Eckerle Internal Gear Pump EIPH - High-quality Eckerle Internal Gear Pump EIPH manufacturer from Taiwan | Camel Precision Co., Ltd.
CML, Camel Hydraulic, Camel Precision is a Taiwan based high-quality Eckerle Internal Gear Pump EIPH manufacturer and Eckerle Internal Gear Pump EIPH supplier With more than 40 years experience, CML is specialized in Vane Pump, internal gear pump, external gear pump, solenoid valve, modular valve, flow control valve, pressure control valve, check valve, servo system, power unit, hydraulic pump, hydraulic valve, hydraulic accessory manufacture. since 1981.
Eckerle Internal Gear Pump EIPH
EIPH2,EIPH3,EIPH5,EIPH6
Eckerle Internal Gear Pump
The multiple pumps with Eckerle and CML internal gear pumps integrated can comprise various pump sizes with different pressure output, supporting users with miscellaneous options for their applications. It is made for fixed RPM or servo systems for different working situations, like continuous stable pressure holding and/or hydraulic mechanical applications that require different pressure outputs, to satisfy both quick operating speed and high-pressure requirements.
Application examples: pipe crimping machine (pipe connector clamping), cutting machine, material compactor, etc. Custom specs are available; please contact us for more details.
CML's products are widely used in all kinds of manufacturing machinery, metal processing machinery, mobile machinery, hydraulic systems, servo systems, and integrated hydraulic oil and electricity application.
Combining the characteristics of different Hydraulic pumps to achieve low noise creates a friendly working environment; low energy consumption joins environmental protection. Low consumption for cost-saving, etc., Most importantly, it can greatly improve the accuracy and stability of mechanical operation and maximize customer benefits.
Feature
- The series EIPH were developed particularly for the high requirements of industrial hydraulics. Their favourable noise characteristic. extremely low delivery and pressure pulsation.
- outstanding efficiency within broad revolution and viscosity ranges. have firmly established gap-compensated high pressure internal gear pumps among high pressure pumps. Simple
- combinability to multiple pumps with separate or common inlet is given.
- The EIPH is a consistent advancement that already for over 40 years in the industry used gap-compensated internal gear pump technology. System Eckerle.
Pump Structure
- Suitable for injection molding machines, molding machines, servo-hydraulic energy saving systems and other high pressure hydraulic machines.
Specification
EIPH2 Series
Testing condition:n = 1.450 min-1,Δ p = 250 bar,T = 50 °C,Medium: HLP 46
Rated Size | 004 | 005 | 006 | 008 | 011 | 013 | 016 | 019 | 022 | 025 |
---|---|---|---|---|---|---|---|---|---|---|
Spec. volume Vth [cm3/rev]*** | 4.2 | 5.4 | 6.4 | 7.9 | 10.9 | 13.3 | 15.8 | 19.3 | 22.2 | 25.2 |
Continuous operating pressure [bar]** | 330 | 300 | 250 | 250 | ||||||
Peak operating pressure [bar] max. 10 sec. 15% duty cycle** |
350 | 300 | 280 | |||||||
Cut-in pressure peak [bar]** | 400 | 325 | 300 | |||||||
Nominal speed [min-1] | 400 - 3.600 | 400 - 3.400 | 400 - 3.200 | 400 - 3.000 | 400 - 2.500 | 400 - 2.300 | ||||
Max. speed [min-1] | 4.200 | 4.000 | 3.000 | |||||||
Nominal speed [min-1]**** | 400 - 3.000 | 400 - 2.800 | ||||||||
Max. speed [min-1]**** | 3.600 | |||||||||
