
REG113-285 数据资料 dataSheet 下载
... Typical ground pin current is only 850µA (at IOUT = 400mA) and drops to 10nA when not enabled. Unlike regulators with PNP pass devices, quiescent current remains relatively constant over load variations and under dropout conditions. The REG113 has very low output noise (typically 28µVrms for VOUT = ...
... Typical ground pin current is only 850µA (at IOUT = 400mA) and drops to 10nA when not enabled. Unlike regulators with PNP pass devices, quiescent current remains relatively constant over load variations and under dropout conditions. The REG113 has very low output noise (typically 28µVrms for VOUT = ...
Class activities
... and Vout on the horizontal axis (x-axis). Compare this with similar data that you have measured or calculated in lessons 4 and 5. ...
... and Vout on the horizontal axis (x-axis). Compare this with similar data that you have measured or calculated in lessons 4 and 5. ...
UCC5614 数据资料 dataSheet 下载
... The UCC5614 can be programmed for either a 110-Ω or 2.5-kΩ termination. The 110-Ω termination is used for standard SCSI bus lengths and the 2.5-kΩ termination is typically used in short bus applications. When driving the TTL compatible DISCNCT pin directly, the 110-Ω termination is connected when th ...
... The UCC5614 can be programmed for either a 110-Ω or 2.5-kΩ termination. The 110-Ω termination is used for standard SCSI bus lengths and the 2.5-kΩ termination is typically used in short bus applications. When driving the TTL compatible DISCNCT pin directly, the 110-Ω termination is connected when th ...
isscc 2013 / session 24 / energy
... is proportional to CVDD2. Near-threshold (Vt) operation achieves an energy minimum [1]. Resonant clocking [2-5] can reduce the effective capacitance of the clock distribution network [3]. In this work, a new resonant clocking scheme enabling power reduction at any clock frequency is proposed and app ...
... is proportional to CVDD2. Near-threshold (Vt) operation achieves an energy minimum [1]. Resonant clocking [2-5] can reduce the effective capacitance of the clock distribution network [3]. In this work, a new resonant clocking scheme enabling power reduction at any clock frequency is proposed and app ...
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... The p–n junctions are unilateral in nature, i.e., they conduct current in only one direction. Thus, we can consider an ideal diode as a short circuit when forwardbiased and as an open circuit when reverse-biased. Forward biased diodes exhibit an offset voltage (Vy) that can be approximated by th ...
... The p–n junctions are unilateral in nature, i.e., they conduct current in only one direction. Thus, we can consider an ideal diode as a short circuit when forwardbiased and as an open circuit when reverse-biased. Forward biased diodes exhibit an offset voltage (Vy) that can be approximated by th ...
L-26(TB)(ET) ((EE)NPTEL)
... points, connection is made to supply load. Suppose we connect quite arbitrarily (without paying much attention to terminal markings and polarity), a1 with b2 and b1 with c1. Should we now join a2 with c2 by closing the switch S, to complete the delta connection? As a rule, we should not join (i.e., ...
... points, connection is made to supply load. Suppose we connect quite arbitrarily (without paying much attention to terminal markings and polarity), a1 with b2 and b1 with c1. Should we now join a2 with c2 by closing the switch S, to complete the delta connection? As a rule, we should not join (i.e., ...
MAX3967A 270Mbps SFP LED Driver General Description Features
... (VEE, VEEOUT = 0V) ..............................................-0.5V to +7V Current into OUT+, OUT- ................................-40mA to +160mA Differential Output Voltage (OUT+ to OUT-) .........-3.3V to +3.3V Voltage at PB1, PB2, PB3, IN+, IN-, OUT+, OUT-, TX_DISABLE......-0.5V to (VCC + 0.5 ...
... (VEE, VEEOUT = 0V) ..............................................-0.5V to +7V Current into OUT+, OUT- ................................-40mA to +160mA Differential Output Voltage (OUT+ to OUT-) .........-3.3V to +3.3V Voltage at PB1, PB2, PB3, IN+, IN-, OUT+, OUT-, TX_DISABLE......-0.5V to (VCC + 0.5 ...
pat2680231_reed.pdf
... order of 800 cycles per second. Then, in effectkinds. I n general, any device which has an elecing tone control, it is usual to provide an attenuating network which attenuates the fretrical output with a range of frequencies in the aud.ible region may employ a tone control. Also 10 quencies at the m ...
... order of 800 cycles per second. Then, in effectkinds. I n general, any device which has an elecing tone control, it is usual to provide an attenuating network which attenuates the fretrical output with a range of frequencies in the aud.ible region may employ a tone control. Also 10 quencies at the m ...
