Battery Packs

Image Part Number Description / PDF Quantity Rfq
UM-3NPAF8

UM-3NPAF8

Panasonic

BATTERY PACK ZINC 12V AA

0

KR-1700AUF2X2

KR-1700AUF2X2

Panasonic

BATTERY PACK NICAD 4.8V A

0

HHR75TAB7F10

HHR75TAB7F10

Panasonic

BATTERY PACK NIMH 12V L-AAA

0

HHR-210AHL2X3

HHR-210AHL2X3

Panasonic

BATTERY PACK NIMH 7.2V A

0

P-280CSF5

P-280CSF5

Panasonic

BATTERY PACK NICAD 6V C

0

P-440DEL3X2

P-440DEL3X2

Panasonic

BATTERY PACK NICAD 7.2V D

0

HHR-260SCPY01L2X2

HHR-260SCPY01L2X2

Panasonic

BATTERY PACK NIMH 4.8V SC

0

HHR-210AHL5X2

HHR-210AHL5X2

Panasonic

BATTERY PACK NIMH 12V A

0

P-11AAHF2X3

P-11AAHF2X3

Panasonic

BATTERY PACK NICAD 7.2V 1/3 AA

0

HHR-210AHF9

HHR-210AHF9

Panasonic

BATTERY PACK NIMH 10.8V A

0

KR-SCH(1.2)L4X2

KR-SCH(1.2)L4X2

Panasonic

BATTERY PACK NICAD 9.6V SC

0

AM1XF2X5

AM1XF2X5

Panasonic

BATTERY PACK ALKALINE 15V D

0

P-18NL5X2

P-18NL5X2

Panasonic

BATTERY PACK NICAD 12V N

0

HHR-65TAB17L2X2

HHR-65TAB17L2X2

Panasonic

BATTERY PACK NIMH 4.8V L-AAA

0

KR-1400AEF10

KR-1400AEF10

Panasonic

BATTERY PACK NICAD 12V A

0

N-270AAL2X4

N-270AAL2X4

Panasonic

BATTERY PACK NICAD 9.6V 2/3 AA

0

KR-SCH(1.2)F5

KR-SCH(1.2)F5

Panasonic

BATTERY PACK NICAD 6V SC

0

KR-CH(3.0)L3X1

KR-CH(3.0)L3X1

Panasonic

BATTERY PACK NICAD 3.6V C

0

P-150SCSF5

P-150SCSF5

Panasonic

BATTERY PACK NICAD 6V SC

0

HHR-20SCPY14F10

HHR-20SCPY14F10

Panasonic

BATTERY PACK NIMH 12V 4/5 SC

0

Battery Packs

1. Overview

Battery packs are integrated assemblies of multiple electrochemical cells connected in series, parallel, or combination configurations to deliver required voltage, capacity, and power. These modular energy storage systems play critical roles in portable electronics, electric vehicles (EVs), renewable energy storage, and industrial equipment. Modern advancements in battery chemistry and management systems have enabled higher energy densities, faster charging capabilities, and improved safety features essential for expanding electrification across industries.

2. Major Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Lithium-ion (Li-ion)High energy density (150-250 Wh/kg), 500-2000 cycles lifespan, low self-dischargeSmartphones, EVs, laptops
Nickel-Metal Hydride (NiMH)Moderate energy density (60-120 Wh/kg), 500-1000 cycles, environmental friendlyHybrid vehicles, digital cameras
Lead-AcidLow cost, high surge currents, 300-500 cyclesAutomotive starters, backup power
Solid-StateHigh safety, >1000 Wh/L energy density, wide temperature rangeNext-gen EVs, aerospace
Lithium Polymer (LiPo)Flexible form factors, 300-500 cycles, lighter weightDrones, wearable devices

3. Structural Composition

Typical battery pack architecture includes:

  • Mechanical Components: Prismatic/cylindrical/smart cells, protective housing, electrical connectors, thermal management materials
  • Internal Technology: Anode/cathode materials (graphite/NMC/LFP), electrolyte (liquid/gel/solid-state), separator films
  • Electronic Systems: Battery Management System (BMS) with voltage monitoring, cell balancing, temperature sensors, communication interfaces (CAN/SMBus)

4. Key Technical Specifications

ParameterSignificance
Energy Density (Wh/kg)Determines runtime/weight ratio for portable devices
Charge Cycle LifeDefines longevity under repeated charge/discharge
Voltage Range (V)Dictates device power requirements
Charge Rate (C-rate)Impacts charging time and thermal performance
Operating Temperature (-20 C to 60 C)Determines environmental suitability

5. Application Domains

  • Consumer Electronics: Smartphones (Samsung Galaxy S23: 4700mAh Li-ion), laptops (Apple MacBook Pro 16": 100Wh)
  • Transportation: Tesla Model Y (75kWh Li-ion pack), Toyota Prius Prime (8.8kWh NiMH)
  • Renewable Energy: Solar storage systems (Tesla Powerwall: 13.5kWh), grid-scale storage (BYD Container System: 576kWh)
  • Industrial: Forklifts (Crown Equipment: 48V Li-ion), medical devices (Philips defibrillators)

6. Leading Manufacturers & Products

ManufacturerProductKey Technology
PanasonicNCR21700B (21700 Li-ion)SiO-C anode, 3.6V, 5100mAh
Samsung SDIICR18650-30QNMC chemistry, 3000mAh
Contemporary Amperex (CATL)NCM811 pouch cellsEnergy density >240Wh/kg
LG ChemLG18650HG23000mAh, 800 cycles
Tesla4680 tabless battery29400mAh, 92kWh pack capacity

7. Selection Guidelines

  • Match voltage/capacity requirements with application needs
  • Evaluate operating environment (temperature, vibration)
  • Verify safety certifications (UN38.3, IEC62133)
  • Assess charging infrastructure compatibility
  • Consider total ownership cost (cycle life vs initial price)
  • Check recyclability and regulatory compliance

8. Industry Trends

Key development directions include:

  • Transition to solid-state electrolytes for enhanced safety (Toyota's 2027 roadmap)
  • Si-based anodes for >400Wh/kg energy density (Tesla's 4680 evolution)
  • Ultra-fast charging (80% in 10 minutes) with new electrode materials
  • Recycling infrastructure expansion (EU Battery Passport initiative)
  • Smart integration with IoT for predictive maintenance
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