Certification: | GS, RoHS, CE, ISO9001 |
---|---|
Type: | Gear Type |
MOQ: | 1 |
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BMP Straight oil port Orbit Hydraulic Motor
The BMP Cycloidal Hydraulic Motor is a top-performing hydraulic motor that offers a range of benefits and features. Its unique cycloidal cam mechanism ensures high efficiency, low noise level, and good starting capability, making it ideal for a wide range of applications. Contact a trusted hydraulic motor supplier today to learn more about the benefits of the BMP Cycloidal Hydraulic Motor.It can replace Danish OMP products.
BMP cycloidal hydraulic motors are used in a wide range of applications.The BMP cycloidal hydraulic motor has always been a very important component in the field of industrial manufacturing. Due to its excellent performance and wide range of applications, it has become one of the key components of all types of machines and equipment. The following are the specific uses of BMP cycloidal hydraulic motors in various application areas.1. Construction machineryBMP cycloidal hydraulic motor is one of the key components of large construction machinery such as excavators, forklifts, and bulldozers. In these large machines, hydraulic motors are responsible for providing power, which controls the movement of the machinery and performs various tasks. The BMP cycloidal hydraulic motor has the characteristics of high torque, low-speed cruise, etc., and can withstand high pressure and long working time in construction machinery.2. Petroleum equipmentBMP cycloidal hydraulic motors are also widely used in the petroleum equipment industry, such as drilling rigs, oil pumps, etc. In the petroleum equipment industry, the working environment of hydraulic motors is relatively harsh, and it needs to have strong corrosion resistance and high temperature resistance. The BMP cycloidal hydraulic motor has a precise structural design and a high degree of reliability, which can adapt to the harsh operating environment.3. Agricultural machineryBMP cycloidal hydraulic motors are also widely used in the agricultural machinery industry. It is used to drive the movement of equipment such as harvesters, tractors, and planters. In these mechanical equipment, hydraulic motors need to have high timeliness and low energy consumption to meet the requirements of long-term and efficient operation of agricultural machinery.4. ShipbuildingBMP cycloidal hydraulic motors are also widely used in the marine industry. On ships, hydraulic motors are an important part of systems such as servos, pumps, and oil pipes. BMP hydraulic motors are one of the most popular choices for shipbuilders due to their high torque, high efficiency and reliability.
The BMP cycloid hydraulic motor is an excellent choice for a wide range of hydraulic applications. Its high efficiency, durability, and ease of maintenance make it a reliable and cost-effective option for heavy duty systems. Whether you are building a construction crane, a dump truck, or any other type of hydraulic system, the BMP motor is sure to provide the performance and reliability that you need.
BMP Orbit hydraulic motor is a multi-functional hydraulic equipment, which can be widely used in various heavy machinery and industrial equipment, such as drilling rigs, loaders, excavators, agricultural machinery and industrial automation equipment, etc. As a high-performance hydraulic component, the BMP cycloidal hydraulic motor has the following main applications in mechanical transmission systems.
1. Strong transmission capacity: The BMP cycloidal hydraulic motor has a wide range of speeds, from large torque at low speed to high speed at high speed, which can meet the needs of the mechanical transmission system, and can withstand strong load capacity, so that it can work in dangerous environments.
2. Stable and reliable: The BMP cycloidal hydraulic motor adopts a reliable sealing structure, which can effectively prevent liquid leakage and oil and gas mixing. At the same time, all its components are manufactured and tested with high quality, which guarantees the stability and reliability of its work.
3. Easy operation: The operation of the BMP cycloidal hydraulic motor is simple, and only one hydraulic control valve is needed to realize forward, backward and stop operations. In addition, it enables the control and regulation of mechanical systems.
4. High efficiency and energy saving: The BMP cycloidal hydraulic motor has extremely high conversion efficiency and energy recovery capacity, which can effectively reduce energy loss in the working process, thereby saving energy.
Overall, the BMP cycloidal hydraulic motor is an advanced hydraulic component that has a wide range of applications in mechanical transmission systems. Whether it is in mines, factories or other industries, it has a wide range of application prospects. Therefore, the development and application of BMP cycloidal hydraulic motor will become more and more extensive, and continue to promote the development of the machinery industry.
