| Availability: | |
|---|---|
CPD Electric K35 Series
NIULI
| Category | Parameter Item | Unit | CPD-K30 | CPD-K35 | CPD-F30 | CPD-F35 |
|---|---|---|---|---|---|---|
| Overview | 1.1 Manufacturer | - | NIULI | NIULI | NIULI | NIULI |
| 1.2 Model | - | CPD-K30 | CPD-K35 | CPD-F30 | CPD-F35 | |
| 1.3 Power Type | - | Electric | Electric | Electric | Electric | |
| 1.4 Operation Type | - | Seat | Seat | Seat | Seat | |
| 1.5 Rated capacity (Q) | kg | 3000 | 3500 | 3000 | 3500 | |
| 1.6 Load overhang (c) | mm | - | 500 | - | - | |
| 1.7 Front centre (x) | mm | 468 | - | 500 | - | |
| 1.8 Wheelbase (y) | mm | 1800 | - | 1650 | - | |
| Weight | 2.1 Self weight | kg | 4320 | 4620 | 4850 | 5050 |
| 2.2 Axle Load (Front/Rear/Full load) | kg | 6840/7394 | - | 7770/2880 | - | |
| 2.3 Axle Load (Front/Rear/Empty load) | kg | 1760/2360 | - | 1940/2700 | - | |
| Tire & Chassis | 3.1 Tire Type | - | - | Solid | - | - |
| 3.2 Front | - | 650-10 | 28×9-15 | 650-10 | - | |
| 3.3 Rear | - | - | 2×2 | - | - | |
| 3.4 Number of tires (x = drive wheel) | - | - | 1000 | - | - | |
| 3.5 Front-wheel tread (b3) | mm | 984 | - | 970 | - | |
| 3.6 Rear-wheel tread (b4) | mm | 6/12 | - | 6°/6° | - | |
| Dimensions | 4.1 Mast Tilt Angle (Front/Rear, α/β) | Grad | 2105 | - | 2655 | - |
| 4.2 Mast closed height (h1) | mm | - | - | - | - | |
| 4.3 Free lift height (h2) | mm | - | 125 | - | - | |
| 4.4 Standard lift height (h3) | mm | - | 3000 | - | - | |
| 4.5 Mast extended height (with Lifting frame, H4) | mm | 4265 | - | 4165 | - | |
| 4.6 Overhead Guard Height (H5) | mm | 2140 | - | 2080 | - | |
| 4.7 Total Length (With Forks, L1) | mm | 3800 | 3980 | 2680 | 3950 | |
| 4.8 Total Length (Without Forks, L2) | mm | 2681 | 2760 | 2760 | 2800 | |
| 4.9 Total Width (B1) | mm | 1245 | - | 1220 | - | |
| 4.10 Fork Size (L×W×T, s×e×L) | mm | 1070×125×4 | 1070×125×5 | 1220×125×50 | - | |
| 4.11 Fork Rack Width Standard (W) | mm | - | ISO3A | - | - | |
| 4.12 Fork Rack Width (W) | mm | 1100 | - | 1150 | - | |
| 4.13 Fork Spacing (m1) | mm | 250/1000 | - | 250/1150 | - | |
| 4.14 Min. ground clearance (Lifting frame, m2) | mm | 120 | - | 110 | - | |
| 4.15 Min. ground clearance (Truck Body, n2) | mm | 125 | - | 140 | - | |
| 4.16 Aisle width for pallets (1000×1200, Transversal; 800×1200, Longitudinal, A2) | mm | 4280 | 4335 | 2360 | 2360 | |
| 4.17 Aisle width for pallets (Ast) | mm | 2540 | 2610 | 4295 | 4295 | |
| 4.18 Min. turning radius (Wa) | mm | 2650 | 2780 | 2400 | 2400 | |
| Parameters | 5.1 Max. travel speed (No load/Full load) | km/h | 18/15 | - | 15/18 | - |
| 5.2 Max. lifting speed (Full load/No load) | mm/s | 280/390 | - | 550/430 | - | |
| 5.3 Descending speed (No load/Full load) | mm/s | - | ≤600 | - | - | |
| 5.4 Traction power (laden/unladen) | KW | - | 21 | - | - | |
| 5.5 Gradability (laden/unladen) | % | 18/15 | - | 22/25 | - | |
| 5.6 Driving brake | - | - | Mechanical hydraulic | - | - | |
| 5.7 Parking brake | - | - | Mechanical | - | - | |
| Electrical | 6.1 Traction motor power (S2 60min work system) | kW | 17 | - | - | 21 |
| 6.2 Lifting motor power (S3 15% work system) | kW | 13 | - | - | 16 | |
| 6.3 Specification of battery (Voltage/Capacity) | V/Ah | 80V/200Ah | - | 80V/460Ah | - | |
| Other | 7.1 Driving control system | - | - | MOSFET/AC | - | - |
