E-Werk manual - Peter White Cycles
... any damage to connected devices of all kinds. It cannot be guaranteed that the E-WERK is able to power all connectable devices. For example, some mobile devices only use their internal battery during operation and cannot be charged at the same time, also not by the E-WERK. Please contact the device’ ...
... any damage to connected devices of all kinds. It cannot be guaranteed that the E-WERK is able to power all connectable devices. For example, some mobile devices only use their internal battery during operation and cannot be charged at the same time, also not by the E-WERK. Please contact the device’ ...
Signal Issue 35 Ampliphase` transmitter
... output power. The three subsequent stages have audio fed to the grids of the triodes. The anode load of each pentode amplifier is effectively a tuned circuit comprising a parallel L/C network with a series component formed by the anode/cathode conductance of the triode. As audio is applied to the gr ...
... output power. The three subsequent stages have audio fed to the grids of the triodes. The anode load of each pentode amplifier is effectively a tuned circuit comprising a parallel L/C network with a series component formed by the anode/cathode conductance of the triode. As audio is applied to the gr ...
Digital Electronics I: Logic, Flip
... know much more about it to design and build their experiments. On the other hand, there are plenty of reasons to know something about digital methods. The author of our text (physicist Paul Horowitz) has built custom digital signal processors to search for signs of extraterrestrial intelligence in r ...
... know much more about it to design and build their experiments. On the other hand, there are plenty of reasons to know something about digital methods. The author of our text (physicist Paul Horowitz) has built custom digital signal processors to search for signs of extraterrestrial intelligence in r ...
General Description Features
... 1MHz and 2.42MHz. For proper frequency synchronization, FSYNC’s input frequency must be at least 110% of the EV kit’s programmed internal oscillator frequency. When FSYNC is driven with an external digital clock, the device synchronizes to the rising edge of the external clock. The digital square-wa ...
... 1MHz and 2.42MHz. For proper frequency synchronization, FSYNC’s input frequency must be at least 110% of the EV kit’s programmed internal oscillator frequency. When FSYNC is driven with an external digital clock, the device synchronizes to the rising edge of the external clock. The digital square-wa ...
BD8162AEKV
... Wherein, 10 μsec is the estimate of DC/DC response speed. Set CO so that these two values will fall within the limit values. Since the DC/DC converter causes a peak current to flow between input and output, capacitors must also be mounted on the input side. For this reason, it is recommended to use ...
... Wherein, 10 μsec is the estimate of DC/DC response speed. Set CO so that these two values will fall within the limit values. Since the DC/DC converter causes a peak current to flow between input and output, capacitors must also be mounted on the input side. For this reason, it is recommended to use ...
ISL78310 - Intersil
... For applications that desire to set the in-rush current to less than the current limit of the part, or for applications that require turn-on time control, an external capacitor can be placed on the soft-start pin for maximum control. A supply-independent ENABLE signal allows the part to be placed in ...
... For applications that desire to set the in-rush current to less than the current limit of the part, or for applications that require turn-on time control, an external capacitor can be placed on the soft-start pin for maximum control. A supply-independent ENABLE signal allows the part to be placed in ...
Laboratory Exercices for Analog and Digital Circuits
... Remove the part of the network through which the equivalent Norton's circuit will be analyzed. (in the illustration above, it would be RL), and tag the network terminals where the removed element was located. Calculate Norton's resistance "RN," substituting all supplies by zero (current power suppli ...
... Remove the part of the network through which the equivalent Norton's circuit will be analyzed. (in the illustration above, it would be RL), and tag the network terminals where the removed element was located. Calculate Norton's resistance "RN," substituting all supplies by zero (current power suppli ...
OPA132 OPA2132 OPA4132 High-Speed
... operating voltage range. Parameters which vary significantly with operating voltage are shown in the typical performance curves. OFFSET VOLTAGE TRIM Offset voltage of OPA132 series amplifiers is laser trimmed and usually requires no user adjustment. The OPA132 (single op amp version) provides offset ...
... operating voltage range. Parameters which vary significantly with operating voltage are shown in the typical performance curves. OFFSET VOLTAGE TRIM Offset voltage of OPA132 series amplifiers is laser trimmed and usually requires no user adjustment. The OPA132 (single op amp version) provides offset ...
TPA6101A2 数据资料 dataSheet 下载
... which is likely higher than the source dc level. It is important to confirm the capacitor polarity in the application. power supply decoupling, CS The TPA6101A2 is a high-performance CMOS audio amplifier that requires adequate power supply decoupling to ensure that the output total harmonic distorti ...