With low speed high torque , BMP50 Orbit Hydraulic Motor adopts the latest design of fixed rotor pair with output shaft and linkage shaft, thus greatly reducing friction and improving efficiency.
Hydraulic motors are essential components of hydraulic systems, which are used in a wide range of industries. These motors convert hydraulic energy into mechanical energy, providing a powerful and efficient source of rotational force. Among different types of hydraulic motors, the cycloidal hydraulic motor, also known as a gerotor motor or a cycloid motor, is one of the most popular choices for its unique design and performance features. In this article, we will introduce the product features of the cycloidal hydraulic motor, also known as a fixed displacement hydraulic motor or a wobble motor.
1. High efficiency
The cycloidal hydraulic motor boasts a high efficiency because of its unique design. The motor utilizes a cycloid cam, a star-shaped rotor, and an eccentric bearing to create a rolling motion, which generates high torque at low speeds and high speeds. The motor has fewer moving parts, which reduces energy loss and improves overall efficiency.
2. High starting torque
The cycloidal hydraulic motor features a high starting torque, making it ideal for heavy-duty applications. Because of its unique design and construction, the motor is able to deliver high torque from the start, making it easier to move loads and overcome resistance.
3. Smooth, quiet operation
The cycloidal hydraulic motor offers a smooth, quiet operation due to its low noise and vibration levels. Its rolling motion minimizes stress and strain, which reduces noise and vibration while increasing durability and reliability. As a result, the motor can be used in a wide range of applications, including in machinery and equipment that require low-noise operation.
4. Compact, lightweight design
The cycloidal hydraulic motor has a Compact, lightweight design, which makes it easy to install and use in tight spaces. Its small size and low weight make it ideal for use in mobile machinery, such as construction vehicles and agricultural equipment, where weight and space are at a premium.
5. High reliability and durability
The cycloidal hydraulic motor is highly reliable and durable due to its simple design and the use of high-quality materials. The motor has fewer moving parts, which reduces wear and tear, and it is made of high-strength materials that can withstand high loads and pressures. As a result, the motor has a long service life and requires minimal maintenance.
6. Wide range of options
The cycloidal hydraulic motor is available in a wide range of sizes and configurations, making it suitable for a variety of applications. Depending on the specific needs of the application, users can choose from different displacement options, shaft configurations, mounting options, and more. This flexibility ensures that users can find the right motor for their specific needs.
Various installation flanges, output shafts, oil ports and other installation methods are available to provide great flexibility for the whole machine design. Wide selection to meet equipment speed and torque requirements. One advantage of BMP motors is that they are easy to maintain. The motor is designed to be simple to install and can be easily disassembled and reassembled for maintenance or repair. The comPact design of the motor also makes it easy to install in tight Spaces, which can be an important consideration in many applications.
The BMP hydraulic motor is an efficient, high-quality hydraulic transmission product with the following advantages.
First, the BMP enhanced bearing and gear design makes the BMP series of hydraulic motors suitable for harsher working environments. In addition, the BMP hydraulic motor is compact, lightweight and easy to install, making it widely used in applications where space is limited or weight is limited.
Second, the BMP series hydraulic motor uses a more reliable sealing scheme, so that it has higher accuracy and longer life. The internal seal structure of the BMP hydraulic motor uses multiple leak protection, and adds the application of logarithmic thread sealing technology and other modern sealing technologies. As a result, the BMP series hydraulic motors have greater durability and stability, and can withstand more stringent working conditions and higher working pressures.
Third, BMP series hydraulic motors can be used in a variety of different gear pumps, such as fixed gear pumps, internal gear pumps, external gear pumps and pulley pumps. This means that the BMP series of hydraulic motors can be adapted to a wide range of different situations and needs, including high speed, low speed and high torque applications. In addition, the reliability and adaptability of the OM series hydraulic motors also make them the first choice for manufacturers of heavy machinery and engineering equipment.
Fourth, on a global scale, BMP series hydraulic motors have proven excellent performance in many applications, including Marine, mining, steel, cement, construction and other industries. It has been widely used and praised, proving the reliability and excellent performance of BMP hydraulic motors in a variety of different environments and applications.
