Battery mon

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, /PRNewswire/ -- FirstEnergy (NYSE: FE) electric company Mon Power is now powering an electric vehicle charger with renewable energy generated by an array of solar panels outside of its headquarters building along I-79 in Fairmont. The project includes 28 solar panels and a battery to store the electricity generated by the micro solar site. The battery supplies a Level Two EV charger capable of accommodating a vehicle for charging, which delivers eight to 24 miles of range per hour of charging. Aside from a small cost to the company to maintain the site going forward, the installation will be a self-sufficient, standalone renewable power generator. Most other EV chargers in the state pull power from the electric grid where the energy source is a mix of nuclear, hydro, gas, coal and other power resources. "As the demand for electricity grows with the increase in electrification of transportation, this micro-solar energy installation is a great way to support the environment while lessening the demand on the energy grid," said Jim Myers, president of FirstEnergy's West Virginia operations. "Mon Power is committed to the environment and improving reliability for customers by bolstering and diversifying the region's energy mix." While the headquarters' solar array represents the company's first micro solar site, Mon Power is also in the process of getting approval from the West Virginia Public Service Commission to build, own and operate five solar facilities in its service territory. Through the solar program, customers of Mon Power and Potomac Edison in West Virginia can support renewable energy without the large upfront cost of building their own infrastructure. The company has already subscribed several industrial and commercial customers along with hundreds of residential customers. The town of Harpers Ferry also recently committed to a subscription equal to 100% of its streetlight and battery mon . 0. แชร์หน้าเว็บนี้ : 10 อันดับ battery mon ในรอบสัปดาห์ Features Buy Now Buy Now Specifications Support Documents Features • Allows for inspections at remote locations with limited access to power • Can operate up to 4.5 hours with 2Ah battery, up to 12 hours with a 5Ah battery. • Fuse-protected to safeguard your equipment investment. • Compatible with Milwaukee M18 batteries or equivalent. • Battery and charger are not included. Buy Now Gen-Pack Battery Adapter Item # Catalog # Description Weight 117200 GN-PK Gen-Pack Battery Adapter (Battery and charger not included) 2 lbs --> WHERE TO BUY Buy Now Accessories Item # Catalog # Description Weight GN-PK-110 Power cord adapter for Gen-Eye SD & USB Systems – --> WHERE TO BUY Specifications Dimensions:6.25” (16 cm) High5” (12.7 cm) Wide3” (7.6 cm) DeepWeight:2 lbs. (.9 Kg)Mount:Two clamps mount Gen-Pack to any Gen-Eye GL reel.Input:Accepts Milwaukee M18 battery or equivalent (Battery not included)Output:15 Volts DC. Power Cord for Gen-Eye POD and X-POD systems included. Optional GN-PK-110 adapter required for use with Gen-Eye SD and USB systems. Fuse:3 AmpsEstimated Battery Life*:4.5 hours with 2Ah battery12 hours with 5Ah battery*Based on optimum conditions. Chat Hours Mon – Fri, 8am-5pm ESTSat – Sun, Closed Join Our Mailing List Support Quick Links

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User5970

, /PRNewswire/ -- FirstEnergy (NYSE: FE) electric company Mon Power is now powering an electric vehicle charger with renewable energy generated by an array of solar panels outside of its headquarters building along I-79 in Fairmont. The project includes 28 solar panels and a battery to store the electricity generated by the micro solar site. The battery supplies a Level Two EV charger capable of accommodating a vehicle for charging, which delivers eight to 24 miles of range per hour of charging. Aside from a small cost to the company to maintain the site going forward, the installation will be a self-sufficient, standalone renewable power generator. Most other EV chargers in the state pull power from the electric grid where the energy source is a mix of nuclear, hydro, gas, coal and other power resources. "As the demand for electricity grows with the increase in electrification of transportation, this micro-solar energy installation is a great way to support the environment while lessening the demand on the energy grid," said Jim Myers, president of FirstEnergy's West Virginia operations. "Mon Power is committed to the environment and improving reliability for customers by bolstering and diversifying the region's energy mix." While the headquarters' solar array represents the company's first micro solar site, Mon Power is also in the process of getting approval from the West Virginia Public Service Commission to build, own and operate five solar facilities in its service territory. Through the solar program, customers of Mon Power and Potomac Edison in West Virginia can support renewable energy without the large upfront cost of building their own infrastructure. The company has already subscribed several industrial and commercial customers along with hundreds of residential customers. The town of Harpers Ferry also recently committed to a subscription equal to 100% of its streetlight and