| 7.2 Controller brand | - | MEGMEET | - | SME | - | |
| 7.4 Noise | dB | - | 74 | - | - | |
| 7.5 Traction pin diameter | - | ∅25 | - | 25 | - | |
| 7.6 Hydraulic oil tank capacity | liter | - | 50 | - | - |
Zero Emissions + Low Noise for Green Compliance
Powered by batteries, electric forklifts produce no exhaust emissions (such as CO and NOx pollutants), perfectly complying with global "carbon neutrality" policies and indoor operation requirements (e.g., warehouses, food factories, pharmaceutical workshops, electronic plants). They eliminate environmental pollution and health risks for workers. With an operating noise ≤75dB (far lower than the 90dB+ of internal combustion forklifts), they create a quiet and comfortable working environment, reducing employee noise fatigue.
Odor-Free + Clean Operation to Protect Goods and Sites
Free of fuel leakage, engine oil odors, and other issues, they are particularly suitable for transporting goods with high cleanliness requirements (e.g., precision equipment, food, and pharmaceuticals). They also prevent oil contamination of the site, reducing site cleaning costs.
Low Energy Consumption, Saving 50%+ Expenses
Electricity costs are only 1/3 to 1/2 of fuel costs. For example, a 10-ton electric forklift consumes approximately 15-20 kWh per hour, with a cost ≤15 RMB; an internal combustion forklift consumes 5-8 liters of fuel per hour, with a cost ≥40 RMB. Long-term use can significantly reduce operating costs.
Simple Maintenance and Low Failure Rate
Electric forklifts have a streamlined structure (no complex components such as engines, gearboxes, or clutches). Maintenance only requires regular inspections of batteries, motors, and hydraulic systems. The maintenance frequency is 30% lower than that of internal combustion forklifts, with fewer parts wear and lower repair costs (annual maintenance costs are about 1/2 of internal combustion forklifts), reducing downtime.
Long Battery Life and High Residual Value
High-quality lithium batteries (such as the lithium iron phosphate batteries adapted for Niuli electric forklifts) have a cycle life ≥2000 times and can be used normally for 5-8 years. Additionally, batteries are recyclable, and the overall residual value of the vehicle is 20%-30% higher than that of internal combustion forklifts.
Stable Power Output and High Operational Efficiency
Motors deliver high instant torque, ensuring smooth acceleration and fast startup without the shift shock of internal combustion forklifts. They are especially suitable for frequent starts/stops and short-distance transportation (e.g., warehouse loading/unloading, shelf access). With a driving speed of ≤12km/h (no-load) and ≤10km/h (loaded), and a lifting speed of ≥0.5m/s, they are comparable to internal combustion forklifts, improving hourly workload.
Sufficient Battery Life for Multi-Scenario Needs
Mainstream electric forklifts have a cruising range of 6-12 hours (depending on battery capacity and working conditions), supporting fast charging (80% charge in 1-2 hours) or battery swapping (3-minute quick swap) to meet 8-hour high-intensity daily operations. Some models (e.g., Niuli Electric Counterbalanced Forklifts) can be equipped with dual battery packs for 24/7 continuous operation, adapting to peak logistics demands.
