TL1431 Precision Programmable Reference
... DESCRIPTION/ORDERING INFORMATION The TL1431 is a precision programmable reference with specified thermal stability over automotive, commercial, and military temperature ranges. The output voltage can be set to any value between VI(ref) (approximately 2.5 V) and 36 V with two external resistors (see ...
... DESCRIPTION/ORDERING INFORMATION The TL1431 is a precision programmable reference with specified thermal stability over automotive, commercial, and military temperature ranges. The output voltage can be set to any value between VI(ref) (approximately 2.5 V) and 36 V with two external resistors (see ...
AZV331 Description Pin Assignments
... The AZV331 is a low voltage 2.5V to 5.5V, single comparator, which has a very low supply current of 60µA, making the part an excellent choice for portable electronic systems. The device is pin-for-pin compatible replacement of the LMV331. The AZV331 is built with BiCMOS process with bipolar input an ...
... The AZV331 is a low voltage 2.5V to 5.5V, single comparator, which has a very low supply current of 60µA, making the part an excellent choice for portable electronic systems. The device is pin-for-pin compatible replacement of the LMV331. The AZV331 is built with BiCMOS process with bipolar input an ...
MAX15014–MAX15017 1A, 4.5V to 40V Input Buck Converters with General Description
... Space-Saving (6mm x 6mm) Thermally Enhanced 36-Pin TQFN Package ...
... Space-Saving (6mm x 6mm) Thermally Enhanced 36-Pin TQFN Package ...
TPA2036D1 数据资料 dataSheet 下载
... consists of a differential amplifier and a common-mode amplifier. The differential amplifier ensures that the amplifier outputs a differential voltage on the output that is equal to the differential input times the gain. The common-mode feedback ensures that the common-mode voltage at the output is ...
... consists of a differential amplifier and a common-mode amplifier. The differential amplifier ensures that the amplifier outputs a differential voltage on the output that is equal to the differential input times the gain. The common-mode feedback ensures that the common-mode voltage at the output is ...
AD5735 数据手册DataSheet下载
... unloaded, over supplies Current output mode on all channels Voltage output mode on all channels, outputs unloaded, over supplies Current output mode on all channels VIH = DVDD, VIL = DGND, internal oscillator running, over supplies Outputs unloaded, over supplies Per channel, voltage output mode, ou ...
... unloaded, over supplies Current output mode on all channels Voltage output mode on all channels, outputs unloaded, over supplies Current output mode on all channels VIH = DVDD, VIL = DGND, internal oscillator running, over supplies Outputs unloaded, over supplies Per channel, voltage output mode, ou ...
GTL2003 1. General description 8-bit bidirectional low voltage translator
... For the bidirectional clamping configuration, higher voltage to lower voltage or lower voltage to higher voltage, the GREF input must be connected to DREF and both pins pulled to HIGH side VDD1 through a pull-up resistor (typically 200 k). A filter capacitor on DREF is recommended. The processor ou ...
... For the bidirectional clamping configuration, higher voltage to lower voltage or lower voltage to higher voltage, the GREF input must be connected to DREF and both pins pulled to HIGH side VDD1 through a pull-up resistor (typically 200 k). A filter capacitor on DREF is recommended. The processor ou ...
bq2970 Li-Ion/Li Polymer Battery Protection IC (Rev. D)
... The junction-to-ambient thermal resistance under natural convection is obtained in a simulation on a JEDEC-standard, high-K board, as specified in JESD51-7, in an environment described in JESD51-2a. The junction-to-case (top) thermal resistance is obtained by simulating a cold plate test on the pack ...
... The junction-to-ambient thermal resistance under natural convection is obtained in a simulation on a JEDEC-standard, high-K board, as specified in JESD51-7, in an environment described in JESD51-2a. The junction-to-case (top) thermal resistance is obtained by simulating a cold plate test on the pack ...
AD5301 数据手册DataSheet 下载
... 5.5 V supply, consuming 120 μA at 3 V. The on-chip output amplifier allows rail-to-rail output swing with a slew rate of 0.7 V/μs. It uses a 2-wire (I2C-compatible) serial interface that operates at clock rates up to 400 kHz. Multiple devices can share the same bus. ...
... 5.5 V supply, consuming 120 μA at 3 V. The on-chip output amplifier allows rail-to-rail output swing with a slew rate of 0.7 V/μs. It uses a 2-wire (I2C-compatible) serial interface that operates at clock rates up to 400 kHz. Multiple devices can share the same bus. ...
LOW NOISE, HIGH SLEW RATE, UNITY GAIN STABLE VOLTAGE FEEDBACK AMPLIFIER THS4271-EP FEATURES
... gain stable voltage-feedback amplifier designed to run from supply voltages as low as 5 V. The combination of low-noise, high slew rate, wide bandwidth, low distortion, and unity gain stability make the THS4271 a high performance device across multiple ac specifications. Designers using the THS4271 ...
... gain stable voltage-feedback amplifier designed to run from supply voltages as low as 5 V. The combination of low-noise, high slew rate, wide bandwidth, low distortion, and unity gain stability make the THS4271 a high performance device across multiple ac specifications. Designers using the THS4271 ...
MAX6791–MAX6796 High-Voltage, Micropower, Single/Dual Linear Regulators with Supervisory Functions General Description
... single-/dual-output linear regulators are ideal for automotive applications. The devices offer a wide 5V to 72V operating input range, allowing them to withstand automotive load-dump conditions while consuming only 68µA. The MAX6791–MAX6794 are dual-output regulators capable of supplying up to 150mA ...