2025-04-15
User2897

Features Buy Now Buy Now Specifications Support Documents Features • Allows for inspections at remote locations with limited access to power • Can operate up to 4.5 hours with 2Ah battery, up to 12 hours with a 5Ah battery. • Fuse-protected to safeguard your equipment investment. • Compatible with Milwaukee M18 batteries or equivalent. • Battery and charger are not included. Buy Now Gen-Pack Battery Adapter Item # Catalog # Description Weight 117200 GN-PK Gen-Pack Battery Adapter (Battery and charger not included) 2 lbs --> WHERE TO BUY Buy Now Accessories Item # Catalog # Description Weight GN-PK-110 Power cord adapter for Gen-Eye SD & USB Systems – --> WHERE TO BUY Specifications Dimensions:6.25” (16 cm) High5” (12.7 cm) Wide3” (7.6 cm) DeepWeight:2 lbs. (.9 Kg)Mount:Two clamps mount Gen-Pack to any Gen-Eye GL reel.Input:Accepts Milwaukee M18 battery or equivalent (Battery not included)Output:15 Volts DC. Power Cord for Gen-Eye POD and X-POD systems included. Optional GN-PK-110 adapter required for use with Gen-Eye SD and USB systems. Fuse:3 AmpsEstimated Battery Life*:4.5 hours with 2Ah battery12 hours with 5Ah battery*Based on optimum conditions. Chat Hours Mon – Fri, 8am-5pm ESTSat – Sun, Closed Join Our Mailing List Support Quick Links

2025-03-28
User4495

355__CURRENT MEASUREMENT AND LIMIT WITH I2C_LCD. (Simulide_R2194 or Higher)This example is a simple DC courrent meter. The powe supply is a 12V battery in whose circuit are found in series: a variable CHARGE resistor, a transistor for current limitation and a 1 ohm resistor as a sensor element to take the sample that enters the controller through the terminal analog A2. With the SETTING LIMIT potentiometer you can adjust the current limit and with the CHARGE potentiometer you can change the current. The current value is shown on the LCD display in amperes (16x2 lines). The MON LED lights up when the current exceeds one ampere. SCHEME:The scheme is composed of a circuit through which the application current passes from a 12V battery. In the circuit are the charge resistor, the limitation circuit and the current measurement resistor. The display is an LCD composed of two parts: The HDD44780 display with 16x2 lines with individualized inputs and the I2C to 8-bit parallel converter PFC8574, these two modules usually come mounted on top of each other in an I2C communication solution with the controller Arduino UNO. The 5.1V zener is a voltage protection for the A2 INPUT. The following figure shows a commercial example of I2C LCD with this solution: These two components of the LCD have been included in the subcircuit HDD4480-PFC8574 used here and shown below:PROGRAM:This program is in C of Arduino. The libraries LiquidCrystal_I2C.h and Wire.h are internal in Arduino IDE.// MEASUREMENT AND LIMIT OF A DC CURRENT CIRCUIT. DEFRAN24.#include #include #define I2C_ADDR 0x50 int BACKLIGHT=3;LiquidCrystal_I2C lcd(I2C_ADDR,2,1,0,4,5,6,7); // Address and PFC8574 pinsunsigned long time, differ;float ampe=0;int MON=13;int sense=A2; // Sense INPUTvoid setup() { pinMode(MON, OUTPUT); lcd.begin(16,2); lcd.setBacklightPin(BACKLIGHT,POSITIVE); lcd.setBacklight(HIGH); lcd.home(); lcd.print("CURRENT MEASURE.");}void loop() { differ=millis()-time; if (differ >= 200) { ampe=(map(analogRead(sense), 0,1024, 0,507))/100.0f; // MAP, CALIB AND DECIMALS. if( ampe > 1) digitalWrite(MON,HIGH); else digitalWrite(MON,LOW); lcd.setCursor(4,1); lcd.print(ampe); lcd.print(" Amp. "); time = millis(); }}SUBCIRCUITS:This example integrates several subcircuits located in the "data" folder into the ZIP attached. This folder must always be next to the "sim1" scheme so that it can be executed. A subcircuit is a “custom” circuit that accumulates a set of Simulide base components (primitive function) to obtain a new or an adapted function. These subcircuits are treated by Simulide as another component of its own structure. User can create his own subcircuits or use the ones published here in your own designs once the procedure

