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Schmitt Trigger - CD40106B SPARKFUNSchmitt Trigger - CD40106BSPARKFUN
759税込835
1個
33日以内出荷
DescriptionThe CD40106BE consists of six Schmitt-trigger circuits. Each circuit functions as an inverter with Schmitt-trigger action on the input. The trigger switches at different points for positive- and negative-going signals. The difference between the positive-going voltage(VP)and the negative-going voltage(VN)is defined as hysteresis voltage(VH).FeaturesSchmitt trigger action with no external componentsHysteresis voltage typ. at 0.9V at VDD = 5V, 2.3V at VDD = 10V, and 3.5V at VDD = 15VNoise immunity greater than 50%No limit on input rise and fall timesStandardised, symmetrical output characteristics100% tested for quiescent current at 20sVMaximum input current of 1μA at 18 V over full package temperature range; 100nA at 18V and 25℃Low VDD to VSS current during slow input ramp
アズワン品番67-0420-89
SparkFun Qwiic Alphanumeric Display - White SPARKFUNSparkFun Qwiic Alphanumeric Display - WhiteSPARKFUN
2,998税込3,298
1個
33日以内出荷
DescriptionWe are quite familiar with seven-segment displays. We see them on our alarm clocks, ovens, and microwaves. By adding more segments to each digit you can display more than just numbers! Introducing the brand new SparkFun Qwiic Alphanumeric Display. These white fourteen-segment digits allow you display all sorts of numbers, characters, and symbols. With Qwiic, simply plug it in and go. No soldering, no figuring out which is SDA or SCL, and no voltage regulation or translation required!The SparkFun Alphanumeric Display Arduino library makes printing strings to the display as easy as calling the print()function. With this library, you'll be able to send I2C commands to the VK16K33 LED driver chip to light up segments(including the decimal point or colon)and even scroll your string across the display. You can download the library through the Arduino library manager by searching 'SparkFun Alphanumeric Display' or you can get the GitHub repo as a .zip file and install the library from there.The VK16K33 also supports I2C address configuration. Simply close a combination of the address jumpers on the back and you can communicate with up to four displays on the same bus. Our slim board design also features detachable stand off holes, vertical Qwiic connectors, and internal mounting holes.The SparkFun Qwiic Connect System is an ecosystem of I2C sensors, actuators, shields and cables that make prototyping faster and less prone to error. All Qwiic-enabled boards use a common 1mm pitch, 4-pin JST connector. This reduces the amount of required PCB space, and polarized connections mean you can't hook it up wrong.Get Started with the Qwiic Alphanumeric Display Hookup GuideFeaturesWhite displayOperating Voltage:3.3VIntegrated RC oscillatorMaximum display segment numbers:128 patterns13×3 matrix key scan circuit16-step dimming circuitI2C Addresses:0x70(0x71, 0x72, 0x73)2x Qwiic connectors2x Wall Mounting Points
アズワン品番67-0421-87
SparkFun Thermocouple Breakout - MAX31855K SPARKFUNSparkFun Thermocouple Breakout - MAX31855KSPARKFUN
6,198税込6,818
1個
33日以内出荷
DescriptionThe SparkFun MAX31855K Thermocouple Breakout is a simple 14-bit resolution, SPI-compatible, serial interface thermocouple digitizer that makes reading a wide range of temperatures possible. A thermocouple works by taking two wires made of dissimilar metals, connecting them at the two ends, and making a temperature gradient between one end and the other(a 'hot' end and a 'cold' one). Once this is achieved, a voltage potential is formed and current flows. The SparkFun Thermocouple Breakout takes a standard Type-K thermocouple in one end, digitizes