
MAX7031 Low-Cost, 308MHz, 315MHz, and 433.92MHz FSK Transceiver with Fractional-N PLL General Description
... Supply current, output power, and efficiency are greatly dependent on board layout and PAOUT match. 100% tested at TA = +125°C. Guaranteed by design and characterization over temperature. Guaranteed by design and characterization. Not production tested. Time for final signal detection; does not incl ...
... Supply current, output power, and efficiency are greatly dependent on board layout and PAOUT match. 100% tested at TA = +125°C. Guaranteed by design and characterization over temperature. Guaranteed by design and characterization. Not production tested. Time for final signal detection; does not incl ...
Film Capacitors – Power Factor Correction
... In case of the presence of harmonics installation of a de-tuned capacitor bank (reactors) must be considered. Check the discharge resistors/reactors and in case of doubt, check their function: (1) Power the capacitor up and down. (2) After ≤ 90 seconds the voltage between the terminals must decl ...
... In case of the presence of harmonics installation of a de-tuned capacitor bank (reactors) must be considered. Check the discharge resistors/reactors and in case of doubt, check their function: (1) Power the capacitor up and down. (2) After ≤ 90 seconds the voltage between the terminals must decl ...
Ohm`s Law Lab
... y-intercept to zero? Is there a proportional relationship between voltage and current? If so, write the equation for each run in the form potential = constant current. (Use a numerical value for the constant.). Your constant should be the slope of your line. 2. Resistance, R, is defined using R = ...
... y-intercept to zero? Is there a proportional relationship between voltage and current? If so, write the equation for each run in the form potential = constant current. (Use a numerical value for the constant.). Your constant should be the slope of your line. 2. Resistance, R, is defined using R = ...
IL420, IL4208
... are assembled in a six pin dual in-line package. High input sensitivity is achieved by using an emitter follower phototransistor and a cascaded SCR predriver resulting in an LED trigger current of less than 2 mA (DC). The use of a proprietary dV/dt clam results in a static dV/dt of greater than 10 k ...
... are assembled in a six pin dual in-line package. High input sensitivity is achieved by using an emitter follower phototransistor and a cascaded SCR predriver resulting in an LED trigger current of less than 2 mA (DC). The use of a proprietary dV/dt clam results in a static dV/dt of greater than 10 k ...
LP5900 - Texas Instruments
... VIH threshold to ensure that the device is fully enabled under all operating conditions. The EN pin voltage must be lower than the VIL threshold to ensure that the device is fully disabled. 7.3.3 Low Noise Output Any internal noise at the LP5900 reference voltage is reduced by a first order low-pass ...
... VIH threshold to ensure that the device is fully enabled under all operating conditions. The EN pin voltage must be lower than the VIL threshold to ensure that the device is fully disabled. 7.3.3 Low Noise Output Any internal noise at the LP5900 reference voltage is reduced by a first order low-pass ...
Low Distortion Differential ADC Driver AD8138
... Maximum Power Dissipation The maximum safe power dissipation in the AD8138 packages is limited by the associated rise in junction temperature (TJ) on the die. At approximately 150°C, which is the glass transition temperature, the plastic changes its properties. Even temporarily exceeding this temper ...
... Maximum Power Dissipation The maximum safe power dissipation in the AD8138 packages is limited by the associated rise in junction temperature (TJ) on the die. At approximately 150°C, which is the glass transition temperature, the plastic changes its properties. Even temporarily exceeding this temper ...
OPA684 Low-Power, Current Feedback OPERATIONAL AMPLIFIER With Disable FEATURES
... a full ±4VPP swing on ±5V supplies, the OPA684 also has the output current to support this swing into a 100Ω load. This minimal output headroom requirement is complemented by a similar 1.2V input stage headroom giving exceptional capability for single +5V operation. The OPA684’s low 1.7mA supply cur ...
... a full ±4VPP swing on ±5V supplies, the OPA684 also has the output current to support this swing into a 100Ω load. This minimal output headroom requirement is complemented by a similar 1.2V input stage headroom giving exceptional capability for single +5V operation. The OPA684’s low 1.7mA supply cur ...
MAX3221/MAX3223/MAX3243 1µA Supply-Current, True +3V to +5.5V RS-232 Transceivers with AutoShutdown _______________General Description
... levels on all receiver inputs for 30µs, the on-board power supply and drivers are shut off, reducing supply current to 1µA. This occurs if the RS-232 cable is disconnected or the connected peripheral transmitters are turned off. The system turns on again when a valid level is applied to any RS-232 r ...
... levels on all receiver inputs for 30µs, the on-board power supply and drivers are shut off, reducing supply current to 1µA. This occurs if the RS-232 cable is disconnected or the connected peripheral transmitters are turned off. The system turns on again when a valid level is applied to any RS-232 r ...
