MAX3053 ±80V Fault-Protected, 2Mbps, Low Supply Current CAN Transceiver General Description
... Test Circuits/Timing Diagrams ...
... Test Circuits/Timing Diagrams ...
THS4521-HT - Texas Instruments
... The THS4521 is a very low-power, fully differential op amp with rail-to-rail output and an input common-mode range that includes the negative rail. This amplifier is designed for low-power data acquisition systems and highdensity applications where power dissipation is a critical parameter, and prov ...
... The THS4521 is a very low-power, fully differential op amp with rail-to-rail output and an input common-mode range that includes the negative rail. This amplifier is designed for low-power data acquisition systems and highdensity applications where power dissipation is a critical parameter, and prov ...
FEATURES PIN ASSIGNMENT
... 7. ICCO2 is the maximum average load current which the DS1312 can supply to the memories in the battery backup mode. 8. Measured with a load as shown in Figure 2. 9. Chip Enable Output CEO can only sustain leakage current in the battery backup mode. 10. CEO will be held high for a time equal to tREC ...
... 7. ICCO2 is the maximum average load current which the DS1312 can supply to the memories in the battery backup mode. 8. Measured with a load as shown in Figure 2. 9. Chip Enable Output CEO can only sustain leakage current in the battery backup mode. 10. CEO will be held high for a time equal to tREC ...
power point for Chapter 23
... Series circuits • Characteristics of series circuit (continued): 4. The total voltage impressed across a series circuit divides among the individual electrical devices in the circuit so that the sum of the “voltage drops” across the resistance of each individual device is equal to the total voltage ...
... Series circuits • Characteristics of series circuit (continued): 4. The total voltage impressed across a series circuit divides among the individual electrical devices in the circuit so that the sum of the “voltage drops” across the resistance of each individual device is equal to the total voltage ...
High Accuracy and Fast Speed MPPT Methods
... between current stairs in I-V curve [12]. Generally, the number of SDPs and PPPs are both equal to n. The initial operating voltage is set to 60% of Voc-mod to guarantee that the first PPP (M1 in Fig. 3) can be found. 90% OC-voltage of the string is set as the ending voltage (Vend) since no MPP will ...
... between current stairs in I-V curve [12]. Generally, the number of SDPs and PPPs are both equal to n. The initial operating voltage is set to 60% of Voc-mod to guarantee that the first PPP (M1 in Fig. 3) can be found. 90% OC-voltage of the string is set as the ending voltage (Vend) since no MPP will ...
Understanding Motor Driver Current Ratings
... case, the output was enabled with a direct short across the outputs. The yellow trace is the input signal, the blue trace is the fault-output signal, and the pink trace is the current through the output stage. Initially, the current rises quickly. After a brief overshoot, which is not a problem for ...
... case, the output was enabled with a direct short across the outputs. The yellow trace is the input signal, the blue trace is the fault-output signal, and the pink trace is the current through the output stage. Initially, the current rises quickly. After a brief overshoot, which is not a problem for ...
CBDS - Anasim
... LVDS links, ubiquitous for high-speed data interfaces, operate from high voltage supplies such as 3.3V. CBDS operates from high or low operating voltages such as 1V with upto 500mV signal swing, or 1V differentially. The lower supply voltage greatly reduces operating power, a critical design require ...
... LVDS links, ubiquitous for high-speed data interfaces, operate from high voltage supplies such as 3.3V. CBDS operates from high or low operating voltages such as 1V with upto 500mV signal swing, or 1V differentially. The lower supply voltage greatly reduces operating power, a critical design require ...
CHAPTER 4
... help to imagine the spring that is part from the switch, but not shown on the symbol, tending the spring to press the moving contact down. Therefore, in the ‘normal’ position, the moving contact is down as far as it can go, whereas in the ‘actuated’ position, the contact is pushed up against the spr ...
... help to imagine the spring that is part from the switch, but not shown on the symbol, tending the spring to press the moving contact down. Therefore, in the ‘normal’ position, the moving contact is down as far as it can go, whereas in the ‘actuated’ position, the contact is pushed up against the spr ...
PDF: 2.03MB
... P-side: Control circuit Under-Voltage (UV) protection (without fault signal output). N-side: UV and Short-Circuit (SC) protection by means of external shunt resistor (with fault signal output). (4) By virtue of integrating high voltage IC (HVIC) inside, direct coupling to MCU without any opto-couple ...
... P-side: Control circuit Under-Voltage (UV) protection (without fault signal output). N-side: UV and Short-Circuit (SC) protection by means of external shunt resistor (with fault signal output). (4) By virtue of integrating high voltage IC (HVIC) inside, direct coupling to MCU without any opto-couple ...
Lecture 10 - UniMAP Portal
... Calculation of VIL When the input voltage is Vin = VIL, the slope of the VTC is equal to [-1](dVout/dVin). At this point B, nMOS transistor operates in saturation while the pMOS transistor operates in the linear region. Using KCL at output node: [Id,n(saturation)= Id,p(linear)] ...
