M380056-01 Rev K www.programmablepower.com ReFlex Power™ Operation Manual
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ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-15 4.3.10 REGULATORY AGENCY COMPLIANCE Safety Compliance European Low Voltage Directive, IEC 6
AC Power Supplies ReFlex Power™ 4-16 M380056-01 Rev K 4.4 INSTALLATION The ReFlex Power™ AC power supply module has been fully calibrated and te
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-17 4.4.3 INSTALLATION CAUTION The module contains ESD sensitive circuitry. Follow appropria
AC Power Supplies ReFlex Power™ 4-18 M380056-01 Rev K Figure 4-4. Module Installation (1-U-wide shown) 4.4.4 INPUT POWER REQUIREMENTS The AC po
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-19 The Mainframe distributes the input power through backplane connectors to three groups of fo
AC Power Supplies ReFlex Power™ 4-20 M380056-01 Rev K Table 4-1. Input Power Allocation Input Service Phases Input Designation Input Connector P
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-21 safety ground connection is required. It should be connected to the safety ground stud on th
AC Power Supplies ReFlex Power™ 4-22 M380056-01 Rev K 4.4.7 CONNECTORS The AC power supply module has all user interface connectors located on t
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-23 Pins 1-7: supplied with connector Backshell: Positronic P/N D37000Z00/ AMETEK P/N 856-247-
AC Power Supplies ReFlex Power™ 4-24 M380056-01 Rev K AC OUTPUT CONNECTOR ACCESSORIES • AMETEK P/N 5380450-01, ACPS Module, 9ft. Unterminated AC
M380056-01 Rev J vii CONTENTS SECTION 1 SYSTEM OVERVIEW ... 1-1 1.1 INTRODUCTION TO REFLEX POWER
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-25 INTERFACE CONNECTOR The Interface connector provides terminations for external connections t
AC Power Supplies ReFlex Power™ 4-26 M380056-01 Rev K OPTIONAL INTERFACE CONNECTOR ACCESSORIES • AMETEK P/N 5380508-01, 9-pin Loop-back Connecto
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-27 WIRE VOLTAGE DROP For applications where regulation is important, the contribution of the lo
AC Power Supplies ReFlex Power™ 4-28 M380056-01 Rev K Twisting the load wires provides an additional benefit in reducing the parasitic inductance
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-29 4.5.1 CONTROLS AND INDICATORS The ACPS has no controls. Figure 4-8 shows the front panel in
AC Power Supplies ReFlex Power™ 4-30 M380056-01 Rev K 4.5.2 MODES OF OPERATION The AC power supply module is capable of operating in either stan
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-31 through software. In a multi-phase group the load could be connected in wye or delta configu
AC Power Supplies ReFlex Power™ 4-32 M380056-01 Rev K CONSTANT VOLTAGE The AC power supply will operate in constant–voltage regulation whenever t
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-33 STANDALONE CONFIGURATION Single loads are connected directly to the front panel output termi
AC Power Supplies ReFlex Power™ 4-34 M380056-01 Rev K The paralleled modules are programmed as a single, virtual channel with a current rating eq
viii M380056-01 Rev J 2.4.2 LOCATION CONSIDERATIONS ... 2-8 2.4.3 MAIN
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-35 Figure 4-11. Parallel Output Configuration
AC Power Supplies ReFlex Power™ 4-36 M380056-01 Rev K MULTI-PHASE CONFIGURATION Multiple modules can be connected in a multi-phase configuration.
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-37 Figure 4-12. Multiphase Output Configuration with Wye Load Connection
AC Power Supplies ReFlex Power™ 4-38 M380056-01 Rev K Figure 4-13. Multi-phase Output Configuration with Delta Load Connection
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-39 4.5.4 DEFAULT OPERATIONAL CONDITIONS POWER-ON CONDITIONS When an AC power supply module is
AC Power Supplies ReFlex Power™ 4-40 M380056-01 Rev K 4.5.5 INITIAL FUNCTIONAL TESTS POWER-ON CHECK Ensure that the AC/DC input service is disco
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-41 the slot of the ReFlex Power™ Mainframe where the module is located, counting left to right,
AC Power Supplies ReFlex Power™ 4-42 M380056-01 Rev K Open the aux relay: OUTP[n]:AUXR 0 Open the main isolation relay: OUTP[n]:STATE 0 Set 280
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-43 SOUR[1000+n1]:CURR <fval> SOUR[1000+n1]:VOLT <fval> 7. Measure the output volt
AC Power Supplies ReFlex Power™ 4-44 M380056-01 Rev K 6. Turn on the isolation and remote sense relays, turn on the output converters, and progr
M380056-01 Rev J ix 4.2.2 ACCESSORIES LIST ... 4-3 4.2.3
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-45 CAUTION The calibration procedures are performed with the output of the AC power supply mod
AC Power Supplies ReFlex Power™ 4-46 M380056-01 Rev K Figure 4-14. Calibration Instrumentation Setup 4.6.4 CALPOT CALIBRATION FOR VOLTAGE RAN
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-47 4. Start the calibration of the gain pot CAL<n>:CALPOTS:GAIN:START 5. Set the load
AC Power Supplies ReFlex Power™ 4-48 M380056-01 Rev K 4.6.5 CALPOT CALIBRATION VOLTAGE RANGE HIGH This procedure calibrates cal-pot for the volt
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-49 To query the gain pot set value: CAL<n>:CALPOTS:GAIN? 11. Reset the unit *RST<n&g
AC Power Supplies ReFlex Power™ 4-50 M380056-01 Rev K 4.6.6 DAC OFFSET CALIBRATION FOR VOLTAGE RANGE LOW This procedure calibrates the voltage
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-51 14. Program to DAC to 0.5% above the middle range CAL<n>:OUTP:DAC:COUNTS 33080 15. W
AC Power Supplies ReFlex Power™ 4-52 M380056-01 Rev K 4.6.7 DAC OFFSET CALIBRATION FOR VOLTAGE RANGE HIGH This procedure calibrates the voltage
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-53 14. Wait for the DC voltmeter to stabilize. Make an accurate measurement and then enter the
AC Power Supplies ReFlex Power™ 4-54 M380056-01 Rev K 4.6.8 VOLTAGE ADC OFFSET CALIBRATION FOR VOLTAGE RANGE LOW The following procedure calibr
