Parts comparison
Compare electronics parts
Put up to four catalogue parts side by side. BananaBoard shows exact structured values, their conditions and sources—and keeps unknown or inapplicable fields explicit.
Choose 2–4 parts
Values come directly from the source-cited catalogue. Unknown is kept unknown; this tool does not infer compatibility.
Structured comparison
Conditions and source links stay attached to each value. No automatic winner is declared.
Overview
Manufacturer
- 2N7000
- onsemi
- BC547
- onsemi
Category
- 2N7000
- MOSFET
- BC547
- Transistor
Object type
- 2N7000
- discrete
- BC547
- discrete
Package
- 2N7000
- TO-92
- BC547
- TO-92
Documented pins
- 2N7000
- 3
- BC547
- 3
Interfaces
- 2N7000
- Digital
- BC547
- Digital
Lifecycle
- 2N7000
- ACTIVE
- BC547
- ACTIVE
Physical pin mapping
- 2N7000
- Unknown
- BC547
- Unknown
Browser simulation
- 2N7000
- Not available
- BC547
- Not available
Electrical
Channel
- 2N7000
- BC547
- Not applicable
Type
- 2N7000
- Not applicable
- BC547
- bjt-npnSource
Max Vceo
- 2N7000
- Not applicable
- BC547
- 45 VSource
Collector-emitter breakdown with the base open. The BC546 variant is the 65V part if you need more.
Max Vds
- 2N7000
- 60 VSource
- BC547
- Not applicable
Max Ic
- 2N7000
- Not applicable
- BC547
- 100 mASource
Continuous collector current. This is a hard ceiling — for anything approaching it, use a MOSFET.
Vgs Threshold
- 2N7000
- 2.1 V @ Vds: Vds = Vgs (diode-connected), Id=1 mASource
- BC547
- Not applicable
Max Vgs
- 2N7000
- BC547
- Not applicable
Rds(on)
- 2N7000
- 5 Ω @ Vgs=10 V, Id=500 mASource
5.3Ω max at Vgs=4.5V, Id=75mA — usable but noticeably worse at true logic-level (not full 10V) gate drive.
- BC547
- Not applicable
Continuous Id
- 2N7000
- 200 mA @ Tamb=25 °CSource
- BC547
- Not applicable
Gate Charge
- 2N7000
- Unknown
- BC547
- Not applicable
Logic Level
- 2N7000
- Unknown
- BC547
- Not applicable
Performance
hFE (gain)
- 2N7000
- Not applicable
- BC547
- 110 – 800 @ Ic=2 mA, Vce=5 VSource
Spread across the whole family. Grouped by suffix: A is 110–220, B is 200–450, C is 420–800. Design the base resistor against the LOW end of your group, never the typical — gain varies part to part and falls as Ic rises.
Transition Frequency
- 2N7000
- Not applicable
- BC547
- 300 MHz @ Ic=10 mA, Vce=5 VSource
Physical
Thermal
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