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VMIVME-3122 16位模数转换器 将模拟信号转换为数字信号的电子设备

GE-VMIVME-3122  模数转换器(Analog-to-Digital Converter,简称 ADC)是一种将模拟信号转换为数字信号的电子设备。它是数字信号处理和数字系统中的重要组成部分。

GE-VMIVME-3122  ADC 的主要功能是将连续的模拟信号(如电压、电流、声音等)转换为离散的数字信号,以便数字系统进行处理、存储和传输。ADC 的转换过程通常包括采样、量化和编码三个步骤。


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VMIVME-3122 16位模数转换器 将模拟信号转换为数字信号的电子设备

GE-VMIVME-3122(5)_副本.jpg

Abaco Systems / VMIC VMIVME-3122-000高性能16位模数转换器(ADC)

使用GE Fanuc / VMIC VMIVME-3122-000高性能16位模数转换器(ADC),并且状态良好。

部件编号:332-003122-000

vmivme - 3122 - 000

•输入过滤器选项:无过滤器

•通道数量:64通道,高性能

•输入类型:差分模拟输入通道与96针非锁存连接器

产品系列:598-01-59 96-8528,5998015968528


GE-VMIVME-3122  模数转换器(Analog-to-Digital Converter,简称 ADC)是一种将模拟信号转换为数字信号的电子设备。它是数字信号处理和数字系统中的重要组成部分。


GE-VMIVME-3122  ADC 的主要功能是将连续的模拟信号(如电压、电流、声音等)转换为离散的数字信号,以便数字系统进行处理、存储和传输。ADC 的转换过程通常包括采样、量化和编码三个步骤。


采样是指对模拟信号进行离散化,即按照一定的时间间隔对模拟信号进行取值。量化是将采样得到的模拟值映射为有限个数字值的过程,通常采用二进制编码方式。编码是将量化后的数字值转换为二进制代码的过程。


GE-VMIVME-3122  ADC 的性能指标包括分辨率、转换速度、精度、动态范围等。分辨率是指 ADC 能够分辨的最小模拟量变化,通常用位数表示。转换速度是指 ADC 完成一次转换所需的时间,通常用采样率表示。精度是指 ADC 转换结果与真实值之间的误差,通常用百分比或满量程误差表示。动态范围是指 ADC 能够处理的输入信号的最大值与最小值之比。


GE-VMIVME-3122  ADC 广泛应用于各种电子设备中,如数字音频播放器、数字相机、医疗仪器、工业控制系统等。随着集成电路技术的不断发展,ADC 的性能不断提高,成本不断降低,应用范围也不断扩大。

VMIVME-3122 16位模数转换器 将模拟信号转换为数字信号的电子设备

GE-VMIVME-3122(5)_副本.jpg

Abaco Systems/VMIC VMIVME-3122-000 High Performance 16-bit Analog-to-Digital Converter (ADC)

Use GE Fanuc/VMIC VMIVME-3122-000 High performance 16-bit analog-to-digital converter (ADC) and in good condition.

Part number :332-003122-000

vmivme - 3122 - 000

• Enter filter options: No filter

• Number of channels :64 channels, high performance

• Input type: Differential analog input channel with 96-pin non-latching connector

Product Series: 598-01-5996-8528,5998015968528


The GE-VMIVME-3122 Analog-to-Digital Converter (ADC) is an electronic device that converts an Analog signal to a Digital signal. It is an important part of digital signal processing and digital system.


The main function of the GE-VMIVME-3122 ADC is to convert continuous analog signals (such as voltage, current, sound, etc.) into discrete digital signals for digital systems to process, store, and transmit. The conversion process of ADC usually includes three steps: sampling, quantization and coding.


Sampling refers to the discretization of the analog signal, that is, the value of the analog signal is taken according to a certain time interval. Quantization is the process of mapping a sampled analog value to a finite number of digital values, usually in binary encoding. Encoding is the process of converting quantized numeric values into binary code.


The performance parameters of GE-VMIVME-3122 ADC include resolution, conversion speed, accuracy, dynamic range, etc. Resolution refers to the smallest analog change that an ADC can resolve, usually expressed in bits. The conversion speed is the time it takes the ADC to complete a conversion, usually expressed as the sampling rate. Accuracy refers to the error between the ADC conversion result and the true value, usually expressed as a percentage or full scale error. Dynamic range refers to the ratio of the maximum to the minimum value of the input signal that the ADC can process.


The GE-VMIVME-3122 ADC is widely used in a variety of electronic devices, such as digital audio players, digital cameras, medical instruments, industrial control systems, etc. With the continuous development of integrated circuit technology, the performance of ADC is constantly improved, the cost is constantly reduced, and the application range is constantly expanded.

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TRICON4000103-510
BENTLY3500/22M 138607-01
ABB07DC92D GJR5252200R0101
ICS TRIPL EXT8850
ABBLDGRB-01 3BSE013177R1
ABBLDGRB-01 3BSE013177R1
EPROPR9376/010-01 1配件螺丝
PROSOFT定制光盘


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