x M380056-01 Rev J 4.6.18 CURRENT CALIBRATION FOR VOLTAGE RANGE LOW ... 4-71 4.6.19 CURRENT CALIBRATION FOR
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-55 4.6.9 VOLTAGE ADC OFFSET CALIBRATION FOR VOLTAGE RANGE HIGH The following procedure calibr
AC Power Supplies ReFlex Power™ 4-56 M380056-01 Rev K 4.6.10 CURRENT ADC OFFSET CALIBRATION FOR VOLTAGE RANGE LOW The following procedure calib
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-57 4.6.11 CURRENT ADC OFFSET CALIBRATION FOR VOLTAGE RANGE HIGH The following procedure calib
AC Power Supplies ReFlex Power™ 4-58 M380056-01 Rev K 4.6.12 HIGH SPEED SUPERVISORY CALIBRATION FOR VOLTAGE RANGE LOW The following procedure c
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-59 4.6.13 HIGH SPEED SUPERVISOR CALIBRATION FOR VOLTAGE RANGE HIGH The following procedure ca
AC Power Supplies ReFlex Power™ 4-60 M380056-01 Rev K 4.6.14 VOLTAGE CALIBRATION FOR VOLTAGE RANGE LOW This procedure calibrates the output vo
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-61 13. Wait for AC voltage to stabilize. Measure the output voltage using the AC voltmeter. Ent
AC Power Supplies ReFlex Power™ 4-62 M380056-01 Rev K *RST<n>
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-63 4.6.15 VOLTAGE CALIBRATION FOR VOLTAGE RANGE HIGH The following procedure calibrates the o
AC Power Supplies ReFlex Power™ 4-64 M380056-01 Rev K CAL<n>:OUTP:VOLT:FIVEPOINT2 <value-2> 12. Program the output voltage to 50% of
M380056-01 Rev J xi 5.7 PERFORMANCE VERIFICATION ... 5-32 5.7.1 INTRODUCTION ...
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-65 4.6.16 LDF CALIBRATION FOR VOLTAGE RANGE LOW The following procedure calibrates the Line d
AC Power Supplies ReFlex Power™ 4-66 M380056-01 Rev K 4.6.17 LDF CALIBRATION FOR VOLTAGE RANGE HIGH The following procedure calibrates the Line
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-67 4.6.18 CURRENT CALIBRATION FOR VOLTAGE RANGE LOW This procedure calibrates the output curr
AC Power Supplies ReFlex Power™ 4-68 M380056-01 Rev K 14. Wait for AC current to stabilize. Measure the output current using the AC meter. Enter
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-69 Query the current calibration points: CAL<n>:OUTP:CURR:FIVEPOINT ? 26. Reset the uni
AC Power Supplies ReFlex Power™ 4-70 M380056-01 Rev K 4.6.19 CURRENT CALIBRATION FOR VOLTAGE RANGE HIGH This procedure calibrates the output cu
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-71 14. Wait for AC current to stabilize. Measure the output current using the AC meter. Enter t
AC Power Supplies ReFlex Power™ 4-72 M380056-01 Rev K 26. Reset the unit: *RST<n>
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-73 4.6.20 HALL CALIBRATION FOR VOLTAGE RANGE LOW (5 KHZ UNIT) The following procedure calibra
AC Power Supplies ReFlex Power™ 4-74 M380056-01 Rev K 15. Wait for AC current to stabilize. Measure the output current using the AC meter. Enter
xii M380056-01 Rev J 6.6.2 RECOMMENDED CALIBRATION EQUIPMENT ... 6-59 6.6.3 CALIBRATION SETUP ...
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-75 28. If there is no error returned at the system error query command then save the calibratio
AC Power Supplies ReFlex Power™ 4-76 M380056-01 Rev K 4.6.21 HALL CALIBRATION FOR VOLTAGE RANGE HIGH (5 KHZ UNIT) This procedure calibrates the
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-77 14. Set the output frequency to 500Hz SOUR<n>:FREQ 500 15. Wait for AC current to sta
AC Power Supplies ReFlex Power™ 4-78 M380056-01 Rev K 26. Perform the voltage calibration using following command CAL<n>:OUTP:FREQ:CALC 2
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-79 4.6.22 HALL CALIBRATION FOR VOLTAGE RANGE LOW (1.2 KHZ UNIT) This procedure calibrates the
AC Power Supplies ReFlex Power™ 4-80 M380056-01 Rev K 14. Set the output frequency to 250Hz SOUR<n>:FREQ 250 15. Wait for AC current to s
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-81 CAL<n>:OUTP:FREQ:CALC 27. Send the system error query command to make sure calibratio
AC Power Supplies ReFlex Power™ 4-82 M380056-01 Rev K 4.6.23 HALL CALIBRATION FOR VOLTAGE RANGE HIGH (1.2 KHZ UNIT) This procedure calibrates th
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-83 14. Set the output frequency to 250Hz SOUR<n>:FREQ 250 15. Wait for AC current to s
AC Power Supplies ReFlex Power™ 4-84 M380056-01 Rev K CAL<n>:OUTP:FREQ:CURR7 <value-7> 26. Perform the voltage calibration: CAL&
M380056-01 Rev J xiii 7.6.7 HPAL LOW RANGE CURRENT CALIBRATION ... 7-37 7.6.8 HPAL VOLTAGE CALIB
M380056-01 Rev J 5-1 SECTION 5 FIXED POWER DC POWER SUPPLY 5.1 GENERAL DESCRIPTION The Fixed Power DC (FPDC) power supply of the ReFlex Power™ sy
Fixed Power DC Power Supply ReFlex Power™ 5-2 M380056-01 Rev J 5.2 FEATURES The ReFlex Power™ system FPDC power supply brings modularity to DC pow
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-3 5.2.3 CONTROLS AND INDICATORS The FPDC power supply module operates within the ReFle
Fixed Power DC Power Supply ReFlex Power™ 5-4 M380056-01 Rev J Figure 5-2. Rear View of Typical DC Supply Module
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-5 5.3 SPECIFICATIONS All specifications are valid after a 30-minute warm-up time. Modu
Fixed Power DC Power Supply ReFlex Power™ 5-6 M380056-01 Rev J REMOTE SENSE CAPABILITY Remote sense shall compensate for at least 0.25V per load li
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-7 5.3.4 GENERAL CHARACTERISTICS INPUT VOLTAGE RANGE 103.5-253VAC with AC input; 270VDC
Fixed Power DC Power Supply ReFlex Power™ 5-8 M380056-01 Rev J 5.3.6 COMMAND SETS/DRIVERS COMMAND DESCRIPTION SCPI Standard 1999 command language,
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-9 5.3.8 ENVIRONMENTAL CHARACTERISTICS OPERATING TEMPERATURE Standard: 0 to 50 °C Exte
Fixed Power DC Power Supply ReFlex Power™ 5-10 M380056-01 Rev J 5.3.9 REGULATORY AGENCY COMPLIANCE SAFETY COMPLIANCE European Low Voltage Directiv
xiv M380056-01 Rev J List of Tables Table 1 1. Module Complement...
