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Shenzhen Topband Battery Co., Ltd
A professional manufacturer of LiFePO4 battery / lithium iron phosphate, dedicated to designing, researching, manufacturing, and exporting LiFePO4 batteries( cell & pack & energy storage system) to
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UPS LFP UPS Rechargeable Batteries High Voltage LiFePO4 Material Long Lifespan

Shenzhen Topband Battery Co., Ltd

UPS LFP UPS Rechargeable Batteries High Voltage LiFePO4 Material Long Lifespan

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Brand Name : Topband

Model Number : TB38450F-T112A

Certification : UL, UN38.3, MSDS

Place of Origin : China

MOQ : 10

Price : Negotiable

Payment Terms : L/C, T/T

Supply Ability : 3Gwh/year

Delivery Time : 4weeks for samples; 6~8weeks for mass production

Packaging Details : standard export carton

Material : LiFePO4

Nominal Voltage : 384V

Normal Capacity : 50Ah

Energy : 19.2KWh

Internal resistance : ≤150mΩ

Output voltage : 300-438V

Standard charge current : 62.5A

Standard discharge current : 50A

Dimension : 600*600*1300mm

Weight : 300Kg

Cycles : ≥3500cycle (@DOD80% @0.33C)

Communication : RS485-Modbus

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High Voltage Battery LiFePO4 Battery Pack , UPS LFP Rechargeable Batteries , OEM Acceptable

1. General Information

This specification defines the performance of rechargeable LiFePO4 battery pack TB38450F-T112A manufactured by SHENZHEN TOPBAND BATTERY CO.,LTD, describes the type, performance, technical characteristics, warning and caution of the battery pack. This system Include 4 pack modules, 1 control module, and 1 standard 19”cabinet.

2. Specification(@Battery initial Temp25±5℃)

NO. Items Criteria Remarks
2.1 Rated Capacity 50Ah
Minimum Capacity 48Ah
2.2 Energy 19.2KWh
2.3 Nominal Voltage 384V
2.4 Outgoing Voltage ≥384V
2.5 Internal resistance ≤150mΩ
2.6 Communication RS485-Modbus
2.7 Display 3.5” TFT Screen
2.8 Limited charge voltage 438±4V
2.9 Floating charge voltage 414±4V
2.10 Maximum charge current 62.5A
2.11 Maximum discharge current 50A
2.12 Discharge cut-off voltage 300V
2.13 Dimension Single battery module or control module Width: 482±3mm
Height: 176±3mm
Depth: 445±3mm
Cabinet 600*600*1300mm
2.14 Net weight Single module Approx: 50kg
System Approx: 300kg
2.15 Battery case / cabinet color Black
2.16 Operating Temperature Charging:0~50℃
Discharging:-20~60℃
Recommended operating temperature:15℃~35℃
2.17 Self-discharge rate Residual capacity:≤2%/month;≤12%/years
2.18 Storage Temperature & Humidity Range Less than 1 month:-20℃~45℃,45%RH~80%RH

Recommended storage environment:

15℃~35℃,45%RH~80%RH

Long time storage:

If the battery need be stored for a long time, the voltage should be 396V(50%SOC), and stored in the condition as storage proposal. It need at least one charge & discharge cycle every six months

3. Product Performance

Standard Test Conditions:

Unless otherwise specified, all performance tests is required conducted at temperature 25℃±2℃, Humidity less than 45%~75%RH.

Unless otherwise specified, the tested product is required unused within one month after outgoing.

NO. Items Criteria Testing method
3.1 Rated Capacity 50Ah @0.33C
3.2 Internal resistance ≤150mΩ 50% battery SOC state frequency of 1 KHZ ac resistance tester
3.3

Cycle life

(@DOD80%

@0.33C)

≥3500cycle
3.4 Short circuit protection 250A Fuse
3.5

Discharge Temperature

Characteristics

-20℃ ≥70% At 25±5℃ discharge the battery with the current of 0.33C to the cut-off voltage and record charge capacity. Store the battery at various temperatures for 2h and discharge the battery with 0.33C to the cut-off voltage.
-0℃ ≥80%
25℃ ≥100%
55℃ ≥95%
3.6 Charge Retention ability

Residual

capacity≥90%

Charge the battery to full capacity and store it for 28days, and then discharge it with 0.33C to the cut-off voltage.
Recovery capacity≥95%

4. Protective circuit specification

The Battery Management System (BMS) can monitor and optimize every single prismatic cell during charge & discharge, to protect the battery pack overcharge, over discharge, short circuit. Overall, the BMS helps to ensure safe and accurate running.

