Evaluates: MAX17007A MAX17007A Evaluation Kit General Description Features
... jumper configurations for each output-voltage type. Adjustable Voltage The OUT1 output voltage can be adjusted up to 2V by applying a DC voltage (0 to 2V) to the REFIN1 test point. When OUT1 is used as an adjustable output voltage, remove the shunt from jumper JU1. Dynamic Voltage The MAX17007A regu ...
... jumper configurations for each output-voltage type. Adjustable Voltage The OUT1 output voltage can be adjusted up to 2V by applying a DC voltage (0 to 2V) to the REFIN1 test point. When OUT1 is used as an adjustable output voltage, remove the shunt from jumper JU1. Dynamic Voltage The MAX17007A regu ...
2SD1834
... scope or not in accordance with the instruction manual. The Products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or create a risk ...
... scope or not in accordance with the instruction manual. The Products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or create a risk ...
Avoiding Audible Noise at Light Loads When
... During operation as the output voltage increases the voltage on the VAOUT pin will decrease until at no load the voltage of VAOUT drops below 1 V as per the multiplier equation. At that point, from the multiplier equation, the circuit should be requiring no current. By setting R1 and R2 so that thei ...
... During operation as the output voltage increases the voltage on the VAOUT pin will decrease until at no load the voltage of VAOUT drops below 1 V as per the multiplier equation. At that point, from the multiplier equation, the circuit should be requiring no current. By setting R1 and R2 so that thei ...
PL133-97 - Mouser Electronics
... The PL133-97 is offered in a QFN-16L 3x3mm package and it offers the best phase noise, additive jitter performance, and lowest power consumption of any comparable IC. The PL133-97 outputs can be disabled to a high impedance (tri-state) by pulling low the OE pin. When the OE pin is high, the outputs ...
... The PL133-97 is offered in a QFN-16L 3x3mm package and it offers the best phase noise, additive jitter performance, and lowest power consumption of any comparable IC. The PL133-97 outputs can be disabled to a high impedance (tri-state) by pulling low the OE pin. When the OE pin is high, the outputs ...
AC Servo Driver - tamagawa seiki co.,ltd.
... motor is in CCW rotation is to be connected to LEAD while that for lag EX-LAG is to be connected to LAG. ALM “0”during alarm and“1”during normal operation. INP “1”when position error is below set value. ...
... motor is in CCW rotation is to be connected to LEAD while that for lag EX-LAG is to be connected to LAG. ALM “0”during alarm and“1”during normal operation. INP “1”when position error is below set value. ...
X-Viper Modular 550W 80+ Bronze Active PFC 14CM FDB
... 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 ...
Lecture 4
... • Must not be sensitive to other properties of the environment • Power consumption: Sensors vary significantly in power consumption depending on their materials ...
... • Must not be sensitive to other properties of the environment • Power consumption: Sensors vary significantly in power consumption depending on their materials ...
Linear Regulator Fundamentals
... What is a Linear Voltage Regulator • A linear regulator operates by using a voltage-controlled current source to force a fixed voltage to appear at the regulator output terminal. The control circuitry continuously monitors (senses) the output voltage, and adjusts the current source (as required by ...
... What is a Linear Voltage Regulator • A linear regulator operates by using a voltage-controlled current source to force a fixed voltage to appear at the regulator output terminal. The control circuitry continuously monitors (senses) the output voltage, and adjusts the current source (as required by ...
Laboratory Exercise Basic Electrical Calculations and
... resistor from its color bands. Measure the actual resistance using the DMM as an ohmmeter. Using the formula below, calculate the percent error between the measured value and the nominal value of each resistor. From the percent error calculation, determine whether or not the resistor is within toler ...
... resistor from its color bands. Measure the actual resistance using the DMM as an ohmmeter. Using the formula below, calculate the percent error between the measured value and the nominal value of each resistor. From the percent error calculation, determine whether or not the resistor is within toler ...