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-11 5.4 INSTALLATION The ReFlex Power™ FPDC power supply module has been fully calibrat
Fixed Power DC Power Supply ReFlex Power™ 5-12 M380056-01 Rev J 5.4.3 INSTALLATION CAUTION The module contains ESD sensitive circuitry. Follow a
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-13 Figure 5-3. Module Installation (1-U wide example) 5.4.4 INPUT POWER REQUIREMENTS
Fixed Power DC Power Supply ReFlex Power™ 5-14 M380056-01 Rev J Balance in phase currents can be achieved only if the power modules are located in
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-15 Table 5-1. Mainframe Connector and Power Allocation Information Input Service Phases
Fixed Power DC Power Supply ReFlex Power™ 5-16 M380056-01 Rev J safety ground connection is required. It should be connected to the safety ground s
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-17 MATING CONNECTOR KIT FPDC Mating Connector Kit - AMETEK Part No. 5380274-01, mates w
Fixed Power DC Power Supply ReFlex Power™ 5-18 M380056-01 Rev J InterfaceENACHAS-GNDENA-RTN123678495T/PUserEquipmentN/UN/UN/UT/P = Twisted Pair;
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-19 DC OUTPUTS The FPDC Output connector, J2, provides terminations for the 4 DC voltage
Fixed Power DC Power Supply ReFlex Power™ 5-20 M380056-01 Rev J Table 5-3. FPDC DC Output Connector Pinout PIN Name Description 1 +15V +15V Positi
M380056-01 Rev J xv List of Figures Figure 1 1. Front View Mainframe with Module Installation ...
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-21 ground terminal, CHAS-GND, of the DC OUTPUT connector, J2, as required to maximize i
Fixed Power DC Power Supply ReFlex Power™ 5-22 M380056-01 Rev J Table 5-4. Wire Data AWG Copper Area, cm2 Resistance, Ω/m at 20°C Resistance, Ω/
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-23 The voltage drop (per output or return lead) could be calculated using the following
Fixed Power DC Power Supply ReFlex Power™ 5-24 M380056-01 Rev J signals are available for dedicated hardware interface. All connectors for control
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-25 5.5.2 MODES OF OPERATION FPDC modules operate in standalone mode, functioning as in
Fixed Power DC Power Supply ReFlex Power™ 5-26 M380056-01 Rev J the heaviest gauge practical to minimize line drop. The remote sense wires should b
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-27 5.5.5 INITIAL FUNCTIONAL TESTS POWER-ON CHECK 1. Ensure that the AC/DC input servi
Fixed Power DC Power Supply ReFlex Power™ 5-28 M380056-01 Rev J 5.6 CALIBRATION Calibration is not normally required after the FPDC is shipped. Ho
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-29 Table 5-5. Calibration Power Connector Pin Signal Connect To Type 1 +15 V DMM + Stub
Fixed Power DC Power Supply ReFlex Power™ 5-30 M380056-01 Rev J 5.6.4 CALIBRATION PROCEDURE Allow the supply 30 minutes to warm up and stabilize.
xvi M380056-01 Rev J Figure 6 9. RFP-D1016-021-XXXX DC Output Connector, Front Panel View and Wiring Diagram ... 6-31 Figure 6 10. RFP-D1065-5A1-
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-31 3. To change the output voltage issue a CAL[n]:NEG5 nn command. Note that a change
Fixed Power DC Power Supply ReFlex Power™ 5-32 M380056-01 Rev J 4. Make sure the ReFlex PowerTM Controller (RFPC) has the Power switch in the Off
ReFlex Power™ Fixed Power DC Power Supply M380056-01 Rev J 5-33 Table 5-6. Load Resistors Voltage Resistor Wattage +5VDC 0.5 Ohms 100 Watts -5VDC 1
Fixed Power DC Power Supply ReFlex Power™ 5-34 M380056-01 Rev J 5.7.5 OUTPUT VOLTAGE LINE PLUS LOAD REGULATION Table 5-8 lists the output voltages
M380056-01 Rev K 6-1 SECTION 6 DC POWER SUPPLIES 6.1 GENERAL DESCRIPTION The DC power supplies of the ReFlex Power™ system include models rated
DC Power Supplies ReFlex Power™ 6-2 M380056-01 Rev K ARCNET inter-module and Controller module communications. Conventional analog circuitry has b
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-3 • Software calibration • Auto-Configuration of system assets • Extensive triggering and
DC Power Supplies ReFlex Power™ 6-4 M380056-01 Rev K Figure 6-1. ReFlex Power™ DC Front Panel (16-20 single-width model shown)
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-5 Figure 6-2. ReFlex Power™ DC Front Panel (450-2 double-width model shown)
DC Power Supplies ReFlex Power™ 6-6 M380056-01 Rev K Figure 6-3. Typical Rear View (single-width model shown) 6.3 SPECIFICATIONS All specificati
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ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-7 6.3.1 PRODUCT MATRIX 6.3.2 OUTPUT CHARACTERISTICS VOLTAGE PROGRAMMING RANGE 0 to 102% of
DC Power Supplies ReFlex Power™ 6-8 M380056-01 Rev K VOLTAGE TEMPERATURE DRIFT 0.01% of full-scale/°C, maximum VOLTAGE STABILITY 0.05% of full-s
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-9 VOLTAGE RAMP TIME The time required for the output voltage to change from a specified initia
DC Power Supplies ReFlex Power™ 6-10 M380056-01 Rev K CURRENT LINE REGULATION RFP-D1016-021-XXXX, RFP-D1065-5A1-XXXX: 0.05% of full-scale for 10%
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-11 voltage. When the programmed value of the output voltage is less than 5% of full-scale, the
DC Power Supplies ReFlex Power™ 6-12 M380056-01 Rev K 6.3.5 GENERAL CHARACTERISTICS INPUT VOLTAGE RANGE With AC input: 85 to 264VAC for 330W, 33
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-13 ≤187.2VAC to ≥171.8VAC: linearly derated from 100% to 85% of rated power ≤171.8VAC to ≥153.
