CN-0030: AD5390/AD5391/AD5392通道监控功能
... The AD7476 ADC is a SAR ADC that offers 12-bit resolution, single 2.35 V to 5.25 V power supply, integrated reference, low power operation, small form factor, and serial interface, with throughput rates up to 1 MSPS in a 6-lead SOT-23 package. The reference for the part is taken internally from VDD ...
... The AD7476 ADC is a SAR ADC that offers 12-bit resolution, single 2.35 V to 5.25 V power supply, integrated reference, low power operation, small form factor, and serial interface, with throughput rates up to 1 MSPS in a 6-lead SOT-23 package. The reference for the part is taken internally from VDD ...
Topic: High Performance Data Acquisition Systems Analog
... many different key aspects of various types of data acquisition systems and how to design and develop them to achieve the overall desired result. The most elementary system architecture configuration would be to simply connect the sensor output directly to the analog to digital convertor input and t ...
... many different key aspects of various types of data acquisition systems and how to design and develop them to achieve the overall desired result. The most elementary system architecture configuration would be to simply connect the sensor output directly to the analog to digital convertor input and t ...
CHAPTER 1 INTRODUCTION Since the first commercial Analog to
... were two of the Analog Devices AD7984, a successive approximation A/D with 18 bits of resolution and a maximum sampling rate of 1.33 MSPS. For a 10kHz signal, the converter has a SINAD of 98 dB, indicating an ENOB of 16.5 The primary channel had a gain stage of 2 selected. The data was stored in a S ...
... were two of the Analog Devices AD7984, a successive approximation A/D with 18 bits of resolution and a maximum sampling rate of 1.33 MSPS. For a 10kHz signal, the converter has a SINAD of 98 dB, indicating an ENOB of 16.5 The primary channel had a gain stage of 2 selected. The data was stored in a S ...
spring 2016 - Ecs.csus.edu
... The pulse train block s(t): Two important parameters will have to be designed for this block. The first is the pulse amplitude, and the pulse period T sec. You can assume a rectangular pulse with 50 % duty cycle (i.e. half period on, and half period off). Since this pulse train samples the source s ...
... The pulse train block s(t): Two important parameters will have to be designed for this block. The first is the pulse amplitude, and the pulse period T sec. You can assume a rectangular pulse with 50 % duty cycle (i.e. half period on, and half period off). Since this pulse train samples the source s ...
The Common-Gate Configuration
... We set Vi = 0 and apply a test voltage Vx. Since there are no capacitances in the circuit, the output impedance is simply an output resistance, which is defined as Ro = Vx / Ix ...
... We set Vi = 0 and apply a test voltage Vx. Since there are no capacitances in the circuit, the output impedance is simply an output resistance, which is defined as Ro = Vx / Ix ...
Presentation
... ADC inputs to read battery voltage, current, and 2 spare channels with range 10.24, 16.8V Used TI TPS5430 5V 3A step down, TLV1117 3.3V 800mA linear, and TPS61085 12.6V 300mA step up regulators ...
... ADC inputs to read battery voltage, current, and 2 spare channels with range 10.24, 16.8V Used TI TPS5430 5V 3A step down, TLV1117 3.3V 800mA linear, and TPS61085 12.6V 300mA step up regulators ...
Safety Issues with Medtronic Long Range Telemetry Implants
... Synthesizer: Reference RF frequency used to convert from baseband to RF or from RF to baseband. – Usually very accurate frequency & low-noise Mixers: Converts baseband signal into a representation of the baseband signal at an RF frequency (and vice versa). – Based on trigonometric identity: ...
... Synthesizer: Reference RF frequency used to convert from baseband to RF or from RF to baseband. – Usually very accurate frequency & low-noise Mixers: Converts baseband signal into a representation of the baseband signal at an RF frequency (and vice versa). – Based on trigonometric identity: ...
CN-0008 利用AD5380多通道DAC进行输出通道监控
... CIRCUIT DESCRIPTION The circuit shown in Figure 1 uses the AD5380 40-channel, 14-bit DAC, which includes an internal multiplexer that allows all 40 output channels to be individually routed to a single output (MON_OUT) pin. This pin is then monitored by an external ADC (AD7476). This approach utiliz ...
... CIRCUIT DESCRIPTION The circuit shown in Figure 1 uses the AD5380 40-channel, 14-bit DAC, which includes an internal multiplexer that allows all 40 output channels to be individually routed to a single output (MON_OUT) pin. This pin is then monitored by an external ADC (AD7476). This approach utiliz ...