... Calculation of VIL When the input voltage is Vin = VIL, the slope of the VTC is equal to [-1](dVout/dVin). At this point B, nMOS transistor operates in saturation while the pMOS transistor operates in the linear region. Using KCL at output node: [Id,n(saturation)= Id,p(linear)] ...
BQ24308 数据资料 dataSheet 下载
... of an input over-voltage condition, the IC immediately removes power from the charging circuit by turning off an internal switch. In the case of an over-current condition, it limits the current to a safe value for a blanking duration before turning the switch off. Battery voltage may also be monitor ...
... of an input over-voltage condition, the IC immediately removes power from the charging circuit by turning off an internal switch. In the case of an over-current condition, it limits the current to a safe value for a blanking duration before turning the switch off. Battery voltage may also be monitor ...
Lecture 13
... – Distortion occurs after an RFPA has been un-blanked (or RF pulse is terminated) – Appears as half or more cycles of a low frequency signal superimposed on the un-blanked noise voltage – Low frequency, so it will be filtered out by the transmit coil ...
... – Distortion occurs after an RFPA has been un-blanked (or RF pulse is terminated) – Appears as half or more cycles of a low frequency signal superimposed on the un-blanked noise voltage – Low frequency, so it will be filtered out by the transmit coil ...
MAX31180 Spread-Spectrum Crystal Multiplier General Description Features
... Note 3: Applicable to pins CMSEL, SMSEL, and PDN. Note 4: See information about CL1 and CL2 in the Applications Information section at the end of the data sheet. ...
... Note 3: Applicable to pins CMSEL, SMSEL, and PDN. Note 4: See information about CL1 and CL2 in the Applications Information section at the end of the data sheet. ...
UT54ACTS04E - Aeroflex Microelectronic Solutions
... 1. Functional tests are conducted in accordance with MIL-STD-883 with the following input test conditions: VIH = VIH(min) + 20%, - 0%; VIL = VIL(max) + 0%, 50%, as specified herein, for TTL, CMOS, or Schmitt compatible inputs. Devices may be tested using any input voltage within the above specified ...
... 1. Functional tests are conducted in accordance with MIL-STD-883 with the following input test conditions: VIH = VIH(min) + 20%, - 0%; VIL = VIL(max) + 0%, 50%, as specified herein, for TTL, CMOS, or Schmitt compatible inputs. Devices may be tested using any input voltage within the above specified ...
US6K1
... use of any Product outside of the prescribed scope or not in accordance with the instruction manual. The Products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a ...
... use of any Product outside of the prescribed scope or not in accordance with the instruction manual. The Products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a ...
DAC7617 数据资料 dataSheet 下载
... followed by an operational amplifier that serves as a buffer. Each DAC has its own R-2R ladder network and output op amp, but all share the reference voltage inputs. The minimum voltage output (“zero-scale”) and maximum voltage output (“full-scale”) are set by external voltage references (VREFL and ...
... followed by an operational amplifier that serves as a buffer. Each DAC has its own R-2R ladder network and output op amp, but all share the reference voltage inputs. The minimum voltage output (“zero-scale”) and maximum voltage output (“full-scale”) are set by external voltage references (VREFL and ...
BQ24010 数据资料 dataSheet 下载
... The bqTINY™ charges the battery in three phases: conditioning, constant current, and constant voltage. Charge is terminated based on minimum current. An internal charge timer provides a backup safety feature for charge termination. The bqTINY™ automatically re-starts the charge if the battery voltag ...
... The bqTINY™ charges the battery in three phases: conditioning, constant current, and constant voltage. Charge is terminated based on minimum current. An internal charge timer provides a backup safety feature for charge termination. The bqTINY™ automatically re-starts the charge if the battery voltag ...
here - University of California, Berkeley
... The following is a listing of my example SPICE deck. Yours may be different, but the curves should be the same. Not many of you may be familiar with the .ALTER statement, which allows me to change parameters and resimulate automatically. In addition, your plots may be the opposite in magnitude from ...
... The following is a listing of my example SPICE deck. Yours may be different, but the curves should be the same. Not many of you may be familiar with the .ALTER statement, which allows me to change parameters and resimulate automatically. In addition, your plots may be the opposite in magnitude from ...
R 1
... • Input resistance is R2/A, very small. (Try this!) • Since the photodiode has capacitance inside, if a large resistor for high output voltage is used instead of op-amp, time constant would be large, which means it can not be used in high frequency circuit. • Transresistance amplifier is currently u ...
... • Input resistance is R2/A, very small. (Try this!) • Since the photodiode has capacitance inside, if a large resistor for high output voltage is used instead of op-amp, time constant would be large, which means it can not be used in high frequency circuit. • Transresistance amplifier is currently u ...
Presentation on Zener Diode.
... Describe the varactor diode and its variable capacitance characteristics Discuss the operation and characteristics of LEDs and photodiodes Discuss the basic characteristics of the current regulator diode, the pin diode, the step-recovery diode, the tunnel diode, and the laser diode. ...
... Describe the varactor diode and its variable capacitance characteristics Discuss the operation and characteristics of LEDs and photodiodes Discuss the basic characteristics of the current regulator diode, the pin diode, the step-recovery diode, the tunnel diode, and the laser diode. ...
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)