{"title":"Popular items","description":"","products":[{"product_id":"raspberry-pi-2-model-b-armv7-with-1g-ram","title":"Raspberry Pi 2 - Model B - ARMv7 with 1G RAM","description":"DESCRIPTION\u003cbr\u003e\u003cbr\u003eDidn't think the Raspberry Pi could get any better? You're in for a big surprise! The Raspberry Pi 2 Model B is out and it's amazing! With an upgraded ARMv7 multicore processor, and a full Gigabyte of RAM, this pocket computer has moved from being a 'toy' to a real desktop PC!\u003cbr\u003e\u003cbr\u003eThe big upgrade is a move from the BCM2835 (single core ARMv6) to BCM2836 (quad core ARMv7). The upgrade in processor typesmeans you will see ~2x performance increase just on processor-upgrade only. For software that can take advantage of multiple-core processors, you can expect 4x performance on average and for really multi-thread-friendly code, up to 7.5x increase in speed!\u003cbr\u003e\u003cbr\u003eThat's not even taking into account the 1 Gig of RAM, which will greatly improve games and web-browser performance!\u003cbr\u003e\u003cbr\u003eBest of all, the Pi 2 keeps the same shape, connectors and mounting holes as the Raspberry Pi B+. That means that all of your HATs and other plug-in daughterboards will work just fine. 99% of cases and accessories will be fully compatible with both versions\u003cbr\u003e\u003cbr\u003ePlease note: The processor has completely changed on the new RaspberryPi 2, instead of a ARM v6 core chip (arm6l) the BCM2836 has been upgraded to an ARM v7 core which is a much more powerful core. However, your existing Raspberry Pi SD card images may not work because the firmware and kernel must be recompiled\/adapted for the new processor. If you have a Raspberry Pi 2, and you are trying to upgrade your existing SD card, you will need to upgrade your installation. To do that, log into your Pi 1 and at a console or terminal type in sudo apt-get upgrade to perform the upgrade procedure. You'll need your Pi to be on the Internet to do this. Once upgraded, the card will work on both Pi 1 and Pi 2 computers. If you have any pre-compiled binaries that you are downloading, those may need updating too, in order to take advantage of the speed increase. Anything where you have access to source code can be recompiled and ought to work just fine.","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4812960644,"sku":"2358","price":44.34,"currency_code":"USD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/2358-03.jpg?v=1441326020"},{"product_id":"8gb-card-with-noobs-1-4","title":"8GB Card with NOOBS 1.4","description":"DESCRIPTION\u003cbr\u003e\u003cbr\u003eNooBs 1.4 is the fastest way to have a variety of operating systems on your Pi. Available on an 8G card, you can now boot multiple OS's such as Raspbian, Pidora, RaspBMC, Snappy Ubuntu, etc. There's a boot up menu for selecting which one you like.\u003cbr\u003e\u003cbr\u003eNote: As of March 3, 2015 this version is compatible with the Raspberry Pi 2 Model B!\u003cbr\u003e\u003cbr\u003eThis card has NooBs 1.4 on it, works great and has enough space for 2 or 3 simultaneous OS options!\u003cbr\u003e\u003cbr\u003eContains:\u003cbr\u003e\u003cbr\u003eRaspbian 2015-02-16\u003cbr\u003ePlug in Ethernet cable to also download the latest versions of\u003cbr\u003e\u003cbr\u003ePiDora\u003cbr\u003eRiscOS\u003cbr\u003eRaspBMC\u003cbr\u003eSnappy Ubuntu Core\u003cbr\u003eOpenELEC","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4813114180,"sku":"1583","price":13.26,"currency_code":"USD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/1583-03.jpg?v=1441326156"},{"product_id":"motor-stepper-servo-shield-for-arduino-v2-kit-v2-3","title":"Adafruit Motor\/Stepper\/Servo Shield for Arduino v2 Kit - v2.3","description":"DESCRIPTION\u003cbr\u003e\u003cbr\u003eThe original Adafruit Motorshield kit is one of our most beloved kits, which is why we decided to make something even better. We have upgraded the shield kit to make the bestest, easiest way to drive DC and Stepper motors. This shield will make quick work of your next robotics project! We kept the ability to drive up to 4 DC motors or 2 stepper motors, but added many improvements:\u003cbr\u003e\u003cbr\u003eInstead of a L293D darlington driver, we now have the TB6612 MOSFET driver: with 1.2A per channel and 3A peak current capability. It also has much lower voltage drops across the motor so you get more torque out of your batteries, and there are built-in flyback diodes as well.