Odyssey Thin Plate Technology – The Advantages  Highest volumetric and gravimetric energy density  Increased shelf life (up to 2 20°C)  Extremely.

Slides:



Advertisements
Similar presentations
BATTERIES AND BATTERY CHARGING
Advertisements

Packaged Inkjet-Printed Flexible Supercapacitors
Supercapacitor Energy Storage System for PV Power Generation
BATTERIES Heart of the electrical system. Functions Supply energy to electrical systems when the vehicle is not running Operating cranking system Store.
EET Electronics Survey Chapter 17 - Batteries.
ELECTRICAL I LESSON 2 BATTERY SERVICE
Batteries Basics. The basics Voltage – Voltage is an electrical measure which describes the potential to do work. The higher the voltage the greater its.
Electric Current Section 2.
BATTERY ENERGY AND Advanced SuperGEL Battery Technology By Dr DJ Brown.
Lead Acid vs. Lithium Ion
NEXT GENERATION LITHIUM ENERGY STORAGE.. COMPANY OVERVIEW Research & Development/Sales/Distribution/Manufacturing Product Development Auxiliary power.
Super-capacitors Vs. Capacitors  No conventional dielectric  Two layers of the same substrate, result in the effective separation of charge  Lack of.
Lecture 28 October 30, Stand Alone PV San Luis Valley Solar Data (09/11/2010) Good Day [1] 3.
Solar Batteries Batteries are a key component of both grid tie w/ back-up and stand alone solar energy systems.
Automotive Batteries.
© Goodheart-Willcox Co., Inc. Permission granted to reproduce for educational use only Publisher The Goodheart-Willcox Co., Inc. Tinley Park, Illinois.
THE AUTOMOTIVE BATTERY. What is the purpose of the battery in a car? Provide voltage and current for the starter motor Provide voltage and current for.
ADVANCED BATTERY TECHNOLOGY HYBRID 3 AUXILIARY ALT POWER UNITS Paul Baumann:
Battery Technology November, range: function of energy density of the battery. Compare 12,000 (theo.) / 2600 Wh/kg with the lead-acid.
Operation Service Diagnosis
Current, Voltage, and Resistance in a circuit
Produced By Mike Hartlen Automotive Battery THIS PRESENTATION ABOUT AUTOMOBILE SYSTEMS HAS BEEN DEVELOPED BY Mike Hartlen TEACHER OF AUTOMOTIVE TECHNOLOGY.
Batteries Storing Renewable Energy “Chemical engines used to push electrons around”
P1a topic 9 Electrical energy. Learning objectives There is a variety of ways we can produce electricity. Electrical quantities can be measured. Keywords:
NE G.  Two dissimilar metals in an electrolyte  Electrolyte can be  Also known as a voltaic cell  Only able to be used once Primary Cells.
Selling Against Gel Technology Optima AGM has a wider operating temperature range than Gel. –High temperatures impact Gel’s life and performance more than.
Automotive Electricity and Electronics, 3/e By James D. Halderman Copyright © 2011, 2009, 2005 Pearson Education, Inc., Upper Saddle River, NJ All.
Batteries The purpose of the battery is to act as a reservoir for storing electricity.
By Chanwoo Kwon.  Reliable operation in harsh environments  Virtually maintenance free  Tailored solutions  Competitively priced  Exceptional efficiency.
CONVENTIONAL, MAINTENANCE FREE, AND DEEP CYCLE/DRY CELL The Automotive Battery.
Photovoltaic Batteries Battery Components Configuration Manufacturers.
ELECTRICAL B 2  Storage batteries store electrical energy due to the chemical action taking place between electrodes and electrolytic solution. 
Battery Fundamentals Chapter 30 Page 403.
© 2011 Pearson Education, Inc. All Rights Reserved Automotive Technology, Fifth Edition James Halderman BATTERIES 50.
Guided by:- Guided by:- Hitesh Patel Hitesh Patel Vidhi Mody Submitted by:- Kotadiya Reshma 26 Maniya Saguna 30 Sojitra Rachna 54 Sidpara Pooja 52 BRANCH:-
Voltaic Cells Batteries, etc.. Essentials Electrochemical setups that can generate electricity They release energy and are spontaneous E cell is positive.
Product Engineering Processes Battery Primer A short battery primer Handbook of batteries, Linden and Reddy.
Introduction to our offer May 2010
Using (LiFepo4) Lithium Iron Phosphate Batteries in Aviation Engine Starting Batteries.
Additional Reactions of Significance Oxygen Reaction Cycle:: ½O 2 + Pb PbO PbO + H 2 SO 4 PbSO 4 + H 2 O Note: Oxygen reaction cycle is a benchmark characteristic.
Batteries 8 © 2013 Pearson Higher Education, Inc. Pearson Prentice Hall - Upper Saddle River, NJ Advanced Automotive Electricity and Electronics.
ODYSSEY BATTERIES AGM Military Grade TPPL Technology.
LiFeBATT 40138F1 LiFePO4 Battery. Appearance Specifications (1) Physical Characteristics WeightApprox.365 g Dimension Φ40.6 × 138 mm Electrical Characteristics.
Cells and Batteries A cell is a unit which includes two electrodes and one electrolyte.
Ni-Cd Battery JAMES NELSON VISHNU BUDAMA. Electrochemistry.
CBC Automotive n Operation n Service n Diagnosis Battery.
1 Battery Comparison NanoSafe™ Possesses Disruptive Combination of Features No Other Battery Type Comes Close.
Battery Models. EMF and voltage What is EMF? – Electro Motive Force What is the difference between EMF and battery voltage? – The battery has internal.
Battery Models. EMF and voltage What is EMF? – Electro Motive Force What is the difference between EMF and battery voltage? – The battery has internal.
By: Sam G and Sathvik R. What minerals are in batteries?
Presented by M.Bharat Chand L.Srinivas Bhavani.
Electric Current and Electrical Energy Current Electric current is the rate at which charges pass a given point An electric current can be made.
Day 2 Engineering for a better world…. What did we do yesterday? You drew an engineer… – What was your engineer doing?  We talked about the Gulf oil.
50 BATTERIES BATTERIES.
How can minerals effect batteries to create a stronger and longer-lasting charge By: Sam G and Sathvik R.
How Can Minerals Effect Batteries to Create A Stronger And Longer-lasting Charge By: Sam G and Sathvik R.
Prepared by T Vigneshkumar S Vijayakumar
TO MEET AUTOMOTIVE POWER NEEDS
Jared Falls-Bahram Emami
Storing a battery on a concrete floor will discharge them. Wooden container Porous materials Sealing method Battery Myths.
Sealed lead grid technologies
Current and Resistance
Tranportation Testing NorthStar
© 2012 Delmar, Cengage Learning Battery Fundamentals Chapter 26.
Vishay Basic training IHLP power inductors Low DCR, reduced EMI / Size
Modern Automotive Technology PowerPoint for by Russell Krick
BATTERIES AND BATTERY CHARGING
UPS Application Alcad: UPS Application.
FIGURE 17–2 A grid from a battery used in both positive and negative plates.
Introduction Purpose To describe the features and capabilities of two new coin cell supercapacitor series from CDE. Objectives Explain advantages of supercapacitors.
Presentation transcript:

