AN91 - Low Cost Coupling Methods for RF Power Detectors Replace Directional Couplers
... A higher PCTL voltage indicates less coupling loss (i.e., more RF signal is being coupled back). Having too little coupling loss can be a problem at higher power levels because the PCTL value may exceed the maximum voltage that the DAC can output. Having too much coupling loss can make achieving low ...
... A higher PCTL voltage indicates less coupling loss (i.e., more RF signal is being coupled back). Having too little coupling loss can be a problem at higher power levels because the PCTL value may exceed the maximum voltage that the DAC can output. Having too much coupling loss can make achieving low ...
LT3022/LT3022-1.2 LT3022-1.5/LT3022-1.8
... enhanced low profile (0.75mm) 16-lead (5mm × 3mm) DFN and MSOP packages. L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks of Linear Technology Corporation. VLDO is a trademark of Linear Technology Corporation. ...
... enhanced low profile (0.75mm) 16-lead (5mm × 3mm) DFN and MSOP packages. L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks of Linear Technology Corporation. VLDO is a trademark of Linear Technology Corporation. ...
LT3012 - 250mA, 4V to 80V Low Dropout
... also well controlled in dropout. Other features of the LT3012 include the ability to operate with very small output capacitors. The regulator is stable with only 3.3μF on the output while most older devices require between 10μF and 100μF for stability. Small ceramic capacitors can be used without an ...
... also well controlled in dropout. Other features of the LT3012 include the ability to operate with very small output capacitors. The regulator is stable with only 3.3μF on the output while most older devices require between 10μF and 100μF for stability. Small ceramic capacitors can be used without an ...
The Secret Life of XY Monitors
... And, finally, a word about the current sense resistor. It is important that this resistor be non-inductive. Otherwise, the deflection sensitivity will change with frequency. For a bunch of vectors of random length the result will be unpredictable, although short vectors will probably be shorter than ...
... And, finally, a word about the current sense resistor. It is important that this resistor be non-inductive. Otherwise, the deflection sensitivity will change with frequency. For a bunch of vectors of random length the result will be unpredictable, although short vectors will probably be shorter than ...
MAX8792 Single Quick-PWM Step-Down Controller with Dynamic REFIN General Description
... provides high efficiency, excellent transient response, and high DC-output accuracy needed for stepping down high-voltage batteries to generate low-voltage core or chipset/RAM bias supplies in notebook computers. The output voltage can be dynamically controlled using the dynamic REFIN, which support ...
... provides high efficiency, excellent transient response, and high DC-output accuracy needed for stepping down high-voltage batteries to generate low-voltage core or chipset/RAM bias supplies in notebook computers. The output voltage can be dynamically controlled using the dynamic REFIN, which support ...
Local Technical - Florida Building Code
... Information Note: Surge arresters 1000 volts or less arie also known as Type 1 SPDs. 285.3 Uses Not Permitted. An SPD device shall not be installed in the following: (1) Circuits over 1000 volts (2) On ungrounded systems, impedance grounded systems, or corner grounded delta systems unless listed sp ...
... Information Note: Surge arresters 1000 volts or less arie also known as Type 1 SPDs. 285.3 Uses Not Permitted. An SPD device shall not be installed in the following: (1) Circuits over 1000 volts (2) On ungrounded systems, impedance grounded systems, or corner grounded delta systems unless listed sp ...
Advances in Electrical Measurements for Nanotechnology E
... The switching speed of a source-measure test circuit may be limited by the instrumentation used to follow the state of the device. This is especially true if a non-optimal measurement topology is used to observe the device. The two possible topologies are source current/measure voltage or source vol ...
... The switching speed of a source-measure test circuit may be limited by the instrumentation used to follow the state of the device. This is especially true if a non-optimal measurement topology is used to observe the device. The two possible topologies are source current/measure voltage or source vol ...
Datasheet
... EXAR Corporation reserves the right to make changes to any products contained in this publication in order to improve design, performance or reliability. EXAR Corporation assumes no representation that the circuits are free of patent infringement. Charts and schedules contained herein are only for i ...
... EXAR Corporation reserves the right to make changes to any products contained in this publication in order to improve design, performance or reliability. EXAR Corporation assumes no representation that the circuits are free of patent infringement. Charts and schedules contained herein are only for i ...
... In Fig. 2 the switch-off process in EconoDUAL™3 modules is compared. This specific high current setup is not ideally suited for the 600V IGBT3 [4]. Consequently, the switch-off of 600A and a DC link voltage of 200V at 25°C effects a quite high overshoot voltage VCE,max and a snap-off with oscillatio ...
