NB6L239MNEVB NB6L239MNEVB Evaluation Board User's Manual •
... are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor doe ...
... are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor doe ...
INA180 Low- and High-Side Voltage Output
... The INA180 supports small-signal bandwidths as high as 350 kHz, and large-signal slew rates of 2 V/µs. The ability to detect rapid changes in the sensed current, as well as the ability to quickly slew the output, make the INA180 a good choice for applications that require a quick response to input c ...
... The INA180 supports small-signal bandwidths as high as 350 kHz, and large-signal slew rates of 2 V/µs. The ability to detect rapid changes in the sensed current, as well as the ability to quickly slew the output, make the INA180 a good choice for applications that require a quick response to input c ...
LT6402-12
... 0°C to 70°C. It is designed, characterized and expected to meet specified performance from –40°C and 85°C but is not tested or QA sampled at these temperatures. The LT6402I is guaranteed to meet specified performance from –40°C to 85°C. Note 5: Since the LT6402-12 is a feedback amplifier with low outpu ...
... 0°C to 70°C. It is designed, characterized and expected to meet specified performance from –40°C and 85°C but is not tested or QA sampled at these temperatures. The LT6402I is guaranteed to meet specified performance from –40°C to 85°C. Note 5: Since the LT6402-12 is a feedback amplifier with low outpu ...
1 - University of California, Berkeley
... This can be implemented in positive, split-output TSPC as shown below. When the clock signal is low, the first stage can evaluate, but these changes cannot switch the output (the second stage transistors can be turned off, but never turned on). ...
... This can be implemented in positive, split-output TSPC as shown below. When the clock signal is low, the first stage can evaluate, but these changes cannot switch the output (the second stage transistors can be turned off, but never turned on). ...
LMH664x Low Power, 130MHz, 75mA Rail-to
... reduced power consumption when compared against existing devices with similar performance. Input common mode voltage range extends to 0.5 V below V− and 1 V from V+. Output voltage range extends to within 40 mV of either supply rail, allowing wide dynamic range especially desirable in low voltage ap ...
... reduced power consumption when compared against existing devices with similar performance. Input common mode voltage range extends to 0.5 V below V− and 1 V from V+. Output voltage range extends to within 40 mV of either supply rail, allowing wide dynamic range especially desirable in low voltage ap ...
parallel circuits
... inductive reactance. For the parallel RL circuit Z is not equal to the vector sum of R and XL, because R and XL are not in series. Instead, Z is found by first calculating IT and then using Z= Es ...
... inductive reactance. For the parallel RL circuit Z is not equal to the vector sum of R and XL, because R and XL are not in series. Instead, Z is found by first calculating IT and then using Z= Es ...
Lecture 35: CMOS Common Gate Amplifier.
... In the CMOS implementation of this amplifier shown above, Q2 and Q3 function as a current mirror (as with the CMOS common source amplifier we studied in Lecture 33) with Q2 further serving as an active load. There is one subtlety with this IC amplifier that can affect its performance that’s not foun ...
... In the CMOS implementation of this amplifier shown above, Q2 and Q3 function as a current mirror (as with the CMOS common source amplifier we studied in Lecture 33) with Q2 further serving as an active load. There is one subtlety with this IC amplifier that can affect its performance that’s not foun ...
MAX17024 Single Quick-PWM Step-Down Controller with Dynamic REFIN General Description
... Ordering Information ...
... Ordering Information ...
Audio level control with resistive optocouplers.
... dB can be readily obtained. However, the time constant for increasing the gain will be something like 300 msec, which will cause a noticeable lag in response. To get an equivalent attenuation from the faster SR3 device requires an Rs of 100 KΩ, which may give noise and interference pickup problems. ...
... dB can be readily obtained. However, the time constant for increasing the gain will be something like 300 msec, which will cause a noticeable lag in response. To get an equivalent attenuation from the faster SR3 device requires an Rs of 100 KΩ, which may give noise and interference pickup problems. ...
Chapter 11
... approximately 63% of its fully charged value one time-constant (τ) interval after the switch is closed • The current reaches 1% of its initial value in approximately 5τ; considered to be equal to 0 ...
... approximately 63% of its fully charged value one time-constant (τ) interval after the switch is closed • The current reaches 1% of its initial value in approximately 5τ; considered to be equal to 0 ...
SCAN92LV090 9 Channel Bus LVDS Transceiver w/ Boundary SCAN General Description
... except VOD, ΔVOD and VID. Note 3: All typicals are given for VCC = +3.3V and TA = +25°C, unless otherwise stated. Note 4: ESD Rating: HBM (1.5 kΩ, 100 pF) > 4.5 kV EIAJ (0Ω, 200 pF) > 300V. Note 5: CL includes probe and fixture capacitance. Note 6: Generator waveforms for all tests unless otherwise ...
