Low voltage CMOS single 2-input or gate with 5V tolerant input
... silicon gate and double-layer metal wiring C2MOS technology. It is ideal for 1.65 to 5.5 VCC operations and low power and low noise applications. The internal circuit is composed of 3 stages including buffer ...
... silicon gate and double-layer metal wiring C2MOS technology. It is ideal for 1.65 to 5.5 VCC operations and low power and low noise applications. The internal circuit is composed of 3 stages including buffer ...
LTC6090(-5) - Linear Technology
... gain stable. The LTC6090-5 is stable in noise gain configurations of 5 or greater. Both amplifiers feature high open loop gain, low input referred offset voltage and noise, and pA input bias current and are ideal for high voltage, high impedance buffering and/or high gain configurations. ...
... gain stable. The LTC6090-5 is stable in noise gain configurations of 5 or greater. Both amplifiers feature high open loop gain, low input referred offset voltage and noise, and pA input bias current and are ideal for high voltage, high impedance buffering and/or high gain configurations. ...
LMV861 数据资料 dataSheet 下载
... One artifact from this test circuit is that the low frequency CMRR results appear higher than expected. This is because in the AC CMRR test circuit the potentiometer is used to compensate for the DC mismatches. So, mainly AC mismatch is all that remains. Therefore, the obtained DC CMRR from this AC ...
... One artifact from this test circuit is that the low frequency CMRR results appear higher than expected. This is because in the AC CMRR test circuit the potentiometer is used to compensate for the DC mismatches. So, mainly AC mismatch is all that remains. Therefore, the obtained DC CMRR from this AC ...
DC Circuits
... An ideal voltage supply maintains a constant voltage regardless of the current drawn. This statement holds true for the Thevenin’s equivalent voltage of the home-built voltage supply you will make today or of your adjustable lab power supply. The values VT (Thevenin equivalent voltage) and RT (Theve ...
... An ideal voltage supply maintains a constant voltage regardless of the current drawn. This statement holds true for the Thevenin’s equivalent voltage of the home-built voltage supply you will make today or of your adjustable lab power supply. The values VT (Thevenin equivalent voltage) and RT (Theve ...
AD8325 - Analog Devices
... The AD8325 is composed of four analog functions in the powerup or forward mode. The input amplifier (preamp) can be used single-endedly or differentially. If the input is used in the differ ential configuration, it is imperative that the input signals are 180 degrees out of phase and of equal ampli ...
... The AD8325 is composed of four analog functions in the powerup or forward mode. The input amplifier (preamp) can be used single-endedly or differentially. If the input is used in the differ ential configuration, it is imperative that the input signals are 180 degrees out of phase and of equal ampli ...
LM1084 5A Low Dropout Positive Regulators (Rev. F)
... constant current then flows through R2. The resulting voltage drop across R2 adds to the reference voltage to sets the desired output voltage. The current IADJ from the adjustment terminal introduces an output error . But since it is small (120uA max), it becomes negligible when R1 is in the 100Ω ra ...
... constant current then flows through R2. The resulting voltage drop across R2 adds to the reference voltage to sets the desired output voltage. The current IADJ from the adjustment terminal introduces an output error . But since it is small (120uA max), it becomes negligible when R1 is in the 100Ω ra ...
Tunable LNA for 802.15.4 2.4 GHz Band for Zigbee Devices
... Tunable LNA for 802.15.4 2.4 GHz Band for Zigbee Devices Loay D. Khalaf, and Bassam Asir ...
... Tunable LNA for 802.15.4 2.4 GHz Band for Zigbee Devices Loay D. Khalaf, and Bassam Asir ...
TPA6111A2: 150-mW Stereo Audio Power Amplifier (Rev. C)
... at 1 kHz, and less than 1% across the audio band of 20 Hz to 20 kHz. For 32-Ω loads, the THD+N is reduced to less than 0.02% at 1 kHz, and is less than 1% across the audio band of 20 Hz to 20 kHz. For 10-kΩ loads, the THD+N performance is 0.005% at 1 kHz, and less than 0.5% across the audio band of ...
... at 1 kHz, and less than 1% across the audio band of 20 Hz to 20 kHz. For 32-Ω loads, the THD+N is reduced to less than 0.02% at 1 kHz, and is less than 1% across the audio band of 20 Hz to 20 kHz. For 10-kΩ loads, the THD+N performance is 0.005% at 1 kHz, and less than 0.5% across the audio band of ...
