
RNA52A10T Data Sheet Descriptive Title
... Notes: 1. Please refer to the following equations to set up reset-threshold voltages for power supplies VDD1 and VDD2, and to set up external voltage-dividing resistor pairs RS1 and RS2, and RS3 and RS4. (1) VDD1 reset-threshold voltage = VREF × (RS1+RS2)/RS2 (2) VDD2 reset-threshold voltage = VREF ...
... Notes: 1. Please refer to the following equations to set up reset-threshold voltages for power supplies VDD1 and VDD2, and to set up external voltage-dividing resistor pairs RS1 and RS2, and RS3 and RS4. (1) VDD1 reset-threshold voltage = VREF × (RS1+RS2)/RS2 (2) VDD2 reset-threshold voltage = VREF ...
MAX1156/MAX1158/MAX1174 14-Bit, 135ksps, Single-Supply ADCs with Bipolar Analog Input Range General Description
... Figure 1. Load Circuits ...
... Figure 1. Load Circuits ...
Signal Conditioners User`s Guide
... DC version is suitable for DC current measurement and for AC signal quality measurement. RMS versions are suitable for power measurement with mains signals, however using a CM019 with a current transformer may be more cost effective. When working with mains, EnviroMon and the ADC16 are suitable only ...
... DC version is suitable for DC current measurement and for AC signal quality measurement. RMS versions are suitable for power measurement with mains signals, however using a CM019 with a current transformer may be more cost effective. When working with mains, EnviroMon and the ADC16 are suitable only ...
4 Controls
... 3.5 The following data must be sent in real time from the substation of the windpark to the Elering Electricity System Control Centre: 3.5.1 the maximum possible active power (MW) 3.5.2 the total nominal active power (MW) of wind turbines under repair, 3.5.3 the total nominal active power (MW) of wi ...
... 3.5 The following data must be sent in real time from the substation of the windpark to the Elering Electricity System Control Centre: 3.5.1 the maximum possible active power (MW) 3.5.2 the total nominal active power (MW) of wind turbines under repair, 3.5.3 the total nominal active power (MW) of wi ...
A Low-Power Wide-Linear-Range Transconductance Amplifier
... small for certain applications—for example, for filters in electronic cochleas, where it is desirable to handle loud sounds without distortion and to have a large dynamic range. We describe a transconductance amplifier designed for low-power (< 1µW) subthreshold operation with a wide input linear ra ...
... small for certain applications—for example, for filters in electronic cochleas, where it is desirable to handle loud sounds without distortion and to have a large dynamic range. We describe a transconductance amplifier designed for low-power (< 1µW) subthreshold operation with a wide input linear ra ...
P84601
... including audible signaling 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 supp ...
... including audible signaling 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 supp ...
LT5522 - 600MHz to 2.7GHz High Signal Level Downconverting Mixer.
... EN (Pin 5): Enable Pin. When the input enable voltage is higher than 3V, the mixer circuits supplied through Pins 6, 7, 10 and 11 are enabled. When the input enable voltage is less than 0.3V, all circuits are disabled. Typical input EN pin current is 55µA for EN = 5V and 0µA when EN = 0V. The EN pin ...
... EN (Pin 5): Enable Pin. When the input enable voltage is higher than 3V, the mixer circuits supplied through Pins 6, 7, 10 and 11 are enabled. When the input enable voltage is less than 0.3V, all circuits are disabled. Typical input EN pin current is 55µA for EN = 5V and 0µA when EN = 0V. The EN pin ...
AN3234: Washing Machine Three-Phase AC Induction Motor Drive
... control structures, indirect vector control does not require direct real-time calculation of rotor flux from motor currents and voltages. Due to this indirect vector control, it is not possible to obtain instantaneous values of the rotor flux space vector components. It is, however, still possible t ...
... control structures, indirect vector control does not require direct real-time calculation of rotor flux from motor currents and voltages. Due to this indirect vector control, it is not possible to obtain instantaneous values of the rotor flux space vector components. It is, however, still possible t ...
LTC1731-8.2/LTC1731-8.4 - Lithium
... PROG pin to ground and a sense resistor (RSENSE) between the VCC and SENSE pins. RPROG sets a program current through an internal trimmed 800Ω resistor that creates a voltage drop from VCC to the input of the current amplifier (CA). The current amplifier servos the gate of the external P-channel MOS ...
... PROG pin to ground and a sense resistor (RSENSE) between the VCC and SENSE pins. RPROG sets a program current through an internal trimmed 800Ω resistor that creates a voltage drop from VCC to the input of the current amplifier (CA). The current amplifier servos the gate of the external P-channel MOS ...