... except VOD, ΔVOD and VID. Note 3: All typicals are given for VCC = +3.3V and TA = +25°C, unless otherwise stated. Note 4: ESD Rating: HBM (1.5 kΩ, 100 pF) > 4.5 kV EIAJ (0Ω, 200 pF) > 300V. Note 5: CL includes probe and fixture capacitance. Note 6: Generator waveforms for all tests unless otherwise ...
MAX1858 Dual 180° Out-of-Phase PWM Step-Down Controller with Power Sequencing and POR
... Compensation Pin for Regulator 1 (REG1). Compensate REG1’s control loop by connecting a series resistor (RCOMP1) and capacitor (CCOMP1A) to GND in parallel with a second compensation capacitor (CCOMP1B) as shown in Figure 1. Open-Drain Reset Output. RST is low when either output voltage is more than ...
... Compensation Pin for Regulator 1 (REG1). Compensate REG1’s control loop by connecting a series resistor (RCOMP1) and capacitor (CCOMP1A) to GND in parallel with a second compensation capacitor (CCOMP1B) as shown in Figure 1. Open-Drain Reset Output. RST is low when either output voltage is more than ...
Installation Manual
... SW3 and 4. Selects the time the system will be bypassed, this should be a little longer that the gate takes to close on its own. SW5 and 6. Selects how long the output relay activates for. SW7 and 8. Selects the duration of the cycle. The system will cycle until the zone is restored, this is to ensu ...
... SW3 and 4. Selects the time the system will be bypassed, this should be a little longer that the gate takes to close on its own. SW5 and 6. Selects how long the output relay activates for. SW7 and 8. Selects the duration of the cycle. The system will cycle until the zone is restored, this is to ensu ...
Full Article
... output re-lift Luo converter.In[5]Proposes the new advanced converter if re lift LUO converter. A re-lift circuit, which is a new DC-DC step-up (boost) converter ,is proposed. This converter performs positive to positive DC-DC voltage increasing conversion With high output voltage The voltage lift t ...
... output re-lift Luo converter.In[5]Proposes the new advanced converter if re lift LUO converter. A re-lift circuit, which is a new DC-DC step-up (boost) converter ,is proposed. This converter performs positive to positive DC-DC voltage increasing conversion With high output voltage The voltage lift t ...
UC5181C 数据资料 dataSheet 下载
... sold subject to TI’s terms and conditions of sale supplied at the time of order acknowledgment. TI warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with TI’s standard warranty. Testing and other quality control techniques are used to th ...
... sold subject to TI’s terms and conditions of sale supplied at the time of order acknowledgment. TI warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with TI’s standard warranty. Testing and other quality control techniques are used to th ...
PowerLab Owner`s Guide
... All products manufactured by ADInstruments are intended for use in teaching and research applications and environments only. ADInstruments products are NOT intended to be used as medical devices or in medical environments. That is, no product supplied by ADInstruments is intended to be used to diagn ...
... All products manufactured by ADInstruments are intended for use in teaching and research applications and environments only. ADInstruments products are NOT intended to be used as medical devices or in medical environments. That is, no product supplied by ADInstruments is intended to be used to diagn ...
AD5520 Per Pin Parametric Measurement Unit/Source Measure Unit
... The AD5520 is a single-channel, per pin parametric measurement unit (PPMU) for use in semiconductor automatic test equipment. The part is also suited for use as a source measurement unit for instrumentation applications. It contains programmable modes to force a pin voltage and measure the correspon ...
... The AD5520 is a single-channel, per pin parametric measurement unit (PPMU) for use in semiconductor automatic test equipment. The part is also suited for use as a source measurement unit for instrumentation applications. It contains programmable modes to force a pin voltage and measure the correspon ...
Schmitt trigger
In electronics a Schmitt trigger is a comparator circuit with hysteresis implemented by applying positive feedback to the noninverting input of a comparator or differential amplifier. It is an active circuit which converts an analog input signal to a digital output signal. The circuit is named a ""trigger"" because the output retains its value until the input changes sufficiently to trigger a change. In the non-inverting configuration, when the input is higher than a chosen threshold, the output is high. When the input is below a different (lower) chosen threshold the output is low, and when the input is between the two levels the output retains its value. This dual threshold action is called hysteresis and implies that the Schmitt trigger possesses memory and can act as a bistable multivibrator (latch or flip-flop). There is a close relation between the two kinds of circuits: a Schmitt trigger can be converted into a latch and a latch can be converted into a Schmitt trigger.Schmitt trigger devices are typically used in signal conditioning applications to remove noise from signals used in digital circuits, particularly mechanical contact bounce. They are also used in closed loop negative feedback configurations to implement relaxation oscillators, used in function generators and switching power supplies.