- UPS & Inverter Systems
- Emergency Lighting
- Security & Alarm Systems
- CCTV & Access Control
- Telecommunication Systems
- Fire Alarm Systems
- Solar Power Systems
- Medical Equipment
- Industrial Control Systems
- Emergency Backup Power
- IT & Networking Equipment
- Automatic Doors & Gates
- Railway & Transportation Systems
- POS & Retail Systems
- Standby Power Applications

12V80AH/10HR
Kenson KS12-80AH VRLA-SMF BATTERY from the official distributor in Bangladesh. Warranty, professional installation & 24/7 technical support from TNS Engineeri
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TNS Engineering Ltd is the mother & main importer of Kenson in Bangladesh. Showrooms, IT shops, and dealers nationwide resell genuine products imported and warranted by TNS. Learn more about Kenson.
| Item / Parameter | Specification / Technical Value |
|---|---|
| Capacity | 12V80Ah/10HR |
| Model | KS12-80 |
| Brand | KENSON |
| Type | Sealed Lead Acid (SMF) |
| Warranty | 12 Months |
Application
- Industrial UPS & Backup Power Systems
- Data Centers & Server Infrastructure
- Telecommunications & Networking
- Industrial Automation & Control Systems
- Security, CCTV & Access Control
- Fire & Emergency Power Systems
- Medical & Healthcare Facilities
- Banking & Financial Infrastructure
- Manufacturing & Process Industries
- Solar & Renewable Energy Backup
- Railway & Transportation Systems
- Emergency Lighting & Critical Power Systems
Questions & Answers for 12V80AH/10HR
12V means the battery has a nominal voltage of 12 volts. 80Ah is its rated capacity, while 10HR means the 80Ah capacity is specified when the battery is discharged over a 10-hour period. 12v80ah-10hr
The rated capacity is **80 ampere-hours (Ah)** under the specified 10-hour discharge condition.
Its nominal energy is approximately **960Wh**, calculated as 12V × 80Ah. Actual usable energy depends on battery type, discharge rate, temperature, age, and allowable depth of discharge.
A 10HR rating means the battery's rated capacity is measured over a **10-hour discharge period** under the manufacturer's specified test conditions.
Runtime depends on the device's power consumption and the battery's usable capacity. As an example, a 100W load could theoretically use about 10 hours of nominal energy, but actual runtime will be lower due to system losses and battery limitations.
Depending on the battery design, it can be used for backup power systems, UPS applications, solar systems, emergency lighting, telecommunications equipment, security systems, and other 12V applications.
Yes, provided the UPS is designed for a 12V battery and its charging voltage, charging current, and battery requirements are compatible with the battery.
Yes. It can be used in a solar energy system when paired with a compatible solar charge controller and properly sized solar panel system.
A battery is normally rated in Ah rather than watts. Its nominal stored energy is approximately **960Wh**. The maximum power it can deliver depends on the battery's specifications and application.
Charging time depends on the charger current, battery chemistry, state of charge, temperature, and charging efficiency. For example, an ideal calculation using an 8A charging current would be around 10 hours, but actual charging generally takes longer.
Use a charger specifically designed for the battery's chemistry and voltage. The recommended charging voltage and current should always follow the manufacturer's specifications.
It may be suitable for some battery types, but charger compatibility depends on the battery chemistry and manufacturer's recommended charging current. Check the battery datasheet before charging.
Yes, if the inverter accepts a 12V battery input and the battery can safely supply the required current. The inverter's power rating and expected backup time should be considered when selecting the battery.
A simple theoretical calculation gives about 1.92 hours based on 960Wh of nominal energy. Actual runtime can be significantly shorter because of inverter losses, discharge characteristics, battery condition, and allowable depth of discharge.
It is generally not recommended. Batteries connected in a bank should ideally have the same type, voltage, capacity, age, and specifications to ensure balanced operation.
Battery life varies considerably according to chemistry, design, temperature, charging method, discharge depth, usage frequency, and maintenance. Refer to the manufacturer's cycle-life or service-life specifications for an accurate figure.
Store it in a cool, dry, well-ventilated location and follow the manufacturer's storage and recharge recommendations. Avoid prolonged storage in a deeply discharged condition.
Yes. It can be suitable for backup applications when the battery voltage, capacity, discharge capability, and charging requirements match the backup system.
Most batteries sold with this specification for UPS, solar, automotive, or backup applications are rechargeable, but the exact charging method depends on the battery chemistry.
Follow the manufacturer's charging, storage, temperature, and installation guidelines. Avoid overcharging, excessive discharge, overheating, and prolonged storage in a discharged condition.
Temperature, discharge rate, charging conditions, age, cycle history, installation, load characteristics, and depth of discharge can all affect battery performance.
It may be able to power a refrigerator through a suitable inverter, but suitability depends on the refrigerator's running power, starting surge, inverter efficiency, battery discharge capability, and required backup time.
Yes, provided the CCTV system or backup unit is compatible with a 12V battery. The required backup time should be calculated based on the total power consumption of the CCTV equipment.
Yes, if the emergency lighting system is designed for a compatible 12V battery and the battery's discharge characteristics meet the system requirements.
Both may be labeled 80Ah, but the capacity is measured at different discharge rates. A battery's Ah rating can vary with discharge conditions, so ratings should be compared using the same test standard.
A basic estimate is: **Backup time (hours) ≈ Battery voltage × Ah × usable capacity ÷ load watts.** For an inverter system, also account for inverter efficiency and other system losses.
It can be used in continuous-duty applications if the battery is specifically designed for that purpose and the charging, discharge, ventilation, temperature, and load requirements are within the manufacturer's specifications.
Consider the battery chemistry, required backup time, load power, discharge current, charging system, operating temperature, cycle requirements, physical dimensions, terminal configuration, and manufacturer's specifications.
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