DC Power Supplies ReFlex Power™ 6-14 M380056-01 Rev K PARALLELING PERFORMANCE DEGRADATION Conforms to specifications of individual module. Program
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-15 6.3.7 COMMAND-SETS/DRIVERS COMMAND DESCRIPTION SCPI Standard 1999 command language, throug
DC Power Supplies ReFlex Power™ 6-16 M380056-01 Rev K heatsink temperature varies with ambient temperature and power dissipation resulting from th
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-17 6.3.10 REGULATORY AGENCY COMPLIANCE SAFETY COMPLIANCE European Low Voltage Directive, IEC
DC Power Supplies ReFlex Power™ 6-18 M380056-01 Rev K 6.4 INSTALLATION 6.4.1 INTRODUCTION The ReFlex Power™ DC power supply modules have been fu
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-19 CLEANING Because the module uses forced convection cooling, the air flow through the unit c
DC Power Supplies ReFlex Power™ 6-20 M380056-01 Rev K Figure 6-4. Module Installation (single-width module shown) 6.4.5 INPUT POWER REQUIREMENT
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-21 line and return per connection); the connector has six power pins plus ground. Balance in p
DC Power Supplies ReFlex Power™ 6-22 M380056-01 Rev K Table 6-1. Mainframe Input and Power Allocation Information INPUT SERVICE PHASES INPUT DESI
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-23 3.5mA, a second safety ground connection is required. It should be connected to the safety
DC Power Supplies ReFlex Power™ 6-24 M380056-01 Rev K 6.4.8 CONNECTORS The DC power supply modules have all user interface connectors located on
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-25 RFP-D1016-021-XXXX INTERFACE CONNECTOR The INTERFACE connector provides terminations for ex
DC Power Supplies ReFlex Power™ 6-26 M380056-01 Rev K • AMETEK P/N 5380443-01, Power Module 9ft. Unterminated Interface Cable Assembly. Use when
M380056-01 Rev J 1-1 SECTION 1 SYSTEM OVERVIEW 1.1 INTRODUCTION TO REFLEX POWERTM The ReFlex Power™ system is a high-density modular power system
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-27 RFP-D1065-5A1-XXXX INTERFACE PINOUT Figure 6-6. RFP-D1065-5A1-XXXX Interface Connector,
DC Power Supplies ReFlex Power™ 6-28 M380056-01 Rev K RFP-D2033-030-XXXX MATING CONNECTOR KIT HPDC-33V Mating Connector Kit - AMETEK Part No. 538
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-29 RFP-D2033-030-XXXX, INTERFACE CONNECTOR: External isolated digital and analog control inter
DC Power Supplies ReFlex Power™ 6-30 M380056-01 Rev K OPTIONAL INTERFACE CONNECTOR ACCESSORIES • AMETEK P/N 5380508-01, 9-pin Loop-back Connector
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-31 RFP-D2050-025-XXXX, RFP-D2050-020-XXXX INTERFACE CONNECTOR: External isolated digital and
DC Power Supplies ReFlex Power™ 6-32 M380056-01 Rev K OPTIONAL INTERFACE CONNECTOR ACCESSORIES • AMETEK P/N 5380508-01, 9-pin Loop-back Connector
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-33 RFP-D2120-8A3-XXXX, INTERFACE CONNECTOR: External isolated digital and analog control inte
DC Power Supplies ReFlex Power™ 6-34 M380056-01 Rev K OPTIONAL INTERFACE CONNECTOR ACCESSORIES • AMETEK P/N 5380508-01, 9-pin Loop-back Connector
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-35 Wire size: Maximum gauge 20 AWG (recommended) Maximum length10 meters (can be extended subj
DC Power Supplies ReFlex Power™ 6-36 M380056-01 Rev K DC OUTPUT CONNECTOR: The DC OUTPUT connector provides terminations for the output and remot
System Overview ReFlex Power™ 1-2 M380056-01 Rev J 1.1.1 OVERVIEW DESCRIPTION- SYSTEM LEVEL The ReFlex PowerTM system is comprised of a Mainframe,
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-37 Table 6-8. RFP-D1016-021-XXXX DC Output Connector Pinout PIN NAME FUNCTION SIGNAL LEVEL
DC Power Supplies ReFlex Power™ 6-38 M380056-01 Rev K Table 6-9. RFP-D1065-5A1-XXXX DC Output Connector Pinout PIN NAME FUNCTION SIGNAL LEVEL WI
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-39 RFP-D2033-030-XXXX DC OUTPUT CONNECTOR: Connector: Positronic Industries P/N CBC21WA4M1000Z
DC Power Supplies ReFlex Power™ 6-40 M380056-01 Rev K RFP-D2050-025-XXXX, RFP-D2050-020-XXXX DC OUTPUT CONNECTOR: Connector: Positronic Industries
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-41 RFP-D2120-8A3-XXXX DC OUTPUT CONNECTOR: Connector: Positronic Industries P/N CBC21WA4M1000Z
DC Power Supplies ReFlex Power™ 6-42 M380056-01 Rev K RFP-D2450-2A3-XXXX DC OUTPUT CONNECTOR: Connector: Positronic Industries P/N CBC21WA4M1000
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-43 REMOTE SENSE Remote sensing is used to compensate for the voltage drop that occurs across t
DC Power Supplies ReFlex Power™ 6-44 M380056-01 Rev K signal will open the sense / output isolation relays, and turn off the front-panel output i
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-45 WIRE VOLTAGE DROP For applications where regulation is important, the contribution of the l
