- Founded in Dec. 2004 by Dr. Volker Klein and Dipl.-Ing. Gerd Sievert.



Similar documents
The Lithium-Ion Battery. Service Life Parameters

Energy Storage Systems Li-ion Philippe ULRICH

鋰 電 池 技 術 及 產 業 發 展 趨 勢

Optimising the daily operation of industrial trucks

IMPACT LifeSaver Series IPT Lithium Polymer IMPACT LifeSaver Series Impact Power Technologies, LLC

Saft Li-ion battery systems for hybrid and electric vehicles. Increasing energy efficiency and meeting environmental challenges

IMPACT IMPACT. LifeSaver Series. IPT Lithium Polymer. When safety & budgets depend on your battery.

Power Management: SCM

IAA Commercial Vehicles Battery Technology. September 29 th, 2010

MAKING LITHIUM-ION SAFE THROUGH THERMAL MANAGEMENT

Electric Battery Actual and future Battery Technology Trends

Second International Renewable Energy Storage Conference November 2007 Bonn/Germany. Overview on current status of lithium-ion batteries

A Comparison of Lead Acid to Lithium-ion in Stationary Storage Applications

LITHIUM-ION ENERGY MODULES HEM & HPM SERIES

High Energy Rechargeable Li-S Cells for EV Application. Status, Challenges and Solutions

Saft battery system for electric and hybrid vehicles: Technical challenges. Tekes EVE Electric Vehicle Systems Seminar Helsinki, 18.

Evolion Li-ion battery. Saft s proven ultra-compact solution for telecom applications

Lithium Iron Phosphate Batteries

Building Battery Arrays with Lithium-Ion Cells

BATTERY MANAGEMENT SYSTEM

WANXIANG TS16949 CERTIFIED

How To Understand The Chemistry Of A Lithium Ion Battery

Overlander RC-6S Pro User s Manual

Lithium Iron Phosphate High Current Rechargeable Lithium Ion Batteries

High capacity battery packs

What are the technical features and performance of the AccuCell system?

QUICK PROBLEM SOLVING GUIDE

Lithium-ion energy storage systems. for large defense applications

Designing Applications with Lithium-Ion Batteries

Rechargeable Batteries in a Consumer Electronics World Tony Olson, January 2009

Maritime Battery Technology , Lindholmen

Inside the Nickel Metal Hydride Battery

The Battery Saving Charger

INTRODUCTION INTRODUCTION

A comparative analysis of Lithium Iron Phosphate and Lead-Acid (flooded, gel and AGM) battery technology for marine applications

BATTERY MANAGEMENT THE HEART OF EFFICIENT BATTERIES BATTERY TECHNOLOGIES FOR ELECTRO 28 TH NOVEMBER 2013 MOBILITY AND SMART GRID PURPOSES

The Copernican Moment for Electronic Devices

Tel.X Ni-Cd battery. The compact solution for stationary applications

PowerLab 6. User s Guide. For firmware ver. Starting at 1.05

Storage Battery System Using Lithium ion Batteries

SUBAT. "Sustainable Batteries. Action 8.1.B.1.6 Assessment of Environmental Technologies for Support of Policy Decision.

Smart Battery Module with LEDs and Pack Supervisor

Back-UPS 650 VA 120 V with AVR (BX650CI-LM)

How To Powertrain A Car With A Hybrid Powertrain

Clean and energy-efficient vehicles Advanced research and testing Battery systems

New Charger X200AC/DC Released

European Batteries For the long run. Martti Tuomas Alatalo May, 2010

An Approach for Designing Thermal Management Systems for EV and HEV Battery Packs

Baterías de flujo: conceptos y aplicación futura. Catalonia Institute for Energy Research

BB800 Off-Grid Solar System

Performance Testing of Lithium-ion Batteries of Various Chemistries for EV and PHEV Applications

Sony s Energy Storage System. The Sony Lithium Ion Iron Phosphate (LFP) advantage

LITHIUM BALANCE CHARGER

Sodium Sulfur Battery. ENERGY STORAGE SYSTEM for Reducing CO2 Emissions

Saft stationary batteries. A wide offer of reliable, long-life solutions

SYSTEM DESCRIPTION Termination Boards

IEC nd Edition: All you need to know about the new standard

Lithium-ion battery technology: Getting the most from Smart Batteries

Thermal Management of Batteries in Advanced Vehicles Using Phase-Change Materials

Getting started with the Super Brain Palm computer interface.

