RJ-LFP-24150-AGV
RJ
RJ-LFP-24150-AGV
8000CYCLES - 15YEARS WARRANTY - FACTORY PRICE
Automated Guided Vehicle System (AGVS) Material handling in manufacturing system is becoming easier as the automated machine technology has improved. One of the material handling methods that has been widely used in most industry now a days is the Automated Guided Vehicle System or better known as the AGVS.
RJ AGV battery usually use 24v 48v battery packs with Bulit-in RS485/CAN BMS, and it enables battery for fast charge, Battery capacity depends on the real needs and size limitation.
Items | Parameter |
Battery Type | LiFePO4 |
Nominal Voltage | 25.6V |
Nominal Capacity | 150Ah |
Energy | 3840Wh |
Internal Resistance | ≤15mΩ |
Series & Parallel Application | up to 10 parallel connected application |
Limited Charge Voltage | 29.2V |
Floating Charge Voltage | 20V |
Charge Method | CC/CV |
Discharge Cut-off Voltage | 20V |
Charge Current | 30A (Customizable) |
Continuous Discharge Current | 100A (Customizable) |
Pulse Discharge Current | 200A (Peak) |
Cycle Life | > 8000 cycles |
Dimension (mm) | 405*170*237mm (Customzied) |
Weight | 36Kg |
Communication | RS485/CanBus/Bluetooth |
Charge Temperature Range | 0~55℃ |
Discharge Temperature Range | -20~65℃ |
Recommended Operating Temperature | 15~55℃ |
Recommended Storage Temperature & Humidity Range | 15~35℃,45~75%RH |
Analysis of advantages and disadvantages of common AGV batteries
1. Lead acid batteries can be divided into water added lead-acid batteries and maintenance free lead-acid batteries. Usually, water is needed for maintenance, and harmful gases will be produced during charging. Maintenance free lead-acid battery, although there is no need to add water, but the cycle life is short, the charge and discharge performance is poor, and the available energy is not high.
2. Lithium iron phosphate battery is the mainstream battery on the market now, which can support high rate charging and discharging, and has the function of fast charging. Compared with lead-acid battery, it has the advantages of higher energy density, lighter weight and volume, long service life and no pollution. The chemical reaction inside the battery is stable, very safe, and the disadvantage is that the price is higher than that of lead-acid battery.
3. The advantage of ternary lithium battery is that the energy density of these batteries is the highest. However, due to the high chemical instability, its safety performance is lower than that of lithium iron phosphate battery, it does not support multiple rate charging and discharging, and has no fast charging function. The price is also the highest among the three lithium batteries.
From the advantages and disadvantages of the above three AGV batteries, we can see that the lithium iron phosphate battery has the highest cost performance.
Features
• More than 8000 Cycles
• Battery modules available for parallel and series for higher voltage and capacity
• BMS Passive cell balance funciton
• IP66, IP67, water proof, dust proof, Temperature monitoring
• Customization for Size and Discharge and charge rate
• Free of Maintenance, contains no poisonous material
• No leakage, no hazardous chemistry
• Quick delivery
• Lighter in weight, smaller in size to save space.
• Powerfull to increase robust operation for your marine boat or RV
• Fast charging and high power discharge rate available
• No need to add water nor worry about maintenance.
No. | Item | Test Item | Creterion | |
1 | Voltage | Charging Voltage | DC:29.4V CC/CV | |
Balance voltage for single cell | 3.50±0.025V | |||
2 | Current | Balance voltage for single cell | 35±5mA | |
Current consumption | ≤50μA | |||
Charging current | 30A | |||
Rated continuous discharging current | 100A (Peak 200A) | |||
3 | Over charge Protection | Over charge detection voltage for single cell | 3.65V±0.025V | |
Over charge detection delay time | 0.7S—1.3S | |||
Over charge release voltage for single cell | 3.550±0.05V | |||
4 | Over discharge Protection | Over discharge detection voltage for single cell | 2.50V±0.07V | |
Over discharge detection delay time | 1.6±0.5S | |||
Over discharge release voltage for single cell | 3.00±0.75V | |||
5 | Over current Protection | Over current detection current | 500±50A | |
Over current detection delay time | 1.6±0.5S | |||
Release condition | Cut load | |||
6 | Short Protection | Detection condition | Exterior short circuit | |
Detection delay time | 230uS—500uS | |||
Release condition | Cut load | |||
7 | Resistance | Protection circuitry (MOSFET) | ≤60mΩ | |
8 | Temperature | Operating Temperature Range | -40~+85℃ | |
Storage Temperature Range | -40~+85℃ |
CONTACT US GET A LATEST QUOTE NOW!