the temperature measured and sends that data out the other end via a SPI interface, thereby interpreting the data and translating it for you to read!With the SparkFun Thermocouple Breakout, the thermocouple's hot junction can be read from -200℃ to +700℃ with an accuracy of ±2℃ while the cold junction, inside the MAX31855K, can only range from -20℃ to +85℃ while maintaining ±2℃ accuracy. The MAX31855K constantly measures the temperature of the cold junction using an internal temperature-sensing diode. The MAX31855K requires a power source from +3.0V to +3.6V(+3.0V nominal)and only draws 1.5mA maximum.The Thermocouple Breakout is designed to accept a standard thermocouple connector, for convenience and compatibility with probes you may already own. These connectors aren't necessary, and you could solder a thermocouple directly into the through-holes labeled '+' and '-'. If you decide to solder the thermocouple directly to the breakout board, it is recommended that the thermocouple be mounted for strain relief to avoid breaking the thin wires. Notches for a zip-tie or wire wrapping have been provided in the PCB opposite the header for this purpose.Features14-bit ResolutionSPI-Compatible, Serial Interface-200℃ to +700℃ Temperature Reading with ±2℃ Accuracy3.0V to 3.6V(+3.0V nominal)RequiredAccepts Type-K Thermocouple
アズワン品番67-0426-49
SparkFun Digital Temperature Sensor Breakout - AS6212 Qwiic SPARKFUNSparkFun Digital Temperature Sensor Breakout - AS6212 QwiicSPARKFUN
2,998税込3,298
1個
33日以内出荷
DescriptionThis SparkFun Qwiic Digital Temperature Sensor Breakout provides a combination of high temperature accuracy with excellent low power consumption using the AS6212 digital temperature sensor from ams AG. The sensor measures temperature data
アズワン品番67-0427-59
SparkFun Load Sensor Combinator SPARKFUNSparkFun Load Sensor CombinatorSPARKFUN
839税込923
1個
33日以内出荷
DescriptionThe SparkFun Load Sensor Combinator is a bare PCB that combines four load sensors into a standard four-wire Wheatstone bridge configuration. If you open up an electronic bathroom scale, you'll find a large rat's nest of wires. The Load Sensor Combinator was created to combine the 12 wires found in a bathroom scale into the standard four-wire Wheatstone bridge configuration.This version of the SparkFun Load Sensor Combinator features a few changes that you specifically asked for! We updated the silk on the breakout to read "C/+/-" instead of "R/W/B" and moved the temperature sensor connector away from the standoff hole.You can either use four individual load sensors or simply purchase an off-the-shelf bathroom scale and hack the combinator into it rather than trying to design a base to properly mount four load sensors.This board works great with our Load Cell Amplifier breakout board; the five pins on the edge of the combinator line up directly to the five pins on the amplifier.If your amplifier and supporting electronics are more than a few inches away from the scale, an RJ45 footprint is provided. The four Wheatstone pins(E+/E-/S+/S-)as well as the shield pin are connected to twisted pairs within a standard cheap Ethernet cable. This allows the amplifier board to be placed many feet away from the scale itself.The combinator board also includes a footprint for the DS18B20 one-wire temperature sensor. This allows the user to gather the temperature of the scale in case there is a large variance between the scale and the amplifier. These three pins are accessed through the RJ45 connection as well, allowing remote temperature readings to be gathered over one twisted pair Ethernet cable.NOTE:The SparkFun Load Sensor Combinator will only work with 3 wire load sensors, it is not compatible with 4 wire load cells.
