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G123-825-001 缓冲放大器 具有和动态灵活的特性

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  • 美国产地
福建 漳州 5天内发货 10件
厦门雄霸电子商务有限公司漳州分公司 4年
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MOOG G123-825-001 缓冲放大器

MOOG G123-825-001 缓冲放大器接口用于标准PLC±10v, 4-20ma的模拟输出信号的输入端和穆格阀的输出端。这就解决了这些信号与阀门要求之间的兼容住问题。机械反馈(mfb)阀输入:G123-825接口的一端是伺服放大器的电流输出,另一端是穆格阀。这使得旧的mfb阀被现代电子反馈(efb)阀所取代,而无需改变伺服放大器。缓冲放大器采用现有的伺服放大器输出,并将其转换为efb兼容信号。输入滤波器:G123-825有一个滤波器来去除输入信号中的噪声。滤波器时间常数是开关可选的。开关选择和,所以大量的时间常数是可用的。通用编码器和灵活的计数器模块CD522模块对定制的解决方案来说具有和动态灵活的特性。

MOOG G123-825-001 缓冲放大器它本身集成两路独立的编码器输入,并且能够用Control Builder软件设置10种不同的操作模式,且高计数频率达300kHz。根据不同的编码器模式,CD522也可以集成PWM脉冲验出或普通的验入和验出。不同类型的编码器。它们的信号、电压、格式和使用方法也可能不同。编码器的选择完全取决于应用要求,例如用于位置、角度或速度的检测。在某些情况下,增量式编码器是更好的选择,但在另外的情况下,可能就需要选择编码器。




The MOOG G123-825-001 buffer amplifier interface is used for the input end of the standard PLC ± 10v, 4-20ma analog output signal and the output end of the Moog valve. This solves the compatibility issue between these signals and valve requirements. Mechanical feedback (mfb) valve input: One end of the G123-825 interface is the current output of the servo amplifier, and the other end is the Mug valve. This allows the old MFB valve to be replaced by modern electronic feedback (EFB) valves without the need to change the servo amplifier. The buffer amplifier adopts the existing servo amplifier output and converts it into an EFB compatible signal. Input filter: G123-825 has a filter to remove noise from the input signal. The filter time constant is switch selectable. Switch selection and, therefore, a large number of time constants are available. The universal encoder and flexible counter module CD522 have dynamic and flexible characteristics for customized solutions.

The MOOG G123-825-001 buffer amplifier itself integrates two independent encoder inputs and can be set to 10 different operating modes using Control Builder software, with a high counting frequency of up to 300kHz. According to different encoder modes, the CD522 can also integrate PWM pulse detection or ordinary input and output. Different types of encoders. Their signals, voltages, formats, and usage methods may also differ. The choice of encoder depends entirely on the application requirements, such as for detecting position, angle, or speed. In some cases, incremental encoders are a better choice, but in other cases, it may be necessary to choose an encoder.


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