MAX3746 Low-Power, 622Mbps to 3.2Gbps Limiting Amplifier General Description
... Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Expo ...
... Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Expo ...
BD3507HFV
... stabilize output voltage. The output capacitor has a role to compensate for the phase of loop gain and to reduce output voltage fluctuation when load is rapidly changed. When there is an insufficient capacity value, there is a possibility to cause oscillation, and when the equivalent serial resistan ...
... stabilize output voltage. The output capacitor has a role to compensate for the phase of loop gain and to reduce output voltage fluctuation when load is rapidly changed. When there is an insufficient capacity value, there is a possibility to cause oscillation, and when the equivalent serial resistan ...
MAX14920/MAX14921 High-Accuracy 12-/16-Cell Measurement AFEs EVALUATION KIT AVAILABLE General Description
... Both devices simultaneously sample all cell voltages, allowing accurate state-of-charge and source-resistance determination. All cell voltages are level shifted to ground reference with unity gain, simplifying external ADC data conversion. The devices have a low-noise, low-offset amplifier that buff ...
... Both devices simultaneously sample all cell voltages, allowing accurate state-of-charge and source-resistance determination. All cell voltages are level shifted to ground reference with unity gain, simplifying external ADC data conversion. The devices have a low-noise, low-offset amplifier that buff ...
Circuit Theory Chapter 4
... every voltage source by 0V (or a short circuit), and every current source by 0A (or an open circuit). This way we obtain a simpler and more manageable circuit. – Dependent sources are left intact because they are controlled by circuit variables. ...
... every voltage source by 0V (or a short circuit), and every current source by 0A (or an open circuit). This way we obtain a simpler and more manageable circuit. – Dependent sources are left intact because they are controlled by circuit variables. ...
LM2524D/LM3524D Regulating Pulse Width Modulator
... calculate outgoing quality level. Note 5: Absolute maximum ratings indicate limits beyond which damage to the device may occur. DC and AC electrical specifications do not apply when operating the device beyond its rated operating conditions. Note 6: Pins 1, 4, 7, 8, 11, and 14 are grounded; Pin 2 e ...
... calculate outgoing quality level. Note 5: Absolute maximum ratings indicate limits beyond which damage to the device may occur. DC and AC electrical specifications do not apply when operating the device beyond its rated operating conditions. Note 6: Pins 1, 4, 7, 8, 11, and 14 are grounded; Pin 2 e ...
Wideband, Low-Power, Current Feedback Operational Amplifier OPA694 FEATURES
... feedback operational amplifier featuring high slew rate and low differential gain/phase errors. An improved output stage provides ±80mA output drive with < 1.5V output voltage headroom. Low supply current with > 500MHz bandwidth meets the requirements of high-density video routers. Being a current f ...
... feedback operational amplifier featuring high slew rate and low differential gain/phase errors. An improved output stage provides ±80mA output drive with < 1.5V output voltage headroom. Low supply current with > 500MHz bandwidth meets the requirements of high-density video routers. Being a current f ...
Design of a 14-bit fully differential discrete time delta
... task. But this success is the epitome of hard work, perseverance, purpose of goal and most of all encouraging guidance. The implementation of my purpose to come out successfully was only due to the strong, powerful enthusiastic forces that were put together to achieve my goal. So with gratitude I ac ...
... task. But this success is the epitome of hard work, perseverance, purpose of goal and most of all encouraging guidance. The implementation of my purpose to come out successfully was only due to the strong, powerful enthusiastic forces that were put together to achieve my goal. So with gratitude I ac ...
Resonance Analysis in Parallel Voltage-Controlled Distributed Generation Inverters Weimin Wu
... often overlooked [11]. Unlike traditional power systems where synchronous generators usually have large time constants, the much faster responses of the voltage and current control loops in the DG inverters tend to result in the additional resonances and small-signal oscillations at the frequencies ...
... often overlooked [11]. Unlike traditional power systems where synchronous generators usually have large time constants, the much faster responses of the voltage and current control loops in the DG inverters tend to result in the additional resonances and small-signal oscillations at the frequencies ...
cardiac pacemaker design
... (Furman et al., 1993). Thus, including the 100% safety factor, a preferable stimulus would have an amplitude of twice V0 and a duration of twice the chronaxie time. The duration is lengthened to twice the chronaxie time to achieve the safety margin. Such an adjustment is generally easier than changi ...
... (Furman et al., 1993). Thus, including the 100% safety factor, a preferable stimulus would have an amplitude of twice V0 and a duration of twice the chronaxie time. The duration is lengthened to twice the chronaxie time to achieve the safety margin. Such an adjustment is generally easier than changi ...
Industrial Process Control
... • Voltage output: 59.16mV/pH • pH neutral (7) = 0V • Sensor output range: -414mV to +414mV • Source impedance ~ 400MW ...
... • Voltage output: 59.16mV/pH • pH neutral (7) = 0V • Sensor output range: -414mV to +414mV • Source impedance ~ 400MW ...