AR 1215 Manual
... substandard wiring, and other causes. These deviations can cause poor performance or a malfunction. A regulator is a device which, through use of a transformer, corrects the voltage deviation by stepping it up or down so that it is as close as possible to the nominal level. ...
... substandard wiring, and other causes. These deviations can cause poor performance or a malfunction. A regulator is a device which, through use of a transformer, corrects the voltage deviation by stepping it up or down so that it is as close as possible to the nominal level. ...
MPA 5150 SS 5 Channel Power Amp Manual
... Thank you for purchasing my Signature Series Monster Home Theater Music Reference Power Amplifier. I started my Signature Series in 2002 by introducing special versions of the Monster Power Automatic Voltage Stabilizer 2000, Home Theater Power Source 7000 and Reference Home Theater PowerCenter 5100. ...
... Thank you for purchasing my Signature Series Monster Home Theater Music Reference Power Amplifier. I started my Signature Series in 2002 by introducing special versions of the Monster Power Automatic Voltage Stabilizer 2000, Home Theater Power Source 7000 and Reference Home Theater PowerCenter 5100. ...
FIN1027 / FIN1027A — 3.3V LVDS, 2-Bit, High-Speed, Differential Driver FIN
... FIN1027 / FIN1027A — 3.3V LVDS, 2-Bit, High-Speed, Differential Driver ...
... FIN1027 / FIN1027A — 3.3V LVDS, 2-Bit, High-Speed, Differential Driver ...
比较器系列ADCMP606 数据手册DataSheet 下载
... lowest inductance return path for switching currents ensures the best possible performance in the target application. It is also important to adequately bypass the input and output supplies. Multiple high quality 0.01 μF bypass capacitors should be placed as close as possible to each of the VCCI and ...
... lowest inductance return path for switching currents ensures the best possible performance in the target application. It is also important to adequately bypass the input and output supplies. Multiple high quality 0.01 μF bypass capacitors should be placed as close as possible to each of the VCCI and ...
LOG114 数据资料 dataSheet 下载
... The output signal at VLOGOUT has a scale factor of 0.375V out per decade of input current, which limits the output so that it fits within a 5V or 10V range. The output can be scaled and offset with one of the available additional amplifiers, so it matches a wide variety of ADC input ranges. Stable d ...
... The output signal at VLOGOUT has a scale factor of 0.375V out per decade of input current, which limits the output so that it fits within a 5V or 10V range. The output can be scaled and offset with one of the available additional amplifiers, so it matches a wide variety of ADC input ranges. Stable d ...
MAX15034 Configurable, Single-/Dual-Output, Synchronous Buck Controller for High-Current Applications General Description
... load current. The MAX15034 uses average currentmode control with a switching frequency up to 1MHz per phase where each phase is 180° out of phase with respect to the other. Out-of-phase operation results in significantly reduced input capacitor ripple current and output voltage ripple in dual-phase, ...
... load current. The MAX15034 uses average currentmode control with a switching frequency up to 1MHz per phase where each phase is 180° out of phase with respect to the other. Out-of-phase operation results in significantly reduced input capacitor ripple current and output voltage ripple in dual-phase, ...
High-Efficiency, 8A, Current-Mode Synchronous Step-Down Switching Regulator with VID Control MAX15109 Features
... current limit with fast response to line and load transients. The regulator features a 1MHz fixed switching frequency, allowing for all-ceramic capacitor designs with fast transient responses. The high operating frequency minimizes the size of external components. The IC is available in a 2.5mm x 2m ...
... current limit with fast response to line and load transients. The regulator features a 1MHz fixed switching frequency, allowing for all-ceramic capacitor designs with fast transient responses. The high operating frequency minimizes the size of external components. The IC is available in a 2.5mm x 2m ...
VFC320 - Texas Instruments
... Output Sink Current at fOUT ............................................................... 50mA Output Current at VOUT ................................................................... +20mA Input Voltage, –Input .......................................................................... ±VCC Inpu ...
... Output Sink Current at fOUT ............................................................... 50mA Output Current at VOUT ................................................................... +20mA Input Voltage, –Input .......................................................................... ±VCC Inpu ...
UNITY-GAIN STABLE WIDEBAND VOLTAGE LIMITING AMPLIFIER OPA698M FEATURES
... Two buffered limiting voltages take control of the output when it attempts to drive beyond these limits. This new output limiting architecture holds the limiter offset error to ±15 mV. The op amp operates linearly to within 30 mV of the output limit voltages. The combination of narrow nonlinear rang ...