In short, BMP series hydraulic motors have many advantages such as high efficiency, high quality, reliability, adaptability and so on, and have become an important product in the hydraulic transmission product market. With the continuous expansion of the application field of BMP series hydraulic motors, their market prospects will be wider in the future.
The fixed rotor pair of the motor adopts the column structure and the inlet seal, which is suitable for high pressure and provides excellent product performance. The motor output shaft is equipped with imported bearings, which are suitable for higher speed and withstand larger axial and radial loads. BMP cycloidal hydraulic motor is a kind of fixed displacement hydraulic motor using cycloidal CAM mechanism. This unique design offers many advantages over other types of hydraulic motors, including high efficiency, low noise levels and good starting capability.
BMP 80 Cycloid Hydraulic Motor Advantages:
The BMP 80 cycloid hydraulic motor offers a range of advantages that make it an ideal choice for various industrial applications. Here are some of the key benefits of using this type of motor:
1. High Efficiency
The BMP 80 cycloid hydraulic motor has high efficiency, which means it can convert the hydraulic energy into mechanical energy with minimal energy loss. This makes it an excellent choice for applications that require high precision and consistent performance.
2. Low Noise Output
The BMP 80 cycloid hydraulic motor has low noise output, which is an important consideration for applications that operate in noise-sensitive environments. The motor's design is optimized to reduce mechanical noise and vibrations, allowing for quiet and smooth operation.
3. Wide Range of Speeds
The BMP 80 cycloid hydraulic motor offers an excellent speed range that ranges from 10 to 3000 RPM, making it an ideal choice for various applications that require precise control of speed.
4. comPact Size
The BMP 80 cycloid hydraulic motor has a comPact size, making it easy to install in a variety of different applications. The motor can be mounted in various positions, including horizontal, vertical, or inclined, depending on the needs of the application.
5. High Torque Output
The BMP 80 cycloid hydraulic motor has a high torque output, which is important for applications that require high power and strength. The motor offers a maximum torque of up to 206 Nm, making it an ideal choice for heavy-duty applications.
6. Low Maintenance
The BMP 80 cycloid hydraulic motor requires minimal maintenance, which is an important consideration for applications that require high reliability and uptime. The motor's design is optimized for durability and reliability, meaning that it can operate for extended periods with minimal maintenance.
In conclusion, the BMP 80 orbit hydraulic motor offers a range of advantages that make it an excellent choice for various industrial applications. From high efficiency to low noise output and a wide range of speeds, this type of motor can meet the needs of many different applications. Moreover, its comPact size, high torque output, and low maintenance requirements make it a reliable and cost-effective choice for long-term use.
BMP series motors are diverse and can replace products in Asia, Europe, the Americas and other countries and regions. The advantage of connecting the shell drain pipe is that in addition to using the connected motor with lower shell pressure, the motor with the addition of the external shell discharge pipe has normal shell pressure. These advantages are: pollution control - flushing the motor housing, cooling system - the discharged oil allows the motor to dissipate heat and extend the service life of the motor. High efficiency: The BMP Cycloidal Hydraulic Motor has a high volumetric efficiency of up to 98%, which ensures minimal energy loss and maximum power output. Low noise level: The cycloidal cam mechanism of this hydraulic motor minimizes noise and vibration, making it a quiet and smooth operating motor. Good starting capability: The BMP Cycloidal Hydraulic Motor is designed to provide a good starting torque, which is essential for heavy-duty machinery applications.
Hydraulic motors are important components in many industrial machines and processes. Among them, the cycloidal hydraulic motor or the cam ring motor, also known as the "gerotor" motor, has gained popularity for its reliability and efficiency. This type of hydraulic motor is also called a gerotor because it uses a series of rotating gears to produce motion.
The gerotor hydraulic motor uses a circular cam ring with an eccentric orbit that drives a set of rotating gears. The hydraulic fluid is forced into the motor and causes the gears to rotate, which drives the output shaft of the motor. The design of the motor ensures a smooth and continuous motion, making it ideal for applications requiring precision control.
One of the main advantages of gerotor hydraulic motors is their ability to produce high torque at low speeds. This makes them perfect for heavy-duty applications, such as in construction equipment, agricultural machinery, and industrial machinery. They are also more efficient than other hydraulic motors, resulting in lower operating costs over time.
