BDTIC IGBT4 – 650V, 1200V, 1700V State of the art IGBT technology
... 1200V & 1700V IGBT4 1200V IGBT4 – T4 – E4 – P4 The 1200V IGBT4 is available in three optimized chip versions. These chip versions are the IGBT4-T4 chip with fast switching behavior for power modules with Inom=10A-300A, the IGBT4-E4 chip with optimized switching and on state characteristic for power ...
... 1200V & 1700V IGBT4 1200V IGBT4 – T4 – E4 – P4 The 1200V IGBT4 is available in three optimized chip versions. These chip versions are the IGBT4-T4 chip with fast switching behavior for power modules with Inom=10A-300A, the IGBT4-E4 chip with optimized switching and on state characteristic for power ...
semiconductor circuit templates
... Only use the control panel (at the bottom of screen) to review what you have seen. When using your mouse, make sure you click only when it is within the blue frame that surrounds each slide. ...
... Only use the control panel (at the bottom of screen) to review what you have seen. When using your mouse, make sure you click only when it is within the blue frame that surrounds each slide. ...
Partial Discharge/Corona Test
... What is the Partial Discharge Test? Partial Discharge (PD) also known as Corona is a very small electrical discharge caused by the ionization of oxygen in the presence of a high voltage electrical field. The ionized oxygen or ozone chemically reacts with many insulation materials and over a long per ...
... What is the Partial Discharge Test? Partial Discharge (PD) also known as Corona is a very small electrical discharge caused by the ionization of oxygen in the presence of a high voltage electrical field. The ionized oxygen or ozone chemically reacts with many insulation materials and over a long per ...
Allegro | Product | 3132 and 3133
... magnetic actuation using a bipolar magnetic field, i.e., a north-south alternating field. They combine extreme magnetic sensitivity with excellent stability over varying temperature and supply voltage. The high sensitivity permits their use with multi-pole ring magnets over relatively large distance ...
... magnetic actuation using a bipolar magnetic field, i.e., a north-south alternating field. They combine extreme magnetic sensitivity with excellent stability over varying temperature and supply voltage. The high sensitivity permits their use with multi-pole ring magnets over relatively large distance ...
© This item is protected by original copyright
... Mechanically switched capacitor with damping network (MSCDN) is used as reactive power compensation unit in the modern power systems. MSCDN stabilizes the voltage and increases the transmission capacity to ensure the availability of reactive power for feeding in the injection of reactive power at sh ...
... Mechanically switched capacitor with damping network (MSCDN) is used as reactive power compensation unit in the modern power systems. MSCDN stabilizes the voltage and increases the transmission capacity to ensure the availability of reactive power for feeding in the injection of reactive power at sh ...
Very High Common-Mode Voltage Precision Difference Amplifier
... decoupled close to the pins using 0.1 μF capacitors. Electrolytic capacitors of 10 μF, also located close to the supply pins, may be required if low frequency noise is present on the power supply. Although multiple amplifiers can be decoupled by a single set of 10 μF capacitors, each AD8479 should h ...
... decoupled close to the pins using 0.1 μF capacitors. Electrolytic capacitors of 10 μF, also located close to the supply pins, may be required if low frequency noise is present on the power supply. Although multiple amplifiers can be decoupled by a single set of 10 μF capacitors, each AD8479 should h ...
MID400 AC Line Monitor Logic-Out Device
... amplifier. The detector amplifier circuitry operates from a 5V DC supply and drives an open collector transistor output. The switching times are intentionally designed to be slow in order to enable the MID400, when used as an AC line monitor, to respond only to changes in input voltage exceeding m ...
... amplifier. The detector amplifier circuitry operates from a 5V DC supply and drives an open collector transistor output. The switching times are intentionally designed to be slow in order to enable the MID400, when used as an AC line monitor, to respond only to changes in input voltage exceeding m ...
NE555 (KA555) Single Timer
... The external capacitor C1 of Pin 6 and Pin 2 charges through RA, RB and discharges through RB only. In the internal circuit of the NE555 one input of the upper comparator is the 2/3 VCC (∗R1 =R2=R3, another input if it If it is connected Pin 6. As soon as charging C1 is higher than 2/3 Vcc, discharg ...
... The external capacitor C1 of Pin 6 and Pin 2 charges through RA, RB and discharges through RB only. In the internal circuit of the NE555 one input of the upper comparator is the 2/3 VCC (∗R1 =R2=R3, another input if it If it is connected Pin 6. As soon as charging C1 is higher than 2/3 Vcc, discharg ...
