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CBC-EVAL-05 Datasheet(PDF) 1 Page - Cymbet Corporation |
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CBC-EVAL-05 Datasheet(HTML) 1 Page - Cymbet Corporation |
1 / 4 page ©2009-2010 Cymbet Corporation • Tel: +1-763-633-1780 • www.cymbet.com DS-72-09 Rev A Page 1 of 4 CBC-EVAL-05 Overview The EnerChip CC EVAL-05 Evaluation Kit is used to demonstrate the capabilities of the EnerChip Thin Film Batteries and the EnerChip CC with Integrated Battery Management capabilities. The kit can be used to demonstrate: 1 ) either EnerChip battery, 2) either EnerChip CC device or 3 ) the EnerChip CC in parallel with the other EnerChip battery. Figure 2: EnerChip CC Evaluation Module EnerChip™ CC CBC3112 & CBC3150 Evaluation Kit Figure 1: EnerChip CC Block Diagram Evaluation Kit Description The EnerChip CC is the world’s first Intelligent Thin Film Battery. It is an integrated solution that provides battery backup and power management for systems requiring power bridging and/or secondary power. A single EnerChip CC can charge up to 10 additional EnerChips connected in parallel. Two EnerChip CC devices are on the EVAL-05, a CBC3112 and a CBC3150, with battery capacities of 12 µAh and 50 µAh, respectively. The CBC-EVAL-05 evaluation board utilizes a 24-pin DIP format that mates with a 24-pin DIP socket on a target board. During normal operation, the EnerChip CC charges itself with a controlled voltage using an internal charge pump that operates from 2.5V to 5.5V. An ENABLE pin allows the designer to activate and deactivate the charge pump using an external control line in order to minimize current consumption and take advantage of the fast recharge time of the EnerChip. When the primary power supply dips below a user- defined threshold voltage, the EnerChip CC will signal this event and route the battery voltage to VOUT. The EnerChip CC also has battery protection circuitry to enable thousands of recharge cycles. The CBC3112 and CBC3150 data sheets contain complete specifications and application circuits. EnerChip CC Applications Standby supply • for non-volatile SRAM, real-time clocks, controllers, supply supervisors, and other system-critical components. Wireless sensors and RFID tags • and other powered, low duty cycle applications. Localized power source • to keep microcontrollers and other devices alert in standby mode. Power bridging • to provide back-up power to system during exchange of main batteries. Consumer appliances • that have real-time clocks; provides switchover power from main supply to backup battery. Business and industrial systems • such as: network routers, point-of-sale terminals, single- board computers, test equipment, multi-function printers, industrial controllers, and utility meters Energy Harvesting • by coupling the EnerChip with energy transducers such as solar panels. |
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