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  • Using the MCP1631 Family to Develop Low-Cost Battery Chargers
    AN1137 Using the MCP1631 Family to Develop Low-Cost Battery Chargers COMMON CHARGE PROFILES Author: Terry Cleveland Microchip Technology Inc. NiMH Charge Profile INTRODUCTION Figure 1 shows a typical charge profile for NiMH batteries. The charge cycle begins once a battery is As portable
  • Designing Battery Charger using GAIA Converter 150W DC/DC Converter
    . * Nickel MetalHybrid (NiMH) battery. * Lithium (Li-Ion or Li-Poly) battery. Old battery technology requires simple charging. system with constant current while many new. battery technologies (NiCd, NiMH , Lithium). require sophisticated charging and monitoring. systems to preserve their high
  • Ni-MH Battery Charger Application Library
    The basic charger has a single power source in a buck. converter configuration with current feedback. To. charge both batteries, it switches between the batteries. every second. When a battery is "active", its voltage. and current readings are updated, then the state. machine uses the readings
  • Li-ion Battery Temperature Trends During Charge and Discharge
    Lithium chemistry batteries are replacing Sealed Lead Acid. (SLA) and Nickel Metal-hydride (NiMH) types in many fixed. and portable applications due to their higher energy storage. density relative to both weight and volume. As larger Lithium. chemistry batteries are designed, managing the waste
  • Selecting the Right Battery System for Cost-Sensitive Portable Applications While Maintaining Excellent Quality
    and SLA 30-40 2.0 2.25 1.75 2.850-80 implementing an advanced battery technology. When it comes to production, reliability, safety, low-cost NiCd 40-80 100-150 1.2 1.3 0.9 1.6 and easy installation are the important elements while NiMH 60-100 160-230 1.2 1.3 0.9 1.5maintaining good quality. Each battery
  • Selecting Cell Chemistries For Your Portable Battery System
    Three cell chemistries currently dominate the growing. portable application market: Nickel-Metal Hydride (NiMH),. Lithium Ion (Li-ion), and Lithium Polymer (Li-polymer). While. all of these chemistries can address the high power demands. of portable applications like handheld scanners, medical
  • Selecting Cell Chemistries For Your Portable Battery System (2)
    Three cell chemistries currently dominate the growing. portable application market: Nickel-Metal Hydride (NiMH),. Lithium Ion (Li-ion), and Lithium Polymer (Li-polymer). While. all of these chemistries can address the high power demands. of portable applications like handheld scanners, medical
  • Using KEELOQ to Validate Subsystem Compatibility
    of the whole system. As an example, we offer the case of a mobile phone with its rechargeable battery module. Batteries can be based on different technologies (NiCd, NiMH, Li Ion, etc.) that, in turn, require different charging algorithms. A mismatch would lead to potentially dangerous situations

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