DC Power Supplies ReFlex Power™ 6-46 M380056-01 Rev K Twisting the load wires provides an additional benefit in reducing the parasitic inductance
ReFlex Power™ System Overview M380056-01 Rev J 1-3 1.2 FEATURES This section provides a general description of the ReFlex PowerTM system’s features
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-47 6.5.2 CONTROLS AND INDICATORS Figure 6-17 shows the connectors and indicators of a typica
DC Power Supplies ReFlex Power™ 6-48 M380056-01 Rev K 6.5.3 MODES OF OPERATION The DC power supply modules are capable of operating in either sta
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-49 done automatically when the series group is set up through software. The series group is pr
DC Power Supplies ReFlex Power™ 6-50 M380056-01 Rev K VConstant-Voltage RegulationConstant-Current RegulationSetISet Output Current Output
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-51 6.5.4 LOAD CONNECTION CONFIGURATIONS The output of the DC power supply module is isolated
DC Power Supplies ReFlex Power™ 6-52 M380056-01 Rev K (-)(-)(-)(+)(+)(+)OutputSenseInputLoadPower SupplyTwisted-Pair Cable Twisted-Pair Cable(sh
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-53 CAUTION The outputs of paralleled modules must be wired in parallel at the front panel out
DC Power Supplies ReFlex Power™ 6-54 M380056-01 Rev K The series connected modules are programmed as a single, virtual channel with a voltage rati
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-55 (+)(-)(-)(-)(-)(-)(-)(-)(+)(+)(+)(+)(+)(+)OutputOutputOutputSenseSenseSenseInputLoadPower S
DC Power Supplies ReFlex Power™ 6-56 M380056-01 Rev K SERIES/PARALLEL CONFIGURATION The series output configuration could be combined with the par
System Overview ReFlex Power™ 1-4 M380056-01 Rev J Figure 1-1 shows a front view of the Mainframe with a module being inserted. Figure 1-2 shows a
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-57 Figure 6-22. Series/Parallel Output Configuration
DC Power Supplies ReFlex Power™ 6-58 M380056-01 Rev K 6.5.5 DEFAULT OPERATIONAL CONDITIONS POWER-ON CONDITIONS When an DC power supply module is
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-59 4. Configure the host controller for communications with the ReFlex Power™ Controller modu
DC Power Supplies ReFlex Power™ 6-60 M380056-01 Rev K 12. The DC power supply module should respond with its identification string. The default s
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-61 appropriately hardwired prior to issuing any of the paralleling SCPI commands. 3. Connect
DC Power Supplies ReFlex Power™ 6-62 M380056-01 Rev K 11. Turn off the output with the following command: *RST[n] SERIES CONFIGURATION OPERATION
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-63 8. Ensure that the actual values of the output parameters are within specifications of the
DC Power Supplies ReFlex Power™ 6-64 M380056-01 Rev K 1003,3,4,1005,5,6. The parameter, [1000+n], is the sum of 1000 and the slot number of the ma
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-65 MEAS[2000+n11]:VOLT? MEAS[2000+n11]:CURR? 13. Ensure that the readback values of the outpu
DC Power Supplies ReFlex Power™ 6-66 M380056-01 Rev K 6.6.2 RECOMMENDED CALIBRATION EQUIPMENT The recommended calibration equipment is listed in
ReFlex Power™ System Overview M380056-01 Rev J 1-5 Figure 1-3. Mainframe Exterior Rear 1.2.3 ACCESSORIES The ReFlex PowerTM system includes standa
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-67 Figure 6-23. Calibration Instrumentation Setup 6.6.4 OUTPUT VOLTAGE PARAMETER CALIBRATION
DC Power Supplies ReFlex Power™ 6-68 M380056-01 Rev K CAL[n]:OUTP:VOLT:COUNTS 14202 9. Measure the output voltage with the external voltmeter.
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-69 *RST[n] 6.6.5 OUTPUT CURRENT PARAMETER CALIBRATION The following procedure calibrates
DC Power Supplies ReFlex Power™ 6-70 M380056-01 Rev K (count = 32768*0.25256 = 8276): CAL[n]:OUTP:CURR:COUNTS 8276 10. Measure the output cu
ReFlex Power™ DC Power Supplies M380056-01 Rev K 6-71 18. Turn off the output: *RST[n]
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M580056-01 Rev J 7-1 SECTION 7 ACTIVE LOADS 7.1 GENERAL DESCRIPTION The High Power Active Load (HPAL) and the Low Power Active Load (LPAL) of the
Active Loads ReFlex Power™ 7-2 M380056-01 Rev J control, and ArcNet® inter-module and Controller module communications. Conventional analog circu
ReFlex Power™ Active Loads M380056-01 Rev J 7-3 • Web server • Optional Isolated Remote Analog Control, uses 16 bit digital interface • Integr
Active Loads ReFlex Power™ 7-4 M380056-01 Rev J Figure 7-1. LPAL (375W) Front Panel
System Overview ReFlex Power™ 1-6 M380056-01 Rev J 1.3 SPECIFICATIONS The flexible and reconfigurable characteristics of the ReFlex PowerTM system
ReFlex Power™ Active Loads M380056-01 Rev J 7-5 Figure 7-2. HPAL (750W) Front Panel
Active Loads ReFlex Power™ 7-6 M380056-01 Rev J Figure 7-3. Typical Active Load Rear Panel