ATE32CutSheet - Actuation Test Equipment Company
... Volt. Special hysteresis levels may be provided if requested when ordering the module to meet installation-specific requirements. This small-signal de-sensitization of the Model ATE-32 will improve the measurement of the frequency output of a generator operating at low speed without the application ...
... Volt. Special hysteresis levels may be provided if requested when ordering the module to meet installation-specific requirements. This small-signal de-sensitization of the Model ATE-32 will improve the measurement of the frequency output of a generator operating at low speed without the application ...
INVERTERS - SolarEdge
... UL1741, UL1699B, UL1998, CSA 22.2 IEEE1547 FCC part15 class B 3/4” minimum / 12-6 AWG 3/4” minimum / 12-6 AWG 2 pairs 3 pairs (with fuses on plus & minus)(4) 21 x 12.5 x 10.5 / 540 x 315 x 260 30.5 x 12.5 x 10.5 / 775 x 315 x 260 ...
... UL1741, UL1699B, UL1998, CSA 22.2 IEEE1547 FCC part15 class B 3/4” minimum / 12-6 AWG 3/4” minimum / 12-6 AWG 2 pairs 3 pairs (with fuses on plus & minus)(4) 21 x 12.5 x 10.5 / 540 x 315 x 260 30.5 x 12.5 x 10.5 / 775 x 315 x 260 ...
Homework 1 - web page for staff
... EIE 211 Homework 1 Due next class 1. The circuit in figure below utilizes an ideal op amp. a) Find I1, I2, I3 and Vx b) If Vo is not to be lower than -13V, find the maximum allowed value for RL ...
... EIE 211 Homework 1 Due next class 1. The circuit in figure below utilizes an ideal op amp. a) Find I1, I2, I3 and Vx b) If Vo is not to be lower than -13V, find the maximum allowed value for RL ...
Lior - Test Receiver
... Power can be limited by slowing down the rate of information transfer, or by limiting the voltage swing of the signal. However this is fraught with risk, since as voltage swings become smaller, the noise immunity offered by signal thresholding is lowered as well. ...
... Power can be limited by slowing down the rate of information transfer, or by limiting the voltage swing of the signal. However this is fraught with risk, since as voltage swings become smaller, the noise immunity offered by signal thresholding is lowered as well. ...
Analog-to-digital converter
An analog-to-digital converter (ADC, A/D, or A to D) is a device that converts a continuous physical quantity (usually voltage) to a digital number that represents the quantity's amplitude.The conversion involves quantization of the input, so it necessarily introduces a small amount of error. Furthermore, instead of continuously performing the conversion, an ADC does the conversion periodically, sampling the input. The result is a sequence of digital values that have been converted from a continuous-time and continuous-amplitude analog signal to a discrete-time and discrete-amplitude digital signal.An ADC is defined by its bandwidth (the range of frequencies it can measure) and its signal to noise ratio (how accurately it can measure a signal relative to the noise it introduces). The actual bandwidth of an ADC is characterized primarily by its sampling rate, and to a lesser extent by how it handles errors such as aliasing. The dynamic range of an ADC is influenced by many factors, including the resolution (the number of output levels it can quantize a signal to), linearity and accuracy (how well the quantization levels match the true analog signal) and jitter (small timing errors that introduce additional noise). The dynamic range of an ADC is often summarized in terms of its effective number of bits (ENOB), the number of bits of each measure it returns that are on average not noise. An ideal ADC has an ENOB equal to its resolution. ADCs are chosen to match the bandwidth and required signal to noise ratio of the signal to be quantized. If an ADC operates at a sampling rate greater than twice the bandwidth of the signal, then perfect reconstruction is possible given an ideal ADC and neglecting quantization error. The presence of quantization error limits the dynamic range of even an ideal ADC, however, if the dynamic range of the ADC exceeds that of the input signal, its effects may be neglected resulting in an essentially perfect digital representation of the input signal.An ADC may also provide an isolated measurement such as an electronic device that converts an input analog voltage or current to a digital number proportional to the magnitude of the voltage or current. However, some non-electronic or only partially electronic devices, such as rotary encoders, can also be considered ADCs. The digital output may use different coding schemes. Typically the digital output will be a two's complement binary number that is proportional to the input, but there are other possibilities. An encoder, for example, might output a Gray code.The inverse operation is performed by a digital-to-analog converter (DAC).