アズワン品番67-0419-93
SparkFun Real Time Clock Module - RV-1805 Qwiic SPARKFUNSparkFun Real Time Clock Module - RV-1805 QwiicSPARKFUN
7,798税込8,578
1個
33日以内出荷
DescriptionGet with the times, already! This SparkFun Real Time Clock(RTC)Module is a Qwiic-enabled breakout board for the RV-1805 chipset. The RTC is ultra-low power(running at only about 22nA in its lowest power setting)so it can use a supercapacitor for backup power instead of a normal battery. This means you get plenty of charge and discharge cycles without any degradation to the "battery." To make it even easier to get your readings, all communication is enacted exclusively via I2C, utilizing our handy Qwiic system so no soldering is required to connect it to the rest of your system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.This RTC module's built in RV-1805 has not one, but two internal oscillators:a 32.768kHz tuning fork crystal and a low power RC based oscillator and can automatically switch between the two using the more precise crystal to correct the RC oscillator every few minutes. This feature allows the module to maintain a very accurate date and time with the worst case being +/- about three minutes over a year. The RV-1805 also has a built in trickle charger so as soon as the RTC is connected to power the it will be fully charged in under 10 minutes and has the ability to switch power to other systems allowing it to directly turn on or off a power hungry device such as a microcontroller or RF engine.There is also the option to add a battery to the board if the supercapacitor just isn't going keep your project powered long enough(keep in mind, the supercap can hypothetically make the board keep time for around 35 days), you can solder on an external battery. That means you can let board sit with no power or connection to the outside world and the current hour/minute/second/date will be maintained.Note:The I2C address of the RV-1805 is 0x69 and is hardware defined. A multiplexer/Mux is required to communicate to multiple RV-1805 sensors on a single bus. If you need to use more than one RV-1805 sensor consider using the Qwiic Mux Breakout.The SparkFun Qwiic connect system is an ecosystem of I2C sensors, actuators, shields and cables that make prototyping faster and less prone to error. All Qwiic-enabled boards use a common 1mm pitch, 4-pin JST connector. This reduces the amount of required PCB space, and polarized connections mean you can't hook it up wrong.Get Started with the RV-1805 Real Time Clock Module GuideFeaturesOperating Voltage(Startup):1.6V - 3.6VOperating Voltage(Timekeeping):1.5V - 3.6VOperating Temperature:-40℃ - 85℃Time Accuracy:±2.0 ppmCurrent Consumption:22nA(Typ.)I2C Address:0xD2Supercapacitor for Backup Power2x Internal Oscillators2x Qwiic Connectors
アズワン品番67-0420-02
SparkFun Electret Microphone Breakout SPARKFUNSparkFun Electret Microphone BreakoutSPARKFUN
2,898税込3,188
1個
33日以内出荷
DescriptionThis small breakout board couples an Electret microphone(100Hz--10kHz)with a 60x mic preamplifier to amplify the sounds of voice, claps, door knocks or any sounds loud enough to be picked up by a microcontroller's analog-to-digital converter. Each breakout comes fully assembled and works from 2.7V up to 5.5V.The Electret Mic Breakout translates amplitude(not volume)by capturing sound waves between two conducting plates(one a vibrating diaphragm and the other fixed)in the microphone and converting them into electrical waves. These electrical signals are then amplified and picked up by your microcontroller's ADC.Get Started With the Electret Microphone Guide!
アズワン品番67-0419-83
SparkFun IR Array Breakout - 110 Degree FOV, MLX90640 Qwiic SPARKFUNSparkFun IR Array Breakout - 110 Degree FOV, MLX90640 QwiicSPARKFUN
22,980税込25,278
1個
33日以内出荷
