(Atlanta) 1440 Lakes Parkway, Suite 600 Lawrenceville, GA 30043 Tel: (770) 624-1940 FAX: (770) 624-1943 16850 W. Victor Road New Berlin. Wl 53151 Tel: (414) 827-0080 FAX: (414) 827-OO92 5377 Glen Alden Drive Richmond, VA 23231 Tel: (804) 222-2762 FAX: (80a) 222-5221 SMC Pneumatics Inc.
(Atlanta) 1440 Lakes Parkway, Suite 600 Lawrenceville, GA 30043 Tel: (770) 624-1940 FAX: (770) 624-1943 16850 W. Victor Road New Berlin. Wl 53151 Tel: (414) 827-0080 FAX: (414) 827-OO92 5377 Glen Alden Drive Richmond, VA 23231 Tel: (804) 222-2762 FAX: (80a) 222-5221 SMC Pneumatics Inc.
(Atlanta) 1440 Lakes Parkway, Suite 600 Lawrenceville, GA 30043 Tel: (770) 624-1940 FAX: (770) 624-1943 16850 W. Victor Road New Berlin. Wl 53151 Tel: (414) 827-0080 FAX: (414) 827-OO92 5377 Glen Alden Drive Richmond, VA 23231 Tel: (804) 222-2762 FAX: (80a) 222-5221 SMC Pneumatics Inc.
Thomas Oil-less Linear Diaphragm Compressor / Vacuum Pump, 12v/50Hz Flow Rate: .95 LPM , .95 LPM, Max Pressure: 8.7 PSIG / 241 in H20 / 600 mbar , 8.7 PSIG / 241 in H20 / 600 mbar, Max Vacuum: 5.9 in HgV / -200 mbar , 5.9 in HgV / -200 mbar, Voltage (50 Hz): 12, Frequency (Hz): 50, Phase: 1-phase, Item Dimensions: Length: 2.83 in / 72 mm Width: 2.09
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, RHC ROUND BODY HIGH POWER, ME, 40MM RHC DBL ACT SW CAPABLE, 5.18086 lb
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMCs RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the ability
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, RHC ROUND BODY HIGH POWER, ME, 40MM RHC DBL ACT SW CAPABLE, 7.8579 lb
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, RHC ROUND BODY HIGH POWER, ME, 40MM RHC DBL ACT SW CAPABLE, 6.99967 lb
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMCs RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the ability
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, RHC ROUND BODY HIGH POWER, ME, 40MM RHC DBL ACT SW CAPABLE, 9.53499 lb
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, RHC ROUND BODY HIGH POWER, ME, 40MM RHC DBL ACT SW CAPABLE, 9.84836 lb
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMCs RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the ability
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYLINDER, ACTUATOR, RHC ROUND BODY HIGH POWER, ME, 40MM RHC DBL ACT SW CAPABLE, 9.83132 lb
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the
High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the