Odyssey Thin Plate Technology – The Advantages  Highest volumetric and gravimetric energy density  Increased shelf life (up to 2 20°C)  Extremely high energy and power density  Superb engine start performance  Rapid recharge capability  Very low internal resistance  Optimised for deep discharge cyclic applications  Resistant to abusive over discharge

ODYSSEY THIN PLATE TECHNOLOGY = MORE PLATES IN EACH 2 VOLT CELL RESULT = MORE CRANKING AMPS & SUPERIOR POWER & ENERGY DENSITY ODYSSEY THIN PLATE THE ADVANTAGE ODYSSEY TRADITIONAL LEAD CALCIUM ENERSYS MANUFACTURING PROCESS ALLOWS PROCESSING OF PURE LEAD GRID RESULT : 1mm THIN CONVENTIONAL BATTERY BOOKMOLD CASTING REQUIRES ARTIFICIAL HARDENERS TO PROCESS GRID RESULT : mm THICK

SPACE SAVING On average:- Odyssey occupies 30% less space More Power Less Space Battery Cabinet Battery Cabinet Conventional Lead acid TPPL Odyssey

STORAGE

ENGINE START

RECHARGE

CYCLING PERFORMANCE

CYCLE NUMBER END OF DCH VOLTS

CYCLING CHARACTERISTICS

DEEP DISCHARGE RECOVERY