Operating viscosity [mm2/s] | 10 - 300 | |||||||||
Starting viscosity [mm2/s] | 2.000 | |||||||||
Operating medium | HL - HLP DIN 51 524 Teil 1/2 | |||||||||
Max. medium temperature [°C] | 80 | |||||||||
Min. medium temperature [°C] | -20 | |||||||||
Max. ambient temperature [°C] | 80 | |||||||||
Min. ambient temperature [°C] | -20 | |||||||||
Max. admission pressure (intake side) [bar] | 2 bar absolute | |||||||||
Min. admission pressure (intake side) [bar] | 0.8 bar absolute (Start 0.6) | |||||||||
Weight appr. [kg] | 4.9 | 5.0 | 5.2 | 5.4 | 5.5 | 5.7 | 7.4 | 7.8 | 8 | |
Degree of filtration | Class 20/18/15 due to ISO 4406 | |||||||||
Life expectancy | not less than 1x 107 load cycles against peak operating pressure | |||||||||
Efficiency h vol: | 88 | 91 | 92 | 93 | 94 | 95 | ||||
Efficiency h hm: | 85 | 90 | 91 | 92 | 93 | |||||
Pump noise* (measured in sound chamber) dB[A] |
53 | 54 | 55 | 57 | 58 | 59 | 60 | 61 | 62 | 63 |
EIPH3 Series
Testing condition:n = 1.450 min-1,Δ p = 250 bar,T = 50 °C,Medium: HLP 46
Rated Size | 014 | 016 | 020 | 025 | 032 | 040 | 050 | 064 |
---|---|---|---|---|---|---|---|---|
Spec. volume Vth [cm3/rev]*** | 14.6 | 16.0 | 20.0 | 24.8 | 32.1 | 40.1 | 50.3 | 64.6 |
Continuous operating pressure [bar]** | 330 | 280 | ||||||
Peak operating pressure [bar] max. 10 sec. 15% duty cycle** |
350 | 300 | ||||||
Cut-in pressure peak [bar]** | 400 | 325 | ||||||
Nominal speed [min-1] | 400 - 3.600 | 400 - 3.400 | 400 - 3.200 | 400 - 3.000 | 400 - 3.000 | 400 - 1.800 | ||
Max. speed [min-1] | 4.000 | 3.400 | 3.200 | 3.000 | 2.500 | 1.800 | ||
Nominal speed [min-1]**** | 400 - 3.200 | 400 - 3.000 | 400 - 2.200 | |||||
Max. speed [min-1]**** | 3.600 | 2.500 | ||||||
Operating viscosity [mm2/s] | 10 - 300 | |||||||
Starting viscosity [mm2/s] | 2.000 | |||||||
Operating medium | HL - HLP DIN 51 524 Teil 1/2 | |||||||
Max. medium temperature [°C] | 80 | |||||||
Min. medium temperature [°C] | -20 | |||||||
Max. ambient temperature [°C] | 80 | |||||||
Min. ambient temperature [°C] | -20 | |||||||
Max. admission pressure (intake side) [bar] | 2 bar absolute | |||||||
Min. admission pressure (intake side) [bar] | 0.8 bar absolute (Start 0.6) | |||||||
Weight appr. [kg] | 9.4 | 10.1 | 10.5 | 11.2 | 12.0 | 15 | 17 | 18 |
Degree of filtration | Class 20/18/15 due to ISO 4406 | |||||||
Life expectancy | not less than 1x 107 load cycles against peak operating pressure | |||||||
Efficiency h vol: | 91 | 92 | 93 | 94 | 95 | |||
Efficiency h hm: | 90 | 91 | 92 | 93 | ||||
Pump noise* (measured in sound chamber) dB[A] |
60 | 61 | 62 | 63 | 64 | 65 | 66 |
EIPH5 Series
Testing condition:n = 1.450 min-1,Δ p = 250 bar,T = 50 °C,Medium: HLP 46
Rated Size | 064 | 080 | 100 |
---|---|---|---|
Spec. volume Vth [cm3/rev]*** | 65.3 | 80.4 | 100.5 |
Continuous operating pressure [bar]** | 280 | ||
Peak operating pressure [bar] max. 10sec 15% duty cycle** |
290 | ||
Cut-in pressure peak [bar]** | 300 | ||
Nominal speed [rpm] | 100 - 2.800 | 100 - 2.500 | |
Max. speed [rpm] | 3.000 | ||
Operating viscosity [mm2/s] | 10 - 300 | ||
Starting viscosity [mm2/s] | 2.000 | ||
Operating medium | HL - HLP DIN 51 524 Teil 1/2 | ||
Max. medium temperature [°C] | 80 | ||
Min. medium temperatur [°C]] | -20 | ||
Max. ambient temperature [°C] | 80 | ||
Min. ambient temperature [°C] | -20 | ||
Max. admission pressure (intake side) [bar] | 2 bar absolute | ||
