tag:blogger.com,1999:blog-10519567501010713652024-03-13T05:34:16.705-07:00Neramitr # ECE researchesECER, mit9bkk@gmail.com
mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.comBlogger11125tag:blogger.com,1999:blog-1051956750101071365.post-46047987410103505722022-05-01T04:42:00.002-07:002023-07-30T07:22:40.782-07:00Engineering of Robotics Industry & Computer (ERIC) , 2008-2022<div class="separator"><br /></div><span style="font-family: inherit;"><span style="color: #141823;"><span style="font-size: 14.4444px; line-height: 19.32px;">นาย เนรมิธ จิรกาญจน์ไพศาล, </span></span></span><br />
<br />Add Line : <a href="https://line.me/ti/p/FrXxj_2wv2">Click here คลิ๊กตรงนี้</a> <br /><div><span style="color: #141823; font-size: 14.4444px; line-height: 19.32px;"><br /></span><div><span style="color: #141823; font-size: 14.4444px; line-height: 19.32px;">NERAMITR CHIRAKANPHAISARN, Curriculum vitae</span><div><span style="color: #141823;"><span style="font-size: 14.4444px;"><br /></span></span></div><div><span style="color: #141823;"><span style="font-size: 14.4444px;">Research evidence areas :</span></span></div><div><span style="color: #141823;"><span style="font-size: 14.4444px;"> -GoogleScholar</span></span></div><div><span style="color: #141823;"><span style="font-size: 14.4444px;"> <a href="https://scholar.google.com/citations?user=zXscJoAAAAAJ&hl=en" target="_blank">https://scholar.google.com/citations?user=zXscJoAAAAAJ&hl=en</a></span></span></div><div><span style="font-family: inherit;"><span style="color: #141823;"><span style="font-size: 14.4444px;"> -Researchgate.net</span></span></span></div><div><span style="font-family: inherit;"><span style="color: #141823;"><span style="font-size: 14.4444px;"> <a href="https://www.researchgate.net/profile/Neramitr_Chirakanphaisarn2" target="_blank">https://www.researchgate.net/profile/Neramitr_Chirakanphaisarn2</a><br /></span></span>-Scopus</span></div><div><span style="font-family: inherit;"> <a href="https://www.scopus.com/authid/detail.uri?authorId=55871131600">https://www.scopus.com/authid/detail.uri?authorId=55871131600</a></span></div><div><span style="font-family: inherit;"><br /></span></div><div><span style="font-family: inherit;">Researches in 2008-2022</span><br />
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<div style="text-align: center;"><span style="font-family: inherit;">:: รางวัลและผลงาน ด้านวิศวกรรมไฟฟ้า อิเล็กทรอนิกส์ คอมพิวเตอร์ ::</span></div><div style="text-align: center;">
<span style="font-family: inherit;">:: Innovative Awards and Project of Electrical Engineering, Embedded system, Computer Engineering ::</span></div>
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รางวัลด้าน Embedded Engineering , SSIC </div>
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รางวัลด้าน Embedded Engineering (1st award)</div>
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รางวัลด้าน IoT and Robotics Project (1st award)</div>
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รางวัลด้าน Medical Science and IoT project </div>
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รางวัลด้าน Embedded System Project </div>
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รางวัลด้าน Medical project </div>
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รางวัลด้าน Embedded project </div>
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รางวัลด้าน Embedded and Medical project</div>
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รางวัลด้าน Rehabilitation Engineering Project</div>
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รางวัลด้าน Rehabilitation Engineering , SSIC </div>
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รางวัลด้าน Embedded control project</div>
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รางวัลด้าน Machine Learning Project</div>
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รางวัลด้าน Embedded project </div>
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รางวัลด้าน Embedded control project</div>
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รางวัลด้าน Medical and AI project</div>
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รางวัลด้าน Sport Science project (Individual award, Project I)</div>
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รางวัลด้าน Assistive muscle and IoT project (Team award, Project II)</div>
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<span style="text-align: center;"> รางวัลด้าน Assistive muscle and IoT project (Team)</span><div><div style="text-align: center;"><br /></div><div style="text-align: center;"><br /></div><div style="text-align: center;"><br /></div><div style="text-align: center;"><br /></div>
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รางวัลด้าน Sport Science project</div>
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รางวัลด้าน Assistive Project and IoT project</div>
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รางวัลด้าน Medical project</div>
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รางวัลด้าน Assistive Technology Project and IoT project</div>
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รางวัลด้าน medical AI Project</div><div class="separator" style="clear: both; text-align: center;"><br /></div><div class="separator" style="clear: both; text-align: center;"><br /></div><div class="separator" style="clear: both; text-align: center;"><br /></div>
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<div class="separator" style="clear: both; text-align: center;">Visiting Assistive Technology and Assistance Center </div><div class="separator" style="clear: both; text-align: center;"><br /></div><div class="separator" style="clear: both; text-align: center;"><br /></div><div class="separator" style="clear: both; text-align: center;"><br /></div>
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">:: Research 2019-2020 :: [Updated on June 2019]</span></span><br />
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">Project 14: </span></span><span style="color: #141823;"><span style="font-size: 14.4444px;">Muscle Stimulation with (AI) Artificial Intelligence in Electrical Pulse and Automatic Hot Compress Assistive Device : เครื่องกระตุ้นกล้ามเนื้อด้วยเทคโนโลยีปัญญาประดิษฐ์ ในพัลซ์ไฟฟ้าและอุปกรณ์ประคบร้อนอัตโนมัติ</span></span><br />
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">Project 13 : </span></span><span face="" style="background-color: white; color: #1d2129; font-size: 14px;">ระบบควบคุมและแสดงผล พิกัด มอเตอร์ไฟฟ้า ชนิด Induction motor 3 Phases ในการ monitoring มอเตอร์ไฟฟ้าจำนวน 5 ตัว และคำนวนอัตราค่าเฉลี่ย Average parameter value สำหรับโรงงานอุตสาหกรรม ที่ใช้ควบคุมระบบงานอุตสาหกรรม ตลอดจน มีโมดูลและโซลูชั่นในการขับสัญญาณและ IoT on time system</span><br />