Another benefit of gerotor hydraulic motors is their ease of maintenance. The design of the motor allows for easy disassembly and reassembly, making repairs and replacements straightforward. Additionally, because of their high efficiency, they produce less heat, resulting in longer service life.
Purchasing a gerotor hydraulic motor can bring significant benefits to buyers. Its efficiency, reliability, and ease of maintenance make it an excellent investment for those in industries that rely on hydraulic machinery. Furthermore, with smaller, more comPact designs available, the gerotor motor can even be used in applications where space is limited.
Overall, the cycloidal hydraulic motor or gerotor motor is an excellent choice for those in the market for a reliable and efficient hydraulic motor. Its high torque, low speed, and ease of maintenance make it an attractive option for a wide range of industries.
It is not recommended to use the motor at the highest speed and under the maximum pressure. The maximum inlet pressure is 225bar (peak pressure), do not exceed the rated pressure. Maximum oil return pressure is 225bar (peak pressure), do not exceed the rated pressure. The recommended maximum operating temperature of the system is 82ºC. Wide range of displacement options: The BMP Cycloidal Hydraulic Motor is available in a range of displacement options, from 32 cc/rev to 264 cc/rev, to meet different power and speed requirements.
Benefits of the BMP Orbit Hydraulic Motor:Versatility: The BMP Cycloidal Hydraulic Motor is suitable for use in a wide range of applications, including agriculture, industrial machinery, construction, and more.
Long lifespan: This hydraulic motor is designed with a high-strength alloy housing, which ensures durability and a long lifespan.
Hydraulic motors have a crucial role to play in different industries. From agriculture to marine, construction to transportation, hydraulic motors make it possible to drive machinery and equipment efficiently. And when it comes to high-performance hydraulic motors, BMP orbital hydraulic motors are among the best in the market. In this article, we will discuss the benefits of BMP hydraulic motors for buyers by presenting a case study.
Case Study: BMP Orbital Hydraulic Motors in a Manufacturing CBMPany
A manufacturer of heavy-duty industrial equipment was facing issues with the hydraulic motors used in their machinery. They faced frequent breakdowns, leading to costly downtime and production losses. They needed to upgrade their hydraulic motors to improve performance and reliability.
After researching various options, they decided to try BMP orbital hydraulic motors. The BMP motors were known for their high efficiency, durability, and easy maintenance. After installing BMP motors, the manufacturing cBMPany saw significant improvements in their operations.
Here are the benefits that the manufacturing cBMPany experienced by using BMP hydraulics:
1. Improved Reliability - The BMP hydraulic motors were designed for durability and could handle challenging operating conditions, including high torque and high-pressure applications. This resulted in fewer breakdowns, and the machines could operate for longer without the need for unscheduled maintenance.
2. Higher Efficiency - The BMP hydraulic motors were more efficient than the previous motors. They could deliver the same performance with less energy, resulting in lower operating costs.
3. Easy Maintenance - The BMP hydraulic motors were designed with ease of maintenance in mind. They had fewer parts that required replacement and could be easily serviced by the maintenance team, resulting in lower maintenance costs and less downtime.
4. Enhanced Performance - The BMP hydraulic motors provided improved performance, resulting in smoother and faster machine operation. This led to increased productivity and higher quality output.
Conclusion:
The case study above shows the benefits of using BMP hydraulic motors in industrial applications. By upgrading their hydraulic motors to BMP, the manufacturing cBMPany enjoyed improved reliability, higher efficiency, easy maintenance, and enhanced performance. These benefits resulted in lower operating costs, fewer breakdowns, increased productivity, and higher quality output. If you're looking for high-performance hydraulic motors, BMP orbital hydraulic motors are an excellent choice.
