iC-NVH 6-bit Sin/D Flash Converter - iC-Haus
... the sine/cosine input signals and the A/B incremental signals generated can be selected here. The device also incorporates an index signal processing circuit which generates a digital zero pulse at Z (gated with A only, respectively B) dependent on the analog sine/cosine input signals and the enable ...
... the sine/cosine input signals and the A/B incremental signals generated can be selected here. The device also incorporates an index signal processing circuit which generates a digital zero pulse at Z (gated with A only, respectively B) dependent on the analog sine/cosine input signals and the enable ...
lecture12
... Find the initial and final capacitor voltage (it’s easier) Find the time constant (it’s the same for everything) Form the capacitor voltage equation VC(t) Use KVL or the I-V relationship to find x(t) ...
... Find the initial and final capacitor voltage (it’s easier) Find the time constant (it’s the same for everything) Form the capacitor voltage equation VC(t) Use KVL or the I-V relationship to find x(t) ...
Extend the Wide Output Voltage Capability of
... voltage. Initially, the value for R2 was chosen to be 25 kΩ, but this value resulted in R1 and R2 being close to 1 MΩ. Therefore, the R2 value was decreased and the R1 value was recalculated. A value near 18.2 kΩ for R2 also would have been acceptable. A zero frequency of 2 kHz then was chosen to de ...
... voltage. Initially, the value for R2 was chosen to be 25 kΩ, but this value resulted in R1 and R2 being close to 1 MΩ. Therefore, the R2 value was decreased and the R1 value was recalculated. A value near 18.2 kΩ for R2 also would have been acceptable. A zero frequency of 2 kHz then was chosen to de ...
12.2 switched-capacitor circuits
... depicted in Fig. 12.8(c). When phase 1 is high, switch S1 is on and S2 is off, and when phase 2 is high, switch S2 is on and S1 is off, assuming the switches are implemented using NMOS transistors. Figure 12.9 gives the (piecewise linear) equivalent circuits that can be used to analyze the circuit ...
... depicted in Fig. 12.8(c). When phase 1 is high, switch S1 is on and S2 is off, and when phase 2 is high, switch S2 is on and S1 is off, assuming the switches are implemented using NMOS transistors. Figure 12.9 gives the (piecewise linear) equivalent circuits that can be used to analyze the circuit ...
Advanced Common-Mode Control techniques for Low
... voltage signals, which are the input of the CM sense block, are centered around VDD/2 and for very LV supply this value is lower than VT. Therefore, no CM detector circuits, where the amplifier output signals have to be connected to MOS gate terminals, can be used. A possible design solution to over ...
... voltage signals, which are the input of the CM sense block, are centered around VDD/2 and for very LV supply this value is lower than VT. Therefore, no CM detector circuits, where the amplifier output signals have to be connected to MOS gate terminals, can be used. A possible design solution to over ...
AMS23 - Advanced Monolithic Systems
... VCC and has a voltage hysteresis (VHYST). The AMS23 asserts an output signal (OUT) whenever VDETECT goes below the Voltage Detect Threshold (VTH-). The output signal (OUT) stays asserted until VDETECT goes above the Voltage Detect Release (VTH+). Output voltage (VOUT) is guaranteed valid down to VCC ...
... VCC and has a voltage hysteresis (VHYST). The AMS23 asserts an output signal (OUT) whenever VDETECT goes below the Voltage Detect Threshold (VTH-). The output signal (OUT) stays asserted until VDETECT goes above the Voltage Detect Release (VTH+). Output voltage (VOUT) is guaranteed valid down to VCC ...
SAC SILK GlowMaster KT88 true balanced Class A Power Amplifier
... vacuum tube designs for under 100 watt RMS per channel amplifier. Its low output impedance and high damping factor means that it can fully control any loudspeaker with precise timing and pace even from low listening level to the highest level. Its true wide bandwidth means that it can equally render ...
... vacuum tube designs for under 100 watt RMS per channel amplifier. Its low output impedance and high damping factor means that it can fully control any loudspeaker with precise timing and pace even from low listening level to the highest level. Its true wide bandwidth means that it can equally render ...
