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MAX3384E ±15kV ESD-Protected, 3.0V to 5.5V, Low-Power, ________________General Description
MAX3384E ±15kV ESD-Protected, 3.0V to 5.5V, Low-Power, ________________General Description

... can be used. The charge pump requires 0.1µF capacitors for 3.3V operation. For other supply voltages, refer to Table 2 for required capacitor values. Do not use values smaller than those listed in Table 2. Increasing the capacitor values (e.g., by a factor of 2) reduces ripple on the transmitter out ...
RF5189 3V, 2.45GHz LINEAR POWER AMPLIFIER Features
RF5189 3V, 2.45GHz LINEAR POWER AMPLIFIER Features

... The RF5189 is a two-stage device with a nominal gain of 25dB in the 2.4GHz to 2.5GHz ISM band. The RF5189 is designed primarily for IEEE802.11B WiFi applications where the available supply voltage and current are limited. This amplifier will operate to (and below) the lowest expected voltage made av ...
MAX19692 12-Bit, 2.3Gsps, Multi-Nyquist DAC with Selectable Frequency Response General Description
MAX19692 12-Bit, 2.3Gsps, Multi-Nyquist DAC with Selectable Frequency Response General Description

... (DAC) enables direct digital synthesis of high-frequency and wideband signals in baseband and higher Nyquist zones. It has been optimized for wideband communications and radar applications. It has excellent spurious and noise performance and can be used for synthesis of wideband signals in the frequ ...
$doc.title

... drift and high input impedance. In addition, the TLC27L1 is a low-bias version of the TLC271 programmable amplifier. These devices use the Texas Instruments silicon-gate LinCMOS technology, which provides offset-voltage stability far exceeding the stability available with conventional metal-gate pr ...
Design and Manufacture of the UIM Driver Unit
Design and Manufacture of the UIM Driver Unit

... The gain of the amplifier is set to ⅓, which means that if the inputs are at their maximum possible voltage, the output is +10v. At low frequencies, 1 volt out represents 1.5 volts across each driver output resistor. As the output resistors are each 3.9K, this represents a current of 0.3846 mA. 1mA ...
ICM7555, ICM7556 Datasheet
ICM7555, ICM7556 Datasheet

... The ICM7555 and ICM7556 produce supply current spikes of only 2mA to 3mA instead of 300mA to 400mA and supply decoupling is normally not necessary. Also, in most instances, the Control Voltage decoupling capacitors are not required since the input impedance of the CMOS comparators on chip are very h ...
BDTIC www.BDTIC.com/infineon Technical Report TR102 RF and Protection Devices
BDTIC www.BDTIC.com/infineon Technical Report TR102 RF and Protection Devices

... BDTIC Figure 6-1: PCB Overview (PCB ID-No: BGB7-Family, TSLP-7-1) ...
TrueWave AC Power Source - AMETEK Programmable Power
TrueWave AC Power Source - AMETEK Programmable Power

... Return the overvolt protection value of the specified phase. Specify the overvolt protection state. 1 = protection turned on. 0 will be ignored. Return the present overvolt state of the TW. Always will return 1. Return the present state of the overvolt protection circuit. 0 = there has been no overv ...
HMC606LC5 数据资料DataSheet下载
HMC606LC5 数据资料DataSheet下载

No Slide Title
No Slide Title

Jacobs University Bremen Natural Science Laboratory Electrical Engineering Module I Fall Semester 2014
Jacobs University Bremen Natural Science Laboratory Electrical Engineering Module I Fall Semester 2014

TPS92691/-Q1 Multi-Topology LED Driver With
TPS92691/-Q1 Multi-Topology LED Driver With

... analog dimming response with 15:1 range is obtained by varying the voltage from 140 mV to 2.25 V across the high impedance analog adjust (IADJ) input. PWM dimming of LED current is achieved by modulating the PWM input pin with the desired duty cycle and frequency. Optional DDRV gate driver output ca ...
LT1993-2 - Linear Technology
LT1993-2 - Linear Technology

Power Electronic Modelling and Emulation of an Electrostatic
Power Electronic Modelling and Emulation of an Electrostatic