Displ. cm3/r | 36 | 50 | 63 | 80 | 100 | 125 | 160 | 200 | 250 | 320 | 400 | 500 | |
Fflow (LPM) |
Continuous | 40 | 38 | 45 | 57 | 57 | 57 | 57 | 57 | 57 | 57 | 57 | 57 |
Intermittent | 45 | 45 | 53 | 68 | 68 | 68 | 68 | 68 | 68 | 68 | 68 | 68 | |
Speed (RPM) |
Continuous | 1055 | 698 | 663 | 684 | 580 | 452 | 353 | 284 | 235 | 178 | 145 | 110 |
Intermittent | 1250 | 859 | 774 | 842 | 659 | 544 | 364 | 339 | 281 | 210 | 180 | 136 | |
Pressure (bar) |
Continuous | 140 | 124 | 124 | 124 | 124 | 124 | 115 | 110 | 100 | 90 | 90 | 83 |
Intermittent | 162 | 138 | 138 | 138 | 138 | 138 | 124 | 124 | 124 | 124 | 110 | 90 | |
Torque (N.m) |
Continuous | 69 | 78 | 99 | 126 | 158 | 194 | 234 | 280 | 318 | 366 | 457 | 527 |
Intermittent | 83 | 86 | 110 | 140 | 176 | 216 | 256 | 365 | 394 | 504 | 558 | 570 |
flow(LPM) | 3 | 6 | 7 | 8 | 10 | 11 | 12.5 | 16.5 | ||
8 | 13 214 |
25 205 |
29 200 |
34 194 |
43 187 |
48 179 |
||||
15 |
13 406 |
25 398 |
29 391 |
34 383 |
43 374 |
48 366 |
56 353 |
75 324 |
||
20 |
13 541 |
24 534 |
29 528 |
34 521 |
43 513 |
48 500 |
56 486 |
76 458 |
||
30 |
12 814 |
24 804 |
29 792 |
34 778 |
43 763 |
48 749 |
56 726 |
76 701 |
||
35 |
12 952 |
23 944 |
28 930 |
34 913 |
43 897 |
48 879 |
56 856 |
76 833 |
||
Max Continuous Max Interminttent |
40 |
12 1090 |
23 1078 |
28 1064 |
32 1048 |
41 1024 |
47 998 |
55 977 |
75 943 |
|
45 | 11 1232 |
22 1218 |
26 1196 |
32 1175 |
41 1149 |
46 1118 |
54 1080 |
74 1044 |
||
55 | 6 1505 |
15 1494 |
22 1480 |
28 1466 |
37 1438 |
44 1406 |
52 1367 |
71 1309 |
||
60 | 3 1650 |
11 1640 |
18 1626 |
20 1603 |
30 1571 |
38 1536 |
49 1502 |
67 1466 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 34 94 |
44 85 |
58 77 |
65 77 |
75 72 |
88 50 |
||||
10 |
36 187 |
46 178 |
62 166 |
69 162 |
79 155 |
95 138 |
108 120 |
120 99 |
||
15 |
35 285 |
49 279 |
63 271 |
73 263 |
84 252 |
102 232 |
108 213 |
121 187 |
||
20 |
34 379 |
46 377 |
60 367 |
68 363 |
82 348 |
95 332 |
109 304 |
125 272 |
||
30 |
32 578 |
43 571 |
59 563 |
66 556 |
79 544 |
94 533 |
107 502 |
121 467 |
||
Max Continuous Max Intermittent |
40 |
30 762 |
40 760 |
57 755 |
65 750 |
78 740 |
91 726 |
105 702 |
120 672 |
|
45 | 29 858 |
39 855 |
56 851 |
64 847 |
77 837 |
89 817 |
104 798 |
120 772 |
||
50 | 25 952 |
36 942 |
52 927 |
59 908 |
72 882 |
84 854 |
98 834 |
113 803 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 44 84 |
58 67 |
76 61 |
85 61 |
99 57 |
113 55 |
||||
10 |
45 149 |
59 135 |
77 133 |
83 130 |
97 125 |
110 120 |
||||
15 |
44 224 |
60 220 |
75 218 |
81 215 |
99 213 |
108 210 |
128 207 |
|||
20 |
42 298 |
55 295 |
76 292 |
81 286 |
93 280 |
104 276 |
125 270 |
140 265 |
||
30 |
40 447 |
53 440 |
73 334 |
82 330 |
91 326 |
100 320 |
123 315 |
