
AN2983
... Constant current inverse buck LED driver using L6562A Introduction Whenever a lighting application, such as street lighting for example, requires an elevated number of LEDs, there are basically two solutions: the first is to connect all the diodes in series in a single "string"; the second is to pla ...
... Constant current inverse buck LED driver using L6562A Introduction Whenever a lighting application, such as street lighting for example, requires an elevated number of LEDs, there are basically two solutions: the first is to connect all the diodes in series in a single "string"; the second is to pla ...
MAX3480A/MAX3480B Complete, Isolated, 3.3V RS-485/RS-422 Data Interface _______________General Description
... minimize EMI and reduce reflections caused by improperly terminated cables, allowing error-free data transmission at data rates up to 250kbps. The MAX3480A’s driver slew rate is not limited, allowing transmission rates up to 2.5Mbps. These devices typically draw 180mA of quiescent supply current. Th ...
... minimize EMI and reduce reflections caused by improperly terminated cables, allowing error-free data transmission at data rates up to 250kbps. The MAX3480A’s driver slew rate is not limited, allowing transmission rates up to 2.5Mbps. These devices typically draw 180mA of quiescent supply current. Th ...
AD829 Data Sheet
... As a gain-of-two line driver, the –3 dB bandwidth can be increased to 95 MHz at the expense of 1 dB of peaking. In addition, the AD829’s output can also be clamped at its external compensation pin. The AD829 has excellent dc performance. It offers a minimum open-loop gain of 30 V/mV into loads as lo ...
... As a gain-of-two line driver, the –3 dB bandwidth can be increased to 95 MHz at the expense of 1 dB of peaking. In addition, the AD829’s output can also be clamped at its external compensation pin. The AD829 has excellent dc performance. It offers a minimum open-loop gain of 30 V/mV into loads as lo ...
Current Shunts Resistors
... As the world becomes more and more technology-driven, the uses for current sensing components will continue to increase. The need for even lower resistance value ranges is already becoming evident, as is the need for these resistors to handle more power. The industry-wide trend is the emergence of s ...
... As the world becomes more and more technology-driven, the uses for current sensing components will continue to increase. The need for even lower resistance value ranges is already becoming evident, as is the need for these resistors to handle more power. The industry-wide trend is the emergence of s ...
Automatic Generation and Evaluation of Transistor
... Figure 2.17: Bridge network implementation ................................................................ 42 Figure 2.18: Karnaugh map for the Boolean function f. ................................................ 43 Figure 2.19: Multilevel representations............................................ ...
... Figure 2.17: Bridge network implementation ................................................................ 42 Figure 2.18: Karnaugh map for the Boolean function f. ................................................ 43 Figure 2.19: Multilevel representations............................................ ...
Use Square Root
... Understanding direct vs. inverse proportions can be very useful when students are making quick decisions as to how a change in a system may affect the result. For example, knowing that fuel mileage and miles driven are directly proportional means that an increase in miles driven with a single tank o ...
... Understanding direct vs. inverse proportions can be very useful when students are making quick decisions as to how a change in a system may affect the result. For example, knowing that fuel mileage and miles driven are directly proportional means that an increase in miles driven with a single tank o ...
Gibilisco - WordPress.com
... 1.22KΩ. The power is: A. 0.24 μW. B. 20.7 W. C. 20.7 mW. D. 350 mW. 12. Suppose six resistors are hooked up in series, and each of them has a value of 540 Ω. Then the total resistance is: A. 90 Ω. B. 3.24 KΩ. C. 540 Ω. D. None of the above. 13. Four resistors are connected in series, each with a val ...
... 1.22KΩ. The power is: A. 0.24 μW. B. 20.7 W. C. 20.7 mW. D. 350 mW. 12. Suppose six resistors are hooked up in series, and each of them has a value of 540 Ω. Then the total resistance is: A. 90 Ω. B. 3.24 KΩ. C. 540 Ω. D. None of the above. 13. Four resistors are connected in series, each with a val ...
A Current Folded Down Conversion Mixer in 0.18µ CMOS Vincent
... Figure 10: Folded Mixer Testbench DC Analysis......................................................................... 26 Figure 11: Folded Mixer Core DC Analysis ................................................................................. 26 Figure 12: AC Analysis of IF Output Signal.......... ...
... Figure 10: Folded Mixer Testbench DC Analysis......................................................................... 26 Figure 11: Folded Mixer Core DC Analysis ................................................................................. 26 Figure 12: AC Analysis of IF Output Signal.......... ...
Silicon photonics-wireless interface ICs for micro-/millimeter
... shown in Fig. 2(a) is the simplest because RAU does not have to perform any signal processing except O/E, E/O conversion and amplification. However, the bandwidth of photonic devices should be high enough to handle RF signals, which can be challenging especially for millimeter-wave applications. The ...
... shown in Fig. 2(a) is the simplest because RAU does not have to perform any signal processing except O/E, E/O conversion and amplification. However, the bandwidth of photonic devices should be high enough to handle RF signals, which can be challenging especially for millimeter-wave applications. The ...
Low-Power Oscillator Design - Courses
... Set Ln and Lp to the process minimum to reduce parasitic capacitances and maximize gm Constrain gm,n=gm,p to maintain symmetry and reduce 1/f noise (this constrains Wn and Wp) This leaves only one independent variable Wn now called just W Cload Set by input capacitance of output drive amplifier Choo ...