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Project 12: <span face="" style="background-color: white; color: #1d2129; font-size: 14px;">ระบบวัดประสิทธิภาพการทำงานของกล้องไอพี (IP-camera) และการแจ้งเตือนสำหรับสำนักงาน บ้านจัดสรร และโรงงานอุตสาหกรรม</span></div>
<span face="" style="background-color: white; color: #1d2129; font-size: 14px;">(SYSTEM OF IP-CAMERA OPERATED EFFICIENCY AND ALERT SYSTEM, </span><br />
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">Project 11: </span></span><span face="" style="background-color: white; color: #1d2129; font-size: 14px;">Material Temp. real time control system is managed by Cent OS and basic networking system via IoT.</span><br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEio5hKLGJX4gKTSMMgMi_ys1l4_tNsSsmTxrQRbVO2ziOXQII2C9jKHvQwveWrHhQbO8hJM3lXlvs3AOp19MG5cxIMtXhgtLPa9FphA2a2hSRn7SPBT85R6HKgYH8ek1RS9IFSqpnmbfK4c/s1600/d1.jpg" style="margin-left: 1em; margin-right: 1em;"><img border="0" data-original-height="631" data-original-width="960" height="262" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEio5hKLGJX4gKTSMMgMi_ys1l4_tNsSsmTxrQRbVO2ziOXQII2C9jKHvQwveWrHhQbO8hJM3lXlvs3AOp19MG5cxIMtXhgtLPa9FphA2a2hSRn7SPBT85R6HKgYH8ek1RS9IFSqpnmbfK4c/s400/d1.jpg" width="400" /></a></div>
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">Project 10: </span></span><span face="" style="background-color: white; color: #1d2129; font-size: 14px;">UL Machine Learning V 1.0</span><br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgkp2TFmU0ZEBxysTa6yVd-ScvL33HJQ5I7PCDZ0-GR3k4E-rb1sdJ2UPCRlWs7dyFB7CpK0IGn5reh3zJ3UXJsnbtQvJs4yFueerlGP2clfCd7NV9A3E2lDp1nvn-_A9sSklUxk3TUavKE/s1600/d3.jpg" style="margin-left: 1em; margin-right: 1em;"><img border="0" data-original-height="960" data-original-width="720" height="400" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEgkp2TFmU0ZEBxysTa6yVd-ScvL33HJQ5I7PCDZ0-GR3k4E-rb1sdJ2UPCRlWs7dyFB7CpK0IGn5reh3zJ3UXJsnbtQvJs4yFueerlGP2clfCd7NV9A3E2lDp1nvn-_A9sSklUxk3TUavKE/s400/d3.jpg" width="300" /></a></div>
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">Project 9: </span></span><span face="" style="background-color: white; color: #1d2129; font-size: 14px;">Active 16 bits Encoder โดยใช้ MOSFET ทำหน้าที่ ขับและขยายสัญญาณ เพื่อทำ Quantized Signal</span><br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjzwxCtLVyrIKEHn4p1fZmJbmTsINkdpspSxXlx16mraJXaJqWrAO93SywPMwrQ6FEKusH2m3CInY81rZC7JKNueO-zD4Ey3xDKN7aT5y9mu9eig4fP7_-092lg89RIHcoN54aGBD1KdQvF/s1600/d5.jpg" style="margin-left: 1em; margin-right: 1em;"><img border="0" data-original-height="960" data-original-width="720" height="400" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjzwxCtLVyrIKEHn4p1fZmJbmTsINkdpspSxXlx16mraJXaJqWrAO93SywPMwrQ6FEKusH2m3CInY81rZC7JKNueO-zD4Ey3xDKN7aT5y9mu9eig4fP7_-092lg89RIHcoN54aGBD1KdQvF/s400/d5.jpg" width="300" /></a></div>
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<span style="font-family: inherit;"><span style="color: #141823; font-size: 14.4444px;">Project 8: </span></span><span face="" style="background-color: white; color: #1d2129; font-size: 14px;">PLC Automations Setting vs Combined Machine Learning of Line Process</span><br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjVgUjVWjXmtVD0tz-BpKrSmQVgH-LRgLo6j25l8U0noNtRwGSk7FrmtgKKJ98UfvKzoSyyyTZqshFt7p_B6dlvFVJoptnRCRaDnrNGWRVL996eAk8Pa0F6adJFN0KpnSRNJtFqWe2WeOy_/s1600/d6.jpg" style="margin-left: 1em; margin-right: 1em;"><img border="0" data-original-height="553" data-original-width="748" height="295" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjVgUjVWjXmtVD0tz-BpKrSmQVgH-LRgLo6j25l8U0noNtRwGSk7FrmtgKKJ98UfvKzoSyyyTZqshFt7p_B6dlvFVJoptnRCRaDnrNGWRVL996eAk8Pa0F6adJFN0KpnSRNJtFqWe2WeOy_/s400/d6.jpg" width="400" /></a></div>
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<span style="color: #141823; font-family: inherit; font-size: 14.4444px;">::Research 2016::</span><br />
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<span style="color: #141823;"><span style="font-size: 14.4444px; line-height: 19.32px;">Project 7 : Power Factor Optimization with 65 nodes monitoring and detection. </span></span><br />
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<a href="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhfo4qEwGiuuCW8P2689zh8ZjtwmkEB-I8xuR9xBYLzkG_nCN9gNxIdsru1NGYF5V_zboHUPyhyphenhyphenTP72ZOA9I177Bxmhoto12cIQAd9sB9ziFmcsecAAMSHWZOG-XJ4xqSVfhHAzwOGWnAIP/s1600/pw.jpg" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="246" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhfo4qEwGiuuCW8P2689zh8ZjtwmkEB-I8xuR9xBYLzkG_nCN9gNxIdsru1NGYF5V_zboHUPyhyphenhyphenTP72ZOA9I177Bxmhoto12cIQAd9sB9ziFmcsecAAMSHWZOG-XJ4xqSVfhHAzwOGWnAIP/s320/pw.jpg" width="320" /></a></div>
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<span style="color: #141823;"><span style="font-size: 14.4444px; line-height: 19.32px;">Project 5 : ระบบแสดงสถานะของเซิร์ฟเวอร์(เครื่องแม่ข่าย) และ พอร์ตสื่อสาร ต่างๆ อย่างง่ายๆ สำหรับการมอนิเตอร์อุปกรณ์เครือข่ายคอมพิวเตอร์</span></span></span><br />
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Project 4: ระบบ RFIDs control and security, ประยุกต์ด้าน วิศวกรรมโลจิสติกส์</div>
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<span style="font-family: times, "times new roman", serif;"><span style="background-color: white; font-size: 11px;">NERAMITR CHIRAKANPHAISARN, เนรมิธ จิรกาญจน์ไพศาล [ ๋July 2021 ]</span></span><br />
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<div class="separator" style="clear: both; text-align: center;"><br /></div><br /><div class="separator" style="clear: both; text-align: center;"><br /></div><br /></div></div></div></div>mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-51008835571260998272021-07-27T04:41:00.002-07:002021-07-27T04:42:28.986-07:00 Algorithms of Sleeping Positions with Heart Rhythms Measurement :<p> // Algorithms of Sleeping Positions with Heart Rhythms Measurement :</p><p>// Neramitr Chirakanphaisarn, Mit9bkk@gmail.com</p><p>// initial the up counter</p><p>#include <Wire.h></p><p>#include <SD.h> </p><p>#include <LiquidCrystal.h> // used library of SLCD module with 20 digits x 4 lines</p><p>LiquidCrystal lcd(12, 11, 5, 4, 3, 2); //assigned the SLCD functions of 16 digits x 2 lines</p><p>#define IN_PIN0 0 // set Digital Pin0 for control file.close of SD card</p><p>#define IN_PIN9 9 // set Digital Pin9 for show SEX type of MALE / FEMALE into EXCEL OR CSV file</p><p>#define IN_PIN10 10 // set Digital Pin10 for closed file for head label in EXCEL or CSV file</p><p>const int chipSelect = 53;</p><p>//-------------open declare speed of motion------------------</p><p>#define IN_PIN 19 //set Switch input to Digital pin19 ADKR3 mega2560</p><p>#define DEBOUNCE 10 // Delay 10 mSec , That no port number !!