Min. admission pressure (intake side) [bar] | 0.8 bar absolute (Start 0.6) | ||
Weight appr. [kg]: | 15.3 | 17.5 | 18.7 |
Degree of filtration | Class 20/18/15 due to ISO 4406 | ||
Life expectancy | not less than 1x 107 load cycles against peak operating pressure | ||
Efficiency h vol: | 94 | 95 | 95 |
Efficiency h hm: | 92 | 93 | 93 |
Pump noise* (measured in sound chamber) dB[A] |
69 | 70 | 71 |
EIPH6 Series
Testing condition:n = 1.450 min-1,Δ p = 250 bar,T = 50 °C,Medium: HLP 46
Rated Size | 040 | 050 | 064 | 080 | 100 | 125 | 160 | 200 | 250 |
---|---|---|---|---|---|---|---|---|---|
Spec. volume Vth [cm3/rev]*** | 40.8 | 50.6 | 65.3 | 80.0 | 101.2 | 125.7 | 160.1 | 200.9 | 249.9 |
Continuous operating pressure [bar]** | 330 | 315 | 300 | 250 | 160 | 140 | |||
Peak operating pressure [bar] max. 10sec 15% duty cycle** | 340 | 330 | 280 | 170 | 150 | ||||
Cut-in pressure peak [bar]** | 350 | 340 | 300 | 180 | 160 | ||||
Nominal speed [rpm] | 400 - 2.200 | 400 - 2.000 | 400 - 1.800 | ||||||
Max. speed [rpm] | 2.400 | 2.200 | 2.000 | ||||||
Operating viscosity [mm2/s] | 10 - 300 | ||||||||
Starting viscosity [mm2/s] | 2.000 | ||||||||
Operating medium | HL - HLP DIN 51 524 Teil 1/2 | ||||||||
Max. medium temperature [°C] | 80 | ||||||||
Min. medium temperatur [°C]] | -20 | ||||||||
Max. ambient temperature [°C] | 80 | ||||||||
Min. ambient temperature [°C] | -20 | ||||||||
Max. admission pressure (intake side) [bar] | 2 bar absolute | ||||||||
Min. admission pressure (intake side) [bar] | 0.8 bar absolute (Start 0.6) | ||||||||
Weight appr. [kg]: | 31 | 32 | 34 | 36 | 39 | 42 | 46 | 51 | 58 |
Degree of filtration | Class 20/18/15 due to ISO 4406 | ||||||||
Life expectancy | not less than 1x 107 load cycles against peak operating pressure | ||||||||
Efficiency h vol: | 93 | 94 | 95 | 96 | |||||
Efficiency h hm: | 89 | 90 | 91 | ||||||
Pump noise* (measured in sound chamber) dB[A] |
72 | 73 | 74 | 75 | 76 | 77 | 78 |
Variable-speed operation
As a matter of principle, Eckerle internal gear pumps are eminently suited for variable speed operation. Even at low viscosities and high temperatures of the pumping medium, the pumps run extremely energy efficiently and highly dynamically over a wide speed range due to the radical and axial gap compensation.However, with variable speed operation certain boundary conditions should be observed. The exemplary cycle shown below illustrates this clearly.
I. Start: Eckerle internal gear pumps able to build up pressure from standstill. This happens smoothly when the pump starts from an unpressurized state. Please talk to Eckerle, if due to the system design the pump is pressurized at standstill.
II. Pump Operation: Eckerle internal gear pumps are capable of providing a speed-dependent volumetric flow at any pressure level during pump operation. However, application limits of the respective sizes must be observed.
III. Deceleration: With Eckerle internal gear pumps very high decelerations can be achieved, it must be ensured though that line-dependent pressure peaks can develop within the suction side. These should not exceed the maximum permissible inlet pressure.
IV. Pressure Holding Operation: Eckerle internal gear pumps are able to build up high pressures even at very low speed due to the gap compensation, hold pressure operation is thus extremely energy-efficient. Pump operation should follow after the hold pressure operation to flush out the pump.
