- Rack-mounted Lithium Battery
- Golf Cart Lithium Battery
-
Golf Cart Lithium Battery
- 36V 50Ah (for Golf Carts)
- 36V 80Ah (for Golf Carts)
- 36V 100Ah (for Golf Carts)
- 48V 50Ah (for Golf Carts)
- 48V 100Ah (Discharge 100A for Golf Carts)
- 48V 100Ah (Discharge 150A for Golf Carts)
- 48V 100Ah (Discharge 200A for Golf Carts)
- 48V 120Ah (for Golf Carts)
- 48V 150Ah (for Golf Carts)
- 48V 160Ah (Discharge 100A for Golf Carts)
- 48V 160Ah (Discharge 160A for Golf Carts)
-
Golf Cart Lithium Battery
- Forklift Lithium Battery
- 12V Lithium Battery
- 24V Lithium Battery
- 36V Lithium Battery
- 48V Lithium Battery
-
48V LiFePO4 Battery
- 48V 50Ah
- 48V 50Ah (for Golf Carts)
- 48V 60Ah (8D)
- 48V 100Ah (8D)
- 48V 100Ah
- 48V 100Ah (Discharge 100A for Golf Carts)
- 48V 100Ah (Discharge 150A for Golf Carts)
- 48V 100Ah (Discharge 200A for Golf Carts)
- 48V 150Ah (for Golf Carts)
- 48V 160Ah (Discharge 100A for Golf Carts)
- 48V 160Ah (Discharge 160A for Golf Carts)
-
48V LiFePO4 Battery
- 60V Lithium Battery
-
60V LiFePO4 Battery
- 60V 20Ah
- 60V 30Ah
- 60V 50Ah
- 60V 50Ah (Small Size / Side Terminal)
- 60V 100Ah (for Electric Motocycle, Electric Scooter, LSV, AGV)
- 60V 100Ah (for Forklift, AGV, Electric Scooter, Sweeper)
- 60V 150Ah (E-Motocycle / E-Scooter / E-Tricycle / Tour LSV)
- 60V 200Ah (for Forklift, AGV, Electric Scooter, Sweeper)
-
60V LiFePO4 Battery
- 72V~96V Lithium Battery
- E-Bike Battery
- All-in-One Home-ESS
- Wall-mount Battery ESS
-
Home-ESS Lithium Battery PowerWall
- 24V 100Ah 2.4kWh PW24100-S PowerWall
- 48V 50Ah 2.4kWh PW4850-S PowerWall
- 48V 50Ah 2.56kWh PW5150-S PowerWall
- 48V 100Ah 5.12kWh PW51100-F PowerWall (IP65)
- 48V 100Ah 5.12kWh PW51100-S PowerWall
- 48V 100Ah 5.12kWh PW51100-H PowerWall
- 48V 200Ah 10kWh PW51200-H PowerWall
- 48V 300Ah 15kWh PW51300-H PowerWall
PowerWall 51.2V 100Ah LiFePO4 Lithium Battery
Highly popular in Asia and Eastern Europe.
CE Certification | Home-ESS -
Home-ESS Lithium Battery PowerWall
- Portable Power Stations
What is the Step-by-Step Process for Converting mAh to Wh Manually?
To convert milliamp-hours (mAh) to watt-hours (Wh), follow these steps: First, identify the battery’s voltage (V). Then, use the formula: Wh = (mAh × V) / 1000. This calculation gives you the energy capacity in watt-hours. Ensure accuracy by using the correct voltage for your specific battery type.
Step-by-Step Process for Conversion
1. Determine Battery Voltage (V)
The first step in converting mAh to Wh is to find out the voltage of your battery. This information is typically printed on the battery label or can be found in the product specifications.
Voltage Type | Typical Voltage Values |
---|---|
Lithium-ion | 3.7V |
Lead-acid | 12V |
NiMH | 1.2V |
2. Use the Conversion Formula
Once you have the voltage, apply the formula:Wh = (mAh × V) / 1000This formula converts milliamp-hours to watt-hours by multiplying mAh by voltage and dividing by 1000 to adjust for units.
Calculation Example | Result |
---|---|
2000 mAh × 3.7V | 7.4 Wh |
5000 mAh × 12V | 60 Wh |
3. Calculate Energy Capacity
After applying the formula, you will obtain the energy capacity in watt-hours. This value is crucial for understanding how long a device can run on a specific battery.
Battery Type | Capacity (Wh) |
---|---|
eBike Battery | 36 Wh |
Golf Cart Battery | 120 Wh |
Portable Power Station | 500 Wh |
Relation to Other Redway Power Products
Understanding how to convert mAh to Wh is particularly relevant when dealing with our eBike Batteries and Portable Power Stations. These products require precise calculations to ensure optimal performance and compatibility with various devices.
Latest News
- Battery Technology Advancements: Recent innovations in battery technology are enhancing energy density, making conversions more relevant for applications like electric vehicles and renewable energy storage.
- Increased Demand for Energy Storage Solutions: With the rise of electric vehicles and solar power systems, understanding energy capacities is crucial for consumers and manufacturers alike.
- Sustainability Focus: Companies are prioritizing sustainable practices in battery production, influencing how energy capacities are calculated and reported.
Redway Expert Comment
“As experts in Lithium LiFePO4 batteries, we recognize the importance of accurately converting mAh to Wh for optimizing battery performance. Understanding these calculations is essential for both consumers and OEMs to ensure they select the right battery solutions for their needs. Our commitment to quality ensures our batteries meet high standards of efficiency and reliability.”
To convert milliamp-hours (mAh) to watt-hours (Wh), follow these steps:
- Identify the battery voltage (V).
- Use the formula: Wh=mAh1000×VÂ
- Multiply your mAh value by the voltage.
For example: For a 3000mAh battery at 12V: Wh=3000/1000×12=36WhÂ
Recommended Product: Portable Power Station
For clients or importers looking for wholesale or OEM requirements, we recommend our high-capacity Portable Power Stations. These units are designed with advanced Lithium LiFePO4 technology, ensuring reliable energy storage and efficient power delivery.
Top Competitors in the Battery Market
Here are five notable competitors in the lithium battery market that offer lithium battery options:
Brand | Lithium Battery Options | Compatibility with Redway Power |
---|---|---|
Redway Power | Yes | Best Compatible |
Renogy | Yes | Moderate |
Goal Zero | Yes | Moderate |
EcoFlow | Yes | Moderate |
Jackery | Yes | Moderate |
FAQs
How to convert mAh to watt hours?