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TPSM8287A06BAS中文资料德州仪器数据手册PDF规格书
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1 Features
• ±1 output voltage accuracy
• Differential remote sensing
• Parallelable for multi-phase operation
• Start-up output voltage selectable in 50-mV steps
from 0.40 V to 3.35 V through VSETx pins and I2C
adjustable in 1.25-mV steps
• 5 selectable I2C addresses through VSETx pins
• Adjustable external compensation for wide output
capacitor range and optimized transient response
• Optimized for low EMI requirements
– No bond wire package
– Internal input capacitors
– Simplified layout through parallel input path
– Optional synchronization to external clock or
spread-spectrum operation
• Power-save Mode or forced-PWM operation
• Precise enable input threshold
• Power-good output with window comparator
• Active output discharge
• Excellent thermal performance
• –40°C to 125°C operating temperature range
• 4.5-mm × 6.8-mm QFN package with 0.5-mm pitch
• 77-mm2 solution size
2 Applications
• FPGA, ASIC and digital core supply
• Optical networks
• Storage
• DDR memory supply
• Test and measurement equipment
3 Description
The TPSM8287Axx is a family of pin-to-pin stepdown
DC/DC power Modules with differential remote
sensing and I2C interface. The power modules
integrate a synchronous step-down converter, an
inductor and input capacitors to simplify design,
reduce external components and save PCB area.
The low-profile and compact solution is suitable for
assembly by standard surface mount equipment.
The TPSM8287Axx family implements an enhanced
control scheme that supports fast transients. It can
operate in fixed-frequency or power-save mode. The
remote sensing feature optimizes voltage regulation
at the point-of-load and the device achieves ±1 DC
voltage accuracy over the entire temperature range.
The devices can operate in stacked / paralleled mode
to deliver higher output currents or to spread the
power dissipation across multiple devices. The I2Ccompatible
interface offers several control, monitoring
and warning features. The start-up voltage is
selectable through the VSETx pins to allow a powerup
without an active I2C communication.