Helion 7 Cell 8.4v 3000mAh Hump NiMh Battery (Deans Connector) (HLNA0393)
Brand: Radient
Part No: RDNA0098
Out Of Stock
Request Stock NotificationThe Radient RDNA0098 Helion 7 Cell 8.4v 3000mAh Hump NiMH Battery (HLNA0393) is a SC-size, 6-1 hump pack designed for surface RC applications. Delivering 8.4V from seven NiMH cells and pre-fitted with a Deans (HCT) connector, it provides a straightforward fit where a compact hump configuration is required. Finished in black and recommended for users aged 14+, this pack balances capacity and convenience for everyday running.
Key Features
- Connector: Deans (HCT)
- Capacity: 3000mAh
Tech Specs
- Chemistry: Nickel-Metal Hydride (NiMH)
- Cells: 7-cell (8.4V)
- Configuration: 6-1 hump
- Battery Size: SC
- Colour: Black
- Weight: 450g (shipping weight 0.45kg)
- Application: NiMH surface 1/10, 1/12, 1/13
- Age Recommendation: 14+
Suggested Compatibility
- 1/10, 1/12 and 1/13 scale surface RC models using a Deans (HCT) connector
- Installations that accept a 7-cell, 6-1 hump SC NiMH pack
Secured by Stripe
Helion 7 Cell 8.4v 3000mAh Hump NiMh Battery (Deans Connector) (HLNA0393) Key Features:
- Connector: Deans (HCT)
- Capacity: 3000mAh
Helion 7 Cell 8.4v 3000mAh Hump NiMh Battery (Deans Connector) (HLNA0393) Tech Specs:
- Weight: 450g / 15.87oz
- Shipping Weight: 0.45kg / 0.99lbs
- Application: NiMH Surface 1/10 and 1/12, NiMH Surface 1/10 and 1/13
- Battery Size: SC
- Connector: Deans (HCT)
- Configuration: 6-1 Hump
- Cells: 7-Cell (8.4V)
- Voltage: 8.4V
- Capacity: 3000mAh
- Age Recommendation: 14+
- Colour: Black
- Material: Nickel-Metal Hydride
Key Info:
- Brand: Radient
- Part No: RDNA0098
- Barcode: 812699026199
- Voltage: 8.4v
- Connector: Deans
- Fitment: Option Part
Additional Categories:
Standard Shipping
£3.95 to most of the UK
Express Shipping
£6.95 to most of the UK
Worldwide Shipping
Available at checkout
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Questions & Answers
You could use this one: ET0202
You can charge them and use them straight away, but yes it will take a few cycle's to get them to work at their full potential.
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