135 310 |
||
Max Continuous Max Intermittent |
40 |
38 596 |
52 593 |
72 585 |
80 580 |
85 572 |
95 568 |
115 560 |
130 550 |
|
45 | 35 671 |
48 665 |
70 660 |
77 654 |
80 650 |
95 642 |
110 634 |
128 624 |
||
50 | 31 745 |
45 740 |
65 735 |
73 730 |
75 725 |
90 720 |
105 715 |
120 710 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 48 61 |
54 58 |
84 52 |
106 46 |
129 40 |
|||||
10 |
50 122 |
74 116 |
96 112 |
106 108 |
126 106 |
145 99 |
170 60 |
|||
20 |
54 243 |
76 239 |
100 231 |
109 219 |
136 206 |
152 192 |
174 176 |
193 152 |
||
30 |
52 362 |
74 358 |
96 356 |
104 350 |
128 349 |
148 335 |
172 325 |
191 300 |
||
40 |
45 484 |
70 480 |
95 478 |
104 476 |
125 470 |
146 468 |
171 440 |
188 438 |
||
Max Continuous Max Intermittent |
50 |
41 610 |
68 608 |
91 606 |
101 630 |
122 600 |
145 598 |
168 550 |
186 520 |
|
60 | 35 726 |
65 723 |
88 720 |
96 718 |
120 710 |
142 700 |
164 698 |
182 680 |
||
70 | 30 845 |
58 834 |
81 820 |
93 802 |
114 789 |
136 767 |
158 754 |
175 730 |
||
75 | 19 910 |
48 895 |
76 881 |
88 867 |
108 852 |
132 830 |
151 806 |
168 787 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 64 49 |
90 48 |
118 46 |
134 42 |
154 38 |
|||||
10 |
65 96 |
93 94 |
122 93 |
134 91 |
156 80 |
183 60 |
210 48 |
|||
20 |
62 192 |
93 188 |
121 184 |
135 178 |
153 171 |
184 168 |
208 158 |
236 146 |
||
30 |
61 296 |
90 294 |
118 290 |
130 290 |
150 288 |
180 282 |
200 270 |
230 258 |
||
40 |
55 387 |
86 380 |
115 369 |
126 361 |
146 356 |
181 348 |
206 338 |
228 320 |
||
Max Continuous Max Intermittent |
50 |
46 484 |
77 479 |
108 472 |
121 463 |
146 452 |
181 445 |
200 428 |
221 410 |
|
60 | 34 583 |
62 567 |
98 569 |
110 555 |
136 540 |
170 536 |
186 528 |
199 516 |
||
70 | 30 680 |
63 672 |
97 662 |
110 650 |
138 640 |
170 635 |
190 620 |
210 606 |
||
75 | 20 728 |
54 720 |
90 710 |
106 695 |
130 681 |
165 667 |
188 650 |
200 634 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 74 37 |
106 32 |
140 27 |
163 21 |
||||||
10 |
81 78 |
114 77 |
152 74 |
172 59 |
200 45 |
220 29 |
250 20 |
|||
20 |
80 157 |
114 156 |
150 154 |
170 151 |
200 146 |
221 142 |
254 120 |
292 114 |
||
30 |
78 232 |
112 230 |
149 228 |
169 222 |
198 220 |
220 218 |
252 199 |
290 170 |
||
40 |
77 312 |
111 311 |
147 307 |
168 300 |
196 298 |
218 284 |
250 270 |
288 252 |
||
Max Continuous Max Intermittent |
50 |
62 391 |
105 388 |
143 384 |
165 380 |
195 372 |
223 362 |
254 346 |
285 330 |
|
60 | 52 470 |
98 468 |
136 464 |
160 459 |
191 448 |
220 434 |
250 412 |
282 405 |
||
70 | 41 548 |
90 544 |
130 540 |
156 541 |
187 538 |
215 535 |
242 530 |
278 496 |
||
75 | 32 586 |
79 583 |
126 578 |
148 570 |
180 560 |
208 546 |
234 532 |
462 520 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 100 29 |