... Two buffered limiting voltages take control of the output when it attempts to drive beyond these limits. This new output limiting architecture holds the limiter offset error to ±15 mV. The op amp operates linearly to within 30 mV of the output limit voltages. The combination of narrow nonlinear rang ...
Slide 1
... Reduced the capacitance and improved the delay Increased static power consumption How can we implement the R easily in a CMOS process? ...
... Reduced the capacitance and improved the delay Increased static power consumption How can we implement the R easily in a CMOS process? ...
2µA Supply Current, Low IB, Zero-Drift Operational Amplifier
... amplifier. The LTC2063 enables high resolution measurement at extremely low power levels. Typical supply current is 1.4µA with a maximum of 2µA. The available shutdown mode has been optimized to minimize power consumption in duty-cycled applications and features low charge loss during power-up, redu ...
... amplifier. The LTC2063 enables high resolution measurement at extremely low power levels. Typical supply current is 1.4µA with a maximum of 2µA. The available shutdown mode has been optimized to minimize power consumption in duty-cycled applications and features low charge loss during power-up, redu ...
VN751PT
... maximum rating section of the device datasheet. The power dissipation associated to RGND during reverse polarity condition is: PD = (-VCC)2/RGND This resistor can be shared by several different ICs. In such case IS value on formula (1) is the sum of the maximum ON-state currents of the different dev ...
... maximum rating section of the device datasheet. The power dissipation associated to RGND during reverse polarity condition is: PD = (-VCC)2/RGND This resistor can be shared by several different ICs. In such case IS value on formula (1) is the sum of the maximum ON-state currents of the different dev ...
AN-847 APPLICATION NOTE
... Referring to Figure 3, with a system supply value (VDD) of 3.2 V, the user can program the AD5933 output ac excitation voltage of the AD5933 to be one of four values (2 V p-p, 1 V p-p, 400 mV p-p, or 200 mV p-p) by setting Bit D10 and Bit D9 in the AD5933 control register (see the AD5933 data sheet ...
... Referring to Figure 3, with a system supply value (VDD) of 3.2 V, the user can program the AD5933 output ac excitation voltage of the AD5933 to be one of four values (2 V p-p, 1 V p-p, 400 mV p-p, or 200 mV p-p) by setting Bit D10 and Bit D9 in the AD5933 control register (see the AD5933 data sheet ...
DRV603 数据资料 dataSheet 下载
... DC input-blocking capacitors are required to be added in series with the audio signal into the input pins of the DRV603. These capacitors block the dc portion of the audio source and allow the DRV603 inputs to be properly biased to provide maximum performance. These capacitors form a high-pass filte ...
... DC input-blocking capacitors are required to be added in series with the audio signal into the input pins of the DRV603. These capacitors block the dc portion of the audio source and allow the DRV603 inputs to be properly biased to provide maximum performance. These capacitors form a high-pass filte ...
Amplifier
An amplifier, electronic amplifier or (informally) amp is an electronic device that increases the power of a signal.It does this by taking energy from a power supply and controlling the output to match the input signal shape but with a larger amplitude. In this sense, an amplifier modulates the output of the power supply to make the output signal stronger than the input signal. An amplifier is effectively the opposite of an attenuator: while an amplifier provides gain, an attenuator provides loss.An amplifier can either be a separate piece of equipment or an electrical circuit within another device. The ability to amplify is fundamental to modern electronics, and amplifiers are extremely widely used in almost all electronic equipment. The types of amplifiers can be categorized in different ways. One is by the frequency of the electronic signal being amplified; audio amplifiers amplify signals in the audio (sound) range of less than 20 kHz, RF amplifiers amplify frequencies in the radio frequency range between 20 kHz and 300 GHz. Another is which quantity, voltage or current is being amplified; amplifiers can be divided into voltage amplifiers, current amplifiers, transconductance amplifiers, and transresistance amplifiers. A further distinction is whether the output is a linear or nonlinear representation of the input. Amplifiers can also be categorized by their physical placement in the signal chain.The first practical electronic device that amplified was the Audion (triode) vacuum tube, invented in 1906 by Lee De Forest, which led to the first amplifiers. The terms ""amplifier"" and ""amplification"" (from the Latin amplificare, 'to enlarge or expand') were first used for this new capability around 1915 when triodes became widespread. For the next 50 years, vacuum tubes were the only devices that could amplify. All amplifiers used them until the 1960s, when transistors appeared. Most amplifiers today use transistors, though tube amplifiers are still produced.