英語 での Signal conditioner の使用例とその 日本語 への翻訳
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This signal conditioner has been utilized in a variety of industrial and automotive sensor applications, including applications that are limited to performing a compensation with only two temperature points.
Other Considerations To completely turn off the signal conditioner and initiate a fresh startup, the VDD supply must be pulled below 1.5V before returning to a normal operating value.
The Hard_init function sets the communication baud rate between the signal conditioner and the computer to 28.8K the baud rate can be changed later.
A signal conditioner is an application-specific IC(ASIC) that performs compensation, amplification, and calibration of the input signal, normally over a range of temperatures.
Frequently Asked Questions(FAQs) on the MAX1464 Dig- Maxim Abstract: The MAX1464 is a high-performance, low-cost, low-power, multichannel, microprocessor-based, digital sensor signal conditioner that integrates flash memory and a temperature sensor.
FAQs: MAX1464- Maxim The MAX1464 is a high-performance, low-cost, low-power, multichannel, microprocessor-based, digital sensor signal conditioner that integrates flash memory and a temperature sensor.
Maximizing the Conversion Resolution of the MAX1464 The MAX1464 is a high-performance, low-cost, low-power, multichannel, microprocessor-based digital-sensor signal conditioner with on-chip flash memory and a temperature sensor.
MAX1452 Nonlinearity-Correction Application Circuit- Maxim Abstract: The MAX1452 is a high-performance analog signal conditioner that has been widely accepted and is used in a variety of industrial and automotive applications.
Introduction In sensor applications that have nonlinear outputs(such as humidity sensors), it is important that the signal conditioner be able to correct the nonlinearity of the sensor output.
MAX1450 Low-Cost, 1%-Accurate Signal Conditioner for Piezoresistive Sensors- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX1450 sensor signal conditioner is optimized for piezoresistive sensor calibration and temperature compensation.
MAX72463 SAS-SATA Signal Conditioner- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX72463 signal conditioner cleans up intersymbol interference(ISI) and reduces jitter to extend the reach of 6Gbps SAS and SATA signals over FR4 or copper cables.
MAX72466 PCIe Gen2.0 Signal Conditioner- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX72466 signal conditioner cleans up intersymbol interference(ISI) and reduces jitter to extend the reach of 5Gbps PCIe® signals over FR4 or copper cables.
A quick test would be to set up the signal conditioner and monitor the output to see the low-frequency noise, then change the DAC digital value by one or two bits and see if the low-frequency noise disappears or moves to some other frequency.
Evaluation board-Interface box or KEY for communication with the signal conditioner -RS-232 cable to connect the KEY to the computer -10-pin ribbon cable to connect the evaluation board to the KEY-Samples The latest version of the EV kit software can be downloaded from the Maxim website.
Excitation current is ratiometric to VDD. Values of resistors R1 and R2 in Figure 1 must be selected such that the current(IR1) drawn from the VDD line will not overload the power supply or does not compromise the sourcing capability of the VDD line to supply the MAX1464 signal conditioner.
Before cycling the VDD supply, the signal conditioner's temporary registers are read and then written back to the signal conditioner after the VDD is re-applied In effect, keeping the power cycling transparent from the user.
With the MAX1452 signal conditioner, two compensation methods are possible: The first method performs linear extrapolation(of the FSO and OFF DAC values) between the two compensation temperature points, and loads each element of the OFF and FSO lookup tables with unique temperature coefficients to correct TC error of the input signal. .
Sensor Signal Conditioners- Maxim Maxim's fully integrated, high-precision sensor signal conditioners(SSC) ICs simplify sensor design and save cost and board space.
A buffered MAX5134 four-channel, 16-bit digital-to-analog converter(DAC) generates the low voltage signals that drive the inputs of four MAX15500 signal conditioners output drivers.
The only output from the signal conditioner is analog voltage.