Encoder Resolution | Encoder Resolution Calculation | Encoder Resolution in PLC | encoder in hindi |
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- Опубликовано: 16 окт 2024
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The resolution of an encoder refers to its ability to provide fine positional or angular measurements. It is typically expressed in terms of pulses per unit of measurement (e.g., pulses per revolution, pulses per inch, or pulses per millimeter). To calculate the resolution of an encoder, you need to consider a few key factors:
1. *Encoder Type:* Determine whether you are working with an incremental or absolute encoder, as the calculation method may vary between these types.
2. *Encoder's Output Signal:* Find out the output signal type of the encoder, which can be square wave (TTL or HTL), sine/cosine, or gray code.
Here are the resolution calculation methods for different encoder types:
*For Incremental Encoders:*
Resolution (Pulses per unit) = (Number of Pulses per Cycle) / (Measurement Unit per Cycle)
*Number of Pulses per Cycle:* This depends on the number of lines or slots on the encoder disk. Count the number of lines or slots on the encoder disk. This is sometimes specified in the encoder's datasheet as "Pulses per Cycle."
*Measurement Unit per Cycle:* Determine the linear or angular distance covered by one full cycle of the encoder (typically 360 degrees for single-turn encoders). If you're working in linear units (e.g., inches or millimeters), the measurement unit per cycle corresponds to the circumference of the encoder disk.
*For Absolute Encoders:*
Resolution (Pulses per unit) = 2^n / (Measurement Unit per Revolution)
*n:* The number of bits in the encoder's binary or Gray code. Each bit doubles the resolution. For example, if you have a 12-bit absolute encoder, resolution = 2^12 / (Measurement Unit per Revolution).
*Measurement Unit per Revolution:* This is the linear or angular distance covered in one full revolution. It depends on the specific encoder's mechanical design and specifications.
*For Sinusoidal Encoders:*
Resolution (Pulses per unit) = (Number of Full Sine-Cosine Periods) / (Measurement Unit per Revolution)
*Number of Full Sine-Cosine Periods:* This is the number of complete sine-cosine wave periods within one full rotation. For a single-turn encoder, this is usually one. For a multiturn encoder, it depends on the number of turns or revolutions it can measure.
*Measurement Unit per Revolution:* This is the linear or angular distance covered in one full revolution, similar to absolute encoders.
To accurately calculate the resolution, you'll need to consult the encoder's datasheet or manual for specific values, such as the number of lines or slots on the encoder disk, the number of bits in the code (for absolute encoders), and the mechanical specifications. The resolution is a crucial parameter for your control system as it directly affects the accuracy of your position or velocity measurements.
Encoder Resolution | Encoder Resolution Calculation | Encoder Resolution in PLC | encoder in hindi |
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sir aap hindi me bahot ache se samjate ho , encoder ka plc ladder programme banaye
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Pipe lenth measure Konasa encoder chahia
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Great work, can you make series on time and angle base machine with virtual master in delta AX series motion control? Please contact me I want to talk with you
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i will cover all topic in this encoder series like.... use of high speed counter, plc ladder logic, wiring & encoder specification. please stay with us rathod ji.
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Hello sir. Please help me as soon as possible ...
I am doing connect weintek hmi tk6070ip with fx3u rs232 bd plc fx3u128mr. but not make connecting with hmi...
Fx3u bd...hmi Tk6070ip
2 rxd----------txd 6
3 txd----------rxd 9
5 gnd---------5gnd
Please help me i am employ so i stress in case
Weintek HMI TK6070iP (RS232) - Mitsubishi FX3U PLC (RS232)
Pin 2 (RXD) - Pin 2 (TXD)
Pin 3 (TXD) - Pin 3 (RXD)
Pin 5 (GND) - Pin 5 (GND)
Make sure to check the documentation for your specific Weintek HMI model and the communication module in your FX3U PLC to confirm the exact pinout and wiring details. The pin numbers mentioned here are standard RS232 pin numbers. ensure that the communication settings (baud rate, data bits, parity, stop bits) on both the HMI and PLC are configured to match.
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