DescriptionIt's time to say hip hip array for this IR Breakout! The MLX90640 SparkFun IR Array Breakout is equipped with a 32x24 array of thermopile sensors creating, in essence, a low resolution thermal imaging camera. With this breakout you can detect surface temperatures from many feet away with an accuracy of ±1.5℃(best case). To make it even easier to get your low-resolution infrared image, all communication is enacted exclusively via I2C, utilizing our handy Qwiic system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.This specific IR Array Breakout features a 110°x75° field of view with a temperature measurement range of -40℃-300℃. The MLX90640 IR Array has pull up resistors attached to the I2C bus; both can be removed by cutting the traces on the corresponding jumpers on the back of the board. Please be aware that the MLX90640 requires complex calculations by the host platform so a regular Arduino Uno(or equivalent)doesn't have enough RAM or flash to complete the complex computations required to turn the raw pixel data into temperature data. You will need a microcontroller with 20,000 bytes or more of RAM. To achieve this, we recommend a Teensy 3.1 or above.Note:The I2C address of the MLX90640 is 0x33 and is hardware defined. A multiplexer/Mux is required to communicate to multiple MLX90640 sensors on a single bus. If you need to use more than one MLX90640 sensor consider using the Qwiic Mux Breakout.The SparkFun Qwiic connect system is an ecosystem of I2C sensors, actuators, shields and cables that make prototyping faster and less prone to error. All Qwiic-enabled boards use a common 1mm pitch, 4-pin JST connector. This reduces the amount of required PCB space, and polarized connections mean you can't hook it up wrong.Get Started with the SparkFun IR Array Breakout GuideFeaturesOperating Voltage:3V-3.6VCurrent Consumption:~18mAField of View:110°x75°Measurement Range:-40℃-300℃Resolution:±1.5℃Refresh Rate:0.5Hz-64HzI2C Address:0x332x Qwiic Connection Ports
アズワン品番67-0426-87
SparkFun Thing Plus - XBee3 Micro U.FL SPARKFUNSparkFun Thing Plus - XBee3 Micro U.FLSPARKFUN
16,980税込18,678
1個
33日以内出荷
DescriptionThe XBee3 Thing Plus is an ultra capable and easy way for getting into wireless device development. The combination of XBee and Qwiic in a space conscious design represents a much needed update to our XBee offering. With 20 I/O pins and Lithium Polymer Ion battery management, the XBee3 Thing Plus has all the basics for quickly prototyping or developing a connected device such as a remote sensor. The Qwiic connector and JST connector for the battery make for a solder-less option when working with the board which shortens setup time.The new XBee3 Micro Module provides the classic all-but plug and play 802.15.4 2.4GHz wireless connection(Zigbee 3.0 Protocol)that makes it so desirable, but with a new addition of being programmable with MicroPython(32KB of memory available for it). RF data rates up to 250 Kbps and 200ft indoor ranges and up to 4000ft line-of-sight outdoor range. Communicating with/Configuring the module happens via an AT Command set or the Digi API, X-CTU, both locally or over-the-air. There's even a mobile version of X-CTU now; Digi XBee(R)Mobile.This variation features a U.FL antenna connector for longer range communications. Check out the related products for compatible antennas.Get Started With the SparkFun XBee3 Thing Plus GuideFeaturesXBee3 Micro ModuleSilicon Labs EFR32MG SoC250Kbps RF, 1Mbps Serial data ratesIndoor/Urban range up to 200 ft(60 m)Outdoor/RF Line of Sight range up to 4000 ft(1200 m)+8 dBm transmit power-103 dBm receiver sensitivityUART, I2C, SPI Interfaces(SPI currently not available at this time, but broken out on the board)ISM 2.4GHz Frequency Band(802.15.4)1MB of memory, 128KB RAM(32KB available for MicroPython)20 GPIO PinsConfigurable via X-CTU or AT Command set via both USB and Wirelessly(second XBee 3 device required for wireless configuration unless you're using the mobile app)Qwiic CompatibleOn-board charging circuit and connector for 3.3v Lithium Polymer Ion Batteries(see related products for compatible batteries)2.6VDC - 3.6VDC supply voltageU.FL Antenna Connector
アズワン品番67-0429-55
SparkFun Nano Power Timer - TPL5110 SPARKFUNSparkFun Nano Power Timer - TPL5110SPARKFUN
2,398税込2,638
1個
33日以内出荷
