MAX13442E/MAX13443E/MAX13444E ±15kV ESD-Protected, ±80V Fault-Protected, Fail-Safe RS-485/J1708 Transceivers General Description
... MAX13442E/MAX13444E feature a reduced slew-rate driver that minimizes EMI and reflections, allowing error-free transmission up to 250kbps. The MAX13443E driver can transmit up to 10Mbps. The high-speed MAX13443E RS-485 tranceiver features ±60V protection from signal faults on communication bus lines ...
... MAX13442E/MAX13444E feature a reduced slew-rate driver that minimizes EMI and reflections, allowing error-free transmission up to 250kbps. The MAX13443E driver can transmit up to 10Mbps. The high-speed MAX13443E RS-485 tranceiver features ±60V protection from signal faults on communication bus lines ...
General Description Features
... Peltier thermoelectric cooler (TEC) modules. On-chip power FETs and thermal control-loop circuitry minimize external components while maintaining high efficiency. Selectable 500kHz/1MHz switching frequency and a unique ripple-cancellation scheme optimize component size and efficiency while reducing ...
... Peltier thermoelectric cooler (TEC) modules. On-chip power FETs and thermal control-loop circuitry minimize external components while maintaining high efficiency. Selectable 500kHz/1MHz switching frequency and a unique ripple-cancellation scheme optimize component size and efficiency while reducing ...
Electronics 4.4: Digital Processes
... 3) (G) Draw and identify the circuit symbol for an NPN transistor. 4) (G) Identify from a circuit diagram the purpose of a simple transistor switching circuit. 15) (C) Explain the operation of a simple transistor switching circuit. Digital Logic Gates 5) (G) Draw and identify the symbols for two-inp ...
... 3) (G) Draw and identify the circuit symbol for an NPN transistor. 4) (G) Identify from a circuit diagram the purpose of a simple transistor switching circuit. 15) (C) Explain the operation of a simple transistor switching circuit. Digital Logic Gates 5) (G) Draw and identify the symbols for two-inp ...
CMOS Mixed Signal Design - Part I: OpAmp Design
... parallel with that of the amplifying stage. If we use a single transistor current load for a cascode, the output resistance of the load will be ≈ ro while that of the cascode stage will be ≈ A × ro . The effective output resistance will thus be dominated by the much lower resistance of the load and ...
... parallel with that of the amplifying stage. If we use a single transistor current load for a cascode, the output resistance of the load will be ≈ ro while that of the cascode stage will be ≈ A × ro . The effective output resistance will thus be dominated by the much lower resistance of the load and ...
+3 V/+5 V, Dual, Serial Input 12-Bit DAC AD7394
... The full-scale output voltage is determined by the applied external reference input voltage, VREF. The rail-to-rail VREF input to VOUT outputs allows for a full-scale voltage set equal to the positive supply, VDD, or any value in between. ...
... The full-scale output voltage is determined by the applied external reference input voltage, VREF. The rail-to-rail VREF input to VOUT outputs allows for a full-scale voltage set equal to the positive supply, VDD, or any value in between. ...
Ch 1
... The input impedance of a voltmeter should be at least 100 times greater than the Thevenin resistance to avoid meter loading. Meter loading errors cause inaccurate measurements. DMMs are usually not a problem since they typically have an input impedance of 10 MW. Copyright © The McGraw-Hill Companies ...
... The input impedance of a voltmeter should be at least 100 times greater than the Thevenin resistance to avoid meter loading. Meter loading errors cause inaccurate measurements. DMMs are usually not a problem since they typically have an input impedance of 10 MW. Copyright © The McGraw-Hill Companies ...
CH_3 SPECIAL PURPOSE DIODE
... 3.5.2 The Laser Diode The laser diode (light amplification by stimulated emission of radiation) produces a monochromatic (single color) light. Laser diodes in conjunction with photodiodes are used to retrieve data from compact discs. ...
... 3.5.2 The Laser Diode The laser diode (light amplification by stimulated emission of radiation) produces a monochromatic (single color) light. Laser diodes in conjunction with photodiodes are used to retrieve data from compact discs. ...
DDC, CDC, SMS Series: Zero Bias Silicon Schottky Barrier Detector Diodes Applications Features
... tangential signal power levels. Since they require no bias, noise is at a minimum. A low video impedance means a short R-C time constant and, therefore, wide video bandwidth and excellent pulse fidelity. As power monitors, these diodes may also be used to directly drive metering circuits even at low ...