Intelligent Configuration to Improve Management Efficiency
Equipped with intelligent systems such as GPS positioning, power monitoring, fault alarms, and operation statistics (e.g., Niuli Forklift's intelligent management platform), enterprises can real-time monitor vehicle location, energy consumption, and workload, optimize scheduling plans, and reduce management costs.
Simple Operation with Low Threshold
Electric forklifts use throttle, steering wheel, and joystick controls, eliminating the need for clutch shifting, allowing new operators to master quickly. Equipped with electric power steering, steering is effortless, reducing driver labor intensity and operational errors.
Comprehensive Safety Configuration and Upgraded Protection
Standard configurations include anti-rollover systems, emergency power-off switches, hydraulic locking devices, audio-visual alarms, and reverse cameras. The low-center-of-gravity design (rational battery layout) enhances driving stability, making them especially suitable for narrow-aisle and high-shelf operations (e.g., Niuli Electric Reach Forklifts with a minimum turning radius ≤1.5m), reducing collision risks.
No High-Temperature Risks for Safer Operation
Without high-temperature engine components, they avoid fire risks caused by fuel leakage, making them suitable for high-temperature environments or flammable and explosive locations (e.g., chemical warehouses) when equipped with explosion-proof models.
Indoor operations: Warehouses, workshops, supermarket logistics centers, cold chain storage
High environmental requirements: Food/pharmaceutical/electronic industries, park-based enterprises
High-frequency short-distance transportation: Loading/unloading, shelf access, workshop transfer
Cost-sensitive: Small and medium-sized enterprises, long-term operation scenarios
The core advantages of electric forklifts lie in "taking environmental compliance as the foundation, low-cost operation as the core, and high efficiency and safety as the guarantee". They not only meet policy requirements but also help enterprises reduce long-term costs and improve operational efficiency, making them the "preferred equipment" for modern logistics upgrading. Building on these advantages, Niuli Electric Forklifts further optimize battery life, load capacity (covering 1-10 tons), and intelligent configurations to adapt to more segmented scenario needs, empowering enterprises to achieve "cost reduction, efficiency improvement, and green development".
| Category | Parameter Item | Unit | CPD-K30 | CPD-K35 | CPD-F30 | CPD-F35 |
|---|---|---|---|---|---|---|
| Overview | 1.1 Manufacturer | - | NIULI | NIULI | NIULI | NIULI |
| 1.2 Model | - | CPD-K30 | CPD-K35 | CPD-F30 | CPD-F35 | |
| 1.3 Power Type | - | Electric | Electric | Electric | Electric | |
| 1.4 Operation Type | - | Seat | Seat | Seat | Seat | |
| 1.5 Rated capacity (Q) | kg | 3000 | 3500 | 3000 | 3500 | |
| 1.6 Load overhang (c) | mm | - | 500 | - | - | |
| 1.7 Front centre (x) | mm | 468 | - | 500 | - | |
| 1.8 Wheelbase (y) | mm | 1800 | - | 1650 | - | |
| Weight | 2.1 Self weight | kg | 4320 | 4620 | 4850 | 5050 |
| 2.2 Axle Load (Front/Rear/Full load) | kg | 6840/7394 | - | 7770/2880 | - | |
| 2.3 Axle Load (Front/Rear/Empty load) | kg | 1760/2360 | - | 1940/2700 | - | |
| Tire & Chassis | 3.1 Tire Type | - | - | Solid | - | - |
| 3.2 Front | - | 650-10 | 28×9-15 | 650-10 | - | |