Evaluates: MAX3802 MAX3802 Evaluation Kit General Description Features
... 2) Connect a 50Ω oscilloscope to SMA output connectors J5 (EOUT1-) and J6 (EOUT1+) to view the output of the cable equalizer. 3) The cable integrity monitor (CIM1) high-impedance output can be monitored at TP1. 4) The loss-of-signal (LOS1) TTL output can be monitored at TP5. Note: The MAX3802 equali ...
... 2) Connect a 50Ω oscilloscope to SMA output connectors J5 (EOUT1-) and J6 (EOUT1+) to view the output of the cable equalizer. 3) The cable integrity monitor (CIM1) high-impedance output can be monitored at TP1. 4) The loss-of-signal (LOS1) TTL output can be monitored at TP5. Note: The MAX3802 equali ...
ADM209 数据手册DataSheet 下载
... Internally Generated Positive Supply (10 V nominal) on all parts, except ADM209 . The ADM209 requires an external 9 V to 13.2 V supply. Internally Generated Negative Supply (–10 V Nominal). Ground Pin. Must be connected to 0 V. (ADM209 only) External capacitor (+ terminal) is connected to this pin. ...
... Internally Generated Positive Supply (10 V nominal) on all parts, except ADM209 . The ADM209 requires an external 9 V to 13.2 V supply. Internally Generated Negative Supply (–10 V Nominal). Ground Pin. Must be connected to 0 V. (ADM209 only) External capacitor (+ terminal) is connected to this pin. ...
FT7511 Reset Timer with Fixed Delay and Reset Pulse
... LOW for factory testing. The DSR pin MUST be forced to GND during normal operation. The DSR pin should never be driven HIGH or left to float during normal operation. The DSR pin state should never be changed during device operation; it must be biased prior to supplying the VCC supply. If there is a ...
... LOW for factory testing. The DSR pin MUST be forced to GND during normal operation. The DSR pin should never be driven HIGH or left to float during normal operation. The DSR pin state should never be changed during device operation; it must be biased prior to supplying the VCC supply. If there is a ...
BDTIC www.BDTIC.com/infineon Z V S P h a s e ... C F D 2 O p t i...
... fast body diode. This fast body diode is an important feature to prevent failures in the used topology during short circuit, line cycle drop out or burst mode. (MOSFET A, B, C, D) (2) Resonant inductance: This resonant inductance is realized using a 77894-A7 Magnetics Inc. Kool-Mµ material. This doc ...
... fast body diode. This fast body diode is an important feature to prevent failures in the used topology during short circuit, line cycle drop out or burst mode. (MOSFET A, B, C, D) (2) Resonant inductance: This resonant inductance is realized using a 77894-A7 Magnetics Inc. Kool-Mµ material. This doc ...
14th Week
... Eventually everything will come to a halt (no field inside conductor) Analog: Water flowing between two reservoirs until both have same height ...
... Eventually everything will come to a halt (no field inside conductor) Analog: Water flowing between two reservoirs until both have same height ...
Manual - El Yousif 2011
... power will be maintain by energy stored in the DC-BUS capacitor, there will never be appear interruption on output. The battery charger module converse the AC mains input into DC power for recharging the Battery. Two type of charger can be available, one is for the standard model, and another is for ...
... power will be maintain by energy stored in the DC-BUS capacitor, there will never be appear interruption on output. The battery charger module converse the AC mains input into DC power for recharging the Battery. Two type of charger can be available, one is for the standard model, and another is for ...
Rectifier
A rectifier is an electrical device that converts alternating current (AC), which periodically reverses direction, to direct current (DC), which flows in only one direction. The process is known as rectification. Physically, rectifiers take a number of forms, including vacuum tube diodes, mercury-arc valves, copper and selenium oxide rectifiers, semiconductor diodes, silicon-controlled rectifiers and other silicon-based semiconductor switches. Historically, even synchronous electromechanical switches and motors have been used. Early radio receivers, called crystal radios, used a ""cat's whisker"" of fine wire pressing on a crystal of galena (lead sulfide) to serve as a point-contact rectifier or ""crystal detector"".Rectifiers have many uses, but are often found serving as components of DC power supplies and high-voltage direct current power transmission systems. Rectification may serve in roles other than to generate direct current for use as a source of power. As noted, detectors of radio signals serve as rectifiers. In gas heating systems flame rectification is used to detect presence of a flame.Because of the alternating nature of the input AC sine wave, the process of rectification alone produces a DC current that, though unidirectional, consists of pulses of current. Many applications of rectifiers, such as power supplies for radio, television and computer equipment, require a steady constant DC current (as would be produced by a battery). In these applications the output of the rectifier is smoothed by an electronic filter (usually a capacitor) to produce a steady current.More complex circuitry that performs the opposite function, converting DC to AC, is called an inverter.