#HX711
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jayakody2000lk · 7 months ago
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Adapting HX711 modules for 3.3V Operation
The HX711 is a versatile integrated circuit (IC) designed for precision analog-to-digital (A/D) conversion, particularly suited for strain gauge load cell applications. It features a 24-bit A/D converter with a differential input stage capable of handling both single-ended and differential input signals. Additionally, this device offers adjustable gain amplification to accommodate various load cell sensitivities.
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A common module based on the HX711 available in the market, including on AliExpress, is shown below. This module utilizes its internal analog supply regulator, which ensures a stable analog supply (AVDD) for the ADC and other internal components. The output voltage of the regulator (AVDD) is calculated using the following formula: VAVDD = VBG × (R1 + R2) / R2.
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According to the electrical characteristics listed in the datasheet, the reference bypass voltage (VBG) is 1.25V. For the modules mentioned, R1 is set at 8.2kΩ and R2 at 20kΩ. By substituting these values into the formula, we calculate AVDD to be approximately 4.29V.
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The HX711 IC operates within a voltage range of 2.6V to 5.5V. However, many HX711 modules on the market come with an internal voltage regulator that outputs approximately 4.29V. This can pose challenges when using the module with 3.3V microcontrollers. Furthermore, the datasheet specifies that the output voltage of the regulator should be at least 100mV lower than the supply voltage (VSUP), making the current regulator's output voltage incompatible with 3.3V supply voltages.
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To address this, we need to ensure that AVDD is within the 2.6V to 3.2V range to make the module compatible with both 3.3V and 5V systems. After conducting some calculations, we determined that replacing R1 with 10kΩ and R2 with either 15kΩ or 12kΩ would be ideal. Using a 15kΩ resistor gives an AVDD of 3.1V, while using a 12kΩ resistor reduces it to 2.75V. In one of our experimental boards, we opted to replace R2 with a 12kΩ resistor.
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As a further test, we lowered the AVDD to approximately 1.6V, and at this voltage, the HX711 still produced the correct results in our test setup. Interestingly, we observed that swapping R1 and R2 allows us to achieve an AVDD of 1.76V. To test this, we swapped R1 (8.2kΩ) and R2 (20kΩ) in one of the modules, and after applying a 5V supply, we noted that the AVDD returned at 1.65V, with the HX711 still providing correct outputs.
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To evaluate the boards, we created a quick prototype using the STM32F405 MCU. In this prototype, we powered the HX711 module with 3.3V and directly connected its I/O pins to the STM32 GPIO pins.
For interaction with the module, we utilized the HX711 library provided at https://github.com/PCov3r/HX711-STM32-Library. The source code for our test firmware is available here.
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After making the above modifications, all modules produce a stable output at 3.3V. We tested these modules with both 3.3V and 5V MCUs, using 5kg, 10kg, and 20kg load cells, and it operated correctly across all these combinations.
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gantengpermanen · 1 year ago
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HX711 Tare Calibration Scaling - Simple basic usage Arduino UNO digital weighing scale simulate 5Kg load cells digital weighing scale hx711 hx710 datasheet programming reference on wokwi arduino uno online simulator. how to calibrate a hx711 load cell for 5kg load?
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cyrusmehdipour · 1 year ago
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adafruit · 9 months ago
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We stock and use a couple of different I2C ADCs, such as the NAU7802
and the HX711
Both of these are kinda designed specifically for load cells. This is a more general-purpose 24-bit ADC using the ADS122C04
with adjustable 1x to 128x gain, up to 2ksps and an internal reference. It can be single or differential input. Good for sensitive things like RTDs, thermocouples, or resistive bridges like load cells! Coming soon.
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mazlanabbas · 3 months ago
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Tong Sampah Pintar Dengan Favoriot IoT Platform
Projek ini membangunkan tong sampah pintar yang boleh mengasingkan sampah organik dan bukan organik secara automatik menggunakan sensor dan dihubungkan ke Favoriot IoT Platform untuk pemantauan data secara real-time. Komponen utama: Sensor Warna (TCS3200) – Mengesan jenis sampah berdasarkan warna. Sensor Berat (Load Cell + HX711) – Mengukur berat sampah. Motor Servo – Menggerakkan mekanisme…
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draegerit · 4 years ago
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5kg load cell at Arduino UNO with HX711 Module #loadcell #arduino #hx711 #maker #diy #tech #techy #technology #electronic #components #microcontroller #draegerit (hier: Stefan Draeger Software) https://www.instagram.com/p/CXy8tIorkeC/?utm_medium=tumblr
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electroniccomponentsutmel · 4 years ago
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Download HX711 Datasheet PDF and Pinout File
Looking for hx711? it's appropriate for all hx systems and might be wont to live the burden of any machine. 
