Yl105 Datasheet
| Parameter | F3003/4 YL105 | | :--- | :--- | | | Tubing, Semi-Rigid | | Shrink Ratio | 2.5:1 | | Supplied I.D. | 0.750" (19.05mm) | | Recovered I.D. | 0.313" (7.95mm) | | Recovered Wall Thickness | 0.065" (1.65mm) | | Material | PO (Polyolefin), Irradiated | | Shrink Temperature | 140°C | | Operating Temp. Range | -55°C to 125°C | | Key Features | Abrasion Resistant, Chemical Resistant, Fluid Resistant |
The YL105 is designed for efficiency and reliability. Depending on the manufacturer (often associated with brands like Yisheng or various silicon labs), it is frequently utilized in AC-to-DC conversion modules. Its primary role is to ensure stable current flow while protecting sensitive downstream components from voltage spikes. Key Features:
This article provides a detailed , covering its specifications, pinout, and typical application circuits. 1. What is the YL-105 Adapter? yl105 datasheet
This comprehensive guide explores the YL105 designation, breaks down the Alpha Wire part numbering system, and provides an in-depth look at the electrical, thermal, and mechanical properties of the most common YL105-tagged products. You will also find guidance on interpreting technical specifications, sourcing components, and practical installation advice.
Therefore, when you search for the "YL105 datasheet", you are actually looking for technical documentation on a variety of flexible or semi-rigid, yellow heat shrink tubing products designed to insulate wires, provide strain relief, and offer environmental sealing. | Parameter | F3003/4 YL105 | | :---
Even with the YL-105 protecting your module, wireless communication can be tricky. If your project isn't transmitting or receiving data, check the following:
Understanding the Architecture: The AMS1117 & Filter Network Range | -55°C to 125°C | | Key
Even with the YL-105, ensure your Arduino can supply enough current. If using PA+LNA modules (high power), ensure the power supply is robust.
Note: Always cross-reference with the specific manufacturer’s branding on the physical chip. Maximum Recurrent Peak Reverse Voltage VRRMcap V sub cap R cap R cap M end-sub 600 - 1000 Maximum RMS Voltage VRMScap V sub cap R cap M cap S end-sub Average Forward Rectified Current
void setup() pinMode(hallPin, INPUT); pinMode(ledPin, OUTPUT); Serial.begin(9600);