

Variants

The BC548 was released with, and often is found together in datasheets with, the BC547 (higher voltage) and BC549 (lower noise) devices, that correspond to the original BC107 and BC109 variants of the BC108. This group of NPN transistors share many specifications and characteristic curves, but differ in voltage ratings - the BC546 and BC547 are essentially the same as the BC548 but selected with higher breakdown voltages, while the BC549 is a low noise version, and the BC550 is both high-voltage and low-noise.[11] The BC556 to BC560 are the PNP counterparts of the BC546 to BC550, respectively. See the BC108 family for a table of these differences, and comparisons with predecessor types.

Some manufacturers specify their parts with higher ratings, for example the Fairchild 1997 datasheet (547ABC, Rev B) for the BC547, sourced from Process 10 gave 500mA as the maximum collector current, while their datasheets dated 2002 have dropped the current rating to the standard 100mA.[8] The power rating (in free air at 25 °C) is also subject to variation, from 500 mW to 625 mW; the latter now being the most common. There is lot of variation in the ft-transition maximum frequency from manufacturer to manufacturer.

Gain groups

The type number of any of the devices in this "family" may be followed by a letter, "A" to "C", indicating devices that have been selected that fall within a narrow range of gain (hFE). The same letters are used for this purpose in several other European transistors, and is similar in principle to the "Yellow", "Blue" (and so on) gain groupings in Japanese transistors, but should not be confused with the "A" suffix used with some American (JEDEC) devices, such as the 2N2222A, to indicate a variety of differences or enhancements over the base type.

The BC548 is available in three different gain groups:.

  • "A" indicates low gain (110 to 220, typically 180) at 2 mA collector current,
  • "B" indicates medium gain (200 to 450)
  • "C" indicates high gain (420 to 800)

So a BC548 might have a current gain anywhere between 110 and 800, but the gain of a BC548A would be within the range of 110 to 220.

Notes: Some manufacturers place slightly different limits on the gain groups, for example the "B" group has been quoted as 220-475 in a Philips 1997 datasheet. The BC547 variant rarely is available in the "C" gain group, and the BC549 rarely in the "A" gain group.

Complementary pairs

The PNP counterparts of the BC546 to BC550 are the BC556 to BC560 respectively, i.e. the type numbers are higher by ten.

The surface-mount package versions are the BC846 to BC850 (and PNP versions: BC856 to BC860).

See also

References

  1. ^ Newton C. Braga (2001). Electronic Projects from the Next Dimension: Paranormal Experiments for Hobbyists. Newnes. pp. 20–. ISBN 978-0-7506-7305-1.
  2. ^ Cathleen Shamieh (16 July 2015). Electronics For Dummies. Wiley. pp. 178–. ISBN 978-1-119-11799-5.
  3. ^ a b Owen Bishop; Digital Design (1995). Electronics Circuits and Systems (4th Edition) by Owen Bishop: Electronics Circuits and Systems. Digital Designs. pp. 20–. GGKEY:EU22S6U927R.
  4. ^ "BC548 − NPN Epitaxial Silicon Transistor". Retrieved 28 June 2013.
  5. ^ Owen Bishop (10 September 2007). Robot Builder's Cookbook: Build and Design Your Own Robots. Elsevier. pp. 219–. ISBN 978-0-08-055401-3.
  6. ^ "BC548". Radiomuseum. Retrieved 28 March 2017.
  7. ^ "BC548B: NPN Bipolar Transistor" (PDF). On Semiconductor. On Semiconductor. Retrieved 8 March 2016.
  8. ^ a b "BC546 / BC547 / BC548 / BC549 / BC550 NPN Epitaxial Silicon Transistor" (PDF). Fairchild Semiconductor. Fairchild Semiconductor. Retrieved 8 March 2016.
  9. ^ Motorola Small Signal Transistor Data Book (1984 ed.). pp. 2–97, 8–3.
  10. ^ World's Transistor Comparison Tables, Tech/ECA, 1993, ISBN 981-214-444-7
  11. ^ "BC546 through BC550".

Further reading

Historical Databooks