ReFlex Power™ Active Loads M380056-01 Rev J 7-7 7.2.4 PROGRAMMABLE FUNCTIONS The Active Load module can be programmed several variables: • Inpu
Active Loads ReFlex Power™ 7-8 M380056-01 Rev J 7.3.2 INPUT CHARACTERISTICS EXTERNAL DC INPUT The modules are rated as follows: LPAL: 375W/500V/
ReFlex Power™ Active Loads M380056-01 Rev J 7-9 7.3.3 SUPERVISORY CHARACTERISTICS SUPERVISORY PROTECTION Exceeding a supervisory threshold will
Active Loads ReFlex Power™ 7-10 M380056-01 Rev J 7.3.4 GENERAL CHARACTERISTICS AC INPUT POWER RANGE 103.5-253VAC with AC input; 270VDC, nominal;
ReFlex Power™ Active Loads M380056-01 Rev J 7-11 7.3.5 COMMAND SETS/DRIVERS COMMAND DESCRIPTION SCPI Standard 1999 command language, through Con
Active Loads ReFlex Power™ 7-12 M380056-01 Rev J 7.3.7 ENVIRONMENTAL CHARACTERISTICS OPERATING TEMPERATURE Standard: 0 to 50 °C Extended Range Opt
ReFlex Power™ Active Loads M380056-01 Rev J 7-13 7.4 INSTALLATION The ReFlex Power™ Active Load modules have been fully calibrated and tested pr
Active Loads ReFlex Power™ 7-14 M380056-01 Rev J 7.4.3 INSTALLATION CAUTION The module contains ESD sensitive circuitry. Follow appropriate h
ReFlex Power™ System Overview M380056-01 Rev J 1-7 1.3.2 GENERAL CHARACTERISTICS- OVERVIEW The Mainframe facilitates quick installation and remova
ReFlex Power™ Active Loads M380056-01 Rev J 7-15 Figure 7-4. Module Installation (example shows 1-U-wide power supply) 7.4.4 INPUT POWER REQUI
Active Loads ReFlex Power™ 7-16 M380056-01 Rev J 7.4.7 CONNECTORS MAINFRAME AC/DC INPUTS The Active Load modules will operate from a wide variety
ReFlex Power™ Active Loads M380056-01 Rev J 7-17 Figure 7-5. Slot Numbering Assignment, Empty Mainframe Front View
Active Loads ReFlex Power™ 7-18 M380056-01 Rev J Table 7-1. Input Power Allocation Input Service Phases Input Designation Input Connector Pin Inp
ReFlex Power™ Active Loads M380056-01 Rev J 7-19 the AC input leakage current could exceed 3.5mA, a second safety ground connection is required.
Active Loads ReFlex Power™ 7-20 M380056-01 Rev J INTERFACE PINOUT Figure 7-6. Interface Connector, Front Panel View, and Wiring Diagram Table 7
ReFlex Power™ Active Loads M380056-01 Rev J 7-21 DC INPUT PINOUT Figure 7-7. DC Input Connector and Wiring Diagram Table 7-3. DC Input Pin
Active Loads ReFlex Power™ 7-22 M380056-01 Rev J If the remote sense leads are not connected, the Active Load modules will continue to operate but
ReFlex Power™ Active Loads M380056-01 Rev J 7-23 Table 7-4. Wire Data AWG Copper Area, cm2 Resistance, Ω/m at 20°C Resistance, Ω/m at 100°C Cu
Active Loads ReFlex Power™ 7-24 M380056-01 Rev J The voltage drop (per output or return lead) could be calculated using the following equation: V
System Overview ReFlex Power™ 1-8 M380056-01 Rev J Refer to the sections for the specific assets (DC, AC, loads) for more detailed information. SERI
ReFlex Power™ Active Loads M380056-01 Rev J 7-25 7.5.1 CONTROLS AND INDICATORS Figure 7-8. Active Load Front Panel (375W shown) 1 – Input: Gree
Active Loads ReFlex Power™ 7-26 M380056-01 Rev J 7.5.2 MODES OF OPERATION CONSTANT CURRENT In this mode, the Active Load maintains the input curr
ReFlex Power™ Active Loads M380056-01 Rev J 7-27 Figure 7-9. Standalone Input Configuration 7.5.4 DEFAULT OPERATIONAL CONDITIONS POWER-ON CONDI
Active Loads ReFlex Power™ 7-28 M380056-01 Rev J 7.5.5 INITIAL FUNCTIONAL TESTS POWER-ON CHECK 1. Ensure that the AC/DC input service is disconn
ReFlex Power™ Active Loads M380056-01 Rev J 7-29 10. The ReFlex Power™ Controller module should respond with its identification string. 11. Ver
Active Loads ReFlex Power™ 7-30 M380056-01 Rev J 7.6 CALIBRATION 7.6.1 SCOPE Procedures are provided in the following sections for calibration o
ReFlex Power™ Active Loads M380056-01 Rev J 7-31 7.6.3 CALIBRATION SETUP Calibration must be performed under controlled environmental conditions
Active Loads ReFlex Power™ 7-32 M380056-01 Rev J 7.6.4 CALPOT CALIBRATION FOR HIGH POWER ACTIVE LOAD (HPAL) The HPAL calpot calibration is done
ReFlex Power™ Active Loads M380056-01 Rev J 7-33 1. Connect the shunt between the DC power supply and the active load. Connect the DC current me
Active Loads ReFlex Power™ 7-34 M380056-01 Rev J 7.6.5 HPAL HIGH RANGE CURRENT CALIBRATION This procedure calibrates the input current for curren
ReFlex Power™ System Overview M380056-01 Rev J 1-9 CONTROL INTERFACE The ReFlex Power™ system utilizes a multi-processor command and control archite
ReFlex Power™ Active Loads M380056-01 Rev J 7-35 12. Wait for the DC current to stabilize. After the current reading is stabilized, enter the cur
Active Loads ReFlex Power™ 7-36 M380056-01 Rev J 7.6.6 HPAL LOW RANGE CURRENT CALIBRATION The following procedure calibrates the input current fo
ReFlex Power™ Active Loads M380056-01 Rev J 7-37 7.6.7 HPAL LOW RANGE CURRENT CALIBRATION This procedure calibrates the input current for the cu