AN1158: Designing with Intersil Digitally Controlled Potentiometers
... scenarios. Returning CS to the previous level will remove DVW from the wiper as well. ...
... scenarios. Returning CS to the previous level will remove DVW from the wiper as well. ...
BDTIC www.BDTIC.com/infineon ICB1FL02G Smart Ballast Control IC
... The measured current at the LVS pin is clamped on the supply voltage Vcc and by this means supports the start-up. If the measured current at LVS pin is too small this fault generates a higher current level of typically 41µA at the RES pin. This causes the voltage drop at R36 to exceed the 1.6V level ...
... The measured current at the LVS pin is clamped on the supply voltage Vcc and by this means supports the start-up. If the measured current at LVS pin is too small this fault generates a higher current level of typically 41µA at the RES pin. This causes the voltage drop at R36 to exceed the 1.6V level ...
9 Network Analysis
... calculate (and then that current was used to satisfy previously unknown variables in the reduction process until the entire circuit could be analyzed). With these problems, more than one parameter (variable) is unknown at the most basic level of circuit simplification. With the two-battery circuit, ...
... calculate (and then that current was used to satisfy previously unknown variables in the reduction process until the entire circuit could be analyzed). With these problems, more than one parameter (variable) is unknown at the most basic level of circuit simplification. With the two-battery circuit, ...
laboratory module
... To use the bread board, the legs of components are placed in the holes (the sockets). The holes are made so that they will hold the component in place. Each hole is connected to one of the metal strips running underneath the board. Each wire forms a node. A node is a point in a circuit where two com ...
... To use the bread board, the legs of components are placed in the holes (the sockets). The holes are made so that they will hold the component in place. Each hole is connected to one of the metal strips running underneath the board. Each wire forms a node. A node is a point in a circuit where two com ...
STPMS2
... The STPMS2 is a device designed to measure electrical line parameters (voltage and current) via analog signals from voltage sensors (current divider) and current sensors (inductive Rogowski coil, current transformer or shunt resistors). The device is used together with a digital signal processing ci ...
... The STPMS2 is a device designed to measure electrical line parameters (voltage and current) via analog signals from voltage sensors (current divider) and current sensors (inductive Rogowski coil, current transformer or shunt resistors). The device is used together with a digital signal processing ci ...
ADP2105 数据手册DataSheet 下载
... No Connect. This is not internally connected and can be connected to other pins or left unconnected. Power Source Inputs. The source of the PFET high-side switch. Bypass each PWIN pin to the nearest PGND plane with a 4.7 μF or greater capacitor as close as possible to the ADP2105/ADP2106/ ADP2107. S ...
... No Connect. This is not internally connected and can be connected to other pins or left unconnected. Power Source Inputs. The source of the PFET high-side switch. Bypass each PWIN pin to the nearest PGND plane with a 4.7 μF or greater capacitor as close as possible to the ADP2105/ADP2106/ ADP2107. S ...
FSA831 — USB2.0 High-Speed (480Mbps) Charger Detection with Isolation Switch FSA83
... connected. If a charger is detected, the FSA831 determines whether the charger is a DCP or CDP. For SDP and CDP detection, an internal isolation switch is closed to connect the D+/D- lines of the USB cable to the resident USB transceiver within the portable device. The FSA831 conforms to all the con ...
... connected. If a charger is detected, the FSA831 determines whether the charger is a DCP or CDP. For SDP and CDP detection, an internal isolation switch is closed to connect the D+/D- lines of the USB cable to the resident USB transceiver within the portable device. The FSA831 conforms to all the con ...
AN2321: Designing for Board Level Electromagnetic
... Another factor that affect the effectiveness of the decoupling capacitor is the dielectric material of the capacitor. Two common materials are used in the manufacture of decoupling capacitors: barium titanate ceramic (Z5U) and strontium titanate (NPO). Z5U has a larger dielectric constant, with a se ...
... Another factor that affect the effectiveness of the decoupling capacitor is the dielectric material of the capacitor. Two common materials are used in the manufacture of decoupling capacitors: barium titanate ceramic (Z5U) and strontium titanate (NPO). Z5U has a larger dielectric constant, with a se ...
Lesson 4 – Circuits and Resistance
... Most elements of a circuit have resistance. Wires, batteries, light bulbs, etc., all have resistance. However, sometimes we actually make circuit elements for the express purpose of providing resistance in a circuit. It might seem strange to add circuit elements that dissipate power; however, resist ...
... Most elements of a circuit have resistance. Wires, batteries, light bulbs, etc., all have resistance. However, sometimes we actually make circuit elements for the express purpose of providing resistance in a circuit. It might seem strange to add circuit elements that dissipate power; however, resist ...
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.