ohms
30 volts.
To determine the current drawn by a 90 kW motor, you can use the formula: Current (I) = Power (P) / Voltage (V). For example, at a standard voltage of 400 V, the current would be approximately 225 amps (I = 90,000 W / 400 V). The actual current will vary based on the voltage supply and the motor's efficiency. Always ensure to consider the power factor if dealing with AC motors.
The terminology would typically reference a device such as a power supply, charger, diverter or transformer. The Input Voltage is the voltage supplied to the device to make it work. The Output Voltage is what the device supplies to an application. For example, a power supply for a laptop might convert 120 VAC to a voltage like 19.5 volts (A Sony Laptop) for charging a laptop battery.
A DC motor generates power when it is rotating even when no supply is connected.
Why would you want to do that -where would you obtain a lower voltage supply suitable for supplying a residence.
The voltage on a red wire from a power supply typically depends on the specific power supply being used. Common voltages for red wires in power supplies include +5V, +12V, and +24V, among others. It is important to check the specifications of the power supply to determine the exact voltage.
The voltage for a constant current (CC) power supply at 110 amps depends on the specific load and application. Generally, the voltage will vary based on the resistance of the load according to Ohm's Law (V = I × R). For example, if the load has a resistance of 5 ohms, the voltage would be 550 volts (110 A × 5 Ω). Always refer to the power supply specifications and the load characteristics to determine the exact voltage needed.
I think the cause of ripple voltage would be from a bad ground or capacitve voltage.
The circuit by itself doesn't determine the voltage of the power supply. If there's some additional requirement that goes along with the circuit, such as "The current through the circuit must be XYZ amperes.", or "The voltage across the third component from the north end of the circuit shall be ABC volts,", then that requirement would dictate the power supply voltage. But in order to calculate it, you'd need the knowledge of every component in the series circuit.
Computer power supplies will vary depending on the voltage needs of your computer. A general rule is the more components a computer has, the larger power supply it will require and the costlier the supply. Average prices range from $50 to $300.
Input would be 120v at 60hz. Standard US wall power.
To determine the running amps of a 45 kW motor, you would need to know the voltage at which it operates. You can use the formula: Amps = (kW x 1000) / (Volts x power factor). Once you have the voltage and power factor information, you can plug them into the formula to calculate the running amps.
The power supply makes the computer run, without any type of power supply it would be impossible to run a computer. The mains power supply for a laptop and the power supply unit of a desk top, both convert the high AC voltage from the mains power and convert it to low voltage DC, for the electronics of a computer to use.
30 volts.
There is a 750 watt power supply and an 850 watt power supply. Both have gotten excellent customer ratings at various websites. I would check the specification compliance and voltage/frequency requirements that came with your device.
To determine the current drawn by a 90 kW motor, you can use the formula: Current (I) = Power (P) / Voltage (V). For example, at a standard voltage of 400 V, the current would be approximately 225 amps (I = 90,000 W / 400 V). The actual current will vary based on the voltage supply and the motor's efficiency. Always ensure to consider the power factor if dealing with AC motors.
The terminology would typically reference a device such as a power supply, charger, diverter or transformer. The Input Voltage is the voltage supplied to the device to make it work. The Output Voltage is what the device supplies to an application. For example, a power supply for a laptop might convert 120 VAC to a voltage like 19.5 volts (A Sony Laptop) for charging a laptop battery.