Batteries Rechargeable (Secondary)

Image Part Number Description / PDF Quantity Rfq
BW 12120 F2

BW 12120 F2

Bright Way Group

12 VOLT 12 AH

16

NPX-25/250FR

NPX-25/250FR

12V, 23 WPC 15 MINUTES

0

PC3.4-12F1

PC3.4-12F1

ZEUS Battery Products

BA 12V 3.4AH SLA

268

HHR-60AAAHT

HHR-60AAAHT

Panasonic

BATTERY NIMH 1.2V 500MAH AAA

132

BGN800-4EWP-A800EC

BGN800-4EWP-A800EC

BatteryGuy

4.8V 900MAH NICAD BATTERY

300

NP38-12B

NP38-12B

12V, 38 AH SLA

0

LC-P127R2P

LC-P127R2P

Panasonic

BATTERY LEAD ACID 12V 7.2AH

67

LC-RA1212P1

LC-RA1212P1

Panasonic

BATTERY LEAD ACID 12V 12AH

0

LC-R0612P1

LC-R0612P1

Panasonic

BATTERY LEAD ACID 6V 12AH

0

UL1865-34-1P

UL1865-34-1P

Dantona Industries, Inc.

1 IRC18650 3.7V 3.4AH PROTECTED

328

LIFEO4-18500

LIFEO4-18500

Dantona Industries, Inc.

IFR18500 3.2V 1000MAH

2509

HR-4/3AU(4.0AH)

HR-4/3AU(4.0AH)

FDK America

BATTERY NIMH 1.2V 3.6AH 4/3 A

689

NP18-12BFR

NP18-12BFR

12V, 17.3 AH SLA

0

NIMH-AAA1200-4B

NIMH-AAA1200-4B

Fuspower

NIMH AAA 1200MAH 1.2V -PACK OF 4

275

N-1700SCR

N-1700SCR

Panasonic

BATTERY NICAD 1.2V 1.7AH SC

2027

SLB03070LR352ZA

SLB03070LR352ZA

Nichicon

2.4V, -30 TO 60C, 0.35MAH CAPAC

1640

BGN1800-5DWP-A800EC

BGN1800-5DWP-A800EC

BatteryGuy

6V 1800MAH NICAD BATTERY

398

HR-3UTG

HR-3UTG

FDK America

BATTERY NIMH 1.2V 1.9AH AA

389

UL14500SL-2P

UL14500SL-2P

Dantona Industries, Inc.

IFR14500 3.2V 600MAH

2152

PC55-12NB

PC55-12NB

ZEUS Battery Products

BATTERY LEAD ACID 12V 55AH

44

Batteries Rechargeable (Secondary)

1. Overview

Rechargeable batteries (secondary batteries) are electrochemical energy storage devices that can be repeatedly charged and discharged through reversible chemical reactions. Unlike primary batteries, they form the backbone of modern energy storage systems, enabling portable electronics, electric vehicles (EVs), and renewable energy integration. Their ability to reduce long-term costs and environmental impact makes them critical in sustainable technology development.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Lithium-ion (Li-ion)High energy density (100-265 Wh/kg), low self-discharge, long cycle life (500-2000 cycles)Smartphones, EVs, laptops
Nickel-Metal Hydride (NiMH)Moderate energy density (60-120 Wh/kg), environmental friendliness, memory effect resistanceHybrid vehicles, digital cameras
Lead-AcidLow cost, high surge current capability, heavy weightAutomotive starters, backup power systems
Lithium Iron Phosphate (LiFePO4)Exceptional thermal stability, long lifespan (2000+ cycles), lower energy densityElectric buses, solar storage, marine applications

3. Structure and Composition

Typical rechargeable battery cells consist of:

  • Cathode: Lithium cobalt oxide (LiCoO2) in Li-ion, Nickel oxyhydroxide (NiOOH) in NiMH
  • Anode: Graphite (Li-ion), Hydrogen-absorbing alloy (NiMH)
  • Electrolyte: Lithium salt in organic solvent (Li-ion), Potassium hydroxide (NiMH)
  • Separator: Microporous polymer membrane preventing short circuits
  • Current Collectors: Copper (anode), Aluminum (cathode)

Cell designs include cylindrical (18650 format), prismatic, and pouch configurations with integrated protection circuits.

4. Key Technical Parameters

ParameterDescriptionImportance
Energy DensityWh/kg or Wh/LDetermines runtime and weight
Charge Cycle LifeNumber of full discharge/charge cyclesDictates longevity and cost-effectiveness
Internal ResistanceMeasured in milliohmsAffects power output and efficiency
Self-Discharge RateMonthly capacity loss percentageStorage performance indicator
Charging EfficiencyPercentage of energy retained during chargingImpacts operational costs

5. Application Fields

  • Consumer Electronics: Smartphones, tablets, wearables
  • Transportation: EVs (Tesla Model 3), Hybrid vehicles (Toyota Prius)
  • Renewable Energy: Solar+storage systems (Tesla Powerwall)
  • Industrial: Forklifts, uninterruptible power supplies (UPS)
  • Military/Aerospace: UAVs, satellites

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductChemistry Type
PanasonicNCR18650BLithium-ion
BYDBlade BatteryLithium Iron Phosphate
Samsung SDIINR18650-30QNickel Cobalt Manganese (NCM)
Exide TechnologiesChloride SLALead-Acid
LG ChemLGDBHE21865Lithium-ion Polymer

7. Selection Recommendations

Key considerations:

  • Energy Requirements: Calculate Wh needed for target runtime
  • Power Profile: Assess peak current demands (e.g., EV acceleration)
  • Environmental Conditions: Operating temperature range (-20 C to 60 C typical)
  • Cost Constraints: Balance upfront cost vs lifecycle value
  • Regulatory Compliance: UN38.3, IEC 62133 certifications

Example: Select LiFePO4 for solar storage systems requiring 5000+ cycles and wide temperature tolerance.

8. Industry Trends

  • Material Innovation: Silicon anodes (20%+ capacity increase), solid-state electrolytes
  • Fast Charging: 0-80% in 15 minutes (e.g., Tesla 4680 cells)
  • Recycling: EU Battery Passport regulations driving closed-loop systems
  • Market Growth: 12.6% CAGR projected through 2030 (Grand View Research)
  • AI Integration: Smart BMS (Battery Management Systems) optimizing charge cycles
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