Product Overview
BYD 2R12P ride-on lithium-ion forklift truck is designed for high-rise three-dimensional storage scenarios of light and medium-sized goods. It relies on an 80 V high-voltage lithium battery platform equipped with a blade battery and a closed cab, taking into account the rated load of 1.2 tons, narrow channel steering flexibility and long-term operation comfort. The vehicle integrates a number of intelligent operation and buffer protection designs, supports function selection and structure customization, and can adapt to a variety of indoor storage conditions that require operation accuracy and environmental cleanliness.
II. Core parameters
| parameter item | unit | BYD 2R12P |
| manufacturer | Home | |
| Model | 2R12P | |
| drive | electric drive | |
| Driving form | Car-mounted | |
| load capacity | kg | 1200 |
| load center distance | mm | 600 |
| Front overhang | mm | 250/138 |
| wheelbase | mm | 1330 |
| Gross weight (including battery) | kg | 3390 |
| Shaft load, gantry unloaded extension, drive side/load-bearing side | kg | 1456/1934 |
| Shaft load, gantry no-load retraction, drive side/load-bearing side | kg | 2043/1347 |
| Shaft load, gantry fully loaded, drive side/load-bearing side | kg | 749/3841 |
| Shaft load, gantry retracted at full load, drive side/load side | kg | 1683/2907 |
| Wheel material | polyurethane | |
| Drive wheel size | mm | Ø343136 |
| Load wheel size | mm | Ø285100 |
| Additional wheel size | mm | - |
| Number of front/rear wheels, x = drive wheels | 1/2 | |
| front track | mm | 1182 |
| rear track | mm | 1182 |
| Forward/backward angle | 2-4 | |
| The height before the door frame is not lifted | mm | 3111 |
| Free lifting height | mm | 1911 |
| Total lifting height | mm | 72000 |
| The height of the door frame after all lifting | mm | 8445 |
| Lower/upper limit height of the operating handle at the drive position | mm | - |
| Ceiling height | mm | 2200 |
| Seat height from ground | mm | 1150 |
| outrigger height | mm | 305 |
| Fork retraction height | mm | 35 |
| Total length of car body (door frame retracted) | mm | 2467 |
| The distance between the tail of the body and the front end of the fork (the door frame is retracted) | mm | 1317 |
| Car body drive side/load side width | mm | 1270/1282 |
| Fork body, thickness/width/length | mm | 35/100/1150 |
| Fork rack ISO 2328 | 2A | |
| Fork rack width | mm | 730 |
| Fork outer width, min./max. | mm | 210/710 |
| Two load-bearing wheel brackets, inner width | mm | 930 |
| gantry forward distance | mm | 443 |
| The height of the bottom of the gantry from the ground | mm | 76 |
| Ground clearance at wheelbase center | mm | 80 |
| Right-angle stacking channel width, 10001200 span | mm | 2728 |
| Right-angle stacking channel width, 8001200 horizontal | mm | 2798 |
| lower turning radius | mm | 1570 |
| Body length | mm | 1720 |
| Driving speed (full load/no load) | km/h | 14/14 |
| Lifting speed (full load/no load) | mm/s | 550/700 |
| Falling speed (full load/no load) | mm/s | 550/500 |
| Door frame extension speed (full load/no load) | mm/s | 180/180 |
| Door frame retraction speed (full load/no load) | mm/s | 180/180 |
| Maximum climbing capacity (full load/no load) | % | 10-15 |
| Brake form | Electromagnetic/hydraulic | |
| Drive motor, rated power | kW | 6.8 |
| Lifting motor, rated power | kW | 12 |
| Steering motor, rated power | kW | 0.75 |
| Battery voltage/capacity | V/Ah | 80/270 |
| Battery weight | kg | 320 |
| Battery type | Blade battery | |
| Electronic control type | AC | |
| Hydraulic system can supply pressure | bar | 200 |
| Noise from the driver | dB (A) | ≤70 |
III. Product core advantages
1.80 V blade battery system, stable power, clean and environmentally friendly
Equipped with BYD blade battery and supporting thermal management system, it supports fast charging and random charging, and the side charging port is easy to operate. The 80 V high-voltage architecture is matched with a three-phase AC asynchronous motor, which has a stable and reliable power output; the battery effectively reduces the risk of acid leakage and is suitable for a clean storage environment. Compared with traditional lead-acid batteries, it can reduce the replacement frequency and reduce long-term consumables investment.