</p><p>#define BUZZER 7 // Digital Pin7 is Buzzer beep using Alert! when 60 seconds</p><p>#define ANALOG_PIN 5 // Sweep the PATIENT AGE to Analog input A5 of ADK R3 mega2560</p><p>int analogValue = 5; // Sweep the PATIENT AGE to Analog input A5 of ADK R3 mega2560</p><p><br /></p><p>#define ANALOG_PIN4 4 // Sweep the PATIENT ID or No. to Analog input A4 of ADK R3 mega2560</p><p>int analogValue4 = 4 ; // Sweep the PATIENT ID or No. to Analog input A4 of ADK R3 mega2560</p><p><br /></p><p>int state_sw = HIGH;</p><p>int reading;</p><p>int previous = HIGH;</p><p><br /></p><p>unsigned long atime= 0;</p><p>unsigned long rtc= 0;</p><p>unsigned char counter=0;</p><p>unsigned long temp[200]; // temp is very importance for count 0 to 200 , not 60 Seconds</p><p>unsigned long sub=0;</p><p>bool data_effect=true;</p><p>const int max_heartpluse_duty=20000; //you can change 20000 meams 20 seconds. </p><p>//---------closed declare of debounce switch-------------------</p><p>// Closed the initial the up counter</p><p>// VARIABLES of Pulse sensor</p><p>int pulsePin = 0; // Pulse Sensor purple wire connected to analog pin 0</p><p>int blinkPin = 13; // pin to blink led at each beat</p><p>int fadePin = 6; // default is pin5 ,pin to do fancy classy fading blink at each beat</p><p>int fadeRate = 0; // used to fade LED on with PWM on fadePin</p><p><br /></p><p>// these variables are volatile because they are used during the interrupt service routine!</p><p>volatile int BPM; // used to hold the pulse rate</p><p>volatile int Signal; // holds the incoming raw data</p><p>volatile int IBI = 600; // holds the time between beats, must be seeded! </p><p>volatile boolean Pulse = false; // true when pulse wave is high, false when it's low</p><p>volatile boolean QS = false; // becomes true when Arduoino finds a beat.</p><p>// Closed the VARIABLES of Pulse sensor</p><p>void setup(){</p><p> pinMode(blinkPin,OUTPUT); // pin that will blink to your heartbeat!</p><p> pinMode(fadePin,OUTPUT); // pin that will fade to your heartbeat!</p><p> Serial.begin(115200); // we agree to talk fast!</p><p> Serial.println("neramitr chirakarnphaisarn");</p><p> //--------- setup of debounce switch------------------- </p><p> pinMode(IN_PIN, INPUT); // set pinMode digitalPin 19 name's IN_PIN is INPUT of ADK R3</p><p>//---------closed setup of debounce switch------------------- </p><p> lcd.begin(16, 4);</p><p> lcd.setCursor(0, 0); </p><p> lcd.print("Id:");</p><p> lcd.setCursor(9, 0); </p><p> lcd.print("Neramitr.TU");</p><p> lcd.setCursor(0, 1); </p><p> lcd.print("Age:");</p><p> lcd.setCursor(7, 1); </p><p> lcd.print("Sx:");</p><p> lcd.setCursor(14, 1); </p><p> lcd.print("Amp:");</p><p> lcd.setCursor(4, 2); </p><p> lcd.print("Measure= / sec.");</p><p> </p><p> lcd.setCursor(4, 3); </p><p> lcd.print("Pulse rate= bpm. "); </p><p> </p><p>// Show Id after calibration </p><p> analogValue4 = analogRead(ANALOG_PIN4);</p><p> int id = analogValue4/20; // adjust Patients Id , values 0 to 50 persons (1000/20= 50 persons)</p><p> if(id <= 50) // Fix LCD shows 0 to 50 persons only</p><p> {</p><p> lcd.setCursor(3, 0);</p><p> lcd.print(id); </p><p> }</p><p><br /></p><p>// Show Sex after calibration</p><p>pinMode (IN_PIN9, INPUT); //set pinMode digitalPin 9 </p><p> int sex = digitalRead(IN_PIN9); // default (IN_PIN9) </p><p> if(sex == LOW ) // Assigned move right stoke is HIGH </p><p> {</p><p> lcd.setCursor(10, 1); // show position (column,row)</p><p> lcd.print("MA"); </p><p> }</p><p> else</p><p> {</p><p> lcd.setCursor(10, 1); // show position (column,row)</p><p> lcd.print("FE"); </p><p> } </p><p>// End of show sex after calibration</p><p><br /></p><p>// Show Age after calibration </p><p>analogValue = analogRead(ANALOG_PIN);</p><p> int age = analogValue/10;</p><p> if(age <= 99) </p><p> {</p><p> lcd.setCursor(4, 1); // show position (column,row)</p><p> lcd.print(age);</p><p> }</p><p> </p><p>// Setup BUZZER loud for Alert when 60 Seconds OK!</p><p>pinMode(BUZZER, OUTPUT); // sets the digital pin as output</p><p>// Closed Set up Buzzer OK!</p><p> interruptSetup(); // sets up to read Pulse Sensor signal every 2mS</p><p>}</p><p><br /></p><p>void loop()</p><p>{</p><p><br /></p><p>// Adjust the PATIENT ID , Identification by we setting ID value 0-50 Persons </p><p>// Press "Big Circle YELLOW" Switch is LOW , But NO Press "BIG CIRCLE GREEN" Switch is HIGH</p><p><br /></p><p> pinMode (IN_PIN10, INPUT); // Control the CLOSE or IGNORE file</p><p> int closed1 = digitalRead(IN_PIN10); </p><p> if(closed1 == LOW ) // Press BIG YELLOW swith </p><p> {</p><p> {</p><p> analogValue4 = analogRead(ANALOG_PIN4);</p><p> int id = analogValue4/20; // adjust 0 to 50 persons (1000/20= 50 persons)</p><p> </p><p> if(id <= 50) // Fix LCD shows 0 to 50 persons only </p><p> {</p><p> lcd.setCursor(3, 0); // show position (column,row)</p><p> lcd.print(" "); </p><p> lcd.setCursor(3, 0); // show position (column,row)</p><p> lcd.print(id); </p><p> } </p><p> } </p><p> }</p><p> </p><p> else // NO Press hold BIG GREEN swith </p><p> {</p><p> // At here is closed = LOW then NOT save RIGHT to EXCEL </p><p> }</p><p>// Closed the Adjust the PATIENT ID by we setting AGE value 0-10 persons </p><p>// Set Set SEX type MALE / FEMALE for EXCEL or CSV file</p><p> pinMode (IN_PIN10, INPUT); // Control the CLOSE or IGNORE file</p><p> //int closed1 = digitalRead(IN_PIN10); </p><p> if(closed1 == LOW ) // Press BIG YELLOW swith </p><p> {</p><p> pinMode (IN_PIN9, INPUT); // set pinMode digitalPin 9 name's IN_PIN6 is INPUT of ADK R3 for RIGHT_LEG or LEFT_LEG </p><p> int sex = digitalRead(IN_PIN9); // default (IN_PIN9) get input HIGH or LOW for select RIGHT_LEG or LEFT_LEG to shows EXCEL, CSV file</p><p> if(sex == LOW ) // Assigned move right stoke is HIGH , Assigned move left stoke is LOW </p><p> { </p><p> {</p><p> lcd.setCursor(10, 1); // show position (column,row)</p><p> lcd.print("MA"); </p><p> }</p><p> }</p><p> else </p><p> {</p><p> lcd.setCursor(10, 1); // show position (column,row)</p><p> lcd.print("FE");</p><p> }</p><p> }</p><p>// End of Set SEX type MALE / FEMALE for EXCEL or CSV file</p><p><br /></p><p>// Adjust the PATIENT AGE by we setting AGE value 0-80 years </p><p> pinMode (IN_PIN10, INPUT); // Control the CLOSE or IGNORE file</p><p> int closed = digitalRead(IN_PIN10); </p><p> if(closed == LOW ) // NO press BIG GREEN swith </p><p> {</p><p> {</p><p> analogValue = analogRead(ANALOG_PIN);</p><p> int age = analogValue/10; // adjust age 0 to 100 years (1000/10= 100 persons) </p><p> </p><p> if(age <= 99) // Fix LCD shows 0 to 99 persons only</p><p> {</p><p> lcd.setCursor(4, 1); // show position (column,row)</p><p> lcd.print(" "); </p><p> lcd.setCursor(4, 1); // show position (column,row)</p><p> lcd.print(age); </p><p> } </p><p> } </p><p> }</p><p> </p><p> else // Press hold BIG GREEN swith </p><p> {</p><p> // At here is closed = LOW then NOT save RIGHT to EXCEL </p><p> }</p><p>// Closed the Adjust the PATIENT AGE by we setting AGE value 30-80 years</p><p><br /></p><p>//----------- Start of Section of speed of motion Up counter -------------------------</p><p> reading=digitalRead(IN_PIN); //read from Digital pin0 or PD2, INT2 , PACE NUMBER </p><p> if (reading == LOW && previous == HIGH) //check the button switch </p><p> {</p><p> delay(DEBOUNCE); // delay 10 mSec</p><p> if(digitalRead(IN_PIN) == HIGH)</p><p> state_sw = !state_sw;</p><p> </p><p> interruptCounter();</p><p> }</p><p> previous = reading;</p><p>// ---------------End of Section of speed of motion ---------------------------</p><p><br /></p><p>// Start of the SLCD shows the value of PACE in SECOND , Angle = ?</p><p><br /></p><p> lcd.setCursor(12, 2); // shown Hearth Beat per cycle</p><p> lcd.print(counter);</p><p><br /></p><p> lcd.setCursor(16, 2); // shown realtime clock 0-60 Sec.</p><p> lcd.print(rtc); </p><p><br /></p><p>// Adjust the Pulse Swing (minimum to maximum situation) by we set the maximum is 90 peak</p><p> int pulseSwingValue = analogRead(pulsePin);</p><p> int signal = pulseSwingValue/13; // adjust beat from Pulse sensor directly, for proper </p><p> if(signal <= 90) // Fix LCD shows 0 to 90 persons only</p><p> {</p><p> </p><p> lcd.setCursor(18, 1); // Pulse signal has minimum to maximum peak</p><p> lcd.print(signal); </p><p> delay(50); </p><p> //Serial.print (pulseSwing); </p><p> } </p><p>// Closed Adjust the Pulse swing (minimum to maximum situation)</p><p> sendDataToProcessing('S', Signal); // send Processing the raw Pulse Sensor data</p><p> if (QS == true){ // Quantified Self flag is true when arduino finds a heartbeat</p><p> fadeRate = 255; // Set 'fadeRate' Variable to 255 to fade LED with pulse</p><p> sendDataToProcessing('B',BPM); // send heart rate with a 'B' prefix</p><p> sendDataToProcessing('Q',IBI); // send time between beats with a 'Q' prefix</p><p> QS = false; // reset the Quantified Self flag for next time </p><p> }</p><p> </p><p> ledFadeToBeat();</p><p> </p><p> //delay(1); // take a break , default is 20</p><p> </p><p>}</p><p><br /></p><p>void ledFadeToBeat(){</p><p> fadeRate -= 15; // set LED fade value</p><p> fadeRate = constrain(fadeRate,0,255); // keep LED fade value from going into negative numbers!</p><p> analogWrite(fadePin,fadeRate); // fade LED</p><p> }</p><p><br /></p><p>void sendDataToProcessing(char symbol, int data ){</p><p> Serial.print(symbol); // symbol prefix tells Processing what type of data is coming</p><p> Serial.println(data); // the data to send culminating in a carriage return</p><p> }</p><p><br /></p><p>// the funtions are up counter only </p><p>void interruptCounter()</p><p>{</p><p> //check no move the goniometer then the monitor shows 0 second</p><p> if(counter <= 0)</p><p> { </p><p> }</p><p> else</p><p> atime = millis();</p><p> rtc= atime/1000;</p><p> temp[counter]=millis();</p><p><br /></p><p> </p><p> switch (counter)</p><p> {</p><p> case(0):</p><p> sub=temp[counter]-temp[60];</p><p> break;</p><p> default:</p><p> sub=temp[counter]-temp[counter-1];</p><p> break;</p><p> }</p><p> if(sub > max_heartpluse_duty)//set 20 seconds as max pluse duty</p><p> {</p><p> data_effect=0;//sign bit</p><p> counter=0;</p><p> // Serial.println("End of measuring,please reset for begin." );</p><p> array_init();</p><p> }</p><p><br /></p><p> if (rtc >= 60 and rtc <= 62)</p><p> { </p><p> lcd.setCursor (16,3); // show Pulse rate per minute</p><p> lcd.print (counter); </p><p> //lcd.setCursor (12,1);</p><p> //lcd.print (" bpm");</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(100);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p><br /></p><p> else if(rtc != 60 && data_effect) // default is rtc!=60</p><p> counter++ ; //counter++;</p><p><br /></p><p> else </p><p> {</p><p> counter = counter ; //counter=0;</p><p> data_effect=1;</p><p><br /></p><p> }</p><p>}</p><p>void array_init()</p><p>{</p><p> for(unsigned char i=0; i!=60; ++i)</p><p> {</p><p> temp[i]=0;</p><p> }</p><p> </p><p> temp[60]=millis();</p><p> }</p><p><br /></p><p><br /></p><p><br /></p><p><br /></p><p><br /></p><p>----------------------------------------------------------------------------------------------------</p><p>Interrupt:</p><p>volatile int rate[10]; // array to hold last ten IBI values</p><p>volatile unsigned long sampleCounter = 0; // used to determine pulse timing</p><p>volatile unsigned long lastBeatTime = 0; // used to find IBI</p><p>volatile int P =512; // used to find peak in pulse wave, seeded</p><p>volatile int T = 512; // used to find trough in pulse wave, seeded</p><p>volatile int thresh = 512; // used to find instant moment of heart beat, seeded</p><p>volatile int amp = 100; // used to hold amplitude of pulse waveform, seeded</p><p>volatile boolean firstBeat = true; // used to seed rate array so we startup with reasonable BPM</p><p>volatile boolean secondBeat = false; // used to seed rate array so we startup with reasonable BPM</p><p><br /></p><p><br /></p><p>void interruptSetup(){ </p><p> // Initializes Timer2 to throw an interrupt every 2mS.