Technology News
Lattice unveils scalable star topology power management architecture
May 07, 2012 | Paul Buckley | 222904546
Lattice has made available two new application notes for the company’s award winning Platform Manager devices that will enable customers to quickly adopt the new architecture.
“The number of power supply rails in a circuit board has been steadily increasing,” said Shakeel Peera, Director of Strategic Marketing for Lattice Semiconductor. “These new application notes help expedite implementation of a centralized, scalable and flexible power management algorithm within a single Platform Manager device.”
Power management functions include supply sequencing, monitoring, hot-swap control, reset and other supervisory signal generation. The complexity of power management functions grows significantly when the number of circuit board power supplies increases. The solution often demands the use of multiple power management devices. As a result, designers typically are forced to partition the overall power management task and implement it using distributed algorithms in multiple devices, a costly and time consuming approach. The inadequacies of this approach become apparent only during the board debug stage, forcing board re-spin and costly project delays. The integrated power management approach made possible by the Platform Manager devices, on the other hand, reduces cost and increases board reliability.

The application notes describe unrestricted access to power supply status indicators and the ability to control all board management functions. Designers are easily able to modify their algorithm to meet unforeseen power management requirements and minimize the need for a board re-spin.
The application note entitled ‘AN6089: Scalable Centralized Power Management with Field Upgrade Support’ describes how the Platform Manager device can be used as a centralized controller to implement flexible sequencing and precision monitoring of up to 36 power supply rails on a circuit board. The note also discusses the use of a star topology and fast serial interface to provide a seamless, scalable solution to manage up to 36 power supply rails using additional Lattice Power Manager II devices.
The application note entitled ‘AN6088: Fail-Safe Sequencing During Field Upgrades with Platform Manager’ describes how to enable field updates to the power management algorithm with a fail-safe sequencing backup that restores board operation if the field update procedure is interrupted.
Software Support for Power Manager II and Platform Manager Products
Designs for the Power Manager II and Platform Manager devices are implemented using Lattice PAC-Designer and Lattice Diamond design software tools that are available for download free of charge from the Lattice website at www.latticesemi.com/pac-designer and www.latticesemi.com/latticediamond.
For more information about Power Manager Devices, visit http://www.latticesemi.com/products/powermanager/index.cfm
Download Platform Manager Application Note AN6089
http://ww3.latticesemi.com/2012-05PlatformManagerEnhancedSolutions_AN6089.html
Download Platform Manager Application Note AN6088
http://ww3.latticesemi.com/2012-05PlatformManagerEnhancedSolutions_AN6088.html
“The number of power supply rails in a circuit board has been steadily increasing,” said Shakeel Peera, Director of Strategic Marketing for Lattice Semiconductor. “These new application notes help expedite implementation of a centralized, scalable and flexible power management algorithm within a single Platform Manager device.”
Power management functions include supply sequencing, monitoring, hot-swap control, reset and other supervisory signal generation. The complexity of power management functions grows significantly when the number of circuit board power supplies increases. The solution often demands the use of multiple power management devices. As a result, designers typically are forced to partition the overall power management task and implement it using distributed algorithms in multiple devices, a costly and time consuming approach. The inadequacies of this approach become apparent only during the board debug stage, forcing board re-spin and costly project delays. The integrated power management approach made possible by the Platform Manager devices, on the other hand, reduces cost and increases board reliability.

The application notes describe unrestricted access to power supply status indicators and the ability to control all board management functions. Designers are easily able to modify their algorithm to meet unforeseen power management requirements and minimize the need for a board re-spin.
The application note entitled ‘AN6089: Scalable Centralized Power Management with Field Upgrade Support’ describes how the Platform Manager device can be used as a centralized controller to implement flexible sequencing and precision monitoring of up to 36 power supply rails on a circuit board. The note also discusses the use of a star topology and fast serial interface to provide a seamless, scalable solution to manage up to 36 power supply rails using additional Lattice Power Manager II devices.