\u003cbr\u003e\u003cbr\u003eInstead of using a latch and the Arduino's PWM pins, we have a fully-dedicated PWM driver chip onboard. This chip handles all the motor and speed controls over I2C. Only two pins (SDA \u0026amp; SCL) are required to drive the multiple motors, and since it's I2C you can also connect any other I2C devices or shields to the same pins. This also makes it drop-in compatible with any Arduino, such as the Uno, Due, Leonardo and Mega R3.\u003cbr\u003e\u003cbr\u003eCompletely stackable design: 5 address-select pins means up to 32 stackable shields: that's 64 steppers or 128 DC motors! What on earth could you do with that many steppers? I have no idea but if you come up with something send us a photo because that would be a pretty glorious project.\u003cbr\u003e\u003cbr\u003eLots of other little improvements such as a polarity protection FET on the power pins and a bit of prototyping area. And the shield is assembled and tested here at Adafruit so all you have to do is solder on straight or stacking headers and the terminal blocks.\u003cbr\u003e\u003cbr\u003eLets check out these specs again:\u003cbr\u003e\u003cbr\u003e2 connections for 5V 'hobby' servos connected to the Arduino's high-resolution dedicated timer - no jitter!\u003cbr\u003e4 H-Bridges: TB6612 chipset provides 1.2A per bridge (3A peak) with thermal shutdown protection, internal kickback protection diodes. Can run motors on 4.5VDC to 13.5VDC.\u003cbr\u003eUp to 4 bi-directional DC motors with individual 8-bit speed selection (so, about 0.5% resolution)\u003cbr\u003eUp to 2 stepper motors (unipolar or bipolar) with single coil, double coil, interleaved or micro-stepping.\u003cbr\u003eMotors automatically disabled on power-up\u003cbr\u003eBig terminal block connectors to easily hook up wires (18-26AWG) and power\u003cbr\u003eArduino reset button brought up top\u003cbr\u003ePolarity protected 2-pin terminal block and jumper to connect external power, for separate logic\/motor supplies\u003cbr\u003eTested compatible with Arduino UNO, Leonardo, ADK\/Mega R3, Due, Diecimila \u0026amp; Duemilanove. Works with Mega\/ADK R2 and earlier with 2 wire jumpers.\u003cbr\u003eDownload the easy-to-use Arduino software library, check out the examples and you're ready to go!\u003cbr\u003eComes with an assembled \u0026amp; tested shield, terminal block, plain header, jumper. Some soldering is required to assemble the headers on. Stacking headers not included, but we sell them in the shop so if you want to stack shields, please pick them up at the same time. Arduino and motors are not included but we have lots of motors in the shop and all our hobby servos, DC motors, and stepper motors work great.\u003cbr\u003e\u003cbr\u003eWe have a great tutorial in the Adafruit Learning System with a lot of documentation and example code, so please check it out","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4813290372,"sku":"1438","price":22.14,"currency_code":"USD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/1438-04.jpg?v=1441326320"},{"product_id":"adafruit-16-channel-12-bit-pwm-servo-driver-i2c-interface-pca9685","title":"Adafruit 16-Channel 12-bit PWM\/Servo Driver - I2C interface - PCA9685","description":"DESCRIPTION\u003cbr\u003e\u003cbr\u003eYou want to make a cool robot, maybe a hexapod walker, or maybe just a piece of art with a lot of moving parts. Or maybe you want to drive a lot of LEDs with precise PWM output. Then you realize that your microcontroller has a limited number of PWM outputs! What now? You could give up OR you could just get this handy PWM and Servo driver breakout.\u003cbr\u003e\u003cbr\u003eWhen we saw this chip, we quickly realized what an excellent add-on this would be. Using only two pins, control 16 free-running PWM outputs! You can even chain up 62 breakouts to control up to 992 PWM outputs (which we would really like to see since it would be glorious)\u003cbr\u003e\u003cbr\u003eIt's an i2c-controlled PWM driver with a built in clock. That means that, unlike the TLC5940 family, you do not need to continuously send it signal tying up your microcontroller, its completely free running!