... tangential signal power levels. Since they require no bias, noise is at a minimum. A low video impedance means a short R-C time constant and, therefore, wide video bandwidth and excellent pulse fidelity. As power monitors, these diodes may also be used to directly drive metering circuits even at low ...
Huracan battery charger
... Read the installation instructions contained in this Manual carefully. For further information put the Manual in a proper place. Fix the battery charger to a stable surface through the appropriate holes inserted on the fixing flanges. In case of installation on a vehicle it is advisable to use antiv ...
... Read the installation instructions contained in this Manual carefully. For further information put the Manual in a proper place. Fix the battery charger to a stable surface through the appropriate holes inserted on the fixing flanges. In case of installation on a vehicle it is advisable to use antiv ...
Multiple-Load Circuits CHAPTER 5
... which voltage is to be measured. Voltmeters have a very high internal resistance, so high that connecting them to a circuit has no noticeable effect on many circuits. For now, assume that meters (both ammeters and voltmeters) do not change the circuits in which they are used. Also, assume that the v ...
... which voltage is to be measured. Voltmeters have a very high internal resistance, so high that connecting them to a circuit has no noticeable effect on many circuits. For now, assume that meters (both ammeters and voltmeters) do not change the circuits in which they are used. Also, assume that the v ...
P83641
... appliances, powered by the same source and include any required safety factors. If the peak current exceeds the power supplies’ peak capacity, the output voltage provided by the power supplies may drop below the listed voltage range of the appliances connected to the supply and the voltage may not r ...
... appliances, powered by the same source and include any required safety factors. If the peak current exceeds the power supplies’ peak capacity, the output voltage provided by the power supplies may drop below the listed voltage range of the appliances connected to the supply and the voltage may not r ...
Development of High Voltage Power Supply for a Photomultiplier Sueaing
... high voltage transform from 15 V to -4000 V had to be done with proportional EMCO E40 high voltage module. It had to have potentiometer adjustment for voltage and low voltage monitoring with maximum +-1 V fault in measurement. Also the voltage monitoring should have been done completely separated fr ...
... high voltage transform from 15 V to -4000 V had to be done with proportional EMCO E40 high voltage module. It had to have potentiometer adjustment for voltage and low voltage monitoring with maximum +-1 V fault in measurement. Also the voltage monitoring should have been done completely separated fr ...
harmonics2
... position, or "amplitude" of the oscillation. This particular wave has a "peakto-peak" of 10, as it "peaks" at +5 and -5. Since this particular graph has the Y-axis units as voltage, this could represent voltage being applied to the speaker coil, +5 to -5 volts. A graph like this could represent 10 c ...
... position, or "amplitude" of the oscillation. This particular wave has a "peakto-peak" of 10, as it "peaks" at +5 and -5. Since this particular graph has the Y-axis units as voltage, this could represent voltage being applied to the speaker coil, +5 to -5 volts. A graph like this could represent 10 c ...
I. Complete circuits
... then back to the other terminal of the battery, we have a complete and continuous path for the flow of electrons. We call this flow electric current. ...
... then back to the other terminal of the battery, we have a complete and continuous path for the flow of electrons. We call this flow electric current. ...
WECC Solar PV Dynamic Model Specification
... operators without the need for non-disclosure agreements. ...
... operators without the need for non-disclosure agreements. ...
SN65EPT21 数据资料 dataSheet 下载
... The VBB pin is a reference voltage output for the device. When the device is used in single-ended mode, the unused input should be tied to VBB. This reference voltage can also be used to bias the input when it is ac coupled. When it is used, place a 0.01μF decoupling capacitor between VCC and VBB. A ...
... The VBB pin is a reference voltage output for the device. When the device is used in single-ended mode, the unused input should be tied to VBB. This reference voltage can also be used to bias the input when it is ac coupled. When it is used, place a 0.01μF decoupling capacitor between VCC and VBB. A ...
Transmission lines () - Lyle School of Engineering
... in phase with each other. The signal is reduced in amplitude as it travels along the wires, but the waveform is otherwise unchanged. • G/C is normally a much, much smaller ratio than R/L. The simplest modification to achieve the same ratio with R/L is to use low resistance insulation between the wir ...
... in phase with each other. The signal is reduced in amplitude as it travels along the wires, but the waveform is otherwise unchanged. • G/C is normally a much, much smaller ratio than R/L. The simplest modification to achieve the same ratio with R/L is to use low resistance insulation between the wir ...
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.