142 26 |
188 21 |
207 19 |
||||||
10 |
104 62 |
146 60 |
191 58 |
211 49 |
245 45 |
282 32 |
330 25 |
|||
20 |
102 124 |
148 120 |
194 118 |
218 114 |
251 109 |
290 104 |
338 99 |
368 94 |
||
30 |
96 183 |
114 181 |
186 179 |
215 176 |
248 166 |
288 258 |
335 144 |
364 132 |
||
40 |
87 246 |
136 242 |
180 240 |
206 235 |
248 231 |
286 219 |
330 200 |
358 155 |
||
Max Continuous Max Intermittent |
50 |
70 309 |
126 307 |
172 300 |
198 295 |
238 287 |
278 278 |
320 262 |
350 247 |
|
60 | 58 371 |
111 367 |
168 359 |
191 354 |
231 346 |
271 338 |
312 323 |
342 306 |
||
70 | 47 435 |
104 430 |
160 420 |
190 415 |
228 403 |
267 393 |
301 381 |
338 365 |
||
75 | 34 470 |
91 463 |
150 450 |
180 441 |
221 431 |
261 420 |
291 405 |
328 389 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 129 24 |
176 22 |
230 18 |
256 13 |
||||||
10 |
133 49 |
182 47 |
236 45 |
261 43 |
310 38 |
352 33 |
400 24 |
|||
20 |
131 99 |
181 97 |
232 94 |
256 92 |
308 88 |
354 83 |
400 74 |
431 64 |
||
30 |
126 149 |
176 147 |
299 144 |
252 141 |
308 135 |
353 126 |
400 113 |
430 105 |
||
40 |
112 200 |
168 197 |
224 194 |
248 191 |
304 185 |
350 174 |
393 160 |
423 151 |
||
Max Continuous Max Intermittent |
50 |
94 252 |
154 249 |
220 246 |
243 243 |
294 238 |
343 228 |
384 212 |
414 194 |
|
60 | 78 304 |
144 301 |
213 298 |
236 294 |
287 286 |
339 276 |
382 262 |
410 243 |
||
70 | 67 355 |
135 353 |
206 349 |
228 340 |
277 329 |
336 316 |
375 300 |
408 288 |
||
75 | 58 382 |
125 375 |
197 373 |
220 363 |
270 350 |
321 337 |
360 322 |
398 312 |
flow(LPM) | 5 | 7 | 9 | 10 | 11 | 12 | 14 | ||
5 | 172 20 |
240 19 |
300 18 |
380 16 |
352 15 |
||||
10 |
173 42 |
242 38 |
308 36 |
340 33 |
351 33 |
405 28 |
462 22 |
||
20 |
170 79 |
238 77 |
301 75 |
339 72 |
350 71 |
402 69 |
460 61 |
||
30 |
160 117 |
231 114 |
298 111 |
330 109 |
347 108 |
398 103 |
455 95 |
||
40 |
141 157 |
221 155 |
298 153 |
327 150 |
342 148 |
394 146 |
445 135 |
||
Max Continuous Max Intermittent |
50 |
122 196 |
206 193 |
287 190 |
321 177 |
330 175 |
382 170 |
438 163 |
|
60 | 101 236 |
190 233 |
278 230 |
312 227 |
328 225 |
369 221 |
424 208 |
||
70 | 86 276 |
176 273 |
262 270 |
298 266 |
302 264 |
353 255 |
416 245 |
||
75 | 60 297 |
163 294 |
254 290 |
286 286 |
291 282 |
345 277 |
410 266 |
flow(LPM) | 3 | 5 | 7 | 9 | 10 | 11 | ||
5 | 110 14 |
199 12 |
||||||
10 |
108 31 |
190 30 |
272 29 |
360 28 |
400 26 |
451 25 |
||
20 |
110 61 |
196 60 |
279 59 |
356 57 |
396 55 |
448 53 |
||
30 |
106 91 |
186 90 |
270 89 |
355 86 |
390 84 |
442 82 |
||
40 |
100 123 |
179 122 |
262 120 |
350 117 |
382 112 |
436 110 |
||
Max Continuous Max Interminttent |
50 |
92 154 |
169 153 |
252 151 |
342 147 |
373 140 |
432 136 |
|
60 | 86 185 |
