Bi-wiring and bi-amping
... Most B&W speakers are provided with two pairs of speaker terminals; this allows you to either bi-wire or biamplify them. The aim of both these techniques is not to simply get the customer to spend more on cables and electronics (although no manufacturer objects to this spin off) but to improve the r ...
... Most B&W speakers are provided with two pairs of speaker terminals; this allows you to either bi-wire or biamplify them. The aim of both these techniques is not to simply get the customer to spend more on cables and electronics (although no manufacturer objects to this spin off) but to improve the r ...
ECSE 200 FEE - simonfoucher.com
... the meter (especially for passive meters, which do not compensate for their presence). When connecting an ammeter, we are introducing a resistance to the current measured. When using a voltmeter, we are creating another path for the current to travel. With an ammeter, we are actively supplying power ...
... the meter (especially for passive meters, which do not compensate for their presence). When connecting an ammeter, we are introducing a resistance to the current measured. When using a voltmeter, we are creating another path for the current to travel. With an ammeter, we are actively supplying power ...
X-Viper 650W 80+ Bronze Active PFC 14CM FDB Fan
... of its Ultra-silent X-Viper Series, which contains an ultra-silent "Fluid Dynamic Bearing" (FDB) fan as its major cooling component. FDB fans offer better airflow, allowing for better ventilation. The average FDB fan has a long lifespan (100K hrs.), whilst staying virtually silent for more than 2 ye ...
... of its Ultra-silent X-Viper Series, which contains an ultra-silent "Fluid Dynamic Bearing" (FDB) fan as its major cooling component. FDB fans offer better airflow, allowing for better ventilation. The average FDB fan has a long lifespan (100K hrs.), whilst staying virtually silent for more than 2 ye ...
Lab #2
... The term circuit node refers to any point in a circuit where two or more elements (or branches) are joined together. A circuit loop is any closed path starting at a node in an electrical circuit, which when traversed requires passing through a sequence of circuit branches and which comes back to the ...
... The term circuit node refers to any point in a circuit where two or more elements (or branches) are joined together. A circuit loop is any closed path starting at a node in an electrical circuit, which when traversed requires passing through a sequence of circuit branches and which comes back to the ...
Bike Buddy
... The MAX608 low-voltage step-up controller operates from a 1.8V to 16.5V input voltage range. Pulse-frequency-modulation (PFM) control provides high efficiency at heavy loads, while using only 85μA (typical) when operating with no load. In addition, a logic-controlled shutdown mode reduces suppl ...
... The MAX608 low-voltage step-up controller operates from a 1.8V to 16.5V input voltage range. Pulse-frequency-modulation (PFM) control provides high efficiency at heavy loads, while using only 85μA (typical) when operating with no load. In addition, a logic-controlled shutdown mode reduces suppl ...
Lecture 8: Maxwell`s Equations and Electrical Circuits.
... Electrical circuit analysis is usually presented as a theory unto itself. However, the basis of electrical circuit analysis actually comes from electromagnetics, i.e., Maxwell’s equations. It is important to recognize this since electrical circuit theory is really only an approximation and under the ...
... Electrical circuit analysis is usually presented as a theory unto itself. However, the basis of electrical circuit analysis actually comes from electromagnetics, i.e., Maxwell’s equations. It is important to recognize this since electrical circuit theory is really only an approximation and under the ...
lab_04-_parallel_circuits_and_kcl1_1
... 3. Add R3 in parallel with R1 ad R2. Measure the parallel resistance of all three resistors. Then add R4 in parallel with the other three resistors and repeat the measurement. Record your results in Table 3-2. 4. Complete the parallel circuit by adding the voltage source as shown in Figure 3-2. Meas ...
... 3. Add R3 in parallel with R1 ad R2. Measure the parallel resistance of all three resistors. Then add R4 in parallel with the other three resistors and repeat the measurement. Record your results in Table 3-2. 4. Complete the parallel circuit by adding the voltage source as shown in Figure 3-2. Meas ...
APM Motor Control
... 2—Motor wire connections: Sawamura—Red to B-A’, Black to A-B’ Pittman—Red to A-B’, Black to B-A’ 3—Maximum output voltage is 4 volts lower than input voltage. Do not stall the motor for a long time, it could burn out the motor or a PM Motor Control. ...
... 2—Motor wire connections: Sawamura—Red to B-A’, Black to A-B’ Pittman—Red to A-B’, Black to B-A’ 3—Maximum output voltage is 4 volts lower than input voltage. Do not stall the motor for a long time, it could burn out the motor or a PM Motor Control. ...
MAX9945 Evaluation Kit Evaluates: General Description Features
... PCB for two back-to-back pico-amp diodes that can be used for differential-voltage protection of the op amp, if necessary. These low-leakage diodes ensure that the extremely low bias currents of the MAX9945 are not seriously degraded. The pico-amp diodes are not installed on the EV kit board. ...
... PCB for two back-to-back pico-amp diodes that can be used for differential-voltage protection of the op amp, if necessary. These low-leakage diodes ensure that the extremely low bias currents of the MAX9945 are not seriously degraded. The pico-amp diodes are not installed on the EV kit board. ...
