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Bellows
Suction Cups For
Horizontal and Vertical Handling of Concave and Convex Surfaces Vacuum Cup Materials:
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![]() B1.5-5 through B2.5-16 |
![]() B1.5-20 through B2.5-78 |
Specifications for Universal 1.5 Bellows Vacuum Suction Cups:
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Product |
Vacuum |
D |
d |
H |
A |
Volume |
Load |
Weight (Grams) |
Fitting Group (Click Image for More Info) |
Level Compensator Suspensions (Click Image for More Info) |
| B1.5-5-NBR (Nitrile) |
0.22 (5.5) |
0.16 (4.0) |
0.44 (11.1) |
0.31 (8.0) |
0.003 |
0.02 |
0.28 Grams |
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| B1.5-5-SIT (Translucent Silicone) |
0.22 (5.5) |
0.16 (4.0) |
0.44 (11.1) |
0.31 (8.0) |
0.003 (0.04) |
0.02 (0.07) |
0.28 Grams |
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B1.5-11-NBR (Nitrile) 3235 |
0.45 (11.4) |
0.16 (4.0) |
0.63 (16.0) |
0.41 (10.5) |
0.014 (0.23) |
0.54 (0.24) |
0.92 Grams |
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B1.5-11-SIT |
0.45 (11.4) |
0.16 (4.0) |
0.63 (16.0) |
0.41 (10.5) |
0.014 |
0.54 |
0.92 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-11-NM (Nomathane) |
0.45 (11.4) |
0.16 (4.0) |
0.63 (16.0) |
0.41 (10.5) |
0.014 (0.23) |
0.54 (0.24) |
0.92 Grams |
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B1.5-14-NBR (Nitrile) |
0.52 (13.3) |
0.16 (4.0) |
0.62 (15.8) |
0.43 (11.0) |
0.026 (0.42) |
0.80 (0.36) |
1.29 Grams |
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B1.5-14-SIT |
0.52 (13.3) |
0.16 (4.0) |
0.62 (15.8) |
0.43 (11.0) |
0.026 |
0.80 |
1.29 Grams |
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B1.5-14-NM |
0.52 (13.3) |
0.16 (4.0) |
0.62 (15.8) |
0.43 (11.0) |
0.026 (0.42) |
0.80 (0.36) |
1.29 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-16-NBR (Nitrile) 3238 |
0.64 (16.3) |
0.16 (4.0) |
0.75 (19.0) |
0.41 (10.5) |
0.046 (0.75) |
1.10 (0.50) |
1.52 Grams |
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B1.5-16-SIT |
0.64 (16.3) |
0.20 (5.0) |
0.75 (19.0) |
0.41 (10.5) |
0.046 |
1.10 |
1.52 Grams |
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B1.5-16-NM (Nomathane) |
0.64 (16.3) |
0.20 (5.0) |
0.75 (19.0) |
0.41 (10.5) |
0.046 (0.75) |
1.10 (0.50) |
1.52 Grams |
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B1.5-20-NBR |
0.71 (18.0) |
0.16 (4.0) |
0.62 (15.8) |
0.41 (10.5) |
0.070 (1.20) |
1.70 (0.80) |
1.81 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-20-SIT |
0.71 (18.0) |
0.16 (4.0) |
0.62 (15.8) |
0.41 (10.5) |
0.070 |
1.70 |
1.81 Grams |
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B1.5-20-NM (Nomathane) |
0.71 (18.0) |
0.16 (4.0) |
0.62 (15.8) |
0.41 (10.5) |
0.070 (1.20) |
1.70 (0.80) |
1.81 Grams |
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B1.5-22-NBR |
0.89 (22.5) |
0.16 (4.0) |
0.77 (19.5) |
0.43 (11.0) |
0.090 (1.40) |
1.90 (0.90) |
2.18 Grams |
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B1.5-22-SIT |
0.89 (22.5) |
0.16 (4.0) |
0.77 (19.5) |
0.43 (11.0) |
0.090 |
1.90 |
2.18 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-22-NM (Nomathane) |
0.89 (22.5) |
0.16 (4.0) |
0.77 (19.5) |
0.43 (11.0) |
0.090 (1.40) |
1.90 (0.90) |
2.18 Grams |
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B1.5-25-NBR |
0.93 (23.5) |
0.16 (4.0) |
0.91 (23.0) |
0.43 (11.0) |
0.190 (3.20) |
2.50 (1.10) |
2.68 Grams |
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B1.5-25-SIT |
0.93 (23.5) |
