The ISL6185 USB power controller family can be utilized to design a straightforward USB power supply electronic project that offers fully independent overcurrent (OC) fault protection for two or more USB ports. This product family includes sixteen distinct functional product variants and three packaging options, operating within a nominal voltage range of +2.5V to +5V, and is specified for both commercial and industrial temperature ranges.
The ISL6185 family of USB power controllers is engineered to facilitate the development of USB power supply systems with robust overcurrent protection features. Each variant within the family is designed to handle specific requirements, allowing for flexibility in applications ranging from simple consumer electronics to more complex industrial devices. The independent overcurrent protection feature ensures that each USB port can be monitored and controlled separately, preventing potential damage from excessive current draw by connected devices.
The nominal voltage range of +2.5V to +5V allows for compatibility with a wide array of USB devices, ensuring that the power supply can accommodate various operational needs. The device operates efficiently across both commercial and industrial temperature ranges, making it suitable for diverse environments.
The packaging options available within the ISL6185 family provide choices suited to different design constraints, enabling engineers to select the optimal configuration for their specific application. This versatility, combined with the emphasis on reliable overcurrent protection, positions the ISL6185 USB power controller family as a valuable component in the design of modern USB power supply solutions.
In summary, the ISL6185 USB power controller family offers a comprehensive solution for creating efficient and safe USB power supplies, with features that cater to both standard and specialized applications.Using the ISL6185 USB power controller family can be designed a very simple USB power supply electronic project that provides fully independent overcurrent (OC) fault protection for two or more USB ports. This product family consists of sixteen individual functional product variants and three package options and is operation rated for a nominal +2
. 5V to +5V range and specified over the full commercial and industrial temperature ranges. 🔗 External reference
The optical safety switch circuit includes a power supply circuit, a light control circuit, and a control implementation circuit (switch circuit). The power circuit is made up of a power transformer (T), a bridge rectifier (UR), and a filter...
The circuit operation is initiated by a positive edge signal. The anodes of the triac switches are activated while the cathodes of the switches remain closed. A male-female IN4009 diode is utilized for positive transient suppression, ensuring that the...
As is commonly the case, this supply was born of necessity. There is absolutely nothing special about the circuit, except that as shown, it is quite capable of up to 20 Amps intermittently or 10A continuous. Simply use a...
The design incorporates 30-ohm, 1/4 microstrip lines on the input and output. Capacitors C3, C4, C7, and C8, along with inductor L1, form a pi network that matches the low input impedance of the device to 50 ohms. Capacitors...
Here is a deluxe version of the simple charge rate limiter, using the same idea but with the ability to charge two packs simultaneously from a single wall charger. For circuit description and parts list, see the simple charger...
The circuit utilizes CD4011 digital circuits to create a sound-activated light lamp with a dual-control delay section. The left portion of the circuit represents the lighting lines, while the right part consists of the sound and light control delay...
We use cookies to enhance your experience, analyze traffic, and serve personalized ads.
By clicking "Accept", you agree to our use of cookies.
Learn more