MAX9218 27-Bit, 3MHz-to-35MHz DC-Balanced LVDS Deserializer General Description
... phases. In the data phase, the LVDS serial input is converted to 18 bits of parallel video data and in the control phase, the input is converted to 9 bits of parallel control data. The separate video and control phases take advantage of video timing to reduce the serial data rate. The MAX9218 pairs ...
... phases. In the data phase, the LVDS serial input is converted to 18 bits of parallel video data and in the control phase, the input is converted to 9 bits of parallel control data. The separate video and control phases take advantage of video timing to reduce the serial data rate. The MAX9218 pairs ...
CMOS STATIC RAM 1 MEG (256K x 4-BIT)
... 3. OE is continuously HIGH. If during a WE controlled write cycle OE is LOW, tWP must be greater than or equal to tWHZ + tDW to allow the I/O drivers to turn off and data to be placed on the bus for the required tDW. If OE is HIGH during a WE controlled write cycle, this requirement does not apply a ...
... 3. OE is continuously HIGH. If during a WE controlled write cycle OE is LOW, tWP must be greater than or equal to tWHZ + tDW to allow the I/O drivers to turn off and data to be placed on the bus for the required tDW. If OE is HIGH during a WE controlled write cycle, this requirement does not apply a ...
Design Consideration for Boundary Conduction Mode Power Factor
... Figure 4 shows how the MOSFET on time and switching frequency changes as output power decreases. When the load decreases, as shown in the right side of Figure 4, the peak inductor current diminishes with reduced MOSFET on time and, therefore, the switching frequency increases. Since this can cause s ...
... Figure 4 shows how the MOSFET on time and switching frequency changes as output power decreases. When the load decreases, as shown in the right side of Figure 4, the peak inductor current diminishes with reduced MOSFET on time and, therefore, the switching frequency increases. Since this can cause s ...
AQUA CATALOGO CEN-AQ1EN15-06 INGLES
... The system can be configured without using a controller by connecting the inverters via communications. In this system, if a failure occurs to the master inverter, the next inverter is driven as the master inverter. Moreover, wiring can be saved with use of communications services, which eliminates ...
... The system can be configured without using a controller by connecting the inverters via communications. In this system, if a failure occurs to the master inverter, the next inverter is driven as the master inverter. Moreover, wiring can be saved with use of communications services, which eliminates ...
LT1789-1/LT1789-10 - Micropower, Single Supply Rail-to-Rail Output Instrumentation Amplifier
... 1kHz Voltage Noise: 48nV/√Hz 0.1Hz to 10Hz Noise: 1.5μVP-P ...
... 1kHz Voltage Noise: 48nV/√Hz 0.1Hz to 10Hz Noise: 1.5μVP-P ...
MAX15021 Dual, 4A/2A, 4MHz, Step-Down DC-DC Regulator with Tracking/Sequencing Capability General Description
... high switching frequency (up to 4MHz) and integrated power switches optimize the MAX15021 for high-performance and small-size power management solutions. Each of the MAX15021 PWM regulator sections utilizes a voltage-mode control scheme for good noise immunity and offers external compensation allowi ...
... high switching frequency (up to 4MHz) and integrated power switches optimize the MAX15021 for high-performance and small-size power management solutions. Each of the MAX15021 PWM regulator sections utilizes a voltage-mode control scheme for good noise immunity and offers external compensation allowi ...
GTL2010 1. General description 10-bit bidirectional low voltage translator
... in the ‘on’ state to about 15 mA. This will guarantee a pass voltage of 260 mV to 350 mV. If the current through the pass transistor is higher than 15 mA, the pass voltage will also be higher in the ‘on’ state. To set the current through each pass transistor at 15 mA, the pull-up resistor value is c ...
... in the ‘on’ state to about 15 mA. This will guarantee a pass voltage of 260 mV to 350 mV. If the current through the pass transistor is higher than 15 mA, the pass voltage will also be higher in the ‘on’ state. To set the current through each pass transistor at 15 mA, the pull-up resistor value is c ...
PLC Demo System User Guide UG-181
... the input requirements of the AD7793. This circuit has bipolar supplies and, thus, allows bipolar inputs. ...
... the input requirements of the AD7793. This circuit has bipolar supplies and, thus, allows bipolar inputs. ...
LC in parallel
... No general solution exists, only for a special choice of when the determinant of the matrix is zero: ...
... No general solution exists, only for a special choice of when the determinant of the matrix is zero: ...
BUF602 数据资料 dataSheet 下载
... • Output Current: 60mA (continuous) • Peak Output Current: 350mA • Low Quiescent Current: 5.8mA • Standard Buffer Pinout • Optional Mid-Supply Reference Buffer ...
... • Output Current: 60mA (continuous) • Peak Output Current: 350mA • Low Quiescent Current: 5.8mA • Standard Buffer Pinout • Optional Mid-Supply Reference Buffer ...
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.