DescriptionSometimes we want our projects on, but sometimes we want to turn them off for a while to save power. The SparkFun Nano Power Timer will run while only consuming minimal power(approximately 35nA)and turn your project on after a set amount of time. When you are done polling your sensors, posting data to the web, writing to your logger, or planning world domination, your microcontroller can tell the Nano Power Timer to turn off the power. No more running your microcontroller all day when you only want to read the ambient temperature once per hour.The TPL5110 delay is configured with the use of resistors. We've added a six-way DIP switch to select one of the five preinstalled resistors. The sixth switch is attached to a pad to add your own PTH(or SMD)resistor. The delays associated with the preinstalled headers are shown on the bottom of the board for quick setup. Additionally, you can select more than one switch to combine the resistors in parallel(up to 26 options not including the custom resistor), check out the hookup guide for a nice chart as to the total resistance and corresponding delay for each combination.The Nano Power Timer can handle voltages between 1.8V and 5.5V as well as current up to 1.1A with times from 100ms to two hours(preconfigured settings range from 30s to 2h). You will find a button on the board which will allow you a quick override to the delay so you can turn your project on whenever you like.Get Started with the SparkFun Nano Power SwitchFeaturesSupply Voltage:1.8V to 5.5VCurrent consumption at 2.5V:35nA Typical(50nA Max)Selectable Time intervals:100ms to 7200s(2 hours)Timer Accuracy:1%
アズワン品番67-0425-68
SparkFun IR Array Breakout - 55 Degree FOV, MLX90640 Qwiic SPARKFUNSparkFun IR Array Breakout - 55 Degree FOV, MLX90640 QwiicSPARKFUN
22,980税込25,278
1個
33日以内出荷
DescriptionIt's time to say hip hip array for this IR Breakout! The MLX90640 SparkFun IR Array Breakout is equipped with a 32x24 array of thermopile sensors creating, in essence, a low resolution thermal imaging camera. With this breakout you can detect surface temperatures from many feet away with an accuracy of ±1.5℃(best case). To make it even easier to get your infrared image, all communication is enacted exclusively via I2C, utilizing our handy Qwiic system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.This specific IR Array Breakout features a55°x35°field of view with a temperature measurement range of -40℃-300℃. The MLX90640 IR Array has pull up resistors attached to the I2C bus; both can be removed by cutting the traces on the corresponding jumpers on the back of the board. Please be aware that the MLX90640 requires complex calculations by the host platform so a regular Arduino Uno(or equivalent)doesn't have enough RAM or flash to complete the complex computations required to turn the raw pixel data into temperature data. You will need a microcontroller with 20,000 bytes or more of RAM. To achieve this, we recommend a Teensy 3.1 or above.The SparkFun Qwiic connect system is an ecosystem of I2C sensors, actuators, shields and cables that make prototyping faster and less prone to error. All Qwiic-enabled boards use a common 1mm pitch, 4-pin JST connector. This reduces the amount of required PCB space, and polarized connections mean you can't hook it up wrong.Get Started with the SparkFun IR Array Breakout GuideFeaturesOperating Voltage:3V-3.6VCurrent Consumption:~18mAField of View:55°x35°Measurement Range:-40℃-300℃Resolution:±1.5℃Refresh Rate:0.5Hz-64HzI2C Address:0x332x Qwiic Connection Ports
アズワン品番67-0426-88
SparkFun Thing Plus - XBee3 Micro Chip Antenna SPARKFUNSparkFun Thing Plus - XBee3 Micro Chip AntennaSPARKFUN
17,980税込19,778
1個
33日以内出荷
DescriptionThe XBee3 Thing Plus is an ultra-capable and easy way for getting into wireless device development. The combination of XBee and Qwiic in a space-conscious design represents a much-needed update to our XBee offering. With 20 I/O pins and Lithium-Polymer Ion battery management, the XBee3 Thing Plus has all the basics for quickly prototyping or developing a connected device such as a remote sensor. The Qwiic connector and JST connector for the battery make for a solder-less option when working with the board which shortens setup time.The new XBee3 Micro Module provides the classic, near plug and play 802.15.4 2.4GHz wireless connection(Zigbee 3.0 Protocol)that makes it so desirable, but with a new addition of being programmable with MicroPython(32KB of memory available for it). RF data rates up to 250Kbps and 200 ft indoor ranges and up to 4000 ft line-of-sight outdoor range. Communicating with/Configuring the module happens via an AT Command set or the Digi API, X-CTU, both