... control of the DC-link voltage to a constant value. The energy which is affiliated by the emulation inverter has to be fed back into the power grid and the device under test. The main energy is fed directly into the device under test. Only the losses of the inverters in the test have to be delivered ...
section 1
section 1

Design and Implementation of Cascade H Bridge Multilevel Inverter
Design and Implementation of Cascade H Bridge Multilevel Inverter

ADA4932-1 数据手册DataSheet 下载
ADA4932-1 数据手册DataSheet 下载

... The maximum safe power dissipation in the ADA4932-x package is limited by the associated rise in junction temperature (TJ) on the die. At approximately 150°C, which is the glass transition temperature, the plastic changes its properties. Even temporarily exceeding this temperature limit can change t ...
DTC-IM drive with 5-level hybrid cascaded h-bridge
DTC-IM drive with 5-level hybrid cascaded h-bridge

... and neutral point clamped (NPC) [13]. Simple design and modular structure of cascaded H-bridge multilevel inverter has the inherent advantages among these inverter topologies. This topology is suitable for asymmetrical multilevel inverter implementation. Supplying different value of dc voltage to di ...
MAX14838/9 - Maxim Part Number Search
MAX14838/9 - Maxim Part Number Search

Actor Bass Repair
Actor Bass Repair

... The GAIN must be turned fully clockwise, and should be reset each time a measurement is taken MP 2: ...
MURI Book 4
MURI Book 4

... a klystron is RT, then the maximum bandwidth attainable with a single-gap output is equal to the cavity R/Q multiplied by /2 and divided by RT. The single-gap distinction is important because as we shall see, extended interaction (multiple-gap) output circuits do not obey this rule and make possibl ...
LED Driver Dimming Methods
LED Driver Dimming Methods

... Also commonly known as "Triac Dimming", "SCR Dimming", and Forward Phase control dimming, Forward Phase dimming control is the most common form of phase dimming. It uses a silicon device, usually an SCR or a Triac, to turn the mains waveform on part way through its cycle. By varying the point at whi ...
LTM8031 - Ultralow Noise EMC 36V, 1A DC/DC uModule Regulator
LTM8031 - Ultralow Noise EMC 36V, 1A DC/DC uModule Regulator

... The LTM8031 contains a power good comparator which trips when the ADJ pin is at 90% of its regulated value. The PGOOD output is an open-collector transistor that is off when the output is in regulation, allowing an external resistor to pull the PGOOD pin high. Power good is valid when the LTM8031 is ...
MAX9424–MAX9427 Lowest Jitter Quad PECL-to-ECL Differential Translators General Description
MAX9424–MAX9427 Lowest Jitter Quad PECL-to-ECL Differential Translators General Description

... close to the device as possible. Use the same bypass capacitor configuration between each VEE pin and VGG. In high-frequency, high-noise environments, add a 0.1µF capacitor in parallel with each 0.01µF capacitor. Use multiple vias when connecting the bypass capacitors to VGG (ground). This reduces t ...
Integrated Charger, Dual Main Step
Integrated Charger, Dual Main Step

... The charger uses n-channel switching MOSFETs. Adjustable charge current, charge voltage, and cell selection allow for flexible use with different battery packs. Charge current is set by an analog control input, or a PWM input. High-accuracy current-sense amplifiers provide fast cycle-by-cycle curr ...
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Integrating ADC



An integrating ADC is a type of analog-to-digital converter that converts an unknown input voltage into a digital representation through the use of an integrator. In its most basic implementation, the unknown input voltage is applied to the input of the integrator and allowed to ramp for a fixed time period (the run-up period). Then a known reference voltage of opposite polarity is applied to the integrator and is allowed to ramp until the integrator output returns to zero (the run-down period). The input voltage is computed as a function of the reference voltage, the constant run-up time period, and the measured run-down time period. The run-down time measurement is usually made in units of the converter's clock, so longer integration times allow for higher resolutions. Likewise, the speed of the converter can be improved by sacrificing resolution.Converters of this type can achieve high resolution, but often do so at the expense of speed. For this reason, these converters are not found in audio or signal processing applications. Their use is typically limited to digital voltmeters and other instruments requiring highly accurate measurements.
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