LTC3407AEMSE-2#PBF Overview
It is designed to provide optimal performance by utilizing the Tube package. In this voltage regulator, there are 10 terminations. There are two types of analog ICs on this voltage regulator. The first type is a DUAL SWITCHING CONTROLLER-type IC. For space-saving purposes, this voltage regulator is available in the 10-TFSOP, 10-MSOP (0.118, 3.00mm Width) Exposed Pad package. 2 outputs of voltage regulator are configured. ICs such as this voltage regulator are capable of generating Adjustable outputs through their output pins. There is a switching regulator that is compatible with the Surface Mount mounting. -40°C~85°C TA should be the operating temperature when voltage regulator is operating. Voltage regulator's switching frequency reaches 2.25MHz. A dc to dc voltage regulator's minimum input voltage of 2.5V is required for this voltage regulator to operate. The output voltage of this voltage regulator (Min/Fixed) amounts to 0.6V volts. This voltage regulator 12v offers maximum design flexibility with an output current of 800mA. There is a voltage regulator maximum input voltage of 5.5V. The peak reflow temperature of this regulator amounts to 260 to be essentially indestructible. An input voltage of 3.6V is required for switching regulator operation. Listed under the subcategory of Switching Regulator or Controllers is this voltage regulator 12v. As a member of the LTC3407 family of DC/DC regulators, this is a DC/DC regulator. On the basis of the maximum output voltage of 5V, adjusting voltage regulator can be operated easily.
LTC3407AEMSE-2#PBF Features
2 outputs
Peak reflow temperature (Cel) of 260
LTC3407AEMSE-2#PBF Applications
There are a lot of Linear Technology/Analog Devices LTC3407AEMSE-2#PBF Voltage Regulators applications.
- Digital display device
- Digital video recorders
- Precision electronic equipment
- Grinders
- Digital precision reference circuits
- Computer rooms
- Terrestrial set-top boxes
- Large fire protection systems
- Household control circuits
- Energy management systems