| 3.3 Rear | - | - | 2×2 | - | - | |
| 3.4 Number of tires (x = drive wheel) | - | - | 1000 | - | - | |
| 3.5 Front-wheel tread (b3) | mm | 984 | - | 970 | - | |
| 3.6 Rear-wheel tread (b4) | mm | 6/12 | - | 6°/6° | - | |
| Dimensions | 4.1 Mast Tilt Angle (Front/Rear, α/β) | Grad | 2105 | - | 2655 | - |
| 4.2 Mast closed height (h1) | mm | - | - | - | - | |
| 4.3 Free lift height (h2) | mm | - | 125 | - | - | |
| 4.4 Standard lift height (h3) | mm | - | 3000 | - | - | |
| 4.5 Mast extended height (with Lifting frame, H4) | mm | 4265 | - | 4165 | - | |
| 4.6 Overhead Guard Height (H5) | mm | 2140 | - | 2080 | - | |
| 4.7 Total Length (With Forks, L1) | mm | 3800 | 3980 | 2680 | 3950 | |
| 4.8 Total Length (Without Forks, L2) | mm | 2681 | 2760 | 2760 | 2800 | |
| 4.9 Total Width (B1) | mm | 1245 | - | 1220 | - | |
| 4.10 Fork Size (L×W×T, s×e×L) | mm | 1070×125×4 | 1070×125×5 | 1220×125×50 | - | |
| 4.11 Fork Rack Width Standard (W) | mm | - | ISO3A | - | - | |
| 4.12 Fork Rack Width (W) | mm | 1100 | - | 1150 | - | |
| 4.13 Fork Spacing (m1) | mm | 250/1000 | - | 250/1150 | - | |
| 4.14 Min. ground clearance (Lifting frame, m2) | mm | 120 | - | 110 | - | |
| 4.15 Min. ground clearance (Truck Body, n2) | mm | 125 | - | 140 | - | |
| 4.16 Aisle width for pallets (1000×1200, Transversal; 800×1200, Longitudinal, A2) | mm | 4280 | 4335 | 2360 | 2360 | |
| 4.17 Aisle width for pallets (Ast) | mm | 2540 | 2610 | 4295 | 4295 | |
| 4.18 Min. turning radius (Wa) | mm | 2650 | 2780 | 2400 | 2400 | |
| Parameters | 5.1 Max. travel speed (No load/Full load) | km/h | 18/15 | - | 15/18 | - |
| 5.2 Max. lifting speed (Full load/No load) | mm/s | 280/390 | - | 550/430 | - | |
| 5.3 Descending speed (No load/Full load) | mm/s | - | ≤600 | - | - | |
| 5.4 Traction power (laden/unladen) | KW | - | 21 | - | - | |
| 5.5 Gradability (laden/unladen) | % | 18/15 | - | 22/25 | - | |
| 5.6 Driving brake | - | - | Mechanical hydraulic | - | - | |
| 5.7 Parking brake | - | - | Mechanical | - | - | |
| Electrical | 6.1 Traction motor power (S2 60min work system) | kW | 17 | - | - | 21 |
| 6.2 Lifting motor power (S3 15% work system) | kW | 13 | - | - | 16 | |
| 6.3 Specification of battery (Voltage/Capacity) | V/Ah | 80V/200Ah | - | 80V/460Ah | - | |
| Other | 7.1 Driving control system | - | - | MOSFET/AC | - | - |
| 7.2 Controller brand | - | MEGMEET | - | SME | - | |
| 7.4 Noise | dB | - | 74 | - | - | |
| 7.5 Traction pin diameter | - | ∅25 | - | 25 | - | |
| 7.6 Hydraulic oil tank capacity | liter | - | 50 | - | - |
Zero Emissions + Low Noise for Green Compliance
Powered by batteries, electric forklifts produce no exhaust emissions (such as CO and NOx pollutants), perfectly complying with global "carbon neutrality" policies and indoor operation requirements (e.g., warehouses, food factories, pharmaceutical workshops, electronic plants). They eliminate environmental pollution and health risks for workers. With an operating noise ≤75dB (far lower than the 90dB+ of internal combustion forklifts), they create a quiet and comfortable working environment, reducing employee noise fatigue.
Odor-Free + Clean Operation to Protect Goods and Sites
Free of fuel leakage, engine oil odors, and other issues, they are particularly suitable for transporting goods with high cleanliness requirements (e.g., precision equipment, food, and pharmaceuticals). They also prevent oil contamination of the site, reducing site cleaning costs.