0.16 (4.0) |
0.91 (23.0) |
0.43 (11.0) |
0.190 |
2.50 |
2.68 Grams |
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B1.5-25-NM (Nomathane) |
0.93 (23.5) |
0.16 (4.0) |
0.91 (23.0) |
0.43 (11.0) |
0.190 (3.20) |
2.50 (1.10) |
2.68 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-33-NBR |
1.32 (33.5) |
0.31 (8.0) |
1.10 (28.0) |
0.65 (16.5) |
0.290 (4.80) |
4.30 (2.00) |
8.20 Grams |
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B1.5-33-SIT |
1.32 (33.5) |
0.31 (8.0) |
1.10 (28.0) |
0.65 (16.5) |
0.290 |
4.30 |
8.20 Grams |
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B1.5-43-NBR |
1.67 (42.3) |
0.31 (8.0) |
1.10 (28.0) |
0.61 (15.5) |
0.560 (9.30) |
7.00 (3.30) |
12.4 Grams |
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B1.5-43-SIT |
1.67 (42.3) |
0.31 (8.0) |
1.10 (28.0) |
0.61 (15.5) |
0.560 |
7.00 |
12.4 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-53-NBR |
2.07 (52.5) |
0.31 (8.0) |
1.34 (34.0) |
0.75 (19.0) |
1.600 (26.30) |
13.30 (6.00) |
20.7 Grams |
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B1.5-53-SIT |
2.07 (52.5) |
0.31 (8.0) |
1.34 (34.0) |
0.75 (19.0) |
1.600 |
13.30 |
20.7 Grams |
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B1.5-63-NBR (Nitrile) |
2.49 (63.2) |
0.31 (8.0) |
1.32 (33.5) |
0.73 (18.5) |
2.400 (39.00) |
18.00 (8.20) |
28.0 Grams |
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B1.5-63-SIT (Translucent Silicone) |
2.49 (63.2) |
0.31 (8.0) |
1.32 (33.5) |
0.73 (18.5) |
2.400 (39.00) |
18.00 (8.20) |
28.0 Grams |
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| - | Product Photo | Part No. | Overall Dia. | Fitting Dia. | Overall Height | Attached Height | Volume | Capacity | Weight | Fitting | Suspension |
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B1.5-78-NBR |
3.07 (78.0) |
0.47 (12.0) |
1.85 (47.0) |
1.29 (32.8) |
4.640 (76.00) |
28.00 |
65.8 Grams |
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B1.5-78-SIT |
3.07 (78.0) |
0.47 (12.0) |
1.85 (47.0) |
1.29 (32.8) |
4.640 |
28.00 |
65.8 Grams |
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![]() Group 1 Fittings |
![]() Group 2 Fittings |
![]() Group 3 Fittings |
The cup capacities shown above ( * ) are theoretical capacities based on 24"Hg at sea level with a safety factor of two (2) and a ± 5% margin of error. This is the US ANSI ASME Standard B30.20 for vacuum lifter specifications and is commonly used in North America as a design capacity for vacuum components. When used in vertical applications, take these values and divide again by 2 to obtain a 4 to 1 safety factor per the ANSI specifications. These are realistic working capacities when designing equipment.
Other manufacturers use a pull-off figure at 27"Hg to show a high capacity value for their cups. This is accurate, but requires users to do all the math themselves to build in safety factors. The values are basically the same, but it is necessary to calculate the working capacities with a safety factor via the following formula at sea level:
Pull-off
value
(at
27"Hg) = ANVER's Listed Capacity x 2 x 1.125 (at 24"Hg)
For example: ANVER vacuum cup number F52 has a rated capacity of 15.10 lb at 24"Hg. The pull-off capacity at 27"Hg for this cup would be 15.10 x 2 x 1.25 = 33.79 lbs. From this point, it is necessary to calculate the safety factor based on the vacuum level being used, and the altitude.
To ensure safety, 80% of actual overall diameter is used when determining Load Capacity.

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