14-Bit, 210 MSPS TxDAC D/A Converter AD9744
... Edits to Absolute Maximum Ratings ..............................................5 Edits to Thermal Characteristics.....................................................5 Edits to Ordering Guide ...................................................................5 Edits to Pin Configuration ........... ...
... Edits to Absolute Maximum Ratings ..............................................5 Edits to Thermal Characteristics.....................................................5 Edits to Ordering Guide ...................................................................5 Edits to Pin Configuration ........... ...
MAX196/MAX198 Multirange, Single +5V, 12-Bit DAS with 12-Bit Bus Interface _______________General Description
... The MAX196/MAX198 multirange, 12-bit data-acquisition systems (DAS) require only a single +5V supply for operation, yet convert analog signals at their inputs up to ±10V (MAX196) and ±4V (MAX198). These systems provide six analog input channels that are independently software programmable for a vari ...
... The MAX196/MAX198 multirange, 12-bit data-acquisition systems (DAS) require only a single +5V supply for operation, yet convert analog signals at their inputs up to ±10V (MAX196) and ±4V (MAX198). These systems provide six analog input channels that are independently software programmable for a vari ...
AS1340 Datasheet
... and will go high when the output reaches 90% of the nominal output voltage (see Figure 20 on page 7). When input and output voltage are almost the same, it may happen that the POK Signal does not go low because VOUT reaches 90% before the delay has expired. The open-drain POK output sinks current, w ...
... and will go high when the output reaches 90% of the nominal output voltage (see Figure 20 on page 7). When input and output voltage are almost the same, it may happen that the POK Signal does not go low because VOUT reaches 90% before the delay has expired. The open-drain POK output sinks current, w ...
MAX1142/MAX1143 14-Bit ADC, 200ksps, +5V Single-Supply with Reference General Description
... Note 1: Tested at AVDD = DVDD = +5V, bipolar input mode. Note 2: Relative accuracy is the deviation of the analog value at any code from its theoretical value after the gain error and offset error have been nulled. Note 3: Offset nulled. Note 4: Conversion time is defined as the number of clock cycl ...
... Note 1: Tested at AVDD = DVDD = +5V, bipolar input mode. Note 2: Relative accuracy is the deviation of the analog value at any code from its theoretical value after the gain error and offset error have been nulled. Note 3: Offset nulled. Note 4: Conversion time is defined as the number of clock cycl ...
SP319
... The RS-232 receivers convert RS-232 input signals to inverted TTL signals. Each of the four receivers features 500mV of hysteresis margin to minimize the effects of noisy transmission lines. The inputs also have a 5kΩ resistor to ground; in an open circuit situation the input of the receiver will be ...
... The RS-232 receivers convert RS-232 input signals to inverted TTL signals. Each of the four receivers features 500mV of hysteresis margin to minimize the effects of noisy transmission lines. The inputs also have a 5kΩ resistor to ground; in an open circuit situation the input of the receiver will be ...
FEATURES APPLICATIONS D
... exceptionally low harmonic distortion, particularly in differential configurations. Adequate output current is provided to drive the potentially heavy load of a twisted-pair line. Harmonic distortion for a 2VPP differential output operating from +5V to +12V supplies is ≤ −95dBc through 1MHz input fr ...
... exceptionally low harmonic distortion, particularly in differential configurations. Adequate output current is provided to drive the potentially heavy load of a twisted-pair line. Harmonic distortion for a 2VPP differential output operating from +5V to +12V supplies is ≤ −95dBc through 1MHz input fr ...
FSL117MRIN ™) Green-Mode Fairchild Power Switch (FPS FS
... an unexpected abnormal event. In this situation, the protection circuit should trigger to protect the SMPS. However, even when the SMPS is in normal operation, the overload protection circuit can be triggered during load transition. To avoid this undesired operation, the overload protection circuit ...
... an unexpected abnormal event. In this situation, the protection circuit should trigger to protect the SMPS. However, even when the SMPS is in normal operation, the overload protection circuit can be triggered during load transition. To avoid this undesired operation, the overload protection circuit ...
Potentiometer - Make Your Point
... terminals. Most resistors have a fixed resistance value, measured in ohms. A potentiometer functions much like a normal resistor, except that its resistance value can be changed, usually by rotating a knob or pushing a slider on the potentiometer structure. Rotational potentiometers, which use a rot ...
... terminals. Most resistors have a fixed resistance value, measured in ohms. A potentiometer functions much like a normal resistor, except that its resistance value can be changed, usually by rotating a knob or pushing a slider on the potentiometer structure. Rotational potentiometers, which use a rot ...
Switching Circuits Word Document
... difference between the base and emitter terminals which causes current to flow from the base to the emitter, VIN = 6V. This switches the transistor on which allows a larger current to flow through the collector and emitter, and the lamp lights. Note: both base and collector currents come out of the ...
... difference between the base and emitter terminals which causes current to flow from the base to the emitter, VIN = 6V. This switches the transistor on which allows a larger current to flow through the collector and emitter, and the lamp lights. Note: both base and collector currents come out of the ...