locally or over-the-air. There's even a mobile version of X-CTU now; Digi XBee(R)Mobile.Note:This variation uses a chip antenna and is not compatible with external antennas.Get Started With the SparkFun XBee3 Thing Plus GuideFeaturesXBee3 Micro ModuleSilicon Labs EFR32MG SoC250Kbps RF, 1Mbps Serial data ratesIndoor/Urban range up to 200 ft(60 m)Outdoor/RF Line of Sight range up to 4000 ft(1200 m)+8 dBm transmit power-103 dBm receiver sensitivityUART, I2C, SPI Interfaces(SPI currently not available at this time, but broken out on the board)ISM 2.4GHz Frequency Band(802.15.4)1MB of memory, 128KB RAM(32KB available for MicroPython)20 GPIO PinsConfigurable via X-CTU or AT Command set via both USB and Wirelessly(second XBee 3 device required for wireless configuration unless you're using the mobile app)Qwiic CompatibleOn-board charging circuit and connector for 3.3v Lithium Polymer Ion Batteries(see related products for compatible batteries)2.6VDC - 3.6VDC supply voltageOn-board Chip Antenna
アズワン品番67-0429-57
SparkFun 16 Output I/O Expander Breakout - SX1509 SPARKFUNSparkFun 16 Output I/O Expander Breakout - SX1509SPARKFUN
2,198税込2,418
1個
33日以内出荷
DescriptionAre you low on I/O? No problem! The SX1509 Breakout is 16-channel GPIO expander with an I2C interface that means with just two wires, your microcontroller can interface with 16 fully configurable digital input/output pins. But the SX1509 can do so much more than just simple digital pin control. It can produce PWM signals, so you can dim LEDs. It can be set to blink or even breathe pins at varying rates. This breakout is similar to multiplexer or "mux," in that it allows you to get more IO from less pins. And, with built-in keypad engine, it can interface with up to 64 buttons set up in an 8x8 matrix.Two headers at the top and bottom of the breakout board function as the input and control headers to the board. This is where you can supply power to the SX1509, and where your I2C signals SDA and SCL will terminate. GPIO and power buses are broken out in every-which direction, and configurable jumpers cover most of the rest of the board.Since the I/O banks can operate between 1.2V and 3.6V(5.5V tolerant)independent of both the core and each other, this device can also work as level-shifter. The SX1509 breakout makes it easy to prototype so you can add more I/O onto your Arduino or I/O limited controller. We've even spun up an Arduino Library to get you started!FeaturesEnable Direct Level Shifting Between I/O Banks and Host Controller5.5V Tolerant I/Os, Up to 15mA Output Sink on All I/OsIntegrated LED Driver with Intensity ControlOn-Chip Keypad Scanning Engine Supports Up to 8x8 Matrix(64 Keys)16 Channels of True Bi-directional Style I/O400kHz I2C Compatible Slave Interface
アズワン品番67-0419-88
FLIR Lepton 2.5 - Thermal Imaging Module SPARKFUNFLIR Lepton 2.5 - Thermal Imaging ModuleSPARKFUN
68,980税込75,878
1個
33日以内出荷
DescriptionThe FLIR Lepton(R)2.5 - Thermal Imaging Module is a radiometric-capable long wave infrared(LWIR)camera solution that is smaller than a dime, fits inside a smartphone, and is less expensive than traditional IR cameras. With a focal plane array of 80x60 active pixels, this Lepton easily integrates into native mobile-devices and other electronics as an IR sensor or thermal image sensor. The radiometric Lepton captures accurate, calibrated, and non-contact temperature data in every pixel.For large quantities:We currently have a limit of one per customer order on the FLIR Lepton 2.5 module due to supply chain issues as a result of COVID-19. If you need to place a distributor order please contact your sales rep and they will assist you. For bulk order for this module please visit our Volume Pricing Page for inquiries of stock. At this time, we cannot guarantee orders for this module but we will do what we can to work with you in fulfilling your request.FeaturesEffective Frame Rate:8.6 Hz(commercial application exportable)Input Clock:25-MHz nominal, CMOS IO Voltage LevelsOutput Format:User-selectable 14-bit, 8-bit(AGC applied), or 24-bit RGB(AGC and colorization applied)Pixel Size:17 μmRadiometric Accuracy:High gain:Greater of +/- 5℃ or 5%(typical)Low gain:Greater of +/- 10℃ or 10%(typical)Scene Dynamic Range:-10-140 ℃(high gain); up