Virtual Battery Simulation Tools for Engineering

POWER B OX Battery. Operating Instructions

Operating Instructions

State of Solid-State Batteries

PCAN-B10011S Bus Converter High-speed CAN to Truck Trailer CAN. User Manual. Document version ( )

International English

Managing A123 Cells with FMA Cell Balancing Technologies

Specification Approval Sheet

Global. Vehicle LiB Market Study_August 2011_v2.pptx. Powertrain The Li-Ion Battery Value Chain Trends and implications

Section 6 Fire Detection and Alarm Systems Russell Porteous Chief Executive Officer Firewize Services

ABB PV + Storage REACT-3.6/4.6-TL 3.6 to 4.6 kw

Automotive Lithium-ion Batteries

Abuse Testing of Lithium Ion Cells: Internal Short Circuit, Accelerated Rate Calorimetry and Nail Penetration in Large Cells (1-20 Ah)

Prospect of Lithium Iron Phosphate Battery Used in Energy Storage

Tel.X Ni-Cd battery. The compact maintenance-free solution for telecom networks

Power your CPAP machine no matter where your world takes you!

Specification. Li-ion Rechargeable Battery

Smart Batteries and Lithium Ion Voltage Profiles

Why Do We Need a Battery Fuel Gauge? Capabilities and Benefits of HDM BFG Technology BFG Application Examples BFG Configurations HDM s BFG Dual

POWER GENERATION AND DISTRIBUTION SYSTEM DESIGN FOR THE LEONIDAS CUBESAT NETWORK

Power in electrical safety Electrical safety for hybrid and electric vehicles

MegaRAID LSIiBBU09 Intelligent Battery Backup Unit

OPERATING MANUAL. 4 Ports Output. Balance Charger/Discharger For LiPo/LiFe/LiIon/NiMH/NiCd/Pb Batteries

C8000. Advanced Programmable Battery Testing System

LEAD-ACID BATTERIES ARE NOT GOING AWAY A Technical Comparison of Lead-Acid and Lithium-ion Batteries

Torfino Enterprises, Inc.

emobility WAGO Leading the Charge

Safety of lithium-ion batteries

BAO TONG USA dba TYSONIC BATTERY. SPECIFICATION SHEET FOR 9V NI-MH RECHARGEABLE BATTERY TY-9V-200mAH

Supercapacitors in Micro- and Mild Hybrids with Lithium Titanate Oxide Batteries: Vehicle Simulations and Laboratory Tests

In The fastest growing battery system, lithium ion (Li-ion) batteries are used where high-energy density and

Fraunhofer System Research for E-Mobility (FSEM) Current LCA results and need for further research

lithium iron phosphate

Practical Examples of Galvanic Cells

Installation and Operation Manual Back-UPS BX800CI-AS/BX1100CI-AS

Battery Cell Balancing: What to Balance and How

Application Note: Use of Low Resistivity Surface Mount PPTC in Li-ion Polymer Battery Packs

Transcription:

1

- Founded in Dec. 2004 by Dr. Volker Klein and Dipl.-Ing. Gerd Sievert. - Roots are Emmerich AG, cell manufacturer of batteries and rechargeable batteries 40 years of batteries experience - Headquarter is located in Fernwald (Giessen); central in Germany - Currently 10 employees - Member of ZVEI - Certified according DIN EN ISO 9001:2008 - EMC conformity - UN 38.3 certification uw logo 2