</p><p> TCCR2A = 0x02; // DISABLE PWM ON DIGITAL PINS 3 AND 11, AND GO INTO CTC MODE</p><p> TCCR2B = 0x06; // DON'T FORCE COMPARE, 256 PRESCALER </p><p> OCR2A = 0X7C; // SET THE TOP OF THE COUNT TO 124 FOR 500Hz SAMPLE RATE</p><p> TIMSK2 = 0x02; // ENABLE INTERRUPT ON MATCH BETWEEN TIMER2 AND OCR2A</p><p> sei(); // MAKE SURE GLOBAL INTERRUPTS ARE ENABLED </p><p>} </p><p><br /></p><p><br /></p><p>// THIS IS THE TIMER 2 INTERRUPT SERVICE ROUTINE. </p><p>// Timer 2 makes sure that we take a reading every 2 miliseconds</p><p>ISR(TIMER2_COMPA_vect){ // triggered when Timer2 counts to 124</p><p> cli(); // disable interrupts while we do this</p><p> Signal = analogRead(pulsePin); // read the Pulse Sensor </p><p> sampleCounter += 2; // keep track of the time in mS with this variable</p><p> int N = sampleCounter - lastBeatTime; // monitor the time since the last beat to avoid noise</p><p><br /></p><p> // find the peak and trough of the pulse wave</p><p> if(Signal < thresh && N > (IBI/5)*3){ // avoid dichrotic noise by waiting 3/5 of last IBI</p><p> if (Signal < T){ // T is the trough</p><p> T = Signal; // keep track of lowest point in pulse wave </p><p> }</p><p> }</p><p><br /></p><p> if(Signal > thresh && Signal > P){ // thresh condition helps avoid noise</p><p> P = Signal; // P is the peak</p><p> } // keep track of highest point in pulse wave</p><p><br /></p><p> // NOW IT'S TIME TO LOOK FOR THE HEART BEAT</p><p> // signal surges up in value every time there is a pulse</p><p> if (N > 250){ // avoid high frequency noise</p><p> if ( (Signal > thresh) && (Pulse == false) && (N > (IBI/5)*3) ){ </p><p> Pulse = true; // set the Pulse flag when we think there is a pulse</p><p> digitalWrite(blinkPin,HIGH); // turn on pin 13 LED</p><p> IBI = sampleCounter - lastBeatTime; // measure time between beats in mS</p><p> lastBeatTime = sampleCounter; // keep track of time for next pulse</p><p><br /></p><p> if(secondBeat){ // if this is the second beat, if secondBeat == TRUE</p><p> secondBeat = false; // clear secondBeat flag</p><p> for(int i=0; i<=9; i++){ // seed the running total to get a realisitic BPM at startup</p><p> rate[i] = IBI; </p><p> }</p><p> }</p><p><br /></p><p> if(firstBeat){ // if it's the first time we found a beat, if firstBeat == TRUE</p><p> firstBeat = false; // clear firstBeat flag</p><p> secondBeat = true; // set the second beat flag</p><p> sei(); // enable interrupts again</p><p> return; // IBI value is unreliable so discard it</p><p> } </p><p><br /></p><p><br /></p><p> // keep a running total of the last 10 IBI values</p><p> word runningTotal = 0; // clear the runningTotal variable </p><p><br /></p><p> for(int i=0; i<=8; i++){ // shift data in the rate array</p><p> rate[i] = rate[i+1]; // and drop the oldest IBI value </p><p> runningTotal += rate[i]; // add up the 9 oldest IBI values</p><p> }</p><p><br /></p><p> rate[9] = IBI; // add the latest IBI to the rate array</p><p> runningTotal += rate[9]; // add the latest IBI to runningTotal</p><p> runningTotal /= 10; // average the last 10 IBI values </p><p> BPM = 60000/runningTotal; // how many beats can fit into a minute? that's BPM!</p><p> QS = true; // set Quantified Self flag </p><p> // QS FLAG IS NOT CLEARED INSIDE THIS ISR</p><p> } </p><p> }</p><p><br /></p><p> if (Signal < thresh && Pulse == true){ // when the values are going down, the beat is over</p><p> digitalWrite(blinkPin,LOW); // turn off pin 13 LED</p><p> Pulse = false; // reset the Pulse flag so we can do it again</p><p> amp = P - T; // get amplitude of the pulse wave</p><p> thresh = amp/2 + T; // set thresh at 50% of the amplitude</p><p> P = thresh; // reset these for next time</p><p> T = thresh;</p><p> }</p><p><br /></p><p> if (N > 2500){ // if 2.5 seconds go by without a beat</p><p> thresh = 512; // set thresh default</p><p> P = 512; // set P default</p><p> T = 512; // set T default</p><p> lastBeatTime = sampleCounter; // bring the lastBeatTime up to date </p><p> firstBeat = true; // set these to avoid noise</p><p> secondBeat = false; // when we get the heartbeat back</p><p> }</p><p><br /></p><p> sei(); // enable interrupts when youre done!</p><p>}// end isr</p><p><br /></p><p><br /></p><p><br /></p>mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-229033884280136792021-07-27T04:36:00.000-07:002021-07-27T04:36:01.726-07:00Program coding of muscle stimulation and hot compress<p>/* Program coding of muscle stimulation and hot compress , Neramitr Chirakanphaisarn, mit9bkk@gmail.com */</p><p>// This program that shows charactor LCD size 20x4 (lcd12864)(20characters,4rows)</p><p>// The wiring diagram please see picture of Muscle Stimulation and Hot compress. This code is completed by wiring diagram sure! </p><p>// Mr.Neramitr Chirakanphaisarn, mit9bkk@gmail.com</p><p>#include <SoftwareSerial.h></p><p>#include <SD.h> // used SD CARD module for reading and writing the log data</p><p>#include <LiquidCrystal.h> // used library of SLCD module with 16 digits x 2 lines</p><p>LiquidCrystal lcd(12, 11, 5, 4, 3, 2); // assigned the SLCD functions of 20 digits x 4 lines</p><p><br /></p><p>#define ANALOG_PIN4 4 // Sweep the Subject ID or No. to Analog input A4 of ADK R3 mega2560</p><p>int analogValue4 = 4 ; // Sweep the Subject ID or No. to Analog input A4 of ADK R3 mega2560</p><p>#define ANALOG_PIN 5 // Sweep the Subject AGE to Analog input A5 of ADK R3 mega2560</p><p>int analogValue = 5; // Sweep the Subject AGE to Analog input A5 of ADK R3 mega2560</p><p>#define ANALOG_PIN3 3 // Sweep the Stimulate time to Analog input A3 of ADK R3 mega2560</p><p>int analogValue3 = 3; // Sweep the Stimulate time to Analog input A3 of ADK R3 mega2560</p><p>#define ANALOG_PIN0 0 // Sweep the Stimulate Level to Analog input A0 of ADK R3 mega2560</p><p>int analogValue0 = 0; // Sweep the Stimulate Level to Analog input A0 of ADK R3 mega2560</p><p>#define ANALOG_PIN1 1 // Sweep the Frequency to Analog input A1 of ADK R3 mega2560</p><p>int analogValue1 = 1; // Sweep the Frequency to Analog input A1 of ADK R3 mega2560</p><p>#define ANALOG_PIN2 2 // Sweep the T-PAD Temperature to Analog input A2 of ADK R3 mega2560</p><p>int analogValue2 = 2; // Sweep the T-PAD Temperature to Analog input A2 of ADK R3 mega2560</p><p><br /></p><p>#define IN_PIN0 0 // set Digital Pin0 (D0) for control file.close of SD card</p><p>#define IN_PIN6 6 // set Digital Pin6 (D6) to show KNEE or ABDOMINAL</p><p>#define ANALOG_PIN7 7 // Sweep angle (degree)of ADK R3 mega2560</p><p>int analogValue7 = 7 ; // Decare the Sweep angle (degree)of ADK R3 mega2560</p><p>#define IN_PIN9 9 // set Digital Pin9 (D9) for show SEX type of MALE / FEMALE</p><p>#define IN_PIN10 10 // set Digital Pin10 (D10) for closed file for head label in EXCEL or CSV file</p><p><br /></p><p>#define IN_PIN 19 //set Switch input to Digital pin19 ADKR3 mega2560</p><p>#define DEBOUNCE 10 // Delay 10 mSec , That no port number !!