8000CYCLES - 15YEARS WARRANTY - FACTORY PRICE
Automated Guided Vehicle System (AGVS) Material handling in manufacturing system is becoming easier as the automated machine technology has improved. One of the material handling methods that has been widely used in most industry now a days is the Automated Guided Vehicle System or better known as the AGVS.
RJ AGV battery usually use 24v 48v battery packs with Bulit-in RS485/CAN BMS, and it enables battery for fast charge, Battery capacity depends on the real needs and size limitation.
Items | Parameter |
Battery Type | LiFePO4 |
Nominal Voltage | 25.6V |
Nominal Capacity | 150Ah |
Energy | 3840Wh |
Internal Resistance | ≤15mΩ |
Series & Parallel Application | up to 10 parallel connected application |
Limited Charge Voltage | 29.2V |
Floating Charge Voltage | 20V |
Charge Method | CC/CV |
Discharge Cut-off Voltage | 20V |
Charge Current | 30A (Customizable) |
Continuous Discharge Current | 100A (Customizable) |
Pulse Discharge Current | 200A (Peak) |
Cycle Life | > 8000 cycles |
Dimension (mm) | 405*170*237mm (Customzied) |
Weight | 36Kg |
Communication | RS485/CanBus/Bluetooth |
Charge Temperature Range | 0~55℃ |
Discharge Temperature Range | -20~65℃ |
Recommended Operating Temperature | 15~55℃ |
Recommended Storage Temperature & Humidity Range | 15~35℃,45~75%RH |
Analysis of advantages and disadvantages of common AGV batteries
1. Lead acid batteries can be divided into water added lead-acid batteries and maintenance free lead-acid batteries. Usually, water is needed for maintenance, and harmful gases will be produced during charging. Maintenance free lead-acid battery, although there is no need to add water, but the cycle life is short, the charge and discharge performance is poor, and the available energy is not high.
2. Lithium iron phosphate battery is the mainstream battery on the market now, which can support high rate charging and discharging, and has the function of fast charging. Compared with lead-acid battery, it has the advantages of higher energy density, lighter weight and volume, long service life and no pollution. The chemical reaction inside the battery is stable, very safe, and the disadvantage is that the price is higher than that of lead-acid battery.
3. The advantage of ternary lithium battery is that the energy density of these batteries is the highest. However, due to the high chemical instability, its safety performance is lower than that of lithium iron phosphate battery, it does not support multiple rate charging and discharging, and has no fast charging function. The price is also the highest among the three lithium batteries.
From the advantages and disadvantages of the above three AGV batteries, we can see that the lithium iron phosphate battery has the highest cost performance.
Features
• More than 8000 Cycles
• Battery modules available for parallel and series for higher voltage and capacity
• BMS Passive cell balance funciton
• IP66, IP67, water proof, dust proof, Temperature monitoring
• Customization for Size and Discharge and charge rate
• Free of Maintenance, contains no poisonous material
• No leakage, no hazardous chemistry
• Quick delivery
• Lighter in weight, smaller in size to save space.
• Powerfull to increase robust operation for your marine boat or RV
• Fast charging and high power discharge rate available
• No need to add water nor worry about maintenance.
No. | Item | Test Item | Creterion | |
1 | Voltage | Charging Voltage | DC:29.4V CC/CV | |
Balance voltage for single cell | 3.50±0.025V | |||
2 | Current | Balance voltage for single cell | 35±5mA | |
Current consumption | ≤50μA | |||
Charging current | 30A | |||
Rated continuous discharging current | 100A (Peak 200A) | |||
3 | Over charge Protection | Over charge detection voltage for single cell | 3.65V±0.025V | |
Over charge detection delay time | 0.7S—1.3S | |||
Over charge release voltage for single cell | 3.550±0.05V | |||
4 | Over discharge Protection | Over discharge detection voltage for single cell | 2.50V±0.07V | |
Over discharge detection delay time | 1.6±0.5S | |||
Over discharge release voltage for single cell | 3.00±0.75V | |||
5 | Over current Protection | Over current detection current | 500±50A | |
Over current detection delay time | 1.6±0.5S | |||
Release condition | Cut load | |||
6 | Short Protection | Detection condition | Exterior short circuit | |
Detection delay time | 230uS—500uS | |||
Release condition | Cut load | |||
7 | Resistance | Protection circuitry (MOSFET) | ≤60mΩ | |
8 | Temperature | Operating Temperature Range | -40~+85℃ | |
Storage Temperature Range | -40~+85℃ |
CONTACT US GET A LATEST QUOTE NOW!
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