159 184 |
241 182 |
339 177 |
369 172 |
428 170 |
||
70 | 77 217 |
146 216 |
235 213 |
324 208 |
342 201 |
412 200 |
||
75 | 66 232 |
132 231 |
212 228 |
303 222 |
332 216 |
402 214 |
flow(LPM) | 3 | 4 | 6 | 7 | 8 | 9 | ||
5 | 152 12 |
|||||||
10 |
154 24 |
205 21 |
308 18 |
349 17 |
||||
20 |
150 49 |
201 48 |
302 47 |
340 46 |
392 44 |
441 41 |
||
30 |
146 73 |
198 74 |
296 73 |
331 72 |
387 70 |
438 67 |
||
40 |
140 98 |
191 97 |
290 96 |
320 95 |
381 94 |
421 92 |
||
Max Continuous Max Intermittent |
50 |
132 122 |
182 121 |
281 118 |
315 115 |
376 112 |
402 110 |
|
60 | 128 145 |
175 145 |
270 143 |
310 140 |
260 135 |
390 130 |
||
70 | 110 170 |
170 168 |
260 165 |
300 163 |
340 160 |
380 155 |
||
75 | 98 181 |
163 180 |
232 178 |
291 175 |
320 174 |
355 170 |
flow(LPM) | 3 | 4 | 6 | 7 | 8 | 9 | ||
4 | 194 6 |
285 4 |
||||||
10 |
201 15 |
304 14 |
391 14 |
443 12 |
512 9 |
574 7 |
||
20 |
191 40 |
280 40 |
372 39 |
418 37 |
493 33 |
546 31 |
||
30 |
185 60 |
272 60 |
360 58 |
412 56 |
486 53 |
541 50 |
||
40 |
172 80 |
261 80 |
343 79 |
408 76 |
480 73 |
538 70 |
||
Max Continuous Max Intermittent |
50 |
160 101 |
241 100 |
332 98 |
391 96 |
466 93 |
528 90 |
|
60 | 134 121 |
213 120 |
305 119 |
371 117 |
438 114 |
496 110 |
||
70 | 111 142 |
189 141 |
292 139 |
344 137 |
418 135 |
475 131 |
||
75 | 83 152 |
154 151 |
241 150 |
312 149 |
389 147 |
448 144 |
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | ||||||
Code | Displ.(CC/r) | Flange | Pilot Dia. | Output Shaft | Port and Drain Port | Rotation Direction |
Paint | ||||||
BMP | 50 | F1 | 4-φ11 Bolt Flange Distribution 70x70 |
G1 | φ80 |
A1 | Cylindrical Shaft φ25 Parallel key 8x7x32 |
P1 | (A/B) G1/2 (T) G1/4 |
R | Standard | N | No paint |
63 | |||||||||||||
80 | A2 | 6D-φ25X21X6 Splined shaft |
P2 | (AB)7/8-14 O-ing (T)7/16-20UNF |
|||||||||
100 | |||||||||||||
125 | F2 | 2 Bolt Flange φ13.5 Dia.Mounting Holes 106.4 Dia.B.C |
G2 | φ82.55 |
Q | Blue |
|||||||
160 | |||||||||||||
200 | A3 | Cylindrical shaft φ20 Parallel key 6x6x32 |
P3 | (A/B) 1/2-14NPTF (T) 7/16-20UNF |
|||||||||
250 | F3 | 4-φ11 Bolt rectangle Flange Distribution 105x65 | A4 | φ25.325x21.47x6.25 Splined shaft (SAE-6B) |
P4 | (AB)G1/2 O-ring (T)G1/4 |
|||||||
320 | G3 | φ85 |
L | Opposite | B | Black |
|||||||
400 | F4 | 4 Bolt Magneto φ13.5 Dia,Mounting Holes 106.4 Dia.B.C |
A5 | Cylindrical shaft φ25.4 Parallel key 6.35x6.35x32 Shaft head thread M8 |
P5 | (A/B) M18X1.5 (T) M14X1.5 |
|||||||
500 | A6 | Cylindrical shaft φ25.4 Parallel key 6.35x6.35x32 Shaft head thread 1/4-20UNC |
P6 | (A/B)M22X1.5 (T) M14X1.5 |
S | Silver gray |
Maximum Peak pressure at motor inlet port of 225 Bar.
A simultaneous maximum torque and maximum speed NOT recommended.