Application scope: pneumatic transport system, vacuum lifting and clamping system, packaging machine, bagging/bottling/filling system, soil transformation, foam forming system, letter classification and packaging, food processing system, laser printer, dental vacuum suction machine, paper processing system two-stage fan, printer, copier can meet higher requirements, darning machine, fish pool ventilation system, gas analysis, swimming pool ventilation equipment
Application scope:
Pneumatic transport system, vacuum lifting and clamping system, packaging machine, bagging/bottling/filling system, soil transformation, foam forming system, letter classification and packaging, food processing system, laser printer, dental vacuum suction machine, paper processing system two-stage fan, printer, copier can meet higher requirements, darning machine, fish pool ventilation system, gas analysis, swimming pool ventilation equipment.
Working Principle:
When the impeller of the high-pressure blower rotates, due to the centrifugal force, the wind vane drives the gas to move forward and outward, forming a series of spiral movements. The air between the impeller blades accelerates and rotates in a spiral shape, squeezing the gas outside the pump body into the side groove (sucked in through the suction port t). When it enters the side channel ②, the gas is compressed and then returns to accelerate and rotate again between the blades of impeller 1. When air passes through the impeller and side groove along a spiral track, each blade of the impeller increases the degree of compression and acceleration. As the impeller rotates, the function of the gas increases, further increasing the pressure of the gas passing through the side channel. When the air reaches the connection point between the side broadcast and the discharge flange (the side channel narrows at the outlet), the gas is squeezed out of the blades and discharged from the pump body through the outlet muffler 4.

| model |
motor |
weight |
noise |
maximum flow |
最高真空 |
maximum pressure |
vacuum valve |
| frequency |
rated |
| output power |
voltage |
current |
Type * Model |
| |
Hz |
KW |
V |
A |
KG |
Db(A) |
m³/h |
mbar |
mbar |
2B*4... |
| XGB7-12 |
50 |
3.0 |
200-240△/345-415Y |
12.5△/7.2Y |
36 |
69 |
318 |
-270 |
290 |
1*. ..2110/. ..2145 |
| XGB7-21 |
50 |
3.0 |
200-240△/345-415Y |
12.5△/7.0Y |
48 |
73 |
320 |
-280 |
260 |
1*2B*2110*. ..2145 |
Installation dimension drawing

| model |
XGB1-10A |
XGB1-10B |
XGB2-10 |
XGB2-20 |
XGB3-10 |
XGB4-10 |
XGB4-20 |
XGB5-10 |
XGB5-20 |
XGB6-10 |
XGB7-10 |
XGB7-20 |
XGB8-10 |
XGB8-20 |
XGB9-10 |
XGB9-20 |
| phase |
1 |
1 |
3 |
3 |
3 |
1 |
3 |
1 |
3 |
3 |
3 |
3 |
3 |
3 |
3 |
3 |
| A |
184 |
200 |
246 |
284 |
268 |
286 |
322 |
334 |
372 |
360 |
382 |
426 |
451 |
500 |
550 |
615 |
| A1 |
- |
- |
- |
316 |
- |
- |
324 |
- |
411 |
- |
- |
426 |
- |
549 |
- |
780 |
| B |
200 |
212 |
247 |
270 |
272 |
302 |
315 |
337 |
371 |
366 |
384 |
410 |
461 |
490 |
569 |
607 |
| C |
80 |
86 |
90 |
45 |
93 |
115 |
58 |
120 |
60 |
122 |
125 |
63 |
152 |
152 |
207 |
103.5 |
| D |
157 |
184 |
205 |
205 |
205 |
225 |
225 |
270 |
270 |
284 |
290 |
290 |
356 |
356 |
360 |
360 |
| E |
172 |
204 |
230 |
230 |
230 |
255 |
255 |
320 |
320 |
325 |
325 |
325 |
394 |
394 |
415 |
415 |
| F |
205 |
227 |
219 |
316 |
260 |
294 |
401 |
314 |
465 |
354 |
377 |
473 |
450 |
589 |
525 |
752 |
| G |
82 |
105 |
92 |
135 |
92 |
160 |
191 |
160 |
190 |
191 |
191 |
191 |
230 |
230 |
268 |
345 |
| H |
93 |
110 |
128 |
128 |
141 |
154 |
154 |
175 |
175 |
192 |
197 |
197 |
240 |
240 |
300 |
300 |
| H1 |
- |
- |
- |
106 |
- |
- |
153 |
- |
144 |
- |
- |
162 |
- |
199 |
- |
234 |
| J |
72 |
98 |
101 |
111 |
101 |
120 |
128 |
120 |
135 |
128 |
128 |
128 |
148 |
148 |
167 |
167 |
| K |
55 |
65 |
83 |
83 |
83 |
95 |
95 |
140 |
140 |
140 |
140 |
140 |
170 |
170 |
533 |
533 |
| L |
115 |
130 |
108 |
108 |
108 |
130 |
130 |
190 |
190 |
180 |
180 |
180 |
2174 |
217 |
|
|
| M |
66 |
62 |
75 |
75 |
82 |
70 |
73 |
96 |
98 |
64 |
64 |
84 |
140 |
|
39 |
39 |
| N |
47 |
50 |
71 |
130 |
69 |
75 |
151 |
87 |
171 |
74 |
109 |
205 |
124 |
236 |
89 |
230 |
| O |
26 |
33 |
39 |
39 |
41 |
46 |
45 |
48 |
48 |
56 |
54 |
53 |
65 |
65 |
92 |
92 |
| P |
- |
- |
|
|
|
|
|
55 |
55 |
56 |
55 |
55 |
|
|
100 |
100 |
| Q |
- |
- |
64 |
64 |
64 |
72 |
72 |
83 |
83 |
93 |
83 |
83 |
|
|
150 |
150 |
| R |
7 |
8 |
10 |
10 |
10 |
12 |
12 |
14 |
14 |
13 |
15 |
15 |
15 |
15 |
15 |
15 |
| S |
2 |
2.5 |
2.5 |
2.5 |
2.5 |
3 |
3 |
4 |
4 |
4.5 |
4.5 |
4.5 |
6 |
6 |
21 |
21 |
| T |
- |
- |
- |
88 |
- |
- |
104 |
- |
106 |
- |
- |
130 |
- |
- |
- |
117 |
| U |
- |
- |
M6*17 |
M6*17 |
M6*17 |
M6*19 |
M6*19 |
M8*17 |
M8*17 |
M8*17 |
M8*17 |
M8*17 |
|
|
M12*30 |
M12*30 |
| V |
M14*15 |
M16*15 |
M16*15 |
M16*15 |
M16*15 |
M16*15 |
M16*15 |
M16*15 |
M20*15 |
M20*15 |
M20*15 |
M20*15 |
|
|
|
|
The performance curve below was measured under the condition of suction of 15 ℃ air and exhaust pressure of 1013mbar, with a tolerance of ± 10%. When the suction air and ambient temperature do not exceed 25 ℃, the total pressure gauge shown in the diagram can be reached.