to 450℃(low gain)typicalSpectral Range:Longwave infrared, 8 μm to 14 μmTemperature Compensation:Automatic. Output image independent of camera temperature.Thermal Sensitivity:<50 mK(0.050° C)Video Data Interface:Video over SPIControl Port:CCI(I2C-like), CMOS IO Voltage LevelsPackage Dimensions - Socket Version(w×l×h):11.8×12.7×7.2 mmMechanical Interface:32-pin socket interface to standard Molex(R)socketNon-Operating Temperature Range:-40 ℃ to +80 ℃Optimum Temperature Range:-10℃ to +80℃Shock:1500 G @ 0.4 msArray format:80×60, progressive scanFOV - Diagonal:63.5°FOV - Horizontal:50°(nominal)Image Optimization:Factory configured and fully automatedNon-Uniformity Correction(NUC):Automatic with shutterSensor Technology:Uncooled VOx microbolometerSolar protection:IntegralInput Supply Voltage:2.8 V, 1.2 V, 2.5 V to 3.1 V IOPower Dissipation:150 mW(operating), 650 mW(during shutter event), 4 mW(standby)
アズワン品番67-0427-21
SparkFun Beefcake Relay Control Kit Ver. 2.0 SPARKFUNSparkFun Beefcake Relay Control Kit Ver. 2.0SPARKFUN
3,198税込3,518
1個
33日以内出荷
DescriptionYour 5V system can wield great power with this big, beefy relay board. How does 10A on the NC contacts and 20A on the NO contacts at 220VAC sound? The SparkFun Beefcake Relay Control Kit contains all the parts you need to get your high-power load under control. Only minimal assembly is required!The heart of the board is sealed, SPDT 20A/10A Relay. The relay is controlled by 5V logic through transistor, and an LED tells you when the relay is closed. This is kit, so it comes as through-hole parts with assembly required, which makes for some nice soldering practice. Screw terminal connectors on either side of the board make it easy to incorporate into your project.There are some pretty beefy traces connecting the relay to the load pins, but the 3-pin terminals are only rated for 15A max! If you plan on connecting larger load, you'll need to solder directly to the board. As always with high current and voltage, play it safe and use your judgment when deciding how much of load you want to put on board -- in open airflow the PCB can handle the full 20A for few minutes at time, but in an enclosed area heat can build up.Note:Please keep in mind that this board is really meant for someone with experience and good knowledge of electricity. If you're uncomfortable soldering or dealing with high voltage, please check out the IoT Power Relay. The IoT Power Relay is fully enclosed, making it lot safer.Get Started With the Beefcake Hookup Assembly GuideFeaturesVoltage Rating:220VAC/28VDCVCC requirements:4-6V, 150mA capableSPDT pins exposed(Form C)14 AWG screw terminals for relay connections.10 AWG solder lugs for relay connections.Flyback diode includedZener recovery diode included(decreases turn-off time)Heavy oz. copper on PCB
アズワン品番67-0424-03
SparkFun GPS Breakout - NEO-M9N, SMA Qwiic SPARKFUNSparkFun GPS Breakout - NEO-M9N, SMA QwiicSPARKFUN
22,980税込25,278
1個
33日以内出荷
DescriptionThe SparkFun NEO-M9N GPS Breakout is a high quality GPS board with equally impressive configuration options including SMA. The NEO-M9N module is a 92-channel u-blox M9 engine GNSS receiver, meaning it can receive signals from the GPS, GLONASS, Galileo, and BeiDou constellations with ~1.5 meter accuracy. This breakout supports concurrent reception of four GNSS. This maximizes position accuracy in challenging conditions increasing, precision and decreases lock time; and thanks to the onboard rechargeable battery, you'll have backup power enabling the GPS to get a hot lock within seconds! Additionally, this u-blox receiver supports I2C(u-blox calls this Display Data Channel)which makes it perfect for the Qwiic compatibility so we don't have to use up our precious UART ports. Utilizing our handy Qwiic system, no soldering is required to connect it to the rest of your system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.The NEO-M9N module detects jamming and spoofing events and can report them to the host, so that the system can react to such events. A SAW(Surface Acoustic Wave)filter combined with an LNA(Low Noise Amplifier)in the RF path is integrated into the NEO-M9N module which allows normal operation even under strong RF interferences.U-blox based GPS products are configurable