Batteries
Dyness 30kWh High Voltage Battery with BDU
BrandDyness- Model
- DYNS-13
- Specifications
- 10
- Cooling MethodNatural Cooling
- Battery ChemistryLithium Iron Phosphate (LiFePO₄ / LFP)
- Battery TypeHigh Voltage Energy Storage Battery
- CommunicationCAN, RS485
- Cycle Life≥6000 Cycles (Typical)
- View all 10 specifications ↓
Overview
The Dyness 30kWh High Voltage Battery with BDU is a premium lithium iron phosphate (LiFePO₄) energy storage solution designed for residential, commercial, and industrial solar applications. Built with advanced battery technology and an integrated Battery Distribution Unit (BDU), it d
Specifications
| TECHNICAL SPECIFICATION | |
|---|---|
| Cooling Method | Natural Cooling |
| General Specification | |
| Battery Chemistry | Lithium Iron Phosphate (LiFePO₄ / LFP) |
| Battery Type | High Voltage Energy Storage Battery |
| Communication | CAN, RS485 |
| Cycle Life | ≥6000 Cycles (Typical) |
| Installation | Floor Standing / Stackable |
| Nominal Energy | 30kWh |
| Operating Temperature | Charging: 0°C to 50°C, Discharging: -10°C to 50°C |
| Protection function | Over Charge, Over Discharge, Over Current, Short Circuit, Over Temperature |
| Scalability | Modular & Expandable |
What these specifications mean
Dyness 30kWh High Voltage Battery with BDU is listed with 10 published specifications from Dyness, including cooling method of Natural Cooling, battery chemistry of Lithium Iron Phosphate (LiFePO₄ / LFP), battery type of High Voltage Energy Storage Battery and communication of CAN, RS485. Those figures are what decide whether this unit fits your system, so read them against the equipment it will connect to before comparing price.
For a battery, the figures that matter most are nominal capacity in ampere-hours (Ah) or kilowatt-hours (kWh), usable capacity after depth of discharge — LiFePO4 typically allows 80–100%, lead-acid closer to 50%, system voltage: 12 V, 24 V and 48 V for low-voltage packs, or a high-voltage stack and continuous charge and discharge current, which limits how much power you can draw from the pack. Storage is what turns a solar array from a daytime bill-reducer into a system that covers evening loads and rides through outages. It is normally the single most expensive component, so sizing it correctly matters more than with any other part.
Before you buy a battery
The checks below apply to any battery. Run them against the specification table above — most disappointing solar purchases are compatible-on-paper units that fail one of these in practice.
- Match voltage to the inverter, and confirm the battery appears on the inverter maker's supported list. Closed-loop communication lets the inverter respect the battery's real charge limits instead of guessing.
- Read the warranty in full: lithium warranties are stated as a term plus either a cycle count or a total energy throughput, and whichever limit arrives first ends the cover.
- Leave room to expand. Packs that parallel cleanly let you add capacity later; ones that do not force a full replacement.
- Compare usable kilowatt-hours, not nameplate capacity. A 100 Ah lead-acid battery at 12 V is nominally 1.2 kWh but only about 0.6 kWh is safely usable, while a 100 Ah LiFePO4 pack gives you roughly 1.0–1.2 kWh.
What people get wrong
- Mixing old and new batteries, or different chemistries, in one bank. The weakest unit drags the whole bank down and can be damaged by the others.
- Sizing the bank for total daily consumption rather than after-dark consumption, which typically doubles the cost for no benefit.
- Installing lithium packs in an unventilated, hot enclosure. Sustained high temperature is the fastest way to lose cycle life.
Price and availability
No price is published for Dyness 30kWh High Voltage Battery with BDU at the moment. Pricing on solar equipment moves with supply and exchange rates, and some distributors quote only on request — the specifications above are still directly comparable against alternatives that do list a price.
SolarBazaar compares equipment rather than selling it. Shortlist here on specification and price, then buy from an authorised distributor or installer in your country: warranty cover on solar hardware is normally honoured through the channel you bought from, so confirm who supports Dyness locally before ordering.
Dyness 30kWh High Voltage Battery with BDU — frequently asked questions
What are the specifications of Dyness 30kWh High Voltage Battery with BDU?
We hold 10 published specifications for this battery, including cooling method Natural Cooling, battery chemistry Lithium Iron Phosphate (LiFePO₄ / LFP), battery type High Voltage Energy Storage Battery, communication CAN, RS485 and cycle life ≥6000 Cycles (Typical). The full table is on this page, listed under model DYNS-13.
Who makes Dyness 30kWh High Voltage Battery with BDU?
Dyness 30kWh High Voltage Battery with BDU is a Dyness product, listed under batteries with model reference DYNS-13. The Dyness brand page lists the rest of its range so you can compare across the catalogue.
Is Dyness 30kWh High Voltage Battery with BDU right for my system?
That depends on what it has to connect to. For a battery, check round-trip efficiency, around 90–95% for lithium and 75–85% for lead-acid, communication protocol (CAN or RS485) for talking to the inverter and nominal capacity in ampere-hours (Ah) or kilowatt-hours (kWh) against the rest of your equipment before price enters the decision. Compare usable kilowatt-hours, not nameplate capacity. A 100 Ah lead-acid battery at 12 V is nominally 1.2 kWh but only about 0.6 kWh is safely usable, while a 100 Ah LiFePO4 pack gives you roughly 1.0–1.2 kWh.
Where can I buy Dyness 30kWh High Voltage Battery with BDU?
SolarBazaar lists and compares equipment rather than selling it. Use the specifications and price here to shortlist, then buy through an authorised distributor or installer — buying in-channel is what keeps the manufacturer's warranty valid.
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