Millimeter-wave and Terahertz Devices Q. Hu
... which utilize the classical diffusive transport of electrons, such as diodes and transistors, have a high frequency limit. This limit is set by the transient time and parasitic RC time constants. Currently, electron mobility and the smallest feature size which can be fabricated by lithography limit ...
... which utilize the classical diffusive transport of electrons, such as diodes and transistors, have a high frequency limit. This limit is set by the transient time and parasitic RC time constants. Currently, electron mobility and the smallest feature size which can be fabricated by lithography limit ...
Digital Modulation
... Digital modulation can be broadly classified as: 1. Linear (change Amplitude or phase) 2. Non linear modulation techniques (change frequency). Linear Modulation Techniques: ...
... Digital modulation can be broadly classified as: 1. Linear (change Amplitude or phase) 2. Non linear modulation techniques (change frequency). Linear Modulation Techniques: ...
Improving the Cascode`s Power Supply Rejection Ratio
... This document has been prepared as a public service . Any and all trademarks and logotypes used herein are the property of their owners. It is our intent to provide this document in accordance with the stipulations with respect to “fair use” as delineated in Copyrights - Chapter 1: Subject Matter an ...
... This document has been prepared as a public service . Any and all trademarks and logotypes used herein are the property of their owners. It is our intent to provide this document in accordance with the stipulations with respect to “fair use” as delineated in Copyrights - Chapter 1: Subject Matter an ...
Capacitor Circuit Investigation Name Hour ______ Purpose: Use
... a. Place a voltage chart across each capacitor. b. Place a current chart to see the current through the capacitors. c. Click on Voltmeter. d. Close the left hand switch to charge the capacitors. 9. How does the voltage drop across each capacitor compare for every instant of time? The two capacitors ...
... a. Place a voltage chart across each capacitor. b. Place a current chart to see the current through the capacitors. c. Click on Voltmeter. d. Close the left hand switch to charge the capacitors. 9. How does the voltage drop across each capacitor compare for every instant of time? The two capacitors ...
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... warranty or endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual property of the third party, or a license from TI under the patents or other intellectual property of TI. Reproduction of TI information in TI data books or data ...
... warranty or endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual property of the third party, or a license from TI under the patents or other intellectual property of TI. Reproduction of TI information in TI data books or data ...
ZXRE060 0.6V ADJUSTABLE PRECISION SHUNT REGULATOR Description
... offering excellent temperature stability and output handling capability. The ZXRE060 simplifies the design of isolated low voltage DC-DC regulators. With its low 0.6V FB pin, it can control the regulation of rails as low 0.6V. This makes it ideal for state of the art microprocessor/DSP and PLD core ...
... offering excellent temperature stability and output handling capability. The ZXRE060 simplifies the design of isolated low voltage DC-DC regulators. With its low 0.6V FB pin, it can control the regulation of rails as low 0.6V. This makes it ideal for state of the art microprocessor/DSP and PLD core ...
TS3L500 数据资料 dataSheet 下载
... I/O port clamp current, II/OK (VI/O < 0) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −50 mA ON-state switch current, II/O (see Note 4) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±128 ...
... I/O port clamp current, II/OK (VI/O < 0) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −50 mA ON-state switch current, II/O (see Note 4) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±128 ...
Power electronics

Power electronics is the application of solid-state electronics to the control and conversion of electric power. It also refers to a subject of research in electronic and electrical engineering which deals with the design, control, computation and integration of nonlinear, time-varying energy-processing electronic systems with fast dynamics.The first high power electronic devices were mercury-arc valves. In modern systems the conversion is performed with semiconductor switching devices such as diodes, thyristors and transistors, pioneered by R. D. Middlebrook and others beginning in the 1950s. In contrast to electronic systems concerned with transmission and processing of signals and data, in power electronics substantial amounts of electrical energy are processed. An AC/DC converter (rectifier) is the most typical power electronics device found in many consumer electronic devices, e.g. television sets, personal computers, battery chargers, etc. The power range is typically from tens of watts to several hundred watts. In industry a common application is the variable speed drive (VSD) that is used to control an induction motor. The power range of VSDs start from a few hundred watts and end at tens of megawatts.The power conversion systems can be classified according to the type of the input and output power AC to DC (rectifier) DC to AC (inverter) DC to DC (DC-to-DC converter) AC to AC (AC-to-AC converter)