Sound Level Meters
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Applications To measure noise levels during industrial activity construction activity workplace activity fire crackers usage music systems usage generator sets usage loud speakers /public address systems usage vehicular horns usage and other mechanical device' usage Description Designed for measurement of work place noise levelsSD 200Sound Detector SD-200 is a compact, lightweight sound level meter designed to accurately measure workplace noise levels. Green, yellow and red LEDs flash the color that corresponds to the Optime Alert System, making it easy to select the appropriate level of hearing protection. The SD-200 offers an integrating feature that computes the average sound pressure level, allowing for more accurate assessment of intermittentsound levels. The user-friendly interface makes the SD-200 easy to operate. A rechargeable lithium polymer battery helps lower the total cost of ownership compared to other sound level meters that use replaceable batteries. AdvantagesIn many work environments, noise levels are highly variable, making it difficult to accurately measure sound levels. The SD-200 helps solve this problem by providing the average sound pressure level. This advanced functionality is easy to use and delivers a steadier reading in environments such as manufacturing facilities or machine shops where noise levels are often highly variableFeatures Integrated Sound Level Meter which gives Leq or Lavg Rechargeable Lithium polymer (1000mAh) battery which gives runtime more than 50 hours with low battery Indication. USB cable provided to charge the instrument with the computer. The user selectable LED Alert screen provides a quick visual reference of sound levels with green, yellow and/or red LEDs that flash when preset noise levels have been reached. Meets ANSI S1.41983(R 2006), ANSI S1.43 1997 (R 2007), IEC 61672-1 (2002) IEC61010-1 (2010), EC standards. Displays all required measurements like Sound Pressure Level (SPL), Average value (LEQ /LAVG), LED Alert (with Hearing Protection icon), Maximum value (MAX), Minimum value (MIN), Run-Time, Overload (OL), and Under-Range (UR).
Railway Accident Identification And Alert System
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This project is aimed to design a railway accident identification and alerting system by using wireless communication GSM technology. A GSM modem provides the communication interface. It transports device protocols transparently over the network through a serial interface. A GSM modem is a wireless modem that works with a GSM wireless network. This GSM Modem can accept any GSM network operator SIM card and act just like a mobile phone with its own unique phone number. Advantage of using this modem will be that you can use its RS232 port to communicate and develop embedded applications. Applications like SMS Control, data transfer, remote control and logging can be developed easily. The modem can either be connected to PC serial port directly or to any microcontroller. It can also be used in GPRS mode to connect to internet and do many applications for data logging and control. In GPRS mode you can also connect to any remote FTP server and upload files for data logging. This GSM modem is a highly flexible plug and play quad band SIM300 GSM modem for direct and easy integration to RS232 applications. Supports features like Voice, SMS, Data/Fax, GPRS and integrated TCP/IP stack. This project is designed in such a way that a GSM modem is interfaced to the controller using serial communication. The main aim of this project is to alert people from railway accidents by using vibration sensor. A vibration sensor is interfaced to the controller. This sensor can found railway accidents. Each railway coach contain single vibration sensor. If train move normally no vibrations occurr. If accident occurs any one of the sensor in train must be activated and microcontroller takes signal from the sensor. After detecting pulse from sensor microcontroller sends SMS to particular numbers through GSM modem and for alerting buzzer will be on. Microcontroller sends accident report along with coach number which is affected by accident. This effected coach number find out by sensor physical placing in coaches. A buzzer will be interfaced to the controller for alert. A 16X2LCD will be interfaced to the controller for displaying the status of the sensor. This project uses regulated 5V, 500mA power supply. 7805 three terminal voltage regulator is used for voltage regulation. Bridge type full wave rectifier is used to rectify the ac output of secondary of 230/12V step down transformer. Micro Controller : AT89S52 Crystal : 11.0592 MHz Lcd : HD44780 Gsm Modem Max232 Buzzer Software Requirements Keil Proteus Uc Flash Embedded C Prog Isp
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