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Environmental Vibration Testing Battery Shaker Vibration Testing System 3000Hz
Equipment overview
Environmental Stress Screening (DCS) is extremely effective in eliminating potential product defects. In the development stage, it becomes a magic weapon to find product design defects to achieve reliability growth; in the production stage, it becomes an important means to reduce production costs and create excellent products.
The DCS project will be applied during product development and production, which can greatly improve product reliability and reduce maintenance costs. Applying DCS during development can greatly save testing time and cost, thereby eliminating or reducing hidden defects before testing. The benefits for producers include: insight into reliability problems in products or processes, so as to eliminate reliability problems from products and processes, reduce production costs and save resources.
Vibration test can be used to find early battery failure, simulate actual working condition assessment and structural strength test. The product has a wide range of applications, wide application range, remarkable and reliable test effect. It is an ideal battery-specific vibration test for battery manufacturers, quality inspection departments and research institutes. Test Equipment. It is suitable for vibration testing of various types of single cells and battery packs such as charging treasures, lithium-ion, nickel-metal hydride, nickel-cadmium, lead-acid, and nickel metal hydride.
Vibration tests can also be used for fatigue tests of products for life assessment of products.
Technical Parameters
A20S34 Electrodynamic Shaker | ||
Generated Force | Sine (Pk) | 2400 kgf |
Random (Rms) | 2200 kgf @ISO5344 | |
Shock (Pk) | 4400 kgf @ 6ms | |
Useable Frequency (Only Armature) | 1-3,000Hz | |
Maximum displacement (Peak-Peak): Continuous duty/ Shock | 51 mm/60 mm | |
Maximum Velocity | 2.0 m/s | |
Maximum Acceleration | 100g | |
Fundamental Resonance Frequency (Nominal, Bare Table) | 2900Hz±5% | |
Nominal armature moment | 500 N.m | |
Body Suspension Natural Frequency (Thrust Axis) | Lower than 3 Hz | |
Effective Nominal Armature Mass | 24kg | |
Armature Diameter | 340 mm | |
Vertical Load Support | 400 kg | |
Load Attachment Points (Standard) | 16 stainless steel M10 Inserts | |
Field Rated Current@ Voltage (DC) cold | 14a@DC515V | |
35a@DC270V | ||
Field Coil Resistance R20 | 14.8 Ω X 2 = 19.6.4 Ω DC515v | |
4.2 Ω X 2 = 8.4 Ω DC270v | ||
Drive Coil Isolation Resistance to Armature | >10MΩ | |
Drive Coil Isolation Resistance to Shaker Body | >10MΩ | |
Stray Flux Density with degauss coil | 10 gauss @ 110 mm above table | |
LA20K Power Amplifier (Refer to amplifier manual for details) | ||
Rated Output Capacity | 24 kVA | |
Amplifier Frequency response (Sine mode, resistive load) | Full power from 5 Hz to 3000Hz rolling off to 3 dB at 4000 Hz with 6 dB/Octave slope | |
Distortion (at rated output) | From 5 Hz to 3000Hz less than 1% | |
Signal-Noise-Ratio | Greater than 65 dB | |
DC stability | Less than 0.05% of full output voltage with 10% change in line voltage. | |
Power Supply Requirement | 380V/50Hz 3 Phase | |
Input Drive | 1.5 Vrms into 10 K Ohms for full output | |
Input Power | 380VAC, 50 Hz, 3 Phase 42kVA not include 10kVA for cooling blower motor. | |
160 Hz Sine Trial Testing | 195Arms/45.1Vrms @100 g |
Details