Блок питания VM600Mk2/VM600 RPS6U

Виброметр питания VM600Mk2 / VM600 RPS6U

KEY FEATURES AND BENEFITS

• From the vibro-meter ® product line 

• Power supply for VM600Mk2/ VM600 ABE04x 19 ″ system racks with a height of 6U 

• Input: AC-input and DC-input versions 

• Outputs: +5 VDC and ±12 VDC • Output over-voltage, short-circuit and overload protection 

• Status indicators 

• High-power, high-performance, high efficiency 

• Minimal derating within the operating temperature range

APPLICATIONS

• VM600Mk2/ VM600 machinery protection and/ or condition monitoring systems 

• One RPS6U rack power supply powers a full rack of modules (cards) 

• Two RPS6U rack power supplies enable rack power supply redundancy

DESCRIPTION

The VM600Mk2/ VM600 RPS6U rack power supplies are designed for use in the VM600Mk2/ VM600 series of machinery protection systems and condition and performance monitoring systems, from Meggitt’s vibro-meter ® product line. A VM600Mk2/ VM600 RPS6U rack power supply is installed in the front of a VM600Mk2/ VM600 ABE04x system rack (19 ″ system racks with a standard height of 6U) and connects via two high-current connectors to the VME bus of the rack’s backplane. The RPS6U power supply provides +5 VDC and ±12 VDC to the rack itself and all installed modules (cards) in the rack via the rack’s backplane.

DESCRIPTION (continued)

Either one or two VM600Mk2/ VM600 RPS6U rack power supplies can be installed in a VM600Mk2/ VM600 ABE04x system rack. A rack with one RPS6U power supply (330 W version) supports the power requirements for a full rack of modules (cards) in applications with operating temperatures up to 50 °C (122 °F). Alternatively, a rack can have two RPS6U power supplies installed in order to either support rack power supply redundancy or in order to supply power to the modules (cards) non-redundantly over a wider range of environmental conditions. A VM600Mk2/ VM600 ABE04x system rack with two RPS6U power supplies installed can operate redundantly (that is, with rack power supply redundancy) for a full rack of modules (cards). This means that if one RPS6U fails, the other will provide 100 % of the rack’s power requirement so that the rack will continue to operate, thereby increasing the availability of the machinery monitoring system. Note: This is known as a redundant RPS6U rack power supply configuration. A VM600Mk2/ VM600 ABE04x system rack with two RPS6U power supplies installed can also operate non-redundantly (that is, without rack power supply redundancy). Typically, this is only necessary for a full rack of modules (cards) in applications with operating temperatures above 50 °C (122 °F), where RPS6U output power derating is required. Note: Even though two RPS6U rack power supplies are installed in the rack, this is not a redundant RPS6U rack power supply configuration. The number and type of RPS6U power supplies installed in a VM600Mk2/ VM600 ABE04x system rack, together with the number of modules (cards) installed and the environmental conditions, helps determine the mode of operation of the RPS6U power supplies as either redundant or non-redundant. See also Ordering information on page 16. Different versions of the RPS6U rack power supply enable a VM600Mk2/ VM600 ABE04x system rack to be powered using external AC and/or DC mains supplies. All RPS6U power supplies support a wide input voltage range. A power supply check relay, available on the associated rear panel at the rear of a VM600Mk2/ VM600 ABE04x system rack, is used to indicate that the RPS6U power supplies are operating normally. Refer to the VM600Mk2/ VM600 ABE04x system rack data sheet for further information. In applications where the VM600Mk2/ VM600 ABE04x system rack is powered by an AC mains supply, a VM600Mk2/ VM600 ASPS auxiliary sensor power supply can also be included in the rack. The ASPS provides +24 VDC outputs which can be used by external sensor/measurement chain hardware such as front-end sensors, signal conditioners and galvanic separation units. For further information, contact your local Meggitt representative.

