EMG8
... The content specified herein is subject to change for improvement without notice. The content specified herein is for the purpose of introducing ROHM's products (hereinafter "Products"). If you wish to use any such Product, please be sure to refer to the specifications, which can be obtained from RO ...
... The content specified herein is subject to change for improvement without notice. The content specified herein is for the purpose of introducing ROHM's products (hereinafter "Products"). If you wish to use any such Product, please be sure to refer to the specifications, which can be obtained from RO ...
FAN4852 9MHz Low-Power Dual CMOS Amplifier FAN48
... Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be operable above the recommended operating conditions and stressing the parts to these levels is not recommended. In addition, extended exposure to stresses above the recommended operating conditi ...
... Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be operable above the recommended operating conditions and stressing the parts to these levels is not recommended. In addition, extended exposure to stresses above the recommended operating conditi ...
Slide 1
... The ideal differentiator is an inverting amplifier that has a capacitor in the input path. The output voltage is proportional to the negative rate of change of the input voltage. The small reactance of C at high frequencies means an ideal differentiator circuit has very high gain for high-frequency ...
... The ideal differentiator is an inverting amplifier that has a capacitor in the input path. The output voltage is proportional to the negative rate of change of the input voltage. The small reactance of C at high frequencies means an ideal differentiator circuit has very high gain for high-frequency ...
micra-m
... the tare memory and sets the display to zero. Adds the tare memory to the display value and clears the tare memory. Performs a reset of the peak or the valley, depending on selection. Displays peak value (MAX.), valley value (MIN.), tare value, net value (NET) or gross value (GROSS) ...
... the tare memory and sets the display to zero. Adds the tare memory to the display value and clears the tare memory. Performs a reset of the peak or the valley, depending on selection. Displays peak value (MAX.), valley value (MIN.), tare value, net value (NET) or gross value (GROSS) ...
HJ2212831287
... resulting reduction in IC production cost since more components on a chip are possible. In addition to device scaling, the increase in the portable electronics market is also encouraging low voltage and low power circuitry since this would reduce battery size and weight and enable longer battery lif ...
... resulting reduction in IC production cost since more components on a chip are possible. In addition to device scaling, the increase in the portable electronics market is also encouraging low voltage and low power circuitry since this would reduce battery size and weight and enable longer battery lif ...
UC3844B, UC3845B, UC2844B, UC2845B High Performance
... Deadtime versus Frequency, both for given values of CT. Note that many values of RT and CT will give the same oscillator frequency but only one combination will yield a specific output deadtime at a given frequency. The oscillator thresholds are temperature compensated to within ±6% at 50 kHz. Also, ...
... Deadtime versus Frequency, both for given values of CT. Note that many values of RT and CT will give the same oscillator frequency but only one combination will yield a specific output deadtime at a given frequency. The oscillator thresholds are temperature compensated to within ±6% at 50 kHz. Also, ...
MAX1214N 1.8V, Low-Power, 12-Bit, 210Msps ADC for Broadband Applications General Description
... up to 210Msps while consuming only 799mW. At 210Msps and an input frequency up to 100MHz, the MAX1214N achieves an 81.3dBc spurious-free dynamic range (SFDR) with excellent 67dB signal-to-noise ratio (SNR) that remains flat (within 2dB) for input tones up to 250MHz. This makes it ideal for wideband ...
... up to 210Msps while consuming only 799mW. At 210Msps and an input frequency up to 100MHz, the MAX1214N achieves an 81.3dBc spurious-free dynamic range (SFDR) with excellent 67dB signal-to-noise ratio (SNR) that remains flat (within 2dB) for input tones up to 250MHz. This makes it ideal for wideband ...
Voltage Current Dividers
... V p 0.287V 0.143V sin( 20t ) Note: rounding errors can occur. It is best to carry the calculations out to 5 or 6 significant figures and then reduce this to 3 significant figures when writing the final answer. ...
... V p 0.287V 0.143V sin( 20t ) Note: rounding errors can occur. It is best to carry the calculations out to 5 or 6 significant figures and then reduce this to 3 significant figures when writing the final answer. ...
Lect22
... •Physically, what’s happening is that the final charge cannot be placed on a capacitor instantly. •Initially, the voltage drop across an uncharged capacitor = 0 because the charge on it is zero ! (V=Q/C) •As current starts to flow, charge builds up on the capacitor, the voltage drop is proportional ...
... •Physically, what’s happening is that the final charge cannot be placed on a capacitor instantly. •Initially, the voltage drop across an uncharged capacitor = 0 because the charge on it is zero ! (V=Q/C) •As current starts to flow, charge builds up on the capacitor, the voltage drop is proportional ...
ULTRA SLIMPAK G168-0001 ® DC Powered AC Input Limit Alarm
... input signal status. Active DC power is indicated by an illuminated LED. If this LED is off, check DC power and the wiring connection. If the input signal is more than 110% of the full scale range, the LED will flash at 8 Hz. Below 0%, it flashes at 4 Hz. Two red LEDs indicate the relay state for ea ...