Active Loads ReFlex Power™ 7-38 M380056-01 Rev J 7.6.8 HPAL VOLTAGE CALIBRATION – PART I OF V This procedure calibrates the voltage for voltage g
ReFlex Power™ Active Loads M380056-01 Rev J 7-39 7.6.9 HPAL VOLTAGE CALIBRATION – PART II OF V This procedure calibrates the voltage for voltage
Active Loads ReFlex Power™ 7-40 M380056-01 Rev J 7.6.10 HPAL VOLTAGE CALIBRATION – PART III OF V The following procedure calibrates the voltage f
ReFlex Power™ Active Loads M380056-01 Rev J 7-41 7.6.11 HPAL VOLTAGE CALIBRATION – PART IV OF V This procedure calibrates the voltage for voltag
Active Loads ReFlex Power™ 7-42 M380056-01 Rev J 7.6.12 HPAL VOLTAGE CALIBRATION – PART V OF V This procedure calibrates the voltage for voltage
ReFlex Power™ Active Loads M380056-01 Rev J 7-43 7.6.13 HPAL RESISTANCE CALIBRATION – PART I OF V The following procedure calibrates the resista
Active Loads ReFlex Power™ 7-44 M380056-01 Rev J 7. After DC voltage stabilizes. Enter the voltage using SCPI commands CAL<n>:INP:VOLT
System Overview ReFlex Power™ 1-10 M380056-01 Rev J 1.3.4 INPUT CHARACTERISTICS - OVERVIEW The ReFlex Power™ system has enhanced input power capabi
ReFlex Power™ Active Loads M380056-01 Rev J 7-45 7.6.14 HPAL RESISTANCE CALIBRATION – PART II OF V This procedure calibrates the resistance for
Active Loads ReFlex Power™ 7-46 M380056-01 Rev J 7. After DC voltage stabilizes. Enter the voltage using SCPI commands CAL<n>:INP:VOLT
ReFlex Power™ Active Loads M380056-01 Rev J 7-47 7.6.15 HPAL RESISTANCE CALIBRATION – PART III OF V The following procedure calibrates the resi
Active Loads ReFlex Power™ 7-48 M380056-01 Rev J CAL<n>:INP:VOLT 2 <value-2> 8. After DC current stabilizes, enter the current:
ReFlex Power™ Active Loads M380056-01 Rev J 7-49 7.6.16 HPAL RESISTANCE CALIBRATION – PART IV OF V This procedure calibrates the resistance for
Active Loads ReFlex Power™ 7-50 M380056-01 Rev J 7. After DC voltage stabilizes, enter the voltage: CAL<n>:INP:VOLT 2 <value-2> 8
ReFlex Power™ Active Loads M380056-01 Rev J 7-51 7.6.17 HPAL RESISTANCE CALIBRATION – PART V OF V This procedure calibrates the resistance for v
Active Loads ReFlex Power™ 7-52 M380056-01 Rev J 7. After DC voltage. Enter the voltage using SCPI commands CAL<n>:INP:VOLT 2 <value
ReFlex Power™ Active Loads M380056-01 Rev J 7-53 7.6.18 HPAL IAI BOARD CALIBRATION This procedure calibrates the IAI Board for High Power Active
Active Loads ReFlex Power™ 7-54 M380056-01 Rev J 8. Set the second power supply (Power supply connected to IAI Board) voltage to 10.00 volts. 9
ReFlex Power™ System Overview M380056-01 Rev J 1-11 Hold-Up Time 10ms, with dropout of AC input at full output power except RFP-D2050-025-xxxx: 8ms
ReFlex Power™ Active Loads M380056-01 Rev J 7-55 7.6.19 LPAL CALPOT CALIBRATION This procedure calibrates cal-pot. This calibration is done wit
Active Loads ReFlex Power™ 7-56 M380056-01 Rev J 7. This will use the current value entered to adjust the Gain Pot. The adjustment will be calcul
ReFlex Power™ Active Loads M380056-01 Rev J 7-57 7.6.20 CURRENT CALIBRATION FOR LPAL This procedure calibrates the current for the high range.
Active Loads ReFlex Power™ 7-58 M380056-01 Rev J 7. Set the DAC count to 50.0% of its full range CAL<n>:INP:CURR:COUNTS 32000 8. Wait
ReFlex Power™ Active Loads M380056-01 Rev J 7-59 14. Send calibration command to make sure that all the DAC counts and current values are valid
Active Loads ReFlex Power™ 7-60 M380056-01 Rev J 7.6.21 LPAL LOW RANGE CURRENT CALIBRATION This procedure calibrates the current for the low rang
ReFlex Power™ Active Loads M380056-01 Rev J 7-61 7. Send the calibration command to calculate the gain and offset of the low range current calib
Active Loads ReFlex Power™ 7-62 M380056-01 Rev J 7.6.22 LPAL VOLTAGE CALIBRATION – PART I OF V The following procedure calibrates the voltage for
ReFlex Power™ Active Loads M380056-01 Rev J 7-63 7. If there is no error returned at the system error query command then save the calibration re
Active Loads ReFlex Power™ 7-64 M380056-01 Rev J 7.6.23 LPAL VOLTAGE CALIBRATION – PART II OF V This procedure calibrates the voltage for voltage
System Overview ReFlex Power™ 1-12 M380056-01 Rev J Calibration Temperature Range: Performance specifications are valid following calibration at 25
ReFlex Power™ Active Loads M380056-01 Rev J 7-65 7. If there is no error returned at the system error query command then save the calibration re
Active Loads ReFlex Power™ 7-66 M380056-01 Rev J 7.6.24 LPAL VOLTAGE CALIBRATION – PART III OF V This procedure calibrates the voltage for voltag
ReFlex Power™ Active Loads M380056-01 Rev J 7-67 7. If there is no error returned at the system error query command then save the calibration re
Active Loads ReFlex Power™ 7-68 M380056-01 Rev J 7.6.25 LPAL VOLTAGE CALIBRATION – PART IV OF V This procedure calibrates the voltage for voltage
ReFlex Power™ Active Loads M380056-01 Rev J 7-69 SYST:ERR? 7. If there is no error returned at the system error query command then save the c
