High Quality Timer Ic Circuit - TPS62423QDRCRQ1 Switching Voltage Regulators Automotive 2.25MHz – Shinzo
High Quality Timer Ic Circuit - TPS62423QDRCRQ1 Switching Voltage Regulators Automotive 2.25MHz – Shinzo Detail:
♠ Product Description
Product Attribute | Attribute Value |
Manufacturer: | Texas Instruments |
Product Category: | Switching Voltage Regulators |
RoHS: | Details |
Mounting Style: | SMD/SMT |
Package / Case: | VSON-10 |
Topology: | Buck |
Output Voltage: | 1.8 V |
Output Current: | 800 mA |
Number of Outputs: | 2 Output |
Input Voltage, Min: | 2.5 V |
Input Voltage, Max: | 6 V |
Quiescent Current: | 3.6 mA |
Switching Frequency: | 2.25 MHz |
Minimum Operating Temperature: | - 40 C |
Maximum Operating Temperature: | + 125 C |
Qualification: | AEC-Q100 |
Series: | TPS62423-Q1 |
Packaging: | Reel |
Packaging: | Cut Tape |
Packaging: | MouseReel |
Brand: | Texas Instruments |
Input Voltage: | 2.5 V to 6 V |
Load Regulation: | 0.5 %/A |
Moisture Sensitive: | Yes |
Product Type: | Switching Voltage Regulators |
Shutdown: | Shutdown |
Factory Pack Quantity: | 3000 |
Subcategory: | PMIC – Power Management ICs |
Supply Voltage – Min: | 2.5 V |
Type: | Synchronous DC/DC Converter |
Unit Weight: | 0.000737 oz |
♠ TPS624xx-Q1 Automotive 2.25-MHz Fixed VOUT Dual Step-Down Converter
The TPS624xx-Q1 family of devices are synchronous dual step-down DC-DC converters for Automotive applications such as Advanced Driver Assistance Systems (ADAS). They provide two independent output voltage rails powered by a standard 3.3-V or 5- V voltage rail, with fixed output voltages optimized for powering the CMOS imager or serializer-deserializer in ADAS camera modules. The EasyScale™ serial interface allows outputvoltages modification during operation. The fixedoutput-voltage versions TPS624xx-Q1 support onepin-controlled simple dynamic voltage scaling for lowpower processors. The TPS624xx-Q1 family of devices operates at 2.25- MHz fixed switching frequency and enters the powersave mode operation at light load currents to maintain high efficiency over the entire load-current range. For low-noise applications, one can force the devices into fixed-frequency PWM mode by pulling the MODE/ DATA pin high. The shutdown mode reduces the current consumption to 1.2-μA, typical. The devices allow the use of small inductors and capacitors to achieve a small solution size.
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By Miranda from Sydney - 2018.12.05 13:53