Ohms Law Lab – Activity
... measured in Volts, or as Joules/Coulomb. Voltage provides the energy in the circuit needed to do work. Resistance is how much current is slowed by a device measured in Ohms. Electrical resistance is needed in a circuit. It allows the energy to be transformed into heat, light, motion, etc. Without re ...
... measured in Volts, or as Joules/Coulomb. Voltage provides the energy in the circuit needed to do work. Resistance is how much current is slowed by a device measured in Ohms. Electrical resistance is needed in a circuit. It allows the energy to be transformed into heat, light, motion, etc. Without re ...
OP200
... the full military temperature range. Open-loop gain of the OP200 exceeds 5,000,000 into a 10 kΩ load; input bias current is under 2 nA; CMRR is over 120 dB; and PSRR is below 1.8 μV/V. On-chip Zener zap trimming is used to achieve the extremely low input offset voltage of the OP200 and eliminates th ...
... the full military temperature range. Open-loop gain of the OP200 exceeds 5,000,000 into a 10 kΩ load; input bias current is under 2 nA; CMRR is over 120 dB; and PSRR is below 1.8 μV/V. On-chip Zener zap trimming is used to achieve the extremely low input offset voltage of the OP200 and eliminates th ...
Tasks - Hrvatski savez informatičara
... Mirko is building a simple logic circuit in his workshop. The circuit consists of n starting wires denoted with x1 , x2 , . . . , xn and m logic elements OR denoted with c1 , c2 , . . . , cm . Each element has exactly two inputs and one output. Each of the inputs is connected to either a starting wi ...
... Mirko is building a simple logic circuit in his workshop. The circuit consists of n starting wires denoted with x1 , x2 , . . . , xn and m logic elements OR denoted with c1 , c2 , . . . , cm . Each element has exactly two inputs and one output. Each of the inputs is connected to either a starting wi ...
RT9709 - Richtek
... Over Temperature Protection (OTP) The RT9709 monitors its own internal temperature to prevent thermal failures. The chip turns off the MOSFET when the internal temperature reaches 140°C with a built-in hysteresis of 50°C. The IC will resume to normal operation until the internal temperature falls to ...
... Over Temperature Protection (OTP) The RT9709 monitors its own internal temperature to prevent thermal failures. The chip turns off the MOSFET when the internal temperature reaches 140°C with a built-in hysteresis of 50°C. The IC will resume to normal operation until the internal temperature falls to ...
UM1470
... The input part of converter consists of an input single-wave rectifier, EMI/EMC filter and bulk capacitor. The input rectifier is based on two 1 A/1 kV general purpose diodes (D1, D2). The 2 kV blocking voltage is selected to increase robustness against input surge pulse. The EMI filter is based on ...
... The input part of converter consists of an input single-wave rectifier, EMI/EMC filter and bulk capacitor. The input rectifier is based on two 1 A/1 kV general purpose diodes (D1, D2). The 2 kV blocking voltage is selected to increase robustness against input surge pulse. The EMI filter is based on ...
RC cuircuit using oscilloscope
... should be roughly equal. The RC circuit consists of a Capacitor and a Resistor connected in series supplied by a AC power supply in form of a Function Generator. As the supplied is sinusoidal,the current in each element is also sinusoidal,but are not in phase. A series combination of a resistor R an ...
... should be roughly equal. The RC circuit consists of a Capacitor and a Resistor connected in series supplied by a AC power supply in form of a Function Generator. As the supplied is sinusoidal,the current in each element is also sinusoidal,but are not in phase. A series combination of a resistor R an ...
TRANSPAK T713 ™ RTD Input Isolating, Field Configurable
... 4. Connect the input to a calibrated 3-wire resistance source and monitor the output current (refer to terminal wiring). 5. Set the calibrator to the desired minimum temperature. 6. Adjust the coarse zero rotary switch to obtain an output of approximately 4mA or 10mA. Adjust the fine zero for exact ...
... 4. Connect the input to a calibrated 3-wire resistance source and monitor the output current (refer to terminal wiring). 5. Set the calibrator to the desired minimum temperature. 6. Adjust the coarse zero rotary switch to obtain an output of approximately 4mA or 10mA. Adjust the fine zero for exact ...
Schmitt trigger
In electronics a Schmitt trigger is a comparator circuit with hysteresis implemented by applying positive feedback to the noninverting input of a comparator or differential amplifier. It is an active circuit which converts an analog input signal to a digital output signal. The circuit is named a ""trigger"" because the output retains its value until the input changes sufficiently to trigger a change. In the non-inverting configuration, when the input is higher than a chosen threshold, the output is high. When the input is below a different (lower) chosen threshold the output is low, and when the input is between the two levels the output retains its value. This dual threshold action is called hysteresis and implies that the Schmitt trigger possesses memory and can act as a bistable multivibrator (latch or flip-flop). There is a close relation between the two kinds of circuits: a Schmitt trigger can be converted into a latch and a latch can be converted into a Schmitt trigger.Schmitt trigger devices are typically used in signal conditioning applications to remove noise from signals used in digital circuits, particularly mechanical contact bounce. They are also used in closed loop negative feedback configurations to implement relaxation oscillators, used in function generators and switching power supplies.