Low Energy Consumption, Saving 50%+ Expenses
Electricity costs are only 1/3 to 1/2 of fuel costs. For example, a 10-ton electric forklift consumes approximately 15-20 kWh per hour, with a cost ≤15 RMB; an internal combustion forklift consumes 5-8 liters of fuel per hour, with a cost ≥40 RMB. Long-term use can significantly reduce operating costs.
Simple Maintenance and Low Failure Rate
Electric forklifts have a streamlined structure (no complex components such as engines, gearboxes, or clutches). Maintenance only requires regular inspections of batteries, motors, and hydraulic systems. The maintenance frequency is 30% lower than that of internal combustion forklifts, with fewer parts wear and lower repair costs (annual maintenance costs are about 1/2 of internal combustion forklifts), reducing downtime.
Long Battery Life and High Residual Value
High-quality lithium batteries (such as the lithium iron phosphate batteries adapted for Niuli electric forklifts) have a cycle life ≥2000 times and can be used normally for 5-8 years. Additionally, batteries are recyclable, and the overall residual value of the vehicle is 20%-30% higher than that of internal combustion forklifts.
Stable Power Output and High Operational Efficiency
Motors deliver high instant torque, ensuring smooth acceleration and fast startup without the shift shock of internal combustion forklifts. They are especially suitable for frequent starts/stops and short-distance transportation (e.g., warehouse loading/unloading, shelf access). With a driving speed of ≤12km/h (no-load) and ≤10km/h (loaded), and a lifting speed of ≥0.5m/s, they are comparable to internal combustion forklifts, improving hourly workload.
Sufficient Battery Life for Multi-Scenario Needs
Mainstream electric forklifts have a cruising range of 6-12 hours (depending on battery capacity and working conditions), supporting fast charging (80% charge in 1-2 hours) or battery swapping (3-minute quick swap) to meet 8-hour high-intensity daily operations. Some models (e.g., Niuli Electric Counterbalanced Forklifts) can be equipped with dual battery packs for 24/7 continuous operation, adapting to peak logistics demands.
Intelligent Configuration to Improve Management Efficiency
Equipped with intelligent systems such as GPS positioning, power monitoring, fault alarms, and operation statistics (e.g., Niuli Forklift's intelligent management platform), enterprises can real-time monitor vehicle location, energy consumption, and workload, optimize scheduling plans, and reduce management costs.
Simple Operation with Low Threshold
Electric forklifts use throttle, steering wheel, and joystick controls, eliminating the need for clutch shifting, allowing new operators to master quickly. Equipped with electric power steering, steering is effortless, reducing driver labor intensity and operational errors.
Comprehensive Safety Configuration and Upgraded Protection
Standard configurations include anti-rollover systems, emergency power-off switches, hydraulic locking devices, audio-visual alarms, and reverse cameras. The low-center-of-gravity design (rational battery layout) enhances driving stability, making them especially suitable for narrow-aisle and high-shelf operations (e.g., Niuli Electric Reach Forklifts with a minimum turning radius ≤1.5m), reducing collision risks.
No High-Temperature Risks for Safer Operation
Without high-temperature engine components, they avoid fire risks caused by fuel leakage, making them suitable for high-temperature environments or flammable and explosive locations (e.g., chemical warehouses) when equipped with explosion-proof models.
Indoor operations: Warehouses, workshops, supermarket logistics centers, cold chain storage
High environmental requirements: Food/pharmaceutical/electronic industries, park-based enterprises
High-frequency short-distance transportation: Loading/unloading, shelf access, workshop transfer
Cost-sensitive: Small and medium-sized enterprises, long-term operation scenarios
The core advantages of electric forklifts lie in "taking environmental compliance as the foundation, low-cost operation as the core, and high efficiency and safety as the guarantee". They not only meet policy requirements but also help enterprises reduce long-term costs and improve operational efficiency, making them the "preferred equipment" for modern logistics upgrading. Building on these advantages, Niuli Electric Forklifts further optimize battery life, load capacity (covering 1-10 tons), and intelligent configurations to adapt to more segmented scenario needs, empowering enterprises to achieve "cost reduction, efficiency improvement, and green development".