\u003cbr\u003eIt is 5V compliant, which means you can control it from a 3.3V microcontroller and still safely drive up to 6V outputs (this is good for when you want to control white or blue LEDs with 3.4+ forward voltages)\u003cbr\u003e6 address select pins so you can wire up to 62 of these on a single i2c bus, a total of 992 outputs - that's a lot of servos or LEDs\u003cbr\u003eAdjustable frequency PWM up to about 1.6 KHz\u003cbr\u003e12-bit resolution for each output - for servos, that means about 4us resolution at 60Hz update rate\u003cbr\u003eConfigurable push-pull or open-drain output\u003cbr\u003eOutput enable pin to quickly disable all the outputs\u003cbr\u003eWe wrapped up this lovely chip into a breakout board with a couple nice extras\u003cbr\u003e\u003cbr\u003eTerminal block for power input (or you can use the 0.1\" breakouts on the side)\u003cbr\u003eReverse polarity protection on the terminal block input\u003cbr\u003eGreen power-good LED\u003cbr\u003e3 pin connectors in groups of 4 so you can plug in 16 servos at once (Servo plugs are slightly wider than 0.1\" so you can only stack 4 next to each other on 0.1\" header\u003cbr\u003e\"Chain-able\" design\u003cbr\u003eA spot to place a big capacitor on the V+ line (in case you need it)\u003cbr\u003e220 ohm series resistors on all the output lines to protect them, and to make driving LEDs trivial\u003cbr\u003eSolder jumpers for the 6 address select pins\u003cbr\u003eThis product comes with a fully tested and assembled breakout as well as 4 pieces of 3x4 male straight header (for servo\/LED plugs), a 2-pin terminal block (for power) and a piece of 6-pin 0.1\" header (to plug into a breadboard). A little light soldering will be required to assemble and customize the board by attaching the desired headers but it is a 15 minute task that even a beginner can do. If you want to use right-angle 3x4 headers, we also carry a 4 pack in the shop.\u003cbr\u003e\u003cbr\u003eCheck out our tutorial with Arduino and you can get our documented Arduino library which has both PWM and Servo examples from github!","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4813560004,"sku":"815","price":16.59,"currency_code":"USD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/815-04.jpg?v=1441751584"},{"product_id":"flora-wearable-electronic-platform-arduino-compatible-v2","title":"FLORA - Wearable Electronic Platform: Arduino-compatible - v2","description":"\u003cp\u003eDESCRIPTION\u003cbr\u003e\u003cbr\u003eFLORA is Adafruit's fully-featured wearable electronics platform. It's a round, sewable, Arduino-compatible microcontroller designed to empower amazing wearables projects.\u003c\/p\u003e\n\u003cp\u003eThe FLORA is small (1.75\" diameter, weighing 4.4 grams). The FLORA family also has the best stainless steel threads, sensors, GPS modules and chainable LED NeoPixels, perfect accessories for the FLORA main board. New! As of May 12th, 2015, we're now selling the Flora v2! The Flora v2 now comes with a micro-USB port instead of a mini-USB port and a programmable NeoPixel installed (it's connected to Digital 8, ready for your blinky commands)\u003cbr\u003e\u003cbr\u003eThe FLORA has built-in USB support. Built in USB means you plug it in to program it, it just shows up - all you need is a Micro-B USB cable, no additional purchases are needed! We have a modified version of the Arduino IDE so Mac \u0026amp; Windows users can get started fast - or with the new 1.6.4+ Arduino IDE, it takes only a few seconds to add Flora-support. The FLORA has USB HID support, so it can act like a mouse or keyboard to attach directly to computers.\u003cbr\u003e\u003cbr\u003eFLORA has a small but easy to use onboard reset button to reboot the system. The power supply is designed to be flexible and easy to use. There is an onboard polarized 2 JST battery connector with protection schottky diode for use with external battery packs from 3.5v to 16v DC in. Can be used with LiIon\/LiPoly, LiFe, alkaline or rechargeable NiMh\/NiCad batteries of any size. The FLORA does not have a LiPo charger included by design, this allows safe use with multiple battery types and reduces risk of fire as it is not recommended to charge these batteries on fabric. We suggest one of our micro-lipo chargers if you want to use LiPo batteries with FLORA.\u003cbr\u003e\u003cbr\u003eFLORA has onboard power switch connected to 2A power FET for safe and efficient battery on\/off control, so you can power quite a bit without burning out your switch. The FLORA has an onboard 3.3v 250mA regulator with a protection diode and USB fuse so that the microcontroller voltage is consistent and can power common 3.3v modules and sensors.