EW lab manual - WordPress.com
... PASSIVE components do not increase the power of a signal. They often cause power to be lost. Some can increase the voltage at the expense of current, so overall there is a loss of power. Resistors, capacitors, inductors and diodes, sensors, detectors, antennas are examples of passive components. 1. ...
... PASSIVE components do not increase the power of a signal. They often cause power to be lost. Some can increase the voltage at the expense of current, so overall there is a loss of power. Resistors, capacitors, inductors and diodes, sensors, detectors, antennas are examples of passive components. 1. ...
MAX17502 60V, 1A, Ultra-Small, High-Efficiency, Synchronous Step-Down DC-DC Converter General Description
... cycle using a PWM comparator, a high-side current-sense amplifier, and a slope-compensation generator. At each rising edge of the clock, the high-side p-channel MOSFET turns on and remains on until either the appropriate or maximum duty cycle is reached, or the peak current limit is detected. During ...
... cycle using a PWM comparator, a high-side current-sense amplifier, and a slope-compensation generator. At each rising edge of the clock, the high-side p-channel MOSFET turns on and remains on until either the appropriate or maximum duty cycle is reached, or the peak current limit is detected. During ...
LT6411
... reliability and lifetime. Note 2: This parameter is guaranteed to meet specified performance through design and characterization. It is not production tested. Note 3: As long as output current and junction temperature are kept below the Absolute Maximum Ratings, no damage to the part will occur. Depe ...
... reliability and lifetime. Note 2: This parameter is guaranteed to meet specified performance through design and characterization. It is not production tested. Note 3: As long as output current and junction temperature are kept below the Absolute Maximum Ratings, no damage to the part will occur. Depe ...
Output resistance and headphone impedance... an explanation
... The Sennheiser HD800 dependency of the output resistance of amplifiers: with 10 Ω output resistance: The output voltage around 1 kHz, Uout = 350/(10+350) = 0.97 = - 0.24 dB with 10 Ω output resistance: The output voltage around 100 Hz, Uout = 630/(10+630) = 0.98 = - 0.14 dB with 10 Ω output resista ...
... The Sennheiser HD800 dependency of the output resistance of amplifiers: with 10 Ω output resistance: The output voltage around 1 kHz, Uout = 350/(10+350) = 0.97 = - 0.24 dB with 10 Ω output resistance: The output voltage around 100 Hz, Uout = 630/(10+630) = 0.98 = - 0.14 dB with 10 Ω output resista ...
doc - Ignitech
... Continuous setting start limiter revolution is posible to do by connecting ponciometer in input POT (13). Potenciometer is supplied by reference voltage + 5 V (3) a GND (4, 16, 17). Start limiter revolution is determined by voltage value from 0 to 5 V at input POT and by two values of start limiter ...
... Continuous setting start limiter revolution is posible to do by connecting ponciometer in input POT (13). Potenciometer is supplied by reference voltage + 5 V (3) a GND (4, 16, 17). Start limiter revolution is determined by voltage value from 0 to 5 V at input POT and by two values of start limiter ...
RF5725 2.4GHz TO 2.5GHz SINGLE-BAND FRONT END MODULE Features
... HBT and pHEMT processes on a 3mmx3mmx0.5mm 16-pin QFN package. The module meets or exceeds the RF front-end needs of the 802.11b/g WiFi RF systems. The RF5725 is a very easy part to implement, but care in circuit layout and component selection is always advisable when designing circuits that operate ...
... HBT and pHEMT processes on a 3mmx3mmx0.5mm 16-pin QFN package. The module meets or exceeds the RF front-end needs of the 802.11b/g WiFi RF systems. The RF5725 is a very easy part to implement, but care in circuit layout and component selection is always advisable when designing circuits that operate ...
MAX5383/MAX5384/MAX5385 Low-Cost, Low-Power, 8-Bit DACs with 3-Wire Serial Interface in SOT23 General Description
... accuracy of the on-board reference, thereby affecting the overall accuracy of the DAC. The circuit in Figure 5 rejects this power-supply noise by powering the device directly with a precision voltage reference, improving overall system accuracy. The MAX6103 (+3V, 75ppm) or the MAX6105 (+5V, 75ppm) p ...
... accuracy of the on-board reference, thereby affecting the overall accuracy of the DAC. The circuit in Figure 5 rejects this power-supply noise by powering the device directly with a precision voltage reference, improving overall system accuracy. The MAX6103 (+3V, 75ppm) or the MAX6105 (+5V, 75ppm) p ...
Schematic
... Check global parameter Enter the three values you will simulate Hit to close the menu
...
... Check global parameter Enter the three values you will simulate Hit
ADP3050 数据手册DataSheet 下载
... All limits at temperature extremes are guaranteed via correlation using standard statistical quality control (SQC). Transconductance and voltage gain measurements refer to the internal amplifier without the voltage divider. To calculate the transconductance and gain of the fixed voltage parts, divid ...
... All limits at temperature extremes are guaranteed via correlation using standard statistical quality control (SQC). Transconductance and voltage gain measurements refer to the internal amplifier without the voltage divider. To calculate the transconductance and gain of the fixed voltage parts, divid ...
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.