using the popular, but dense, windows program called u-center. Plenty of different functions can be configured on the NEO-M9N:baud rates, update rates, geofencing, spoofing detection, external interrupts, SBAS/D-GPS, etc. All of this can be done within the SparkFun Arduino Library!The SparkFun NEO-M9N GPS Breakout is also equipped with an on-board rechargeable battery that provides power to the RTC on the NEO-M9N. This reduces the time-to-first fix from a cold start(~24s)to a hot start(~2s). The battery will maintain RTC and GNSS orbit data without being connected to power for plenty of time.This product requires an antenna:Be sure to check out the related products/hookup accessories and pick a suitable SMA antenna for your project.The SparkFun Qwiic Connect System is an ecosystem of I2C sensors, actuators, shields and cables that make prototyping faster and less prone to error. All Qwiic-enabled boards use a common 1mm pitch, 4-pin JST connector. This reduces the amount of required PCB space, and polarized connections mean you can't hook it up wrong.The NEO-M9N GPS Breakout can also be automatically detected, scanned, configured, and logged using the OpenLog Artemis datalogger system. No programming, soldering, or setup required!Get Started With the SparkFun NEO-M9N GPS GuideFeaturesIntegrated SMA connector for use with antenna of your choice92-Channel GNSS Receiver1.5m Horizontal Accuracy25Hz Max Update Rate(four concurrent GNSS)Time-To-First-Fix:Cold:24sHot:2sMax Altitude:80,000mMax G:≦4Max Velocity:500m/sVelocity Accuracy:0.05m/sHeading Accuracy:0.3 degreesTime Pulse Accuracy:30ns3.3V VCC and I/OCurrent Consumption:~31mA Tracking GPS+GLONASSSoftware ConfigurableGeofencingOdometerSpoofing DetectionExternal InterruptPin ControlLow Power ModeMany others!Supports NMEA, UBX, and RTCM protocols over UART or I2C interfaces
アズワン品番67-0423-87
SparkFun RFM69 Breakout 434MHz SPARKFUNSparkFun RFM69 Breakout 434MHzSPARKFUN
4,398税込4,838
1個
33日以内出荷
DescriptionThis is the SparkFun RFM69 Breakout, a small piece of tech that breaks out all the pins available on the RFM69HCW module as well as making the transceiver easy to use. The RFM69HCW is an inexpensive and versatile radio module that operates in the unlicensed ISM(Industry, Science and Medicine)radio band. It's perfect for building inexpensive short-range wireless networks of sensors and actuators for home automation, citizen science and more.This RFM69HCW operates on the 434MHz frequency and is capable of transmitting at up to 100mW and up to 300kbps, but you can change both of those values to fit your application. For example, you can maximize range by increasing the transmit power and reducing the data rate, or you can reduce both for short-range sensor networks that sip battery power. At full power and with simple wire antennas, we can get messages from one side of a large office building to the other through numerous internal walls. In open air you can reach 500 meters or more. With more complex antennas and modulation schemes, similar parts have successfully transmitted from space to the ground(by very smart amateur radio enthusiasts; your mileage may vary)!The RFM69HCW uses an SPI(Serial Peripheral Interface)to communicate with a host microcontroller, and several good Arduino libraries are available. It supports up to 256 networks of 255 nodes per network, features AES encryption to keep your data private, and transmits data packets up to 66 bytes long.SparkFun sells two versions of the RFM69HCW:a 915MHz version and this 434MHz version. Although the ISM band is license-free, the band itself is different in different areas. Very roughly, 915MHz is for use in the Americas, and the 434MHz version is for use in Europe, Asia and Africa. Check your local regulations for other areas.Get Started with the RFM69HCW Hookup GuideFeaturesTransmit power:-18dBm(0.016mW)to +20dBm(100mW)in 1dBm stepsReceive sensitivity:down to -120dBm at 1.2kbpsModulation types:FSK GFSK MSK GMSK OOKBit rates(FSK):1.2kbps to 300kbpsVoltage range:1.8V to 3.6VCurrent consumption:0.1uA sleep, 1.25mA standby, 16mA receive, 130mA transmit(max)Encryption:AES 128-bit(optional)Packet buffer(FIFO):66 bytes0.8"×1.1"
アズワン品番67-0429-33
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