... single-/dual-output linear regulators are ideal for automotive applications. The devices offer a wide 5V to 72V operating input range, allowing them to withstand automotive load-dump conditions while consuming only 68µA. The MAX6791–MAX6794 are dual-output regulators capable of supplying up to 150mA ...
AD5737 数据手册DataSheet下载
... AVDD = VBOOST_x = 15 V; DVDD = 2.7 V to 5.5 V; AVCC = 4.5 V to 5.5 V; dc-to-dc converter disabled; AGND = DGND = GNDSWx = 0 V; REFIN = 5 V; RL = 300 Ω; all specifications TMIN to TMAX, unless otherwise noted. ...
... AVDD = VBOOST_x = 15 V; DVDD = 2.7 V to 5.5 V; AVCC = 4.5 V to 5.5 V; dc-to-dc converter disabled; AGND = DGND = GNDSWx = 0 V; REFIN = 5 V; RL = 300 Ω; all specifications TMIN to TMAX, unless otherwise noted. ...
Overhead-Conscious Voltage Selection for Dynamic and Leakage
... this schedule exhibits only two mode transitions (O1 and O3 ) within the tasks (intra switches), while the switch between the two tasks O2 (inter switch) has been eliminated. The overall energy consumption has been reduced to E = 43.6µJ, a reduction by 23.8% compared to the schedule given in Fig. 2( ...
... this schedule exhibits only two mode transitions (O1 and O3 ) within the tasks (intra switches), while the switch between the two tasks O2 (inter switch) has been eliminated. The overall energy consumption has been reduced to E = 43.6µJ, a reduction by 23.8% compared to the schedule given in Fig. 2( ...
SP334 数据资料DataSheet下载
... the requirements of clock, data, and control line signal levels. Unused driver inputs can be left floating; however, to ensure a desired state with no input signal, pull–up resistors to +5V or pull–down resistors to ground are suggested. Since the driver inputs are both TTL or CMOS compatible, any v ...
... the requirements of clock, data, and control line signal levels. Unused driver inputs can be left floating; however, to ensure a desired state with no input signal, pull–up resistors to +5V or pull–down resistors to ground are suggested. Since the driver inputs are both TTL or CMOS compatible, any v ...
74VCX16374 Low Voltage 16-Bit D-Type Flip-Flops with 3.6V Tolerant Inputs and Outputs 7
... the safety of the device cannot be guaranteed. The device should not be operated at these limits. The parametric values defined in the Electrical Characteristics tables are not guaranteed at the Absolute Maximum Ratings. The “Recommended Operating Conditions” table will define the conditions for act ...
... the safety of the device cannot be guaranteed. The device should not be operated at these limits. The parametric values defined in the Electrical Characteristics tables are not guaranteed at the Absolute Maximum Ratings. The “Recommended Operating Conditions” table will define the conditions for act ...
Single-Ended Signal Conditioning Circuit for
... similar to that of variant a, in that the negative section of the DC-bus can be taken as the common reference potential. However, the disadvantage is the increased stray inductance. In high dynamic drives and high-power applications, current is usually measured in the output phases of the inverter ( ...
... similar to that of variant a, in that the negative section of the DC-bus can be taken as the common reference potential. However, the disadvantage is the increased stray inductance. In high dynamic drives and high-power applications, current is usually measured in the output phases of the inverter ( ...
EV10AS180AGS Low power L-Band 10-bit 1.5 GSps ADC
... The gain control pin GA and offset control OA are provided to adjust the ADC gain and offset transfer function. The swing of ADC output buffers can be lowered through the SA pin. A Sampling Delay Adjust function (SDA) is provided to fine tune the ADC aperture delay, for applications requesting the i ...
... The gain control pin GA and offset control OA are provided to adjust the ADC gain and offset transfer function. The swing of ADC output buffers can be lowered through the SA pin. A Sampling Delay Adjust function (SDA) is provided to fine tune the ADC aperture delay, for applications requesting the i ...
ADITYA COLLEGE OF ENGG.MADANAPALLE (ACEM) III B.Tech., I
... There are many, many ways to design an electronic logic circuit. The first electrically controlled logic circuits, developed at Bell Laboratories in 1930s, were based on relays. In the mid-1940s, the first electronic digital computer, the ENIAC, used logic circuits based on vacuum tubes. it was 100 ...
... There are many, many ways to design an electronic logic circuit. The first electrically controlled logic circuits, developed at Bell Laboratories in 1930s, were based on relays. In the mid-1940s, the first electronic digital computer, the ENIAC, used logic circuits based on vacuum tubes. it was 100 ...
AN1299
... For this reason we must use the bootstrap principle, normally accomplished by a highvoltage fast-recovery diode (Figure 1). The bootstrap capacitor is charged when the Vout goes below the IC supply voltage. In this situation the current flows from the IC supply (Vcc pin) to the capacitor (Figure 3). ...
... For this reason we must use the bootstrap principle, normally accomplished by a highvoltage fast-recovery diode (Figure 1). The bootstrap capacitor is charged when the Vout goes below the IC supply voltage. In this situation the current flows from the IC supply (Vcc pin) to the capacitor (Figure 3). ...
MAX5946 Dual PCI Express, Hot-Plug Controller General Description
... The MAX5946 dual hot-plug controller is designed for PCI Express™ applications. The device provides hotplug control for 12V, 3.3V, and 3.3V auxiliary supplies of two PCI express slots. The MAX5946’s logic inputs/outputs allow interfacing directly with the system hot-plug management controller or thr ...
... The MAX5946 dual hot-plug controller is designed for PCI Express™ applications. The device provides hotplug control for 12V, 3.3V, and 3.3V auxiliary supplies of two PCI express slots. The MAX5946’s logic inputs/outputs allow interfacing directly with the system hot-plug management controller or thr ...
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.