CMT-7408 DATASHEET High-Temperature, Quad 2
... Neither CISSOID, nor any of its directors, employees or affiliates make any representations or extend any warranties of any kind, either express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, and the absence of latent or other defects, wheth ...
... Neither CISSOID, nor any of its directors, employees or affiliates make any representations or extend any warranties of any kind, either express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, and the absence of latent or other defects, wheth ...
Chapter 5 – Series Circuits
... Voltage Regulation and the Internal Resistance of Voltage Sources For any supply, ideal conditions dictate that for a range of load demand (IL), the terminal voltage remains fixed in magnitude. If a supply is set at 12 V, it is desirable that it maintain this terminal voltage, even though the c ...
... Voltage Regulation and the Internal Resistance of Voltage Sources For any supply, ideal conditions dictate that for a range of load demand (IL), the terminal voltage remains fixed in magnitude. If a supply is set at 12 V, it is desirable that it maintain this terminal voltage, even though the c ...
EUP8010X Linear Li-Ion/Polymer Charger IC with Integrated FET and Charger Timer
... current sensor, charge status and reverse current protection in a single monolithic devices.When AC-adapter is applied, an external resistor sets the magnitude of the charge current, which may be programmed up to 1A. The EUP8010X charges the battery in three phases: conditioning, constant current, a ...
... current sensor, charge status and reverse current protection in a single monolithic devices.When AC-adapter is applied, an external resistor sets the magnitude of the charge current, which may be programmed up to 1A. The EUP8010X charges the battery in three phases: conditioning, constant current, a ...
High-Side Current Sensing with Wide Dynamic
... sensing in LDMOS bias current monitoring in cellular base station power amplifiers and other relevant applications. Cur rent monitor ing is necessar y in base station power amplifiers, especially with the more complex modulation methods used in 3G and LTE, where the peak-to-average power ratio varie ...
... sensing in LDMOS bias current monitoring in cellular base station power amplifiers and other relevant applications. Cur rent monitor ing is necessar y in base station power amplifiers, especially with the more complex modulation methods used in 3G and LTE, where the peak-to-average power ratio varie ...
SOLAR BEACH CHAIR
... A safety on/off switch will be placed between the solar panel and the rest of the circuit. This switch will allow the user to turn off the chair when they are not using it. The output from the solar panel will run through the switch to the converter. When the switch is off, the solar panel will be o ...
... A safety on/off switch will be placed between the solar panel and the rest of the circuit. This switch will allow the user to turn off the chair when they are not using it. The output from the solar panel will run through the switch to the converter. When the switch is off, the solar panel will be o ...
Battery monitor IC with Coulomb counter/gas gauge
... by means of an A/D converter and a multiplexer. This function takes place concurrently to the gas gauge function with a dedicated A/D converter, which means that it does not affect the performance of the gas gauge. To reduce the power consumption, a conversion takes place only every two seconds, alt ...
... by means of an A/D converter and a multiplexer. This function takes place concurrently to the gas gauge function with a dedicated A/D converter, which means that it does not affect the performance of the gas gauge. To reduce the power consumption, a conversion takes place only every two seconds, alt ...
MAX8794 Low-Voltage DDR Linear Regulator General Description Features
... of the transistor (IN) is regulated to provide VOUT. By using separate bias and power inputs, the MAX8794 can drive an n-channel high-side MOSFET and use a lower input voltage to provide better efficiency. The MAX8794 regulates its output voltage to the voltage at REFIN. When used in DDR application ...
... of the transistor (IN) is regulated to provide VOUT. By using separate bias and power inputs, the MAX8794 can drive an n-channel high-side MOSFET and use a lower input voltage to provide better efficiency. The MAX8794 regulates its output voltage to the voltage at REFIN. When used in DDR application ...
MAX4100/MAX4101 500MHz, Low-Power Op
... The MAX4100/MAX4101 are voltage-feedback op amps that can be configured as an inverting or noninverting gain block, as shown in Figures 1a and 1b. The gain is determined by the ratio of two resistors and does not affect amplifier frequency compensation. In the unity-gain configuration (as shown in F ...
... The MAX4100/MAX4101 are voltage-feedback op amps that can be configured as an inverting or noninverting gain block, as shown in Figures 1a and 1b. The gain is determined by the ratio of two resistors and does not affect amplifier frequency compensation. In the unity-gain configuration (as shown in F ...
LT1208/LT1209 - Dual and Quad 45MHz, 400V/µs Op Amps
... lead lengths, RF-quality bypass capacitors located close to the device (typically 0.01µF to 0.1µF), and use of low ESR bypass capacitors for high drive current applications (typically 1µF to 10µF tantalum). Sockets should be avoided when maximum frequency performance is required, although low profil ...
... lead lengths, RF-quality bypass capacitors located close to the device (typically 0.01µF to 0.1µF), and use of low ESR bypass capacitors for high drive current applications (typically 1µF to 10µF tantalum). Sockets should be avoided when maximum frequency performance is required, although low profil ...
altmann
... means ST-optical input, 48 kHz sampling frequency means TOSLINK input, 44.1 kHz sampling frequency means XLR input, 96 kHz sampling frequency ...