\u003cbr\u003e\u003cbr\u003eWe spent a lot of time on the power supply because the FLORA power system is specifically designed to allow easy control and power of a large quantity of addressable NeoPixels. Flora can easily drive 50 pixels directly from the onboard power supply, or up to 500 with the pixels externally powered by a separate 5V supply.\u003cbr\u003e\u003cbr\u003eFLORA is fabric friendly-- all the components on board are flush to the PCB and won't snag delicate garments (it does not use FTDI headers).\u003cbr\u003eFLORA is extremely beginner-friendly - it is difficult to destroy the FLORA by connecting a battery backwards due to polarized connector and protection diodes. The on-board regulator means that even connecting a 9V battery will not result in damage or tears.\u003cbr\u003eThe FLORA has 4 indicator LEDs: power good, digital signal LED for bootloader feedback, data rx\/tx. Also onboard is an ICSP connector for easy reprograming for advanced users. Flora v2 even has an RGB NeoPixel for even more colorful lighting.\u003cbr\u003eThere are 14 sewing tap pads for attachment and electrical connections. Data buses are interleaved with power and ground pads for easy module and sensor attachments without worrying about overlapping traces which are not possible with conductive thread.\u003cbr\u003eThe FLORA works great with the Arduino IDE and is super easy to install support if you have IDE 1.6.4 or later\u003cbr\u003eThe FLORA is not the first wearable Arduino \/ Arduino-compatible. Leah Buechley‰۪s Lilypad was developed in 2007 and while they are both round, FLORA is a completely new platform that works seamlessly with the FLORA accessories.\u003cbr\u003e\u003cbr\u003eThe FLORA is made in NYC at Adafruit, it was designed by Limor Fried (Ladyada), Adafruit's founder and engineer. Adafruit has a proven track record of providing 100+ high-quality libraries for Arduino\/Arduino IDE, hundreds of tutorials, open-source code and contributions to the Arduino project. Ladyada was a member of the MIT wearables group and likes to sew.\u003cbr\u003e\u003cbr\u003eYou may get an off-white or black JST connector.\u003c\/p\u003e","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4813781124,"sku":"659","price":22.14,"currency_code":"USD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/659-08.jpg?v=1441326760"},{"product_id":"adafruit-trinket-mini-microcontroller-3-3v-logic-microusb","title":"Adafruit Trinket - Mini Microcontroller - 3.3V Logic - MicroUSB","description":"\u003cdiv\u003eDESCRIPTION\u003cbr\u003e\u003cbr\u003eTrinket may be small, but do not be fooled by its size! It's a tiny microcontroller board, built around the Atmel ATtiny85, a little chip with a lot of power. We wanted to design a microcontroller board that was small enough to fit into any project, and low cost enough to use without hesitation. Perfect for when you don't want to give up your expensive dev-board and you aren't willing to take apart the project you worked so hard to design. It's our lowest-cost arduino-IDE programmable board!\u003cbr\u003e\u003cbr\u003eAs of May 27th, 2015 the 3.3V Trinket has been revised! The board is now even smaller - at just 27mm x 15mm - and comes with a micro-B USB connector rather than mini-B\u003cbr\u003e\u003cbr\u003eThe Attiny85 is a fun processor because despite being so small, it has 8K of flash, and 5 I\/O pins, including analog inputs and PWM 'analog' outputs. We designed a USB bootloader so you can plug it into any computer and reprogram it over a USB port just like an Arduino. In fact we even made some simple modifications to the Arduino IDE so that it works like a mini-Arduino board. You can't stack a big shield on it but for many small \u0026amp; simple projects the Trinket will be your go-to platform.\u003cbr\u003e\u003cbr\u003eThis is the 3V Trinket. There are two versions of the Trinket. One is 3V and one is 5V. Both work the same, but have different operating logic voltages. Use the 3V one to interface with sensors and devices that need 3V logic, or when you want to power it off of a LiPo battery. The 3V version should only run at 8 MHz. Use the 5V one for sensors and components that can use or require 5V logic. The 5V version can run at 8 MHz or at 16MHz by setting the software-set clock frequency.\u003cbr\u003e\u003cbr\u003eEven though you can program Trinket using the Arduino IDE, it's not a fully 100% Arduino-compatible. There are some things you trade off for such a small and low cost microcontroller!