2. Closed car design, smooth operation experience for a long time
The closed seat cab is used to block noise and dust in the storage environment, and the ergonomic operation layout can relieve the fatigue of long-term continuous operation. The vehicle is equipped with an intelligent display instrument, which can view the operating parameters such as the lifting height in real time; the oil cylinder has a high and low buffer structure, which makes the lifting process smooth, reducing the shaking of goods and improving the accuracy of the operation.
3. Push-forward gantry structure, narrow channel for efficient operation
The forward-moving telescopic door frame design, the body does not need to be close to the shelf when high-level stacking operations; the fork supports lateral fine-tuning, and the cargo alignment operation is convenient. The 1570 mm turning radius is suitable for the narrow channel storage layout, which helps to plan more cargo spaces in limited space and improve the utilization rate of warehouse capacity. The 3390 kg balanced counterweight body can keep smooth driving, lifting and steering under rated load conditions. The key walking parts are wear-resistant and durable, and suitable for long-term high-frequency operations.
4. The operation and maintenance cost is controllable, and the scene selection is supported
The pure electric power operation process has no exhaust gas generation, and the working environment in the closed warehouse is clean; the energy consumption control performance is good, which can save the cost of fuel, filter elements and other consumables compared with the internal combustion forklift, and the long-term comprehensive use cost is friendly. The vehicle supports multiple function selection and customization adjustment, and can match the corresponding configuration according to the actual storage needs, adapting to the personalized operation needs of different scenarios.
IV. Applicable scenarios
1. Precision storage of electronic components
Electronic component warehouses generally have small shipments, high single support value, and strict requirements on operation stability and environmental cleanliness. The closed cab of this model can reduce dust entering the warehouse area, the cylinder buffer design can reduce the shaking of goods when lifting, and the narrow channel steering characteristic can be adapted to high-density shelf layout, suitable for high-level storage and transshipment of light and medium-sized goods such as patch components, electronic modules, and small electrical accessories.
2. Warehousing of finished pharmaceutical products and raw materials
Pharmaceutical warehousing has clear standards for environmental cleanliness and operation compliance, no exhaust gas is generated during pure electric power operation, and the battery effectively reduces the risk of leakage, which can meet the operation requirements of clean storage areas; high real-time display and smooth lifting characteristics, suitable for drug pallets, medical raw materials, packaging consumables and other goods.
3. E-commerce small three-dimensional storage
The number of SKUs in e-commerce small-piece warehouses is large and the frequency of replenishment is high, so high-density three-dimensional shelves are generally used to improve storage capacity. The narrow channel of this model is flexible to turn, and the forward-moving gantry is suitable for high-level shelf operations, which can make full use of the vertical space of the warehouse to increase storage capacity; the ride-on design is suitable for long-term high-frequency picking and replenishment operations, relieving operator fatigue, and can adapt to the continuous operation needs under order fluctuations.
4. Food processing clean workshop storage
The requirements for food production and warehousing are high, with no exhaust gas generated during the operation of pure electric structures. The battery effectively reduces the risk of acid leakage and meets the clean management standards of the food storage area. The smooth lifting and steering performance is suitable for the transshipment and stacking of light and medium-sized goods such as packaged food, raw material barrels, and finished boxes, which helps to ensure the food hygiene and safety in the warehousing process.
5. Precision hardware and instrument accessories storage
Precision hardware accessories, testing instruments, tooling fixtures and other goods have high requirements for collision protection, vehicle buffer design and smooth operation characteristics can reduce cargo handling losses; fork fine-tuning and front moving door frame can achieve accurate alignment, adapt to the careful access of precision shipments, narrow channel layout can also adapt to the high-density storage planning of accessory warehouses, and improve space utilization.
V. Parameter description
The marked parameters of this product are all standard rated working conditions test values. The actual operation life and stacking operation performance will be affected by factors such as cargo load, ground road conditions, operator habits, lifting height, etc.; the selection function and customized service need to be combined with the actual demand to confirm the supply range. If you need accurate selection, you can consult a professional sales engineer in combination with the actual working conditions of the warehouse.