DATAFLEX - HyControl
... The choice of power source needs to suit your application. You can either use an internal lithium battery, an external 5 to 24 V DC power source, it could be solar, wind or a 110/230 V AC to 6-24V DC power supply. The supply needs to be regulated and capable of delivering a peak of 0.5A. The power c ...
... The choice of power source needs to suit your application. You can either use an internal lithium battery, an external 5 to 24 V DC power source, it could be solar, wind or a 110/230 V AC to 6-24V DC power supply. The supply needs to be regulated and capable of delivering a peak of 0.5A. The power c ...
Warnings, information and notes regarding designation of the product
... Auxiliary power supply can be LOW range (19-70VDC, 48-77VAC). Connecting device with LOW power supply to higher voltage will cause device malfunction. Check devices’ specification before turn it on! ...
... Auxiliary power supply can be LOW range (19-70VDC, 48-77VAC). Connecting device with LOW power supply to higher voltage will cause device malfunction. Check devices’ specification before turn it on! ...
A Differential Switched-Capacitor Amplifier with Programmable Gain
... the power supply voltages, (C1/C2) . (C4/C5) defines the amplifier gain and the term [1/2 - (C7/C5)] corresponds to the DC level shift at the output. The pressure sensor can be modeled as a resistive Wheatstone bridge with a differential output signal ratiometric to (VDD-VSS). Also, the ADC voltage ...
... the power supply voltages, (C1/C2) . (C4/C5) defines the amplifier gain and the term [1/2 - (C7/C5)] corresponds to the DC level shift at the output. The pressure sensor can be modeled as a resistive Wheatstone bridge with a differential output signal ratiometric to (VDD-VSS). Also, the ADC voltage ...
SPM FSBB20CH60L Smart Power Module FSBB20CH60L Smart Power Module
... 2. By virtue of integrating an application specific type HVIC inside the SPM, direct coupling to CPU terminals without any opto-coupler or transformer isolation is possible. 3. VFO output is open collector type. This signal line should be pulled up to the positive side of the 5V power supply with ap ...
... 2. By virtue of integrating an application specific type HVIC inside the SPM, direct coupling to CPU terminals without any opto-coupler or transformer isolation is possible. 3. VFO output is open collector type. This signal line should be pulled up to the positive side of the 5V power supply with ap ...
Gigital Phase Angle Meter
... angle meter, although other parameters, such as Frequency and Power Factor can be measured. The instrument has an analogic scale that enables it to be used as a synchroscope. The instrument is mounted in a high resistance plastic box, reduced in size and weight. The instrument has two inputs, which ...
... angle meter, although other parameters, such as Frequency and Power Factor can be measured. The instrument has an analogic scale that enables it to be used as a synchroscope. The instrument is mounted in a high resistance plastic box, reduced in size and weight. The instrument has two inputs, which ...
Model BD-20A HIGH FREQUENCY GENERATOR OPERATING
... counterclockwise will increase to output until the maximum output is achieved. Continuing to turn the knob counterclockwise beyond this point will cause the circuitry to go out of resonance, and the output will abruptly go to zero. If this occurs, turn the knob clockwise until the resonance is reest ...
... counterclockwise will increase to output until the maximum output is achieved. Continuing to turn the knob counterclockwise beyond this point will cause the circuitry to go out of resonance, and the output will abruptly go to zero. If this occurs, turn the knob clockwise until the resonance is reest ...
NCV8851BDBGEVB NCV8851B Automotive Grade Synchronous Buck Controller Evaluation Board
... way to evaluate and integrate a complete high-efficiency synchronous buck converter design. No additional components are required, other than dc supplies for the input voltage and enable pin. The board also can be connected to an external clock source to synchronize the switching frequency or for sp ...
... way to evaluate and integrate a complete high-efficiency synchronous buck converter design. No additional components are required, other than dc supplies for the input voltage and enable pin. The board also can be connected to an external clock source to synchronize the switching frequency or for sp ...
Buck converter
A buck converter is a voltage step down and current step up converter.The simplest way to reduce the voltage of a DC supply is to use a linear regulator (such as a 7805), but linear regulators waste energy as they operate by dissipating excess power as heat. Buck converters, on the other hand, can be remarkably efficient (95% or higher for integrated circuits), making them useful for tasks such as converting the main voltage in a computer (12V in a desktop, 12-24V in a laptop) down to the 0.8-1.8V needed by the processor.