\u003cbr\u003e\u003cbr\u003eTrinket does not have a Serial port connection for debugging so the serial port monitor will not be able to send\/receive data\u003cbr\u003eSome computers' USB v3 ports don't recognize the Trinket's bootloader. Simply use a USB v2 port or a USB hub in between\u003cbr\u003eHere are some useful specifications!\u003cbr\u003e\u003cbr\u003eATtiny85 on-board, 8K of flash, 512 byte of SRAM, 512 bytes of EEPROM\u003cbr\u003eInternal oscillator runs at 8MHz, but can be doubled in software for 16MHz\u003cbr\u003eUSB bootloader with a nice LED indicator looks just like a USBtinyISP so you can program it with AVRdude (with a simple config modification) and\/or the Arduino IDE (with a few simple config modifications)\u003cbr\u003eMicro-USB jack for power and\/or USB uploading, you can put it in a box or tape it up and use any USB cable for when you want to reprogram.\u003cbr\u003eWe really worked hard on the bootloader process to make it rugged and foolproof, this board wont up and die on you in the middle of a project!\u003cbr\u003e~5.25K bytes available for use (2.75K taken for the bootloader)\u003cbr\u003eAvailable in both 3V and 5V flavors\u003cbr\u003eOn-board 3.3V or 5.0V power regulator with 150mA output capability and ultra-low dropout. Up to 16V input, reverse-polarity protection, thermal and current-limit protection.\u003cbr\u003ePower with either USB or external output (such as a battery) - it'll automatically switch over\u003cbr\u003eOn-board green power LED and red pin #1 LED\u003cbr\u003eReset button for entering the bootloader or restarting the program. No need to unplug\/replug the board every time you want to reset or update!\u003cbr\u003e5 GPIO - 2 shared with the USB interface. The 3 independent IO pins have 1 analog input and 2 PWM output as well. The 2 shared IO pins have 2 more analog inputs and one more PWM output.\u003cbr\u003eHardware I2C \/ SPI capability for breakout \u0026amp; sensor interfacing.\u003cbr\u003eWorks with many basic Arduino libraries including Adafruit Neopixel!\u003cbr\u003eMounting holes! Yeah!\u003cbr\u003eReally really small\u003cbr\u003eFor a lot more details, including a tour of the Trinket, pinout details and Arduino IDE examples, check out the Introducing Trinket tutorial\u003c\/div\u003e","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4813995076,"sku":"1500","price":7.71,"currency_code":"USD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/1500-07.jpg?v=1441326938"},{"product_id":"adafruit-trinket-mini-microcontroller-5v-logic","title":"Adafruit Trinket - Mini Microcontroller - 5V Logic","description":"DESCRIPTION\u003cbr\u003e\u003cbr\u003eTrinket may be small, but do not be fooled by its size! It's a tiny microcontroller board, built around the Atmel ATtiny85, a little chip with a lot of power. We wanted to design a microcontroller board that was small enough to fit into any project, and low cost enough to use without hesitation. Perfect for when you don't want to give up your expensive dev-board and you aren't willing to take apart the project you worked so hard to design. It's our lowest-cost arduino-IDE programmable board!\u003cbr\u003e\u003cbr\u003eThe Attiny85 is a fun processor because despite being so small, it has 8K of flash, and 5 I\/O pins, including analog inputs and PWM 'analog' outputs. We designed a USB bootloader so you can plug it into any computer and reprogram it over a USB port just like an Arduino. In fact we even made some simple modifications to the Arduino IDE so that it works like a mini-Arduino board. You can't stack a big shield on it but for many small \u0026amp; simple projects the Trinket will be your go-to platform.\u003cbr\u003e\u003cbr\u003eThis is the 5V Trinket. There are two versions of the Trinket. One is 3V and one is 5V. Both work the same, but have different operating logic voltages. Use the 3V one to interface with sensors and devices that need 3V logic, or when you want to power it off of a LiPo battery. The 3V version should only run at 8 MHz. Use the 5V one for sensors and components that can use or require 5V logic. The 5V version can run at 8 MHz or at 16MHz by setting the software-set clock frequency.\u003cbr\u003e\u003cbr\u003eEven though you can program Trinket using the Arduino IDE, it's not a fully 100% Arduino-compatible. There are some things you trade off for such a small and low cost microcontroller!