3.7V 300mAh 501652 T-Shaped LiPo Battery for Medical Devices

  • Model: LNC501652
  • Voltage: 3.7V
  • Capacity: 300mAh
  • Size: 52 × 16 × 5mm

LNC501652 T-Shaped LiPo Battery

Reliable 3.7V lithium polymer T-shaped battery designed for compact electronic devices, offering stable performance, low self-discharge, and long cycle life for diverse portable applications.

3.7V / 300mAh
T-Shape Design
Reliable Performance
Low Self-Discharge

Product Overview

The LNC501652 is a compact T-shaped lithium polymer battery engineered for stable and reliable energy supply in portable electronic devices.
Its structural design allows better space utilization inside devices with irregular internal layouts.

With a 300mAh capacity and stable discharge characteristics, it is suitable for long-term use in consumer and industrial electronics requiring dependable power output.

Technical Specifications

ItemSpecification
ModelLNC501652
Nominal Voltage3.7V
Capacity300mAh
Dimensions52 × 16 × 5mm
Internal Resistance≤100mΩ
Charge Cut-off Voltage4.35V
Discharge Cut-off Voltage3.0V
Standard Charge Current300mA
Max Charge Current600mA
Standard Discharge Current300mA
Max Discharge Current600mA
Operating TemperatureCharge: 0°C ~ 45°C / Discharge: -10°C ~ 60°C
Cycle Life≥300 cycles (0.2C charge/discharge, ≥70% retention)

Key Features

Stable Performance

Ensures consistent and reliable power output for electronic devices.

High Reliability

Designed for long-term stable operation in portable applications.

Low Self-Discharge

Maintains capacity during long storage periods.

Long Cycle Life

Supports up to 300+ charge and discharge cycles.

T-Shaped Design

Optimized for devices requiring irregular internal space structures.

Applications

  • Medical Devices
  • GPS Trackers
  • Wearable Products
  • Mobile Phones
  • Cameras & Camcorders
  • Walkie Talkies
  • MP3 / PDA / Consumer Electronics

OEM / ODM Custom Battery Solutions

We support customized T-shaped lithium polymer batteries for portable electronics, including capacity, size, discharge rate, and structural design optimization.