Immersion pumps
Immersion pumps (standard coolant pump) are self-venting and usually have an exposed shaft. This eliminates the need for a bearing in the pump section. The pumps are safe to run dry, wear-resistant and operate with large clearances, making them insensitive to swarf.
- Simple installation directly on the container
- Simple pipework due to SAE/replaceable flange
- Long service life, partly sealless or with low-wear plain bearings
- Multi-stage design (steep characteristic curves) possible
- Immersion depth of up to 1.5 m possible
- all wetted parts are partly available in stainless steel
Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.Three-phase AC version,
60 l/min at 1 m or 30 l/min at 4 m, 2800 rpm; IP54; insulation class F; S1 cos phi 0,70
120 W; 0,34–0,36A at 220–230V, 50Hz / 0,19–0,20A at 380–400V, 50Hz
120 W; 0,37–0,38A at 240–260V, 60Hz / 0,22–0,24A at 415–440V, 60Hz
Single-phase AC version
55 l/min at 1 m or 24 l/min at 4 m, 2750 rpm; IP54; insulation class F; S1
with installed operating capacitor 2.5 uF / 450V, 80 W; Rated current: 0,38A
incl. EC declaration of incorporation including installation, operating and maintenance instructions
The maximum flow rate as a function of the discharge head.
Note that the optional single-phase version delivers approximately 10% less output.
The housing is made of extruded aluminium or non-combustible, acid-resistant plastic according to the following standards: VDE 0730 and UL 94. The pump shaft is made of V2A stainless steel, the bearings are made of NSK, extremely durable and vibration-damped mounted in semi-rigid shells, which leads to an virtually vibration-free operation.
They are used for conveying cooling water, cooling emulsions, and low-viscosity drilling and cutting oils in all machining machine tools. They are known in industry as reliable pumps and have been used for years with good success. Coolant submersible pumps operate as centrifugal pumps, the stuffing boxes and the suction line being omitted by the pump part projecting into the liquid. They are largely insensitive to contaminated coolants.
When starting up, the direction of rotation must be observed (see arrow on the housing) The liquid level should remain a maximum of a few cm below the flange and minimally cover the pump. The pressure line to the workpiece should be 1/2 inches as far as possible so that the values given in the table are achieved. Any smaller quantity can be set by means of a shut-off valve. Pressure relief valves are not required. The coolant submersible pumps are not intended for dry running.• flow rate: 100 l/min at delivery head 2 m
• immersion depth: 120 mm
• pipe connection: G 3/4
• power: 0.24 kW
• speed 50 Hz / 60 Hz: 2750 / 3250 min?1
• semi-open impeller
• voltage 220-240/380-415 V/50 Hz or 460 V/60 Hz
application
• pumped media coolant emulsions
• cooling and cutting oils
• kinematic viscosity ...45 mm²/s (45 cSt)
• fluid temperature 0...60° C
• higher temperatures on request
construction
• pump body grey cast iron
• cover POM
• impeller POM
• shaft steel
Auf Wunsch
• cover grey cast iron (TA160...TA400)
• suction cover with connection thread
• impeller brass (TA160...TA400)
• cast steel
• flow rate: 100 l/min at delivery head 2 m
• immersion depth: 170 mm
• pipe connection: G 3/4
• power: 0.24 kW
• speed 50 Hz / 60 Hz: 2750 / 3250 min?1
• semi-open impeller
• voltage 220-240/380-415 V/50 Hz or 460 V/60 Hz
application
• pumped media coolant emulsions
• cooling and cutting oils
• kinematic viscosity ...45 mm²/s (45 cSt)
• fluid temperature 0...60° C
• higher temperatures on request
construction
• pump body grey cast iron
• cover POM
• impeller POM
• shaft steel
Auf Wunsch
• cover grey cast iron (TA160...TA400)
• suction cover with connection thread
• impeller brass (TA160...TA400)
• cast steel
• flow rate: 100 l/min at delivery head 2 m
• immersion depth: 220 mm
• pipe connection: G 3/4
• power: 0.24 kW
• speed 50 Hz / 60 Hz: 2750 / 3250 min?1
• semi-open impeller
• voltage 220-240/380-415 V/50 Hz or 460 V/60 Hz
application
• pumped media coolant emulsions
• cooling and cutting oils
• kinematic viscosity ...45 mm²/s (45 cSt)
• fluid temperature 0...60° C
• higher temperatures on request
construction
• pump body grey cast iron
• cover POM
• impeller POM
• shaft steel
Auf Wunsch
• cover grey cast iron (TA160...TA400)
• suction cover with connection thread
• impeller brass (TA160...TA400)
• cast steel
• flow rate: 100 l/min at delivery head 2 m
• immersion depth: 270 mm
• pipe connection: G 3/4
• power: 0.24 kW
• speed 50 Hz / 60 Hz: 2750 / 3250 min?1
• semi-open impeller
• voltage 220-240/380-415 V/50 Hz or 460 V/60 Hz
application
• pumped media coolant emulsions
• cooling and cutting oils
• kinematic viscosity ...45 mm²/s (45 cSt)
• fluid temperature 0...60° C
• higher temperatures on request
construction
• pump body grey cast iron
• cover POM
• impeller POM
• shaft steel
Auf Wunsch
• cover grey cast iron (TA160...TA400)
• suction cover with connection thread
• impeller brass (TA160...TA400)
• cast steel
• flow rate: 100 l/min at delivery head 2 m
• immersion depth: 350 mm
• pipe connection: G 3/4
• power: 0.24 kW
• speed 50 Hz / 60 Hz: 2750 / 3250 min?1
• semi-open impeller
• voltage 220-240/380-415 V/50 Hz or 460 V/60 Hz
application
• pumped media coolant emulsions
• cooling and cutting oils
• kinematic viscosity ...45 mm²/s (45 cSt)
• fluid temperature 0...60° C
• higher temperatures on request
construction
• pump body grey cast iron
• cover POM
• impeller POM
• shaft steel
Auf Wunsch
• cover grey cast iron (TA160...TA400)
• suction cover with connection thread
• impeller brass (TA160...TA400)
• cast steel
• flow rate: 50 l/min at delivery head 2 m
• immersion depth: 120 mm
• pipe connection: G 3/4
• power: 0.12 kW
• speed 50 Hz / 60 Hz: 2700 / 3200 min?1
• semi-open impeller
• voltage 220-240/380-415 V/50 Hz or 460 V/60 Hz
application
• pumped media coolant emulsions
• cooling and cutting oils
• kinematic viscosity ...45 mm²/s (45 cSt)
• fluid temperature 0...60° C
• higher temperatures on request
construction
• pump body grey cast iron
• cover POM
• impeller POM
• shaft steel
Auf Wunsch
• cover grey cast iron (TA160...TA400)
• suction cover with connection thread
• impeller brass (TA160...TA400)
• cast steel