... means ST-optical input, 48 kHz sampling frequency means TOSLINK input, 44.1 kHz sampling frequency means XLR input, 96 kHz sampling frequency ...
DCS800-E Panel Solution
... The DCS800-E is a compact user-friendly Panel-Solution. It offers all needed components pre-mounted, fully wired and factory-tested. While mounting it into an empty cabinet the mechanical installation will be completed. This ready-to-use concept allows to squeeze the power-down-time in rebuilding pr ...
... The DCS800-E is a compact user-friendly Panel-Solution. It offers all needed components pre-mounted, fully wired and factory-tested. While mounting it into an empty cabinet the mechanical installation will be completed. This ready-to-use concept allows to squeeze the power-down-time in rebuilding pr ...
MAX750A/MAX758A Adjustable, Step-Down, Current-Mode PWM Regulators _______________General Description
... current-sense resistor and amplifier, and an outer (voltage) loop that monitors the output voltage through the error amplifier (Figure 1). The inner loop performs cycle-by-cycle current limiting, truncating the powertransistor on-time when the switch current reaches a predetermined threshold. This t ...
... current-sense resistor and amplifier, and an outer (voltage) loop that monitors the output voltage through the error amplifier (Figure 1). The inner loop performs cycle-by-cycle current limiting, truncating the powertransistor on-time when the switch current reaches a predetermined threshold. This t ...
LIOB-100/101/102/103
... DIs are fast binary inputs, which can also be used as counter inputs (S0). They follow the S0 specification for electric meters and have a sampling rate of 10 ms. They change state at a load of 195 Ω between the DI terminal and GND. Galvanically isolated sensors resp. switches must be connected. AO ...
... DIs are fast binary inputs, which can also be used as counter inputs (S0). They follow the S0 specification for electric meters and have a sampling rate of 10 ms. They change state at a load of 195 Ω between the DI terminal and GND. Galvanically isolated sensors resp. switches must be connected. AO ...
LM392 LOW-POWER OPERATIONAL AMPLIFIER AND VOLTAGE COMPARATOR FEATURES
... The direction of the input current is out of the device due to the PNP input stage. This current essentially is constant and independent of the state of the output, so no loading change exists on the input lines. The input common-mode voltage or either input signal voltage should not be allowed to g ...
... The direction of the input current is out of the device due to the PNP input stage. This current essentially is constant and independent of the state of the output, so no loading change exists on the input lines. The input common-mode voltage or either input signal voltage should not be allowed to g ...
DM7446A, DM7447A BCD to 7-Segment Decoders/Drivers
... Note 2: The blanking input (BI) must be OPEN or held at a HIGH logic level when output functions 0 through 15 are desired. The ripple-blanking input (RBI) must be OPEN or HIGH if blanking of a decimal zero is not desired. Note 3: When a LOW logic level is applied directly to the blanking input (BI), ...
... Note 2: The blanking input (BI) must be OPEN or held at a HIGH logic level when output functions 0 through 15 are desired. The ripple-blanking input (RBI) must be OPEN or HIGH if blanking of a decimal zero is not desired. Note 3: When a LOW logic level is applied directly to the blanking input (BI), ...
D1V2 Assembly Manual
... 7. Solder all pots (VR) 8. Solder small E-caps (22uF to 330uF) 9. Solder Regulator Jfet / Transistors / TL431 etc.. (do not solder jfet IV fets) 10. Solder connectors if used 11. Solder big E-caps (1000uF and 2200uF) 12. Solder all relays 13. Solder IRF610/9610 with heat sink 14. Verify the +/- 20V ...
... 7. Solder all pots (VR) 8. Solder small E-caps (22uF to 330uF) 9. Solder Regulator Jfet / Transistors / TL431 etc.. (do not solder jfet IV fets) 10. Solder connectors if used 11. Solder big E-caps (1000uF and 2200uF) 12. Solder all relays 13. Solder IRF610/9610 with heat sink 14. Verify the +/- 20V ...
Burr Brown PCM63K
... performance, high signal-to-noise ratio and ease of use) with superior low-level performance. Two DACs are combined in a complementary arrangement to produce an extremely linear output. The two DACs share a common reference and a common R-2R ladder to ensure perfect tracking under all conditions. By ...
... performance, high signal-to-noise ratio and ease of use) with superior low-level performance. Two DACs are combined in a complementary arrangement to produce an extremely linear output. The two DACs share a common reference and a common R-2R ladder to ensure perfect tracking under all conditions. By ...
HMC431LP4 数据资料DataSheet下载
... Low noise MMIC VCO w/Buffer Amplifier for C-Band applications such as: ...
... Low noise MMIC VCO w/Buffer Amplifier for C-Band applications such as: ...
AD8561 数据手册DataSheet 下载
... fixed 2.5 V reference. Since the comparator only needs to operate when the signal is near 2.5 V, both signals will be within the input range (near 2.5 V and well under 3.0 V) when the comparator needs to change output. ...
... fixed 2.5 V reference. Since the comparator only needs to operate when the signal is near 2.5 V, both signals will be within the input range (near 2.5 V and well under 3.0 V) when the comparator needs to change output. ...
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.