NO. Items Content Specification
4.1 Overcharge Over-charge alarm for each cell 3.55±0.030V
Over-charge protection for each cell 3.75±0.030V
Over-charge release for each cell 3.40±0.040V
Over-charge alarm for total voltage 426±4V
Over-charge protection for total voltage 450±4V
Over-charge release for total voltage 408±4V
Over-charge release method Under the release voltage
4.2 Over discharge Over-discharge alarm for each cell 2.80±0.040V
Over-discharge protection for each cell 2.50±0.040V
Over-discharge release for each cell 3.00±0.040V
Over-discharge alarm for total voltage 336±4V
Over-discharge protection for total voltage 300±4V
Over-discharge release for total voltage 360±4V
Over-discharge release method Charge to recovery
4.3 Over current Charge over current alarm 70±5A
Charge over current protection 80±5A
Protection delay time 3±1s
Over current release method Auto release after 1min
Discharge over current alarm 70±5A
Discharge over current protection 80±5A
Protection delay time 3±1s
Over current release method Auto release after 1min
4.4 Short circuit Fuse protection, prohibit test 250A Fuse
4.5 Battery temperature Charge over temperature Alarm @50±5℃
Protection @55±5℃
Release @50±5℃
Discharge over temperature Alarm @60±5℃
Protection @65±5℃
Release @60±5℃
Charge low temperature Alarm @0±5℃
Protection @-5±5℃
Release @0±5℃
Discharge low temperature Alarm @-15±5℃
Protection @-20±5℃
Release @-15±5℃

5. Instructions

  1. Transportation

² Based on the character of cell, proper environment for transportation of LiFePO4 battery pack need to be created to protect the battery.

² Battery should stay in the warehouse 15℃~35℃ where it’s dry, clean, shade, and well-ventilated.

² The battery should be stored in 50% SOC during transportation.

² The battery needs to be charged every 6 months if out of use

² Keep the battery against dropping, turning over and serious stacking during loading.

² Ensure the single 96V50Ah battery module in the independent package and keep it face up.

  1. Install instructions

Step1: Install single battery module to a standard 19” cabinet through 4 pcs M6 screws.

Note:Fix the battery module according to the module serial number. Install 1st module in the bottom, and the control module in the top.

UPS LFP UPS Rechargeable Batteries High Voltage LiFePO4 Material Long Lifespan

Diagram 1 :Battery module view

Step2: Electrical connection

1st: Connect the CANBus between battery modules and control module;

2nd:Connect Battery power cable between modules as shown below

3rd: Connect the Output power cable

4th: Connect the RS485 external communication port to UPS;

5th: Press on switch, and then can start the system output.

Note:When user needs to stop output and disconnect the system,reverse the above operation order.

UPS LFP UPS Rechargeable Batteries High Voltage LiFePO4 Material Long Lifespan

Diagram 2 :System install schematic

6. Warning & Tips

² Please read and follow the specification and caution remarks on battery surface before use the battery. Improper use may cause heat, fire, rupture, damage or capacity deterioration of the battery. SHENZHEN TOPBAND BATTERY CO.,LTD. Describes is not responsible for any accidents caused by the usage without following our specification.

² The battery must be far away from heat source, high voltage, and avoid to be exposed in sunshine for a long time.

² Do not put the battery in a charger or equipment with wrong terminals connected.

² Never connect the positive and negative of battery with metal.

² Avoid excessive physical shock or vibration. don't hit, fall, stamp on the battery

² Without the permission of the manufacturer and guidance, forbidden to remove or to assemble the battery

² Do not use the battery mixed with other different manufacturers, type, or model batteries.

² Keep the battery against high temperature. Otherwise, it will cause battery heat, get into fire or lose some function and reduce the life.

² When battery run out of power, please charge your battery timely (≤15day).

² Please use the matched or suggested charger for this battery.

² If battery emits a peculiar smell, heating, distortion or appears any abnormity during working or storage, please stop using and take it out from the device.

² If the battery leaks and get into the eyes or skin, do not wipe, instead, rinse it with clean water and see doctor immediately.

² Please far away from children or pets.

² Do not put disuse battery into a fire or water.

7. Battery operation instruction

7.1 Do not surpass the largest charging current that the specification stipulated.

7.2 Do not surpass the highest limited voltage that the specification stipulated.

7.3 Charging temperature:within temperature scope that specification stipulated.

7.4 Charge with constant current, then with the constant voltage, no reverse charge, which is dangerous

7.5 Special note:

Short time doesn't affect the use of the battery overcharge too, but for a long period of time over discharge or over charge can affect the function of the battery failure, or the battery can't use permanent, appear serious safety hazards, need a long time floating please use the recommended floating model specification.

8. Other Chemical Reaction

Because batteries utilize a chemical reaction, battery performance will deteriorate over time even if stored for a long period of time without being used. In addition, if the various usage conditions such as charge, discharge, ambient temperature, etc. are not maintained within the specified ranges, the life expectancy of the battery may be shortened or the device in which the battery is used may be damaged by electrolyte leakage. If the discharge time is much shorter than the normal after fully charged, even battery is charged correctly, and this may indicate it is time to change the battery.


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