Enlarge - Mouser
... The DS9637A is a Schottky dual differential line receiver which has been specifically designed to satisfy the requirements of EIA Standards RS-422 and RS-423. In addition, the DS9637A satisfies the requirements of MIL-STD 188-114 and is compatible with the International Standard CCITT recommendation ...
... The DS9637A is a Schottky dual differential line receiver which has been specifically designed to satisfy the requirements of EIA Standards RS-422 and RS-423. In addition, the DS9637A satisfies the requirements of MIL-STD 188-114 and is compatible with the International Standard CCITT recommendation ...
Data Sheet
... logic interfacing. The HOLD and HOLD inputs may be used with both low and high level CMOS, TTL and ECL logic systems. Logic threshold programmability was achieved by using a differential amplifier as the input stage for the digital inputs. A predictable logic threshold may be programmed by referenci ...
... logic interfacing. The HOLD and HOLD inputs may be used with both low and high level CMOS, TTL and ECL logic systems. Logic threshold programmability was achieved by using a differential amplifier as the input stage for the digital inputs. A predictable logic threshold may be programmed by referenci ...
high speed low power multi–threshold voltage flip flops
... transfer data. The main drawback of these flip-flops are the relatively high portion of the total chip power consumption, it consumes about 30% from the total power dissipation in MPU2 circuits [11], and the relatively high delay time of their outputs[10][11]. The delay time of a flip-flop is caused ...
... transfer data. The main drawback of these flip-flops are the relatively high portion of the total chip power consumption, it consumes about 30% from the total power dissipation in MPU2 circuits [11], and the relatively high delay time of their outputs[10][11]. The delay time of a flip-flop is caused ...
MAX1927/MAX1928 Low-Output-Voltage, 800mA, PWM Step-Down DC-DC Converters General Description
... slope compensation ramp are all summed at the PWM comparator. The comparator modulates the output power by adjusting the peak inductor current during the first half of each cycle based on the output-error voltage. The MAX1927/MAX1928 have relatively low ACloop gain coupled with a high-gain integrato ...
... slope compensation ramp are all summed at the PWM comparator. The comparator modulates the output power by adjusting the peak inductor current during the first half of each cycle based on the output-error voltage. The MAX1927/MAX1928 have relatively low ACloop gain coupled with a high-gain integrato ...
Physics 160 Lecture 13
... Simplified analysis of an op-amp with negative feedback: - Assume infinite gain, so the negative feedback always has to keep the two inputs equal in order to have a finite output. - Assume zero current flow into the op-amp inputs. - Then calculate the relationship between input and output from the f ...
... Simplified analysis of an op-amp with negative feedback: - Assume infinite gain, so the negative feedback always has to keep the two inputs equal in order to have a finite output. - Assume zero current flow into the op-amp inputs. - Then calculate the relationship between input and output from the f ...
OPM-1038SW
... The open fuse indicator status output acts very much like an on/off switch. With all three fuses in place and operating properly, this status output has a high resistance value of greater than ten mega-ohms. When one or more of the fuses are open, the status output becomes turned-on with a resistanc ...
... The open fuse indicator status output acts very much like an on/off switch. With all three fuses in place and operating properly, this status output has a high resistance value of greater than ten mega-ohms. When one or more of the fuses are open, the status output becomes turned-on with a resistanc ...
Solution Derivations for Capa #11
... A) False, initially capacitors act like wires without resistance, so there is no voltage drop. B) True, there is no current elsewhere in the circuit, so there are no other voltage drops. See (#1). C) True, after a long time a capacitor acts like an infinite resistor, so no current can flow. Thus, th ...
... A) False, initially capacitors act like wires without resistance, so there is no voltage drop. B) True, there is no current elsewhere in the circuit, so there are no other voltage drops. See (#1). C) True, after a long time a capacitor acts like an infinite resistor, so no current can flow. Thus, th ...
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.