ADM2914 数据手册DataSheet 下载
... Buffered Reference Output. This pin is a 1 V reference that is used as an offset when monitoring negative voltages. This pin can source or sink 1 mA, and drive loads up to 1 nF. Larger capacitive loads may lead to instability. Leave unconnected when not in use. Overvoltage Reset Output. OV is assert ...
... Buffered Reference Output. This pin is a 1 V reference that is used as an offset when monitoring negative voltages. This pin can source or sink 1 mA, and drive loads up to 1 nF. Larger capacitive loads may lead to instability. Leave unconnected when not in use. Overvoltage Reset Output. OV is assert ...
General Description Features
... The MAX5318 evaluation kit (EV kit) provides a proven design to evaluate the MAX5318 18-bit high-accuracy voltage output DAC with digital gain and offset control. The EV kit also includes Windows XP®-, Windows Vista®-, and Windows® 7-compatible software that provides a simple graphical user interfac ...
... The MAX5318 evaluation kit (EV kit) provides a proven design to evaluate the MAX5318 18-bit high-accuracy voltage output DAC with digital gain and offset control. The EV kit also includes Windows XP®-, Windows Vista®-, and Windows® 7-compatible software that provides a simple graphical user interfac ...
MAX3738 155Mbps to 4.25Gbps SFF/SFP Laser Driver with Extinction Ratio Control General Description
... The MAX3738 is a +3.3V laser driver designed for multirate transceiver modules with data rates from 155Mbps to 4.25Gbps. Lasers can be DC-coupled to the MAX3738 for reduced component count and ease of multirate operation. Laser extinction ratio control (ERC) combines the features of automatic power ...
... The MAX3738 is a +3.3V laser driver designed for multirate transceiver modules with data rates from 155Mbps to 4.25Gbps. Lasers can be DC-coupled to the MAX3738 for reduced component count and ease of multirate operation. Laser extinction ratio control (ERC) combines the features of automatic power ...
LF198/LF298/LF398, LF198A/LF398A Monolithic Sample-and-Hold Circuits LF198/LF298/LF398, LF198A/LF398A
... Hold step, acquisition time, and droop rate are the major trade-offs in the selection of a hold capacitor value. Size and cost may also become important for larger values. Use of the curves included with this data sheet should be helpful in selecting a reasonable value of capacitance. Keep in mind t ...
... Hold step, acquisition time, and droop rate are the major trade-offs in the selection of a hold capacitor value. Size and cost may also become important for larger values. Use of the curves included with this data sheet should be helpful in selecting a reasonable value of capacitance. Keep in mind t ...
MAX44269 1.3mm x 1.3mm, Low-Power Dual Comparator General Description
... constraints. The comparator is available in a miniature 1.3mm x 1.3mm, 9-bump WLP package, making it the industry’s smallest dual comparator. The IC can be powered from supply rails as low as 1.8V and up to 5.5V. It requires just 0.5µA of typical supply current per comparator. It has a rail-to-rail ...
... constraints. The comparator is available in a miniature 1.3mm x 1.3mm, 9-bump WLP package, making it the industry’s smallest dual comparator. The IC can be powered from supply rails as low as 1.8V and up to 5.5V. It requires just 0.5µA of typical supply current per comparator. It has a rail-to-rail ...
NX5P1000 1. General description Logic controlled high-side power switch
... switch. When EN is set LOW the device enters a low-power mode, disabling all protection circuits except the undervoltage lockout. The low-power mode can be entered at anytime unless the over temperature protection circuit has been triggered. Designed for operation from 3 V to 5.5 V, it is used in po ...
... switch. When EN is set LOW the device enters a low-power mode, disabling all protection circuits except the undervoltage lockout. The low-power mode can be entered at anytime unless the over temperature protection circuit has been triggered. Designed for operation from 3 V to 5.5 V, it is used in po ...
SN74AHCT1G08 数据资料 dataSheet 下载
... 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 ...
BDTIC
... Introduction ....................................................................................................................................... 5 ...
... Introduction ....................................................................................................................................... 5 ...
TLV431 - Diodes Incorporated
... In a conventional shunt regulator application (Figure 1), an external series resistor (R3) is connected between the supply voltage, VIN, and the TLV431. R3 determines the current that flows through the load (IL) and the TLV431 (IK). The TLV431 will adjust how much current it sinks or “shunts” to mai ...
... In a conventional shunt regulator application (Figure 1), an external series resistor (R3) is connected between the supply voltage, VIN, and the TLV431. R3 determines the current that flows through the load (IL) and the TLV431 (IK). The TLV431 will adjust how much current it sinks or “shunts” to mai ...
Inductive and Capacitive Reactance
... the end of the third quarter-cycle (270º ) all values are exactly opposite to what they were during the first half-cycle. The applied voltage leads the resulting current by one quarter-cycle or 90 degrees. To complete the full 360º cycle of the voltage, the voltage again decreases to zero and the cu ...
... the end of the third quarter-cycle (270º ) all values are exactly opposite to what they were during the first half-cycle. The applied voltage leads the resulting current by one quarter-cycle or 90 degrees. To complete the full 360º cycle of the voltage, the voltage again decreases to zero and the cu ...
ICS874003-02.pdf
... NOTE: Par ts that are ordered with an "LF" suffix to the par t number are the Pb-Free configuration and are RoHS complaint. ...
... NOTE: Par ts that are ordered with an "LF" suffix to the par t number are the Pb-Free configuration and are RoHS complaint. ...
Initial voltage (0)
... with Vs = 12V and R = 100 ohms at t = 0. The difference in voltage across the resistor R will (Toothpaste rule) push current from left to right, and the capacitor voltage will increase… ...
... with Vs = 12V and R = 100 ohms at t = 0. The difference in voltage across the resistor R will (Toothpaste rule) push current from left to right, and the capacitor voltage will increase… ...
Short-circuit - analysis and calculation
... During operation of the power system there may occur transient effects that appear while the system transits from one steady-state into another with new parameters. One of the reasons of occurrence of these transient events could be short-circuit. Impedance of shortcircuit is multiply decreasing whi ...
... During operation of the power system there may occur transient effects that appear while the system transits from one steady-state into another with new parameters. One of the reasons of occurrence of these transient events could be short-circuit. Impedance of shortcircuit is multiply decreasing whi ...
M5 Brochure - Societe Industrial Solutions Ltd
... Belt speeds other than those listed above are available as options. Contact our sales representatives for details. Sum total of product weight on the conveyor. Feed capacity may vary according to the belt speed. Specify one of these power supplies for use when ordering. Please use the rated voltage ...
... Belt speeds other than those listed above are available as options. Contact our sales representatives for details. Sum total of product weight on the conveyor. Feed capacity may vary according to the belt speed. Specify one of these power supplies for use when ordering. Please use the rated voltage ...
HCT_USER_GUIDE
... conditions are defined further by the a.c. set-up requirements specified in the data sheet. Values given in the data sheets are for the whole operating temperature range (−40 to +125 °C) and the supply voltages used are 2.0 V, 4.5 V and 6.0 V for 74HC devices, and 4.5 V for 74HCT devices. This is a ...
... conditions are defined further by the a.c. set-up requirements specified in the data sheet. Values given in the data sheets are for the whole operating temperature range (−40 to +125 °C) and the supply voltages used are 2.0 V, 4.5 V and 6.0 V for 74HC devices, and 4.5 V for 74HCT devices. This is a ...
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)