\u003cbr\u003e\u003cbr\u003eTrinket does not have a Serial port connection for debugging so the serial port monitor will not be able to send\/receive data\u003cbr\u003eSome computers' USB v3 ports don't recognize the Trinket's bootloader. Simply use a USB v2 port or a USB hub in between\u003cbr\u003eHere are some useful specifications!\u003cbr\u003e\u003cbr\u003eATtiny85 on-board, 8K of flash, 512 byte of SRAM, 512 bytes of EEPROM\u003cbr\u003eInternal oscillator runs at 8MHz, but can be doubled in software for 16MHz\u003cbr\u003eUSB bootloader with a nice LED indicator looks just like a USBtinyISP so you can program it with AVRdude (with a simple config modification) and\/or the Arduino IDE (with a few simple config modifications)\u003cbr\u003eMini-USB jack for power and\/or USB uploading, you can put it in a box or tape it up and use any USB cable for when you want to reprogram.\u003cbr\u003eWe really worked hard on the bootloader process to make it rugged and foolproof, this board wont up and die on you in the middle of a project!\u003cbr\u003e~5.25K bytes available for use (2.75K taken for the bootloader)\u003cbr\u003eAvailable in both 3V and 5V flavors\u003cbr\u003eOn-board 3.3V or 5.0V power regulator with 150mA output capability and ultra-low dropout. Up to 16V input, reverse-polarity protection, thermal and current-limit protection.\u003cbr\u003ePower with either USB or external output (such as a battery) - it'll automatically switch over\u003cbr\u003eOn-board green power LED and red pin #1 LED\u003cbr\u003eReset button for entering the bootloader or restarting the program. No need to unplug\/replug the board every time you want to reset or update!\u003cbr\u003e5 GPIO - 2 shared with the USB interface. The 3 independent IO pins have 1 analog input and 2 PWM output as well. The 2 shared IO pins have 2 more analog inputs and one more PWM output.\u003cbr\u003eHardware I2C \/ SPI capability for breakout \u0026amp; sensor interfacing.\u003cbr\u003eWorks with many basic Arduino libraries including Adafruit Neopixel!\u003cbr\u003eMounting holes! Yeah!\u003cbr\u003eReally really small\u003cbr\u003eFor a lot more details, including a tour of the Trinket, pinout details and Arduino IDE examples, check out the Introducing Trinket tutorial","brand":"Adafruit","offers":[{"title":"Default Title","offer_id":4814084932,"sku":"1501","price":7.71,"currency_code":"USD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0947\/9150\/products\/1501-03.jpg?v=1441327032"},{"product_id":"stereo-3-7w-class-d-audio-amplifier-max98306","title":"Stereo 3.7W Class D Audio Amplifier - MAX98306","description":"DESCRIPTION\u003cbr\u003e\u003cbr\u003eThis incredibly small stereo amplifier is surprisingly powerful - able to deliver 2 x 3.7W channels into 3 ohm impedance speakers. Inside the miniature chip is a class D controller, able to run from 2.7V-5.5VDC. Since the amp is a class D, its incredibly efficient (over 90% efficient when driving an 8ë© speaker at over a Watt) - making it perfect for portable and battery-powered projects. It has built in thermal and over-current protection but we could barely tell it got hot. This board is a welcome upgrade to basic \"LM386\" amps!\u003cbr\u003e\u003cbr\u003eThe inputs of the amplifier go through 1.0uF capacitors, so they are fully 'differential' - if you don't have differential outputs, simply tie the R- and L- to ground. The outputs are \"Bridge Tied\" - that means they connect directly to the outputs, no connection to ground. The output is a 360KHz square wave PWM that is then 'averaged out' by the speaker coil - the high frequencies are not heard. All the above means that you can't connect the output into another amplifier, it should drive the speakers directly.\u003cbr\u003e\u003cbr\u003eComes with a fully assembled and tested breakout board with 1.0uF input capacitors. We also include header to plug it into a breadboard, 3.5mm screw-terminal blocks so you can easily attach\/detach your speakers, and a 2x4 header + jumper to change the amplifier gain on the fly. You will be ready to rock in 15 minutes! Speakers are not included, use any 3ohm or greater impedance speakers.\u003cbr\u003e \u003cbr\u003e\u003cbr\u003eOutput Power: 3.7W at 3ë©, 10% THD, 1.7W at 8ë©, 10% THD, with 5V Supply\u003cbr\u003ePasses EMI limit unfiltered with up to 12 inches (30 cm) of speaker cable\u003cbr\u003eHigh 83dB PSRR at 217Hz\u003cbr\u003eSpread-Spectrum Modulation and Active Emissions Limiting\u003cbr\u003eFive pin-selectable gains: 6dB, 9dB, 12dB, 15dB and 18dB. 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