Examples of using Ohm in English and their translations into Croatian
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Colloquial
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Ecclesiastic
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Computer
Therefore, it is suitable for measurement with low resistance less than 1 ohm, such as the resistance of a current meter shunt.
grounding resistance should be below 4 ohm.
Production should be done in the chip surface ohm electrode, and then cover the surface of a layer of ITO ITO surface in a layer of pad.
The full 2x200W RMS are available for well behaved 8 ohm speakers, with about the same power available down to a well behaved 4 ohms loads.
ground connection resistor should be less than 8 ohm.
Insulated resistance no less than 1,000M ohm between the two disjunct connections.
the final emitter follower stage will directly drive 8 ohm headphones.
impedance critical and low ohm loudspeaker systems up to 2 Ω.
But this asks the outputs amplifier impedance of catapult is less than 15 ohm at the same time, this has certain difficulty on circuit design,
CTs have a constant output power at 4 ohms- 8 ohm load almost unanimously to make the system more flat frequency response,
while in Europe the day when the line impedance of 80, and 50 ohm cables do not match.
the impedance of such antenna is 50 ohm, ability matchs with catapult photograph quite.
main feeder impedance 50 ohm coaxial cable.
main is 300 ohm, 75 ohm and 50 ohm three kinds of resistance, there is abroad in the past 450 ohm and 600 ohm impedance of the feeder.
the"mercury ohm" was initially defined in 1884 in as a column of mercury 106.3 cm long and 1 square millimeter in cross-section, at 0 degrees Celsius.
through a high-frequency cable with a wave resistance of 50 Ohm, the signal goes to the amplifying device- 3G repeater repeater.
General production of the feeder is 300 ohm, 75 ohm and 50 ohm impedance of the three, was also abroad in the past 450 ohm and 600 ohm impedance of the feeder.
line impedance of 80 Ohms, with a 50 ohm cables are mismatched.
CTs have a constant output power at 4 ohms- 8 ohm load almost unanimously to make the system more flat frequency response,