The HP OMEN 15-dc1026nw 15.4V 70.7Wh battery is an internal high-performance replacement battery designed for HP OMEN 15 gaming laptops in the 15-dc series. It provides strong and stable power delivery required for gaming, heavy multitasking, content creation, and sustained high-performance workloads.
This battery is part of the SR04XL compatible battery family and features a 4-cell lithium-ion polymer design with a nominal capacity of approximately 70.7Wh and a voltage of 15.4V. It is widely used across HP OMEN 15-dc0000 series laptops equipped with Intel H-series processors and dedicated NVIDIA graphics for gaming performance stability.
The SR04XL platform is designed specifically for high-power systems, where higher voltage helps maintain stable performance under sustained CPU and GPU loads.
Built-in protection against overcharging and overheating
Designed for gaming and performance laptops
Supports sustained CPU and GPU workloads
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Price in Kenya
Item
Price in Kenya (KES)
HP SR04XL 70.7Wh replacement battery
8,000 – 15,000 KES
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Specifications Table
Specification
Details
Product Name
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery
Battery Type
Lithium-ion polymer
Voltage
15.4V
Capacity
~70.7Wh
Cell Configuration
4-cell
Compatibility
HP OMEN 15-dc1026nw, 15-dc0000 series
Replacement Family
SR04XL
Installation Type
Internal battery
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Design and Build
Durable 4-cell lithium-polymer construction
Reinforced casing for high heat and gaming loads
Precision-fit SR04XL OEM design for OMEN chassis
Heat-resistant materials for sustained performance
Optimized for high-power gaming systems
Built for long-term internal installation durability
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Performance
Strong power delivery for gaming and GPU-intensive tasks
Stable voltage under heavy CPU/GPU load
Supports multitasking, streaming, and rendering workloads
Optimized for Intel H-series OMEN configurations
Smooth performance during extended gaming sessions
Reduces performance drops under sustained load
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Efficiency
Balanced efficiency for gaming-class laptops
Moderate standby power consumption
Supports HP smart battery management systems
Designed for performance-first usage patterns
Efficient discharge curve under gaming loads
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Safety Features
Overcharge protection
Over-discharge protection
Short circuit protection
Thermal protection system
Smart battery monitoring circuitry
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Compatibility
HP OMEN 15-dc1026nw
HP OMEN 15-dc0000 series
HP OMEN 15-ce series (SR04XL platform variants)
Select OMEN gaming laptops using 70.7Wh 15.4V battery design
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Durability
High-quality lithium-ion polymer cells
Designed for repeated high-load gaming cycles
Gradual capacity reduction over time (normal lithium aging)
Stable performance under thermal stress
Built for long-term gaming laptop usage
Reinforced internal structure for reliability
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Pros and Cons
Pros
Cons
High 70.7Wh gaming capacity
Internal installation required
Strong SR04XL compatibility
Battery degrades faster under heat
Stable 15.4V output
Not user-removable
Good for long gaming sessions
Moderate wear over time
Reliable OEM platform
High power usage reduces runtime
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery FAQs
What is the battery capacity? ~70.7Wh
What voltage does it use? 15.4V
Which laptops use this battery? HP OMEN 15-dc1026nw and other HP OMEN 15-dc0000 series models
Is it good for gaming? Yes, it is designed for gaming and heavy workloads
Which battery family does it belong to? SR04XL platform
HP OMEN 15-dc1026nw 15.4V 70.7Wh battery Conclusion
The HP OMEN 15-dc1026nw 15.4V 70.7Wh battery is a reliable SR04XL-compatible internal replacement battery designed for HP OMEN gaming laptops. It delivers strong performance, stable power output, and consistent endurance for gaming, multitasking, and creative workloads.