Notes 

 1. In 2016, the RPS6U rack power supply was improved to provide a higher output power of 330 W with higher-performance and higher-efficiency, which required a redesign of the underlying power supply circuitry. Accordingly, the different versions of the RPS6U rack power supply in use are: 

 • Later versions of the RPS6U (PNR 200-582-x00-02h or later) that define the power as a total maximum output power of 330 W,   with nominal output (supply) voltages of +5 VDC up to 50 A, +12 VDC up to 8 A and −12 VDC up to 4 A.   Note: The total maximum output power of 330 W is a combination load for all outputs as the +5 VDC and ±12 VDC outputs are   usually not simultaneously loaded to the maximum in practice. For example, if the +5 VDC output is at its maximum rated load   (5.35 V × 50 A = 267.5 W), then the combined loads on the +12 VDC and −12 VDC outputs must not exceed 62.5 W. 

 • Earlier versions of the RPS6U (PNR 200-582-x00-01h or earlier) that define the power as a rated power of 300 W,   with nominal output (supply) voltages of +5 VDC up to 35 A, +12 VDC up to 6 A and −12 VDC up to 2 A. 2. In 2021, VM600Mk2 (second-generation) machinery monitoring systems were launched with improved rack modules, notably the MPC4Mk2 + IOC4Mk2, RLC16Mk2 and CPUMMk2 + IOCNMk2. VM600Mk2 systems use the same system infrastructure as first-generation VM600 systems, that is, VM600Mk2 is backward compatible with existing VM600 (VM600Mk1) racks and power supplies. However, VM600Mk2 versions of the ABE040 system rack (PNR 200-040-100-016) and RPS6U rack power supplies (PNRs 200-582-200-12h, 200-582-500-12h and 200-582-600-12h) are also available. The VM600Mk2 versions are the same as the latest VM600 versions, except for the specific artwork/branding/finish. More specifically, the front panels of RPS6U rack power supplies are bare aluminium for the VM600Mk2 versions (PNRs 200-582-200-12h, 200-582-500-12h and 200-582-600-12h) and painted for the VM600 versions (PNRs 200-582-200-02h, 200-582-500-02h and 200-582-600-02h).

Environmental Temperature 

 •Operating 

 •Storage Humidity (according to IEC 60068-2-30) Vibration (according to IEC 60068-2-6) Shock (according to IEC 60068-2-27) Drop test (according to IEC 60068-2-31) MTBF (according to MIL-HDBK-217F) Conformal coating Indoor use Approvals Conformity Electromagnetic compatibility Electrical safety Overvoltage category Vibration Environmental management Russian federal agency for technical regulation and metrology (Rosstandart) : 0  to 70 °C (32 to 158 °F) : −40 to 85 °C (−40 to 185 °F) : 5 to 90 %, non-condensing : 10 to 55 Hz, 0.35 mm peak below resonance and 2 g peak above, 6 hours /axis : 6 g peak, 11 ms, half-sine pulse, 3 shocks /axis : 30 ° drop angle : > 40 000 hours at 70 °C (158 °F) : Applied to the circuitry of the power supply for additional environmental protection against chemicals, dust, moisture and temperature extremes : Limited to indoor use only : European Union (EU) declaration of conformity (CE marking). EAC marking, Eurasian Customs Union (EACU) certificate/ declaration of conformity. : EN 55022 class “B”. FCC Docket 20780 curve “B”. IEC 61000-4-2: Performance criteria B, 4 kV contact discharge and 8 kV air discharge. IEC 61000-4-3: Performance criteria A, 10V/m. IEC 61000-4-4: Performance criteria A, 2 kV 5/50 ns, 5 kHz, direct IEC 61000-4-6: Performance criteria A, level 3 IEC 61000-4-8: Performance criteria A, 50 Hz / 30 A / m TR CU 020/2011. : IEC / EN / UL / CSA 60950-1, 2nd edition. TR CU 004/2011. : OVC II : IEC 60255-21-1 (Class 2) : RoHS compliant (2011/65 / UE) : Pattern approval certificate OC.C.28.004.A N° 60224