... input signal status. Active DC power is indicated by an illuminated LED. If this LED is off, check DC power and the wiring connection. If the input signal is more than 110% of the full scale range, the LED will flash at 8 Hz. Below 0%, it flashes at 4 Hz. Two red LEDs indicate the relay state for ea ...
a LC MOS 4-Channel, 12-Bit Simultaneous Sampling Data Acquisition System
... input track/holds go from track to hold on this edge. Conversion is first performed on the Channel 1 input voltage, then Channel 2 is converted and so on. The four results are stored in on-chip registers. When all four conversions have been completed, INT goes low indicating that data can be read fr ...
... input track/holds go from track to hold on this edge. Conversion is first performed on the Channel 1 input voltage, then Channel 2 is converted and so on. The four results are stored in on-chip registers. When all four conversions have been completed, INT goes low indicating that data can be read fr ...
BDTIC www.BDTIC.com/infineon T D A 4 8 6 3 -
... The control amplifier compares the divided output voltage at its inverting input with a highly accurate reference voltage of 2.5 V at its non-inverting input. The reference has a maximum deviation of less than ±2% over the total temperature range (-40°C < TJ < 150°C). A feedback network is inserted ...
... The control amplifier compares the divided output voltage at its inverting input with a highly accurate reference voltage of 2.5 V at its non-inverting input. The reference has a maximum deviation of less than ±2% over the total temperature range (-40°C < TJ < 150°C). A feedback network is inserted ...
AD694 - Analog Devices
... voltage reference output must be reduced to give the amplifiers their required 2.5 V of headroom for operation. This is done by adjusting the AD694 for 2 V full-scale input, and a voltage reference output of 2 V as described above. GENERAL DESIGN GUIDELINES ...
... voltage reference output must be reduced to give the amplifiers their required 2.5 V of headroom for operation. This is done by adjusting the AD694 for 2 V full-scale input, and a voltage reference output of 2 V as described above. GENERAL DESIGN GUIDELINES ...
BDTIC www.BDTIC.com/infineon Industrial Power Control
... The 1EDI05I12AF, 1EDI20I12AF, 1EDI40I12AF, and 1EDI60I12AF are galvanically isolated single channel IGBT driver in a PG-DSO-8-51 package that provide output currents up to 6 A at separated output pins. The input logic pins operate on a wide input voltage range from 3 V to 15 V using CMOS threshold l ...
... The 1EDI05I12AF, 1EDI20I12AF, 1EDI40I12AF, and 1EDI60I12AF are galvanically isolated single channel IGBT driver in a PG-DSO-8-51 package that provide output currents up to 6 A at separated output pins. The input logic pins operate on a wide input voltage range from 3 V to 15 V using CMOS threshold l ...
Lab6-AO
... DMM. The binary input to the DAC is kept in accumulator B and is repeatedly incremented from 0 to $FF. Note that when the count reaches $3F + 1 = $40, the DAC "thinks" its input has returned to 0 since only the bottom 6 bits of port B are wired to the DAC. The rate of voltage change is determined by ...
... DMM. The binary input to the DAC is kept in accumulator B and is repeatedly incremented from 0 to $FF. Note that when the count reaches $3F + 1 = $40, the DAC "thinks" its input has returned to 0 since only the bottom 6 bits of port B are wired to the DAC. The rate of voltage change is determined by ...
No Slide Title
... • The most common solution is to use a transistor to temporarily connect a high-power resistor across the line to burn the energy as heat (I2R) losses. • Many servo drives include a regen resistor that can dissipate the regen power for most applications. ...
... • The most common solution is to use a transistor to temporarily connect a high-power resistor across the line to burn the energy as heat (I2R) losses. • Many servo drives include a regen resistor that can dissipate the regen power for most applications. ...
ADP3806 - uri=media.digikey
... The ADP3806 is a complete Li-Ion battery-charging IC. The device combines high output voltage accuracy with constant current control to simplify the implementation of constantcurrent, constant-voltage (CCCV) chargers. The ADP3806 is available in three options. The ADP3806-12.6 guarantees the final b ...
... The ADP3806 is a complete Li-Ion battery-charging IC. The device combines high output voltage accuracy with constant current control to simplify the implementation of constantcurrent, constant-voltage (CCCV) chargers. The ADP3806 is available in three options. The ADP3806-12.6 guarantees the final b ...
13 DelcoXSVolt
... setup to offer a High Voltage Quick Recharge Mode. This mode allows the alternator’s normal charge rate to be temporarily boosted to prioritize charging when horsepower is in abundance while in the pits, during staging, and on the return slip. The mode can be triggered with a full throttle activated ...
... setup to offer a High Voltage Quick Recharge Mode. This mode allows the alternator’s normal charge rate to be temporarily boosted to prioritize charging when horsepower is in abundance while in the pits, during staging, and on the return slip. The mode can be triggered with a full throttle activated ...
Cardinal Tremolo V2
... forms the low-pass filter for the “bass” side of the effect. C7 forms the high pass filter for the “treble” side of the effect. The specified caps give my personal preference, after lots and lots of experimenting of the Brownface Twin’s crossover frequencies (153Hz for the bass band and 723Hz for th ...
... forms the low-pass filter for the “bass” side of the effect. C7 forms the high pass filter for the “treble” side of the effect. The specified caps give my personal preference, after lots and lots of experimenting of the Brownface Twin’s crossover frequencies (153Hz for the bass band and 723Hz for th ...
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.