V. Reverse Operation: Eckerle internal gear pumps are usually able to run highly dynamically in the oppsite direction of rotation in order to lower pressure peaks, or by means of a hydraulic motor. However, it must be ensured that the output pressure is always higher than the input pressure.
VI. Acceleration: With Eckerle internal gear pumps very large speed-ups can be run. These are limited by inlet pressure, geometry of the suction line and viscosity. However, these may not drop below the specified minimum inlet pressure of the series.
* To avoid critical operating points, we recommend taking measurements of the pump’s inlet and outlet pressure near the pump with a scanning rate of at least 1 kHz when a new pump cycle starts.
Model No.
EIPH2-RK03-1X,EIPH3-RK23-1X, EIPH5-RA23-1X, EIPH5-RB23-1X, EIPH6-RK23-1X
- Code
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Model Code
- Chart
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Performance Curve
EIPH2
Measurement conditions: Speed 1450 min-1, viscosity 46 mm^2/sec
operating temperature 40°CEIPH3
Measurement conditions: Speed 1450 min-1, viscosity 46 mm^2/sec
operating temperature 40°CEIPH5
Measurement conditions: Speed 1450 min-1, viscosity 46 mm^2/sec
operating temperature 40°CEIPH6
Measurement conditions: Speed 1450 min-1, viscosity 46 mm^2/sec
operating temperature 40°C - DWG
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Measurement
Pump with SAE-A-2-hole flange and cylindrical shaft
Order Example: EIPH2-RK03-1X
Double Pump with SAE-A-2-hole flange and cylindrical shaft
Order Example: EIPH2-RK00-1X+EIPH2-RP30-1X
Pump with SAE-B-2-hole flange and cylindrical shaft
Order Example: EIPH3-RK23-1X
Double Pump with SAE-B-2-hole flange and cylindrical shaft
Order Example: EIPH3-RK20-1X+EIPH3-RP30-1X
Double Pump with SAE-B-2-hole flange and cylindrical shaft
Order Example: EIPH3-RK20-1X+EIPH2-RP30-1
Pump with SAE-C-2-hole flange and cylindrical shaft
Order Example: EIPH5-RA23-1X
Double Pump with SAE-C-2-hole flange and cylindrical shaft
Order Example: EIPH5-SK23-1X+EIPG-RP33-1X
Pump with SAE-C-2-hole flange and cylindrical shaft
Order Example: EIPH5-RB23-1X
Double Pump with SAE-C-2-hole flange and splined shaft
Order Example: EIPH5-SK23-1X+EIPG-RP33-1X
Pump with SAE-D-2-hole flange and cylindrical shaft
Order Example: EIPH6-RK23-1X
Double Pump with SAE-D-2-hole flange and cylindrical shaft
Order Example: EIPH6-RK20-1X+ EIPH6-RP30-1X
Double Pump with SAE-D-2-hole flange and cylindrical shaft
Order Example: EIPH6-RK23-1X+EIPH2-RP30-1X
Double Pump with SAE-D-2-hole flange and cylindrical shaft
Order Example: EIPH6-RK20-1X+ EIPH3-RP30-1X
Tags
CML, Camel Hydraulic, Camel Precision Eckerle Internal Gear Pump EIPH Service Introduction
Located in Taiwan since 1981, Camel Precision Co., Ltd. is a Eckerle Internal Gear Pump EIPH supplier and manufacturer in Machinery and Equipment Manufacturing Industry.
In 1981 Camel Precision Co.,Ltd was founded. The management of company fully awards of high quality products requires not only sophisticate machinery, But good knowledge in technology is also important as well. Company invited senior engineers from Germany and Japan to lead the manufacturing and training of local engineers in hydraulic industry. We offer our customers industrial pumps, solenoid directional control valves, hydraulic pumps, vane pumps, external gear pump, internal gear pump, directional valve, hydraulic valves...etc.
CML, Camel Hydraulic, Camel Precision has been offering customers high-quality Eckerle Internal Gear Pump EIPH production service, both with advanced technology and 38 years of experience, CML, Camel Hydraulic, Camel Precision ensures each customer's demands are met.
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