Active Loads ReFlex Power™ 7-70 M380056-01 Rev J 7.6.26 LPAL VOLTAGE CALIBRATION – PART V OF V This procedure calibrates the voltage for voltage
ReFlex Power™ Active Loads M380056-01 Rev J 7-71 SYST:ERR? 7. If there is no error returned at the system error query command then save the
Active Loads ReFlex Power™ 7-72 M380056-01 Rev J 7.6.27 LPAL RESISTANCE CALIBRATION – PART I OF V The following procedure calibrates the resistan
ReFlex Power™ Active Loads M380056-01 Rev J 7-73 7. After DC voltage stabilizes. Enter the voltage using SCPI commands CAL<n>:INP:VOLT
Active Loads ReFlex Power™ 7-74 M380056-01 Rev J 7.6.28 LPAL RESISTANCE CALIBRATION – PART II OF V This procedure calibrates the resistance for v
ReFlex Power™ System Overview M380056-01 Rev J 1-13 • User host controller with suitable communications interface • Communications software 1.5
ReFlex Power™ Active Loads M380056-01 Rev J 7-75 7. After DC voltage stabilizes. Enter the voltage using SCPI commands CAL<n>:INP:VOLT
Active Loads ReFlex Power™ 7-76 M380056-01 Rev J 7.6.29 LPAL RESISTANCE CALIBRATION – PART III OF V This procedure calibrates the resistance for
ReFlex Power™ Active Loads M380056-01 Rev J 7-77 7. After DC voltage stabilizes. Enter the voltage using SCPI commands CAL<n>:INP:VOLT
Active Loads ReFlex Power™ 7-78 M380056-01 Rev J 7.6.30 LPAL RESISTANCE CALIBRATION – PART IV OF V This procedure calibrates the resistance for v
ReFlex Power™ Active Loads M380056-01 Rev J 7-79 7. After DC voltage stabilizes. Enter the voltage using SCPI commands CAL<n>:INP:VOLT
Active Loads ReFlex Power™ 7-80 M380056-01 Rev J 7.6.31 LPAL RESISTANCE CALIBRATION PART V OF V This procedure calibrates the resistance for volt
ReFlex Power™ Active Loads M380056-01 Rev J 7-81 7. After DC voltage stabilizes, enter the voltage: CAL<n>:INP:VOLT 2 <value-2>
Active Loads ReFlex Power™ 7-82 M380056-01 Rev J 7.6.32 LPAL IAI BOARD CALIBRATION This procedure calibrates the IAI Board. This procedure requ
ReFlex Power™ Active Loads M380056-01 Rev J 7-83 8. Set the second power voltage to 10.0 Volts. 9. After the DMM voltage stabilizes enter th
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M380056-01 Rev J 2-1 SECTION 2 MAINFRAME 2.1 GENERAL DESCRIPTION The ReFlex Power™ system is comprised of modular power and controller assets house
Mainframe ReFlex Power™ 2-2 M380056-01 Rev J adaptable. The modules feature the capability to be connected in configurations such as series, paralle
ReFlex Power™ Mainframe M380056-01 Rev J 2-3 2.2.2 ACCESSORIES LIST AND OPTIONS LIST The ReFlex Power™ Mainframe has the following standard access
Mainframe ReFlex Power™ 2-4 M380056-01 Rev J 2.3.1 PRODUCT MATRIX Model Number of Slots Maximum Aggregate Output Power Enclosure Mainframe 12 6,
ReFlex Power™ Mainframe M380056-01 Rev J 2-5 INPUT FREQUENCY RANGE 47-63Hz with 85-264VAC input; 380-420Hz with 85-132VAC input MAXIMUM OUTPUT AGGR
Mainframe ReFlex Power™ 2-6 M380056-01 Rev J COOLING PROVISIONS No Mainframe cooling fans; all fans are incorporated into the individual power modul
ReFlex Power™ Mainframe M380056-01 Rev J 2-7 2.3.6 REGULATORY AGENCY COMPLIANCE SAFETY COMPLIANCE European Low Voltage Directive, IEC 61010-1:90+A
Mainframe ReFlex Power™ 2-8 M380056-01 Rev J 2.4 INSTALLATION The ReFlex Power™ Mainframe has been fully tested prior to shipment; it is ready for
ReFlex Power™ Mainframe M380056-01 Rev J 2-9 2.4.3 MAINFRAME INSTALLATION DRAWINGS Refer to Figure 2-1 for profile and Figure 2-2 for top view
Mainframe ReFlex Power™ 2-10 M380056-01 Rev J 2.4.4 MODULE INSTALLATION CAUTION Modules and the Mainframe contain ESD sensitive circuitry. Follow
ReFlex Power™ Mainframe M380056-01 Rev J 2-11 Figure 2-3. Module Installation 2.4.5 INPUT POWER REQUIREMENTS The input configuration accepts a wi
Mainframe ReFlex Power™ 2-12 M380056-01 Rev J parallel. The load that would be applied to a particular AC/DC input line is dependent on the locatio
ReFlex Power™ Mainframe M380056-01 Rev J 2-13 Figure 2-5. Slot Numbering Assignment, Empty Mainfram Front View With single-phase service, all inpu
Mainframe ReFlex Power™ 2-14 M380056-01 Rev J Table 2-1. Input Power Allocation Input Service Phases Input Designation Input Connector Pin Input Se
i About AMETEK AMETEK Programmable Power, Inc., a Division of AMETEK, Inc., is a global leader in the design and manufacture of precision, programm
ReFlex Power™ Mainframe M380056-01 Rev J 2-15 2.4.6 AC/DC INPUT OVERCURRENT PROTECTION The Mainframe distributes the input power through backplane
Mainframe ReFlex Power™ 2-16 M380056-01 Rev J Table 2-2. Module Backplane Slot Connections Module Model Width Number of Slots Occupied Slot Supplyi
ReFlex Power™ Mainframe M380056-01 Rev J 2-17 Table 2-3. Mainframe Input Current Demand Input Service Input Service Connection Maximum Input Servic
Mainframe ReFlex Power™ 2-18 M380056-01 Rev J 2.4.8 AC/DC INPUT SAFETY GROUND CONNECTION The AC/DC input connector provides a safety ground termina
ReFlex Power™ Mainframe M380056-01 Rev J 2-19 J2, DIGITAL CTRL IN: connector used in multi-