The application note entitled ‘AN6088: Fail-Safe Sequencing During Field Upgrades with Platform Manager’ describes how to enable field updates to the power management algorithm with a fail-safe sequencing backup that restores board operation if the field update procedure is interrupted.
Software Support for Power Manager II and Platform Manager Products
Designs for the Power Manager II and Platform Manager devices are implemented using Lattice PAC-Designer and Lattice Diamond design software tools that are available for download free of charge from the Lattice website at www.latticesemi.com/pac-designer and www.latticesemi.com/latticediamond.
For more information about Power Manager Devices, visit http://www.latticesemi.com/products/powermanager/index.cfm
Download Platform Manager Application Note AN6089
http://ww3.latticesemi.com/2012-05PlatformManagerEnhancedSolutions_AN6089.html
Download Platform Manager Application Note AN6088
http://ww3.latticesemi.com/2012-05PlatformManagerEnhancedSolutions_AN6088.html
Please login to post your comment - click here
Related News
- Industry's first ultra-wideband Doherty amplifiers support broadband operation
- World's lowest power Bluetooth smart chip is unveiled
- Ultra-low-power SoC supports world's smallest Bluetooth location stickers
- Imec and Renesas collaborate on ultra-low power short range radios
- PIN power diodes combine low recovery losses and softness for efficiency and low EMI
- sureCore receives £250 000 SMART Award to prototype low power SRAM technology
- Miniature 30-V MOSFETs claim industry-leading RDS(ON) performance
- Highest power GaN in Plastic transistors target radar and communications systems
- Amantys partners Fuji Electric to launch IGBT gate drivers for wind and solar markets
- Cambridge Nanotherm starts mass manufacturing of thermal management substrate
MOST POPULAR NEWS
- Volvo evaluates flywheel hybrid drive - fuel savings of up to 25%
- PV storage market is set to grow to USD19bn by 2017
- Accutronics offers new custom battery service
- Nordic Semiconductor releases world's smallest Bluetooth low energy and ANT+ ICs
- Power-One enters into patent license agreement with Microchip
- Quad-MOSFET solution boosts efficiency and eliminates heat sinking in active bridge applications
- Ultra-low-power SoC supports world's smallest Bluetooth location stickers
- Advanced microcontroller combines floating point and low leakage technology to achieve longest battery lifetime in portable applications
- Power MOSFETs are 80 percent smaller than conventional chips while offering better thermal dissipation
- Market for GaN and SiC power semiconductors set to rise by factor of 18 in next decade
Interview
Technical papers
- High Voltage Surge Stoppers Ensure Reliable Operation During Power Surges
- Motor-Drive Design made Simple
- Adaptive Cell Converter Topology Enables Constant Efficiency in PFC Applications
- Micropower Isolated Flyback Converter with Input Voltage Range from 6V to 100V
- Derating of Schottky Diodes
- Heatsink Optimization
- High Performance ZVS Buck Regulator Removes Barriers To Increased Power Throughput
- Waste heat replaces batteries
- Stepper Motor Control IC
- 50Ω Gain Block IF Amplifier
Poll
Solar
Batteries
IMS Research
UPS
Vishay Intertechnology
Analog
Battery
MOSFET
Power Supplies
Power
Intersil
MOSFETs
Photovoltaic
NXP Semiconductors
International Rectifier
National Semiconductor
GaN
STMicroelectronics
Energy Harvesting
Smart Grid
Analog Devices
Diodes
Linear Technology
Microcontrollers
Texas Instruments
Power Supply
Microcontroller
Maxim Integrated Products
Power Management
Fairchild Semiconductor
All material on this site Copyright © 2009 - 2010 European Business Press SA. All rights reserved.
This site contains articles under license from EETimes Group , a division of United Business Media LLC.
This site contains articles under license from EETimes Group , a division of United Business Media LLC.