L6377
... non dissipative short circuit protection and it ensures a very safe operation even in permanent overload conditions. Note that, of course, choosing the most appropriate value for the tON interval (i.e. the value of the CDON capacitor) a delay (the tON itself) will prevent that a misleading Short Cir ...
... non dissipative short circuit protection and it ensures a very safe operation even in permanent overload conditions. Note that, of course, choosing the most appropriate value for the tON interval (i.e. the value of the CDON capacitor) a delay (the tON itself) will prevent that a misleading Short Cir ...
Application Note Designing VME Power Systems from Standard
... input transients which extend both above and below the operating range of the DC-DC converter, such as in MILSTD-1275. The first stage is the transient protection function which activates when the input voltage exceeds the input range of the DC-DC converter. Low energy spikes such as the ±250V spike ...
... input transients which extend both above and below the operating range of the DC-DC converter, such as in MILSTD-1275. The first stage is the transient protection function which activates when the input voltage exceeds the input range of the DC-DC converter. Low energy spikes such as the ±250V spike ...
click here
... The amplifier output uses a ferrite transformer. The bead used is essentially equivalent to the popular FT37-43. We used a 5:1 turns ratio and a 1200 Ohm resistor to back terminate the drain, forcing a good output impedance match. This same transformer should work well at frequencies through the HF ...
... The amplifier output uses a ferrite transformer. The bead used is essentially equivalent to the popular FT37-43. We used a 5:1 turns ratio and a 1200 Ohm resistor to back terminate the drain, forcing a good output impedance match. This same transformer should work well at frequencies through the HF ...
TD351
... internally clamped at about 5 V to 7 V. When using an open collector optocoupler, the resistive pull-up resistor can be connected to either VREF or VH. Recommended pull-up resistor value with VH = 16 V is from 4.7 kΩ to 22 kΩ. When driven by a pulse transformer, the input positive and negative pulse ...
... internally clamped at about 5 V to 7 V. When using an open collector optocoupler, the resistive pull-up resistor can be connected to either VREF or VH. Recommended pull-up resistor value with VH = 16 V is from 4.7 kΩ to 22 kΩ. When driven by a pulse transformer, the input positive and negative pulse ...
doc - Cornerstone Robotics
... Astable Mode: Astable mode causes the 555 timer to operate as an oscillator. It can be used to send timed pulses for LEDs, tone generation, clocks, etc. See lesson on astable operation at: http://cornerstonerobotics.org/curriculum/lessons_year2/erii5_555_timer _astable_operation.pdf Monostable M ...
... Astable Mode: Astable mode causes the 555 timer to operate as an oscillator. It can be used to send timed pulses for LEDs, tone generation, clocks, etc. See lesson on astable operation at: http://cornerstonerobotics.org/curriculum/lessons_year2/erii5_555_timer _astable_operation.pdf Monostable M ...
DM74LS20 Dual 4-Input NAND Gate
... 14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide Package Number N14A ...
... 14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide Package Number N14A ...
DM74LS10 Triple 3
... 14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide Package Number N14A ...
... 14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300 Wide Package Number N14A ...
74VHC574 Octal D-Type Flip-Flop with 3-STATE Outputs 7 4
... The VHC574 is an advanced high speed CMOS octal flipflop with 3-STATE output fabricated with silicon gate CMOS technology. It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation. This 8-bit D-type flip-flop is controlled by a ...
... The VHC574 is an advanced high speed CMOS octal flipflop with 3-STATE output fabricated with silicon gate CMOS technology. It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation. This 8-bit D-type flip-flop is controlled by a ...
CHEM 322 ... Spring 2015 ...
... Complete the following on separate paper. Show your work and clearly identify your answers. Assume two significant figures for all given resistance and capacitance values. ...
... Complete the following on separate paper. Show your work and clearly identify your answers. Assume two significant figures for all given resistance and capacitance values. ...
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.