... Set Ln and Lp to the process minimum to reduce parasitic capacitances and maximize gm Constrain gm,n=gm,p to maintain symmetry and reduce 1/f noise (this constrains Wn and Wp) This leaves only one independent variable Wn now called just W Cload Set by input capacitance of output drive amplifier Choo ...
Introductory Experiments and Linear Circuits I
... There are two 25k and one 1M potentiometers on the breadboard. Turning the knob changes the resistance of the potentiometer from 0 to the designated resistance. Switches There are two normally open switches, two normally closed switches, and one SPDT switch. The normally open switch means the circui ...
... There are two 25k and one 1M potentiometers on the breadboard. Turning the knob changes the resistance of the potentiometer from 0 to the designated resistance. Switches There are two normally open switches, two normally closed switches, and one SPDT switch. The normally open switch means the circui ...
MAX15090/MAX15090A 2.7V to 18V, 12A, Hot-Swap Solution with Current Report Output General Description
... Note 3: 40.2kω is the maximum allowed external resistance value to be connected at CB pin to GND for safe operation. All devices are tested with10kω, the parameter specified at RCB = 40.2kω is guaranteed by bench characterization and correlation, with respect to the tested parameter at RCB = 10kω. ...
... Note 3: 40.2kω is the maximum allowed external resistance value to be connected at CB pin to GND for safe operation. All devices are tested with10kω, the parameter specified at RCB = 40.2kω is guaranteed by bench characterization and correlation, with respect to the tested parameter at RCB = 10kω. ...
A TWO STAGE OF CONCURRENT DUAL
... best combination of high power gain, low noise figure and low power consumption, making it a suitable for use in LNA designs. In an amplifier employing current reused techniques, the input RF signal is amplified by two cascaded common source (CS) amplifier stages to provide high gain as shown in Fig ...
... best combination of high power gain, low noise figure and low power consumption, making it a suitable for use in LNA designs. In an amplifier employing current reused techniques, the input RF signal is amplified by two cascaded common source (CS) amplifier stages to provide high gain as shown in Fig ...
MAX9242/MAX9244/MAX9246/MAX9254 21-Bit Deserializers with Programmable Spread Spectrum and DC Balance General Description
... capability, allowing the output data and clock frequency to spread over a specified range to reduce EMI. The single-ended data and clock outputs are programmable for a frequency spread of ±2%, ±4%, or no spread. The spread-spectrum function is also available when the MAX9242/MAX9244/MAX9246/MAX9254 ...
... capability, allowing the output data and clock frequency to spread over a specified range to reduce EMI. The single-ended data and clock outputs are programmable for a frequency spread of ±2%, ±4%, or no spread. The spread-spectrum function is also available when the MAX9242/MAX9244/MAX9246/MAX9254 ...
Chapter 03Elec Circuits
... An electric circuit is the complete path of an electric current, along with any necessary elements, such as power source and a load. When the circuit is complete so that the current can flow, it is termed closed. When the path of the current flow is interrupted, the circuit is termed open. All elect ...
... An electric circuit is the complete path of an electric current, along with any necessary elements, such as power source and a load. When the circuit is complete so that the current can flow, it is termed closed. When the path of the current flow is interrupted, the circuit is termed open. All elect ...
LM2830 - Texas Instruments
... LM2830 regulator is easy to use. The ability to drive 1.0-A loads with an internal 130-mΩ PMOS switch using state-of-the-art 0.5-µm BiCMOS technology results in the best power density available. The worldclass control circuitry allows on-times as low as 30 ns, thus supporting exceptionally high freq ...
... LM2830 regulator is easy to use. The ability to drive 1.0-A loads with an internal 130-mΩ PMOS switch using state-of-the-art 0.5-µm BiCMOS technology results in the best power density available. The worldclass control circuitry allows on-times as low as 30 ns, thus supporting exceptionally high freq ...
CMOS
Complementary metal–oxide–semiconductor (CMOS) /ˈsiːmɒs/ is a technology for constructing integrated circuits. CMOS technology is used in microprocessors, microcontrollers, static RAM, and other digital logic circuits. CMOS technology is also used for several analog circuits such as image sensors (CMOS sensor), data converters, and highly integrated transceivers for many types of communication. In 1963, while working for Fairchild Semiconductor, Frank Wanlass patented CMOS (US patent 3,356,858).CMOS is also sometimes referred to as complementary-symmetry metal–oxide–semiconductor (or COS-MOS).The words ""complementary-symmetry"" refer to the fact that the typical design style with CMOS uses complementary and symmetrical pairs of p-type and n-type metal oxide semiconductor field effect transistors (MOSFETs) for logic functions.Two important characteristics of CMOS devices are high noise immunity and low static power consumption.Since one transistor of the pair is always off, the series combination draws significant power only momentarily during switching between on and off states. Consequently, CMOS devices do not produce as much waste heat as other forms of logic, for example transistor–transistor logic (TTL) or NMOS logic, which normally have some standing current even when not changing state. CMOS also allows a high density of logic functions on a chip. It was primarily for this reason that CMOS became the most used technology to be implemented in VLSI chips.The phrase ""metal–oxide–semiconductor"" is a reference to the physical structure of certain field-effect transistors, having a metal gate electrode placed on top of an oxide insulator, which in turn is on top of a semiconductor material. Aluminium was once used but now the material is polysilicon. Other metal gates have made a comeback with the advent of high-k dielectric materials in the CMOS process, as announced by IBM and Intel for the 45 nanometer node and beyond.