... which is likely higher than the source dc level. It is important to confirm the capacitor polarity in the application. power supply decoupling, CS The TPA6101A2 is a high-performance CMOS audio amplifier that requires adequate power supply decoupling to ensure that the output total harmonic distorti ...
introduction
... BURDEN • The impedances of loads are called BURDEN • Individual devices or total connected load, including sec impedance of instrument transformer. • For devices burden expressed in VA at specified current or voltage, the burden impedance Zb is: • Zb = VA/IxI or VxV/VA ...
... BURDEN • The impedances of loads are called BURDEN • Individual devices or total connected load, including sec impedance of instrument transformer. • For devices burden expressed in VA at specified current or voltage, the burden impedance Zb is: • Zb = VA/IxI or VxV/VA ...
OPA2683 Very Low-Power, Dual, Current-Feedback Operational Amplifier APPLICATIONS
... The output capability for the OPA2683 also sets a new mark in performance for very low-power, current-feedback amplifiers. Delivering a full ±4VPP swing on ±5V supplies, the OPA2683 also has the output current to support this swing into a 100Ω load. This minimal output headroom requirement is comple ...
... The output capability for the OPA2683 also sets a new mark in performance for very low-power, current-feedback amplifiers. Delivering a full ±4VPP swing on ±5V supplies, the OPA2683 also has the output current to support this swing into a 100Ω load. This minimal output headroom requirement is comple ...
Doubly-Fed Induction Generator Wind Turbine Model for Fault Ride-Through Investigation Yutana Chongjarearn
... (PWM) as shown in vector control scheme. In this control scheme, the task of RSC is to decouple control of the stator active and reactive power of the DFIG while the GSC has to keep the DC-link voltage constant at a reference demand regardless of the magnitude and direction of the rotor power. Both ...
... (PWM) as shown in vector control scheme. In this control scheme, the task of RSC is to decouple control of the stator active and reactive power of the DFIG while the GSC has to keep the DC-link voltage constant at a reference demand regardless of the magnitude and direction of the rotor power. Both ...
ADVERC - FUNCTIONAL BACK GROUND
... The net result is efficient alternator performance, compensation for voltage losses in the system (including that across blocking-diodes), accompanied by considerably reduced engine running time e.g. 50%. NOTE: ADVERC is a controller not a booster. There is no forced feeding of the batteries. ADVERC ...
... The net result is efficient alternator performance, compensation for voltage losses in the system (including that across blocking-diodes), accompanied by considerably reduced engine running time e.g. 50%. NOTE: ADVERC is a controller not a booster. There is no forced feeding of the batteries. ADVERC ...
Resistive opto-isolator
Resistive opto-isolator (RO), also called photoresistive opto-isolator, vactrol (after a genericized trademark introduced by Vactec, Inc. in the 1960s), analog opto-isolator or lamp-coupled photocell, is an optoelectronic device consisting of a source and detector of light, which are optically coupled and electrically isolated from each other. The light source is usually a light-emitting diode (LED), a miniature incandescent lamp, or sometimes a neon lamp, whereas the detector is a semiconductor-based photoresistor made of cadmium selenide (CdSe) or cadmium sulfide (CdS). The source and detector are coupled through a transparent glue or through the air.Electrically, RO is a resistance controlled by the current flowing through the light source. In the dark state, the resistance typically exceeds a few MOhm; when illuminated, it decreases as the inverse of the light intensity. In contrast to the photodiode and phototransistor, the photoresistor can operate in both the AC and DC circuits and have a voltage of several hundred volts across it. The harmonic distortions of the output current by the RO are typically within 0.1% at voltages below 0.5 V.RO is the first and the slowest opto-isolator: its switching time exceeds 1 ms, and for the lamp-based models can reach hundreds of milliseconds. Parasitic capacitance limits the frequency range of the photoresistor by ultrasonic frequencies. Cadmium-based photoresistors exhibit a ""memory effect"": their resistance depends on the illumination history; it also drifts during the illumination and stabilizes within hours, or even weeks for high-sensitivity models. Heating induces irreversible degradation of ROs, whereas cooling to below −25 °C dramatically increases the response time. Therefore, ROs were mostly replaced in the 1970s by the faster and more stable photodiodes and photoresistors. ROs are still used in some sound equipment, guitar amplifiers and analog synthesizers owing to their good electrical isolation, low signal distortion and ease of circuit design.