- Application of mobile energy systems and modules - Development and manufacturing of battery packs and complete battery systems according to customer specifications. - System solutions - Focus on Li-Ion Battery systems (Li-Ion, LiPo and LiFePO 4 cells) - Utilization of high-end cells with corresponding BMS/ PCM uw logo 3

- Single cell pack to multicell pack in parallel / serial connection - Projecting of battery systems from mwh up to MWh - Wide voltage range - Energy and high power - Module concept - BMS concept uw logo 4

uw logo 5

[Wh/l] 700 600 500 400 300 200 100 0 Smaller Lead Pb Energy Density in Battery Technology Ni-MH Ni-Cd LiFePO4 Li-Ion Co, NMC, Mn, NCA Lighter 0 50 100 150 200 250 300 350 400 450 500 [Wh/kg] uw logo 6

[Wh/l] LiFePO4 Li-Ion Co, NMC, Mn, NCA [Wh/kg] uw logo 7

Development Trends Highest Capacity 3.000mAh NCA & New Materials Li-Ion Technologies High Power Rate @ High Capacity 1.600 mah IBR, NMC Cost Performance 2.000 2.200 mah LiCo, NMC uw logo 8

Cross Table Cost Weight Volume Cycle Storag. Self- Dis. Temp. Perfor. Specific Power Safety PCM Ecol. Ni-MH rel. to Li- Ion medium poor poor bad bad medium none? LCO poor medium medium medium poor yes? LMnO poor poor poor poor medium yes NCM NCM/LMnO medium medium medium yes? HE- LMO medium medium medium bad medium yes LFP poor poor poor Very yes!!! uw logo 9

PCM (Protection Circuit Module) Basic Battery-Pack Protection (min. requirement) deep-discharge protection over-charge protection over-current protection Enhanced PCM temperature control during discharge temperature control during charge gas gauging cell balancing uw 10 logo

BMS (Battery Management System) Enhanced PCM combined with several additional monitoring functions: Master / Slave systems State of charge information State of health information State of functionality Gauging: info on battery capacity and /or run-time remaining Charge level control; passive / active (charge pump) Power path managment; distribution of power from multiple sources to the system; allows optional operation and simultaneous charging communication interfaces uw 11 logo

Master / Slave Systems e.g.: E-Boat batteries BMS (Battery Management System) uw 12 logo

Applications and Explanation of the Technology chosen Speed boat power module: 222V; 160Ah Golfcaddy: 14.8V; 16Ah NMC for energy, power and weight NMC for energy and stability uw 13 logo

Applications and Explanation of the Technology chosen AGV (Automated Guided Vehicles): 25.9V; 40Ah/80Ah NMC for long life and volume uw 14 logo

Applications and Explanation of the Technology chosen Blood analytic device: 11.1V; 6.4Ah LiCo for energy Bath tub lifter: 11.1V; 1400mAh LiMnO for high power uw 15 logo

Applications and Explanation of the Technology chosen High-End Technology Submarine Seismograph (Tsunami warning) operation depth: 6.500m LiCo for energy, weight and volume uw 16 logo

Applications and Explanation of the Technology chosen PHEV power module LEV / EV power module NMC for energy, weight and volume LiFePO4 for power, safety and quick-charge uw 17 logo

Applications and Explanation of the Technology chosen 2010 World Championship E-Motobike power modul NMC/LMnO for energy, weight, volume and power uw 18 logo

Applications for LiFePO4 Professional Flash Light Generator Nano-LiFePo for life time and quick-charge Independent Power Supply, Outdoor LiFePo for life time and temperature uw 19 logo

Electronic Engineering Power Sources Mechanical Components Questions? uw 20 logo

Address / Contact Data BE-POWER GmbH Ruhberg 8 D-35463 Fernwald Germany Phone: +49 (0)6404 / 20515-0 Fax: +49 (0)6404 / 20515-29 Mail: info@be-power.de http://www.be-power.de uw 21 logo