5秒后页面跳转
CBC5300-24C PDF预览

CBC5300-24C

更新时间: 2024-09-16 09:16:11
品牌 Logo 应用领域
其他 - ETC /
页数 文件大小 规格书
11页 611K
描述
EnerChip EH Energy Harvesting Module

CBC5300-24C 数据手册

 浏览型号CBC5300-24C的Datasheet PDF文件第2页浏览型号CBC5300-24C的Datasheet PDF文件第3页浏览型号CBC5300-24C的Datasheet PDF文件第4页浏览型号CBC5300-24C的Datasheet PDF文件第5页浏览型号CBC5300-24C的Datasheet PDF文件第6页浏览型号CBC5300-24C的Datasheet PDF文件第7页 
Preliminary  
EnerChip™ EH CBC5300  
EnerChip™ EH Energy Harvesting Module  
Overview  
The EnerChip EH CBC5300 is a self-contained  
Energy Harvesting power module in a 24-pin DIP  
configuration. The CBC5300 module is designed to  
accept a wide range of energy transducer inputs,  
store the harvested power, and deliver managed  
power to the target system. The purpose of this  
module is to enable system designers to quickly  
develop Energy Harvesting applications. A block  
diagram of the EnerChip EH CBC5300 energy  
harvesting module is shown in Figure 1.  
Figure 2: EnerChip EH Module - CBC5300  
System Description  
The energy harvesting transducer (e.g. photovoltaic  
cell, piezoelectric material, thermoelectric converter,  
etc.) converts ambient energy into electrical  
energy. The output voltage of the energy harvesting  
transducer is often too low to charge the EnerChip  
batteries and power the rest of the system directly,  
so a boost converter is used to boost the energy  
harvesting transducer voltage to the voltage needed  
to charge the EnerChip and/or power the system.  
Input Power  
Transducer  
Input/Output  
Pins  
Input  
Power  
Management  
Boost  
Converter  
The charge control block continuously monitors  
the output of the boost converter. If the output of  
the boost converter falls below the voltage needed  
to charge the EnerChips, the charge controller will  
disconnect the boost converter from the EnerChips.  
This prevents the EnerChips from back-powering the  
boost converter in low input power conditions.  
The power management block is used to protect  
the EnerChips from discharging too deeply in low  
input power conditions or abnormally high current  
load conditions. The power management block  
also ensures that the load is powered up with a  
smooth power-on transition. The power management  
block has a control line (CHARGE) for indication to  
the system controller that the energy harvester is  
charging the EnerChips. A control line input (BATOFF)  
is available for the controller to disconnect itself  
from the EnerChips when it is necessary to conserve  
battery life in prolonged low input power conditions.  
Charge  
Control  
2 - EnerChip  
CBC050  
Figure 1: EnerChip EH Module Block Diagram  
Applications  
•ꢀ Wireless Sensors - Create perpetual sensors  
with ambient energy and no batteries to change.  
•ꢀ Patient Monitoring - Use piezoelectric,  
thermoelectric, or photovoltaic transducers to  
power patient status sensors.  
•ꢀ Process Control - Sensors and reporting  
electronics can be powered with motion or fluid  
flow transducers.  
•ꢀ Real Time Location Monitoring - Active RFID  
and RTLS sensing devices can be powered using  
energy harvesting.  
•ꢀ Environmental Monitoring and Controls -  
Optimize energy using energy harvesting.  
The EnerChip EH CBC5300 as shown in Figure 2 has  
two CBC050 50µAh EnerChip rechargeable battery  
cells, for a total 100µAh of capacity.  
©2009 Cymbet Corporation • Tel: +1-763-633-1780 • www.cymbet.com  
DS-72-06 Rev06  
Page 1 of 11  

与CBC5300-24C相关器件

型号 品牌 获取价格 描述 数据表
CBC60A18AA4-12 INFINEON

获取价格

Bridge Rectifier Diode, 1 Phase, 60A, Silicon, ADD-A-PAK
CBC60A18AA4-12FC INFINEON

获取价格

Bridge Rectifier Diode, 1 Phase, 60A, Silicon, ADD-A-PAK
CBC7/3V ETC

获取价格

ASIC
CBC7/5V ETC

获取价格

ASIC
CBC8 ETC

获取价格

CBC Bench Counting Scales
CB-C8 NEC

获取价格

3-VOLT, 0.5-MICRON CELL-BASED CMOS ASIC
CBC-8 COOPER

获取价格

Automotive Circuit Breakers
CBC-8B COOPER

获取价格

Automotive Circuit Breakers
CBC910 CYMBET

获取价格

Charge Pump and Battery Management ASIC
CBC910-BDC-WP CYMBET

获取价格

Charge Pump and Battery Management ASIC