2025-03-31
User1905

DS1302 RTC (Real Time Clock) library for ArduinoThis is a 3-wire DS1302 RTC (Real Time Clock) library for Arduino.Library featureslibc compatibleRead/write date/time struct tmSet/get Unix epoch UTC time_tSet/get time (hours, minutes, seconds)Set/get date and time (hour, min, sec, mday, mon, year, wday)Read / write 31 Bytes battery backupped RTC RAM.Programmable trickle charge to charge super-caps / lithium batteries.Optimized IO interface for Atmel AVR platform.DS1302 specificationsIMPORTANT NOTES:The DS1302 RTC time may deviate >1 minute each day, so this device is not recommended for designs with high precision requirements.The high precision DS3231 I2C RTC is recommended for new designs.The 3-wire interface is NOT compatible with SPI.ExamplesArduino IDE | File | Examples | Erriez DS1302 RTC:Alarm: Program one or more software alarmsBenchmark: Benchmark libraryRAM: Read/write RTC RAM.SetBuildDateTime: Set build date/timeSetGetDateTime: Set/get date and timeSetGetTime: Set/get timeSetTrickleCharger: Program trickle battery/capacitor chargerTerminal and Python script to set date timeTest: Regression testWriteRead: Regression testDocumentationOnline HTMLDoxygen PDFDS1307 datasheetUsageInitialization// Connect DS1302 data pin to Arduino DIGITAL pin#if defined(ARDUINO_ARCH_AVR)#define DS1302_CLK_PIN 2#define DS1302_IO_PIN 3#define DS1302_CE_PIN 4#elif defined(ARDUINO_ARCH_ESP8266)#define DS1302_CLK_PIN D4#define DS1302_IO_PIN D3#define DS1302_CE_PIN D2#elif defined(ARDUINO_ARCH_ESP32)#define DS1302_CLK_PIN 0#define DS1302_IO_PIN 4#define DS1302_CE_PIN 5#else#error #error "May work, but not tested on this target"#endif// Create RTC objectErriezDS1302 rtc = ErriezDS1302(DS1302_CLK_PIN, DS1302_IO_PIN, DS1302_CE_PIN);void setup(){ // Initialize RTC while (!rtc.begin()) { Serial.println(F("RTC not found")); delay(3000); }}">#include ErriezDS1302.h>// Connect DS1302 data pin to Arduino DIGITAL pin#if defined(ARDUINO_ARCH_AVR)#define DS1302_CLK_PIN 2#define DS1302_IO_PIN 3#define DS1302_CE_PIN 4#elif defined(ARDUINO_ARCH_ESP8266)#define DS1302_CLK_PIN D4#define DS1302_IO_PIN D3#define DS1302_CE_PIN D2#elif defined(ARDUINO_ARCH_ESP32)#define DS1302_CLK_PIN 0#define DS1302_IO_PIN 4#define DS1302_CE_PIN 5#else#error #error "May work, but not tested on this target"#endif// Create RTC objectErriezDS1302 rtc = ErriezDS1302(DS1302_CLK_PIN, DS1302_IO_PIN, DS1302_CE_PIN);void setup(){ // Initialize RTC while (!rtc.begin()) { Serial.println(F("RTC not found")); delay(3000); }}Check oscillator status at startup// Check oscillator statusif (!rtc.isRunning()) { // Error: RTC oscillator stopped. Date/time cannot be trusted. // Set new date/time before reading date/time. // Enable oscillator rtc.clockEnable(true);}Set time// Write time to RTCif (!rtc.setTime(12, 0, 0)) { // Error: Set time failed}Get timeuint8_t hour;uint8_t minute;uint8_t second;// Read time from RTCif (!rtc.getTime(&hour, &minute, &second)) { // Error: RTC read failed}Set date and time// Write RTC date/time: 13:45:09 31 December 2019 0=Sunday, 2=Tuesdayif (!rtc.setDateTime(13, 45, 9, 31, 12, 2019, 2) { // Error: RTC write failed}Get date and timeuint8_t hour;uint8_t min;uint8_t sec;uint8_t mday;uint8_t mon;uint16_t year;uint8_t wday;// Read RTC date/timeif (!rtc.getDateTime(&hour, &min, &sec, &mday, &mon, &year, &wday) { // Error: RTC read failed}// hour: 0..23// min: 0..59// sec: 0..59// mday: 1..31// mon: 1..12// year: 2000..2099// wday: 0..6 (0=Sunday .. 6=Saturday)Write date/time struct tmstruct tm dt;dt.tm_hour = 12;dt.tm_min = 34;dt.tm_sec = 56;dt.tm_mday = 29;dt.tm_mon = 1; // 0=Januarydt.tm_year = 2020-1900;dt.tm_wday = 6; // 0=Sundayif (!rtc.write(&dt)) { // Error: RTC Read failed}Read date/time struct tmstruct tm dt;// Read RTC date/timeif (!rtc.read(&dt)) { // Error: RTC read failed}Read Unix Epoch UTCtime_t t;// Read Unix epoch UTC from RTCif (!rtc.getEpoch(&t)) { // Error: RTC read failed}Write Unix Epoch UTC// Write Unix epoch UTC to RTCif (!rtc.setEpoch(1599416430UL)) { // Error: Set epoch failed}Write to RTC RAM// Write Byte to RTC RAMrtc.writeByteRAM(0x02, 0xA9);// Write buffer to RTC RAMuint8_t buf[NUM_DS1302_RAM_REGS] = { 0x00 };rtc.writeBufferRAM(buf, sizeof(buf));Read from RTC RAM// Read byte from

2025-04-09

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