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quartzcomponents · 5 years ago
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5KG Load Cell with HX711 A/D Weight Sensor Module
To measure weight and load of any object we use strain gauges but problem with using standalone strain gauge is that they are fragile and are easily bent and break if not used in proper enclosure. This load cell made up of aluminium alloy can measure upto 5 kg load and outputs in the form of electrical signals proportionally.
Buy this Load cell with Weight sensor module: https://quartzcomponents.com/products/load-cell-5kg-with-hx711-a-d-module-weight-sensor
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zeppelinmaker · 6 years ago
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Calibrare una cella di carico con Arduino e HX711 - #215
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pauljacobevans · 8 years ago
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Instrument Packed Pedal Keeps Track of Cyclist’s Power
Exactly how much work is required to pedal a bike? There are plenty of ways to measure the power generated by a cyclist, but a lot of them such as heavily instrumented bottom brackets and crank arms, can be far too expensive for casual use. But for $30 in parts you can build this power-measuring bike pedal. and find out just how hard you’re stoking. Of course it’s not just the parts but knowing what to do with them, and [rabbitcreek] has put a lot of thought and engineering into this power pedal. The main business of measuring the force …read more http://pje.fyi/Py4C5X
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A kitchen scale with a REST interface. You can acquire the weight or the unit, set the unit, calibrate or delete the calibration via REST. On the WiPy 2.0 runs a REST server written in python.
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adafruit · 1 year ago
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Desk of Ladyada - DS2484 Testing & Round Touch Screen Samples
Ladyada tests electronics like CH9328 and HX711, while also developing a DS2484 breakout for easier I2C sensor connection on SBCs without GPIO. Also featured are new round touchscreens and a RP2040 Feather Adalogger. Plus, a quick dive into 1-Wire interface chips.
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feki3d · 3 years ago
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Load Cell fixture case (HX711 half bridge) + Load cell support and mounting bracket https://www.instagram.com/p/CaooDhzgLz2/?igshid=NGJjMDIxMWI=
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planetarduino · 4 years ago
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This electronic arrow spine tester measures arrow consistency
Repeatability requires consistency. This principle even applies to archery. If you want to hit the bullseye on every shot, you have to draw the string with consistent force, keep your stance consistent, and so on. You also want your arrows to be as consistent as possible. One major factor that goes into an arrow’s consistency is the stiffness of the shaft, called the spine rating. This electronic tester makes it easy to measure that.
The simplest and most common way to determine an arrow’s spine rating is to place the arrow on two supports — one near the head and one near the fletching. You then hang a weight from the middle of the shaft and measure how much it bends. More sophisticated mechanical testers include a dial, similar to what you’d see on a torque wrench. This electronic tester follows the same principles, but provides digital precision.
This tester has three load cells. Two are underneath the supports that the arrows rest on. The third is below the center of the shaft. An Arduino Nano board reads the output from the load cells via HX711 amplifier modules. The archer pushes down on the shaft, which pushes onto the middle load cell. Between the three load cells, the Arduino then knows the total force applied to the arrow and the force from the deflected portion of the shaft. A few calculations later and the Arduino outputs the spine rating on a small LCD screen.
It’s a quick and easy way to make sure every arrow in the quiver has the same spine rating, ensuring consistency and repeatability.
The post This electronic arrow spine tester measures arrow consistency appeared first on Arduino Blog.
This electronic arrow spine tester measures arrow consistency was originally published on PlanetArduino
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pajyqosudera · 4 years ago
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HX711 module/weighing sensor dedicated 24-bit precision AD module Pressure sensor module
HX711 module/weighing sensor dedicated 24-bit precision AD module Pressure sensor module
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mangowall · 4 years ago
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Parameter: Comprehensive error: 0.05% F.SRated output temperature drift: ≤ 0.15% F.S / 10 ℃Output Sensitivity: 1.0 ± 0.1 mV / VZero drift: 0.05% F.S (1 minute)Zero point temperature drift: ...
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