</p><p>#define OUT_PIN 8 //Output , Digital Pin8 (D8) or ADK R3 mega2560</p><p>#define IN_SWEEP 7 // Sweep the ANGLE to Analog input A7 of ADK R3 mega2560</p><p>#define ANALOG_PIN6 6</p><p>#define BUZZER 7 // Digital Pin7 (D7) is Buzzer beep using Alert! when 60 seconds</p><p>#define ENDU_COUNT 8 // Digital Pin1 (D1) is Endurance Counter for Round Per Minute (RPM)</p><p> //We will use D8 for OUT_PIN and ENDU_COUNT are SURELY (Mitr)</p><p>const int chipSelect = 53;</p><p><br /></p><p><br /></p><p>int infrared;</p><p>int distance;</p><p>int state_sw = HIGH;</p><p>int reading;</p><p>int previous = HIGH;</p><p><br /></p><p>unsigned long atime= 0;</p><p>unsigned long rtc= 0;</p><p>unsigned char counter=0;</p><p>unsigned long temp[200]; // default is temp[61];</p><p>unsigned long sub=0;</p><p>bool data_effect=true;</p><p>const int max_heartpluse_duty=20000; </p><p>//---------closed declare of debounce switch-------------------</p><p><br /></p><p><br /></p><p><br /></p><p>void setup()</p><p>{ </p><p> Serial.begin(9600);</p><p> lcd.begin(20, 4);</p><p> </p><p> delay(100);</p><p><br /></p><p> while (!Serial) </p><p> {</p><p> ; // wait for serial port to connect. </p><p> }</p><p><br /></p><p>// Starting of datalogger section of setup mode ------------------------------</p><p> pinMode(IN_PIN0,INPUT); // set pinMode is INPUT value for file.close of SD card</p><p><br /></p><p> Serial.print("Initializing SD card...");</p><p> // make sure that the default chip select pin is set to</p><p> // output, even if you don't use it:</p><p> pinMode(53, OUTPUT);</p><p> // see if the card is present and can be initialized:</p><p> if (!SD.begin(chipSelect)) {</p><p> Serial.println("Card failed, or not present");</p><p> // don't do anything more:</p><p> return;</p><p> }</p><p> Serial.println("card initialized.");</p><p> </p><p>// End of datalogger section of setup mode ------------------------------</p><p> </p><p><br /></p><p><br /></p><p> </p><p> //---------open setup of debounce switch------------------- </p><p> pinMode(IN_PIN, INPUT); // set pinMode digitalPin 19 name's IN_PIN is INPUT of ADK R3</p><p> pinMode(OUT_PIN, OUTPUT); // set pinMode digitalPin 8 name's OUT_PIN is OUTPUT of ADK R3</p><p> digitalWrite(OUT_PIN, state_sw); // set digitalWrite of digitalPin 3</p><p> pinMode(IN_SWEEP,INPUT); // set pinMode analogPin 7 (A7) </p><p> //---------closed setup of debounce switch------------------- </p><p><br /></p><p> lcd.setCursor(0,3); // show position (column,row)</p><p> lcd.print(" ");</p><p><br /></p><p> // Select the Muscle Stimulation and Hot compress</p><p> pinMode (IN_PIN6, INPUT); // set pinMode digitalPin 6 </p><p> int test = digitalRead(IN_PIN6); // default (IN_PIN6) get input HIGH or LOW to select </p><p> if(test == LOW ) // Setting LOW </p><p> { </p><p> Serial.println("NERAMITR TSE-TU2021");</p><p> Serial.println("Id\tYear\tSex\tEndur\tTime\tStrng\tAngle");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.println("NERAMITR TSE-TU2021"); //Show header of file</p><p> dataFile.print("ID"); </p><p> dataFile.print(","); </p><p> dataFile.print("Age"); </p><p> dataFile.print(","); </p><p> dataFile.print("Sex"); </p><p> dataFile.print(","); </p><p> dataFile.print("Level"); </p><p> dataFile.print(",");</p><p> dataFile.print("Freq"); </p><p> dataFile.print(",");</p><p> dataFile.print("Temp"); </p><p> dataFile.print(",");</p><p> dataFile.println("Time"); </p><p> </p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA </p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.println("NERAMITR TSE-TU2021"); //Endurance rpm </p><p> dataFile.print("ID"); </p><p> dataFile.print(","); </p><p> dataFile.print("Age"); </p><p> dataFile.print(","); </p><p> dataFile.print("Sex"); </p><p> dataFile.print(","); </p><p> dataFile.print("Level"); </p><p> dataFile.print(",");</p><p> dataFile.print("Freq"); </p><p> dataFile.print(",");</p><p> dataFile.print("Temp"); </p><p> dataFile.print(",");</p><p> dataFile.println("Time"); </p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> } </p><p>}</p><p><br /></p><p><br /></p><p><br /></p><p><br /></p><p>void loop()</p><p>{</p><p> </p><p> // Setting the Stimulate Muscle & Hot compress 2021 Published paper </p><p> </p><p> pinMode (IN_PIN6, INPUT); // set pinMode digitalPin 6 name's IN_PIN6 is INPUT of ADK R3 </p><p> int test = digitalRead(IN_PIN6); // default (IN_PIN6) get input HIGH or LOW to select </p><p> if(test == LOW ) // Setting LOW </p><p> { </p><p> lcd.setCursor(0,0);</p><p> lcd.print("NERAMITR TSE-TU2021");</p><p> lcd.setCursor(0,1); // show position (column,row)</p><p> // show ID YR LV FREQ TMP on LCD first</p><p> lcd.print("Id Yr Sx Lv Fre Tmp"); </p><p><br /></p><p> lcd.setCursor(15,3); // show unit of stimulate time (column,row)</p><p> lcd.print("min"); </p><p> </p><p> //delay(100);</p><p> </p><p> </p><p> // Set Patients ID , We applied A4 ANALOG PIN4 and adjust age with Volume 10K ohms </p><p> analogValue4 = analogRead(ANALOG_PIN4);</p><p> int id = analogValue4/10; // adjust Patients Id , values 0 to 100 persons (1000/10= 100 persons)</p><p> </p><p> if(id <= 99) { // Fix LCD shows 0 to 50 persons only</p><p> lcd.setCursor(0,2); // show position (column,row)</p><p> lcd.print(" "); </p><p> lcd.setCursor(0, 2); // show position (column,row)</p><p> lcd.print(id); </p><p> Serial.print(id);</p><p> Serial.print("\t");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print(id); </p><p> dataFile.print(",");</p><p><br /></p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA </p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print(id); </p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> // Close the Set Patients ID , We applied A4 ANALOG PIN4</p><p> </p><p> </p><p> // Set Patients AGE , We applied A5 ANALOG PIN5 and adjust age with Volume 10K ohm </p><p> analogValue = analogRead(ANALOG_PIN);</p><p> int age = analogValue/10;</p><p> </p><p> if(age <= 99) {</p><p> lcd.setCursor(3, 2); // show position (column,row)</p><p> lcd.print(" ");</p><p> lcd.setCursor(3, 2); // show position (column,row)</p><p> lcd.print(age); </p><p> Serial.print(age);</p><p> Serial.print("\t");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print(age); //Endurance rpm shows into SD Card</p><p> dataFile.print(",");</p><p> //delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA or YELLOW SWITCH</p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print(age); </p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> // Close, We applied A5 ANALOG PIN5</p><p> </p><p> </p><p> //Set Set SEX type MALE / FEMALE for EXCEL or CSV file</p><p> pinMode (IN_PIN9, INPUT); // set pinMode digitalPin 9 </p><p> int sex = digitalRead(IN_PIN9); // default (IN_PIN9) get CSV file</p><p><br /></p><p> if(sex == LOW ) { </p><p> lcd.setCursor(6, 2); </p><p> lcd.print("MA");</p><p> Serial.print("MA");</p><p> Serial.print("\t"); </p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print("MA"); </p><p> dataFile.print(",");</p><p> //delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA</p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print("MA"); </p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> else {</p><p> lcd.setCursor(6, 2); // show position (column,row)</p><p> lcd.print("FE");</p><p> Serial.print("FE");</p><p> Serial.print("\t"); </p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print("FE"); </p><p> dataFile.print(",");</p><p> // delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA </p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print("FE"); //Endurance rpm shows into SD Card</p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> </p><p> //End of Set SEX type MALE / FEMALE </p><p><br /></p><p><br /></p><p>// Set Stimulation time or timer , We applied A3 ANALOG PIN3 and adjust Stimulate Level with Volume 10K ohms </p><p> analogValue3 = analogRead(ANALOG_PIN3);</p><p> int timer = analogValue3/100; // adjust Stimulation Level , values 0 to 10 (1000/100= 10 minutes)</p><p> </p><p> if(timer <= 10) { // Fix LCD shows 0 to 10 minutes only</p><p> lcd.setCursor(13,3); </p><p> lcd.print(" "); </p><p> lcd.setCursor(13, 3); </p><p> lcd.print(timer); </p><p> int rtc = millis()/1150 ;</p><p> if(timer == 1 && rtc == 60)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW); </p><p> }</p><p> if(timer == 2 && rtc == 120)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 3 && rtc == 180)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 4 && rtc == 240)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 5 && rtc == 300)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 6 && rtc == 360)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 7 && rtc == 420)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 8 && rtc == 480)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 9 && rtc == 540)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p> if(timer == 10 && rtc == 600)</p><p> {</p><p> pinMode(BUZZER, OUTPUT); // sets the digital pin 7 as output</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> digitalWrite(BUZZER,HIGH);</p><p> delay(50);</p><p> digitalWrite(BUZZER,LOW);</p><p> }</p><p><br /></p><p><br /></p><p><br /></p><p> </p><p> Serial.print(timer);</p><p> Serial.print("\t");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print(timer); </p><p> dataFile.print(",");</p><p> //delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA or YELLOW SWITCH</p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print(timer); d</p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> // Close the Stimulation time or timer , We applied A3 ANALOG PIN3 and adjust Stimulate Level with Volume 10K ohms</p><p><br /></p><p><br /></p><p><br /></p><p> // Set Stimulation Level or Vp , We applied A0 ANALOG PIN0 and adjust Stimulate Level with Volume 10K ohms </p><p> analogValue0 = analogRead(ANALOG_PIN0);</p><p> int level = analogValue0/50; // adjust Stimulation Level , values 0 to 10 (1000/50= 20 level)</p><p> </p><p> if(level <= 20) { // Fix LCD shows 0 to 20 only</p><p> lcd.setCursor(9,2); // show position (column,row)</p><p> lcd.print(" "); </p><p> lcd.setCursor(9, 2); // show position (column,row)</p><p> lcd.print(level); </p><p> Serial.print(level);</p><p> Serial.print("\t");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print(level); </p><p> dataFile.print(",");</p><p> //delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA or YELLOW SWITCH</p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print(level); //Endurance rpm shows into SD Card</p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> // Close the Stimulation Level or Vp , We applied A0 ANALOG PIN0 and adjust Stimulate Level with Volume 10K ohms</p><p><br /></p><p><br /></p><p> // Set Frequency or Fre , We applied A1 ANALOG PIN1 and adjust Frequency with Volume 10K ohms </p><p> analogValue1 = analogRead(ANALOG_PIN1);</p><p> int fre = analogValue1/10; // adjust Frequency, values 0 to 100 (1000/10= 100 )</p><p> </p><p> if(fre <= 100) { // Fix LCD shows 0 to 50 only</p><p> lcd.setCursor(12,2); // show position (column,row)</p><p> lcd.print(" "); </p><p> lcd.setCursor(12, 2); // show position (column,row)</p><p> lcd.print(fre); </p><p> Serial.print(fre);</p><p> Serial.print("\t");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print(fre); </p><p> dataFile.print(",");</p><p> //delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA or YELLOW SWITCH</p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print(fre); //Endurance rpm shows into SD Card</p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> // Close the Frequency or Fre , We applied A1 ANALOG PIN1 and adjust Frequency with Volume 10K ohms</p><p><br /></p><p><br /></p><p><br /></p><p><br /></p><p>// Set T-PAD Temperature , We applied A2 ANALOG PIN2 and adjust Frequency with Volume 10K ohms </p><p> analogValue2 = analogRead(ANALOG_PIN2);</p><p> int tmp = (analogValue2/12.5)+30; // adjust T-PAD Temperature, values 30 to 80 (1000/12.5= 80 )</p><p> </p><p> if(tmp <= 80) { // Fix LCD shows 0 to 90 only</p><p> lcd.setCursor(17,2); // show position (column,row)</p><p> lcd.print(" "); </p><p> lcd.setCursor(17, 2); // show position (column,row)</p><p> lcd.print(tmp); </p><p> Serial.println(tmp);</p><p> // Serial.print("\t");</p><p> // Start DATA LOGGER in LOOP for saving in CSV to SD CARD</p><p> File dataFile = SD.open("k_muscle.csv", FILE_WRITE); //limit "name" size = 8 characters</p><p> if (dataFile >= 0) // dataFile=1 has write , dataFile=0 has not file , limited 207 lines </p><p> { </p><p> dataFile.print(tmp); //Endurance rpm shows into SD Card</p><p> dataFile.print(",");</p><p> //delay(50); // Reduces speed rate 50 mSec</p><p> int reading = digitalRead(IN_PIN0); // get input HIGH or LOW , it is mode of control RECORD DATA or YELLOW SWITCH</p><p> if(reading == LOW ) // Press RED SW to small is LOW (0 volt) , Release to tall is HIGH (5 volts)</p><p> {</p><p> dataFile.close();</p><p> dataFile.print(tmp); </p><p> dataFile.print(",");</p><p> } </p><p> else {</p><p> Serial.println ("status_swith is HIGH you should a Press to LOW");</p><p> }</p><p> }</p><p> else {</p><p> Serial.println("error opening k_muscle.csv");</p><p> } </p><p> // Closed the DATA LOGGER in LOOP for saving in CSV to SD CARD </p><p> }</p><p> // Close the Hot compress / T-PAD Temperature , We applied A2 ANALOG PIN2 and adjust Frequency with Volume 10K ohms </p><p><br /></p><p><br /></p><p> }</p><p><br /></p><p> lcd.setCursor(0,3); // show unit of stimulate time (column,row)</p><p> lcd.print("Time("); </p><p> lcd.setCursor(8,3); // show unit of stimulate time (column,row)</p><p> lcd.print(")="); </p><p> int rtc = millis()/1150 ;</p><p> lcd.setCursor(5, 3);</p><p> lcd.print(rtc); // print the number of seconds since reset:</p><p> lcd.setCursor(12,3); </p><p> lcd.print(":"); </p><p> if(rtc == 60 )</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("1");</p><p> }</p><p> if(rtc == 120 )</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("2"); </p><p> }</p><p> if(rtc == 180)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("3"); </p><p> }</p><p> if(rtc == 240)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("4"); </p><p> }</p><p> if(rtc == 300)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("5"); </p><p> }</p><p> if(rtc == 360)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("6"); </p><p> }</p><p> if(rtc == 840)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("7"); </p><p> }</p><p> if(rtc == 480)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("8"); </p><p> }</p><p> if(rtc == 540)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("9"); </p><p> }</p><p> if(rtc == 600)</p><p> {</p><p> lcd.setCursor(10, 3);</p><p> lcd.print("10"); </p><p> }</p><p> else</p><p> {</p><p> } </p><p>}</p>mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-40491667511196267502014-08-22T22:45:00.003-07:002015-04-26T22:47:03.626-07:00ระบบวัดและประเมินผลพลังงานทดแทน , Measurement and Evaluation system of Renewable energy. 2014.<br />
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งานวิจัยต้นแบบ 2550-2557<br />
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ชื่อผลงานวิจัย ระบบตรวจสอบชิ้นงานในระบบงานอุตสาหกรรม RFID<br />
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ชื่อผลงานวิจัย ระบบตรวจสอบคุณภาพสินค้าโรงงานอุตสาหกรรม</div>
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ชื่อผลงานวิจัย ระบบประเมินพลังงานไฟฟ้า ในโรงงานขนาดเล็ก</div>
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ชื่อผลงานวิจัย ระบบทดสอบคุณภาพของแผ่นวงจรอิเล็กทรอนิกส์ PCB</div>
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ชื่อผลงานวิจัย ระบบควบคุมหุ่นยนต์เชื่อมประสานโลหะแผ่นในโรงงานอุตสาหกรรม</div>
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ชื่อผลงานวิจัย เครื่องแสดงปริมาณการบรรจุแป้งมันสำปะหลัง</div>
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WEBSITE : mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-35946447832183315712014-08-20T02:47:00.000-07:002014-08-20T20:21:59.953-07:00How to setting IDE (Eclipse) on the Ubuntu 14.04 LTS<br />
<br />
Step 1: Install JDK as follows:<br />
<br />
<a href="http://devahoy.com/2014/03/how-to-install-java-jdk-on-ubuntu/">http://devahoy.com/2014/03/how-to-install-java-jdk-on-ubuntu/</a><br />
<br />
After finished installation then check in terminal :<br />
type:<br />
java -version<br />
<br />
results:<br />
java version "1.8.0_20"<br />
Java(TM) SE Runtime Environment (build 1.8.0_20-b26)<br />
Java HotSpot(TM) 64-Bit Server VM (build 25.20-b23, mixed mode)<br />
<br />
It has completed.<br />
<br />
------------------------------------------------------------------------------------------------------------<br />
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Step 2: Install IDE (Eclipse JEE)
<style type="text/css">p { margin-bottom: 0.1in; line-height: 120%; }a:link { }</style>
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<a href="http://www.sysads.co.uk/2014/04/install-latest-eclipse-ide-ubuntu-14-04-13-10/">http://www.sysads.co.uk/2014/04/install-latest-eclipse-ide-ubuntu-14-04-13-10/</a><br />
<br />
<br />
After finished, you must start Eclipse then<br />
First time to Ubuntu start<br />
In search type : eclipse then Enter<br />
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or<br />
<br />
Open Terminal (press Ctrl+Alt+T) then type : eclipse then Enter<br />
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<div style="line-height: 100%; margin-bottom: 0in;">
you will see Eclipse for implementation tool. </div>
-------------------------------------------------------------------------------------------------------------mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-58494156344864694332014-06-30T23:15:00.000-07:002014-07-13T08:41:49.142-07:00<div class="separator" style="clear: both; text-align: center;">
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mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-73581880244095256552013-09-23T19:58:00.002-07:002014-11-17T13:19:04.931-08:00เซ็นเซอร์ ตรวจจับการเคลื่อนไหวFilm motion sensor<br />
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mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-56642490905032502192013-07-08T20:53:00.002-07:002014-11-17T13:18:50.535-08:00RFID Server and LAMP<div class="separator" style="clear: both; text-align: left;">
ชุดพัฒนา สำหรับ ไอที โปรแกรมเมอร์, Developers, และ Engineers ที่ต้องการพัฒนางานทางด้าน ไฟฟ้าอุตสาหกรรม , อิเล็กทรอนิกส์, คอมพิวเตอร์ ,และการพัฒนาระบบพลังงานอัจฉริยะ close loop controller , etc. </div>
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สำหรับ โปรแกรมเมอร์ ที่ต้องการพัฒนางานทางอุตสาหกรรมคอมพิวเตอร์ขนาดกลาง ต้อง Android กับ LAMP : Linux +Apache+ MySQL+ Python ได้ถูกมาเป็น complement สำหรับงานด้านระบบควบคุมทางอุตสาหกรรม ที่จับต้องได้ .......June 2013 , R F I D plant: 2nd ปรับค่า New configure ในส่วนการจัดเก็บข้อมูลโดยให้ compatible กับ interrogator station จำนวน 10 สถานี และ รองรับ Active tag , Semi-active tag</div>
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mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-91785747239588691062013-05-28T20:23:00.002-07:002014-11-17T13:18:38.122-08:00งานวิจัย ระบบควบคุม อินดัคชั้่นมอเตอร์ 3 PH , PFC Free Master V/Hพัฒนา ต้นแบบ ระบบควบคุม อินดัคชั้่นมอเตอร์ 3 PH , PFC Free Master V/H<br />
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เจ้าของผลงานวิจัย : นาย เนรมิธ จิรกาญจน์ไพศาล<br />
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<br />mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-87493968274074903512012-09-17T04:09:00.002-07:002014-10-18T14:31:28.165-07:00รวมงานวิจัย และผลิตภัณฑ์ต้นแบบ งานวิจัยต้นแบบ<br />
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เนรมิธ จิรกาญจน์ไพศาล<br />
NERAMITR CHIRAKANPHAISARN<br />
EMAIL : MIT9BKK@GMAIL.COM<br />
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WEBSITE : <a href="http://v2ushop.lnwshop.com/">http://v2ushop.lnwshop.com/</a>mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0tag:blogger.com,1999:blog-1051956750101071365.post-77082053061231735132010-10-04T01:21:00.000-07:002015-07-14T22:43:03.740-07:00Research----------------------------------------------------------------------------------<br />
Domain of Research is Computing Machinery in 2013 :<br />
+ Embedded system<br />
+ Electronic circuit design<br />
+ Control engineering system<br />
<br />
----------------------------------------------------------------------------------<br />
<br />
<br />mitrhttp://www.blogger.com/profile/08722305280449163382noreply@blogger.com0