Steady-State Analysis of Single Phase A.C. Circuit
... denote its voltage value as being 10 volts RMS. The qualifier “RMS” stands for Root Mean Square, the algorithm used to obtain the DC equivalent value from point on a graph (essentially, the procedure consists of squaring all the positive and negative points on a waveform graph, averaging those squar ...
... denote its voltage value as being 10 volts RMS. The qualifier “RMS” stands for Root Mean Square, the algorithm used to obtain the DC equivalent value from point on a graph (essentially, the procedure consists of squaring all the positive and negative points on a waveform graph, averaging those squar ...
UCC28950 数据资料 dataSheet 下载
... • The voltage on the soft-start capacitor is not below 0.55 V typical. If all those conditions are met, an internal enable signal EN is generated that initiates the soft start process. The duty cycle during the soft start is defined by the voltage at the SS pin, and cannot be lower than the duty cyc ...
... • The voltage on the soft-start capacitor is not below 0.55 V typical. If all those conditions are met, an internal enable signal EN is generated that initiates the soft start process. The duty cycle during the soft start is defined by the voltage at the SS pin, and cannot be lower than the duty cyc ...
R-EF-11: Stray Voltage Problems with Dairy Cows
... relatively simple electrically, though the sources can be varied and complex. These voltages may be caused by poor or faulty wir ing, faulty equipment, improper grounding, or they may result from the small voltages required to move current through the grounded neutral system. As farm operations inc ...
... relatively simple electrically, though the sources can be varied and complex. These voltages may be caused by poor or faulty wir ing, faulty equipment, improper grounding, or they may result from the small voltages required to move current through the grounded neutral system. As farm operations inc ...
AP Physics Free Response Practice – Circuits 1976B3. In the circuit
... and Y. as shown above on the left. Varying R changes both the current I and the terminal voltage VXY. The quantities I and VXY are measured for several values of R and the data are plotted in a graph, as shown above on the right. a. Determine the emf E of the battery. b. Determine the internal resis ...
... and Y. as shown above on the left. Varying R changes both the current I and the terminal voltage VXY. The quantities I and VXY are measured for several values of R and the data are plotted in a graph, as shown above on the right. a. Determine the emf E of the battery. b. Determine the internal resis ...
DUAL OUTPUT POWER SUPPLY Agilent MODEL
... Less than 0.1% plus 5 mV (dc to 20 Hz) during 8 hours at constant line, load and ambient after an initial warm-up time of 30 minutes. ...
... Less than 0.1% plus 5 mV (dc to 20 Hz) during 8 hours at constant line, load and ambient after an initial warm-up time of 30 minutes. ...
ST-100, ST-110, ST-200, and ST-300
... Thermal conductivity to the precision thermistor is minimized by using constantan wire, which has twentyfold lower thermal conductivity than copper wire. ST-200 temperature sensors have a fine-wire precision thermistor, precision bridge resistor, and lead wires, but the thermistor is not packaged in ...
... Thermal conductivity to the precision thermistor is minimized by using constantan wire, which has twentyfold lower thermal conductivity than copper wire. ST-200 temperature sensors have a fine-wire precision thermistor, precision bridge resistor, and lead wires, but the thermistor is not packaged in ...
Physics Time: 3 Hours Max. Marks: 70
... Question 2. If a wire is stretched to double its original length without less of mass, how will the resistivity of the wire be influenced? (1 mark) Question 3. Why do magnetic lines of force prefer to pass through iron than through air? (1 mark) Question 4. What is the power factor of an LCR series ...
... Question 2. If a wire is stretched to double its original length without less of mass, how will the resistivity of the wire be influenced? (1 mark) Question 3. Why do magnetic lines of force prefer to pass through iron than through air? (1 mark) Question 4. What is the power factor of an LCR series ...
Power MOSFET
A power MOSFET is a specific type of metal oxide semiconductor field-effect transistor (MOSFET) designed to handle significant power levels.Compared to the other power semiconductor devices, for example an insulated-gate bipolar transistor (IGBT) or a thyristor, its main advantages are high commutation speed and good efficiency at low voltages. It shares with the IGBT an isolated gate that makes it easy to drive. They can be subject to low gain, sometimes to degree that the gate voltage needs to be higher than the voltage under control.The design of power MOSFETs was made possible by the evolution of CMOS technology, developed for manufacturing integrated circuits in the late 1970s. The power MOSFET shares its operating principle with its low-power counterpart, the lateral MOSFET.The power MOSFET is the most widely used low-voltage (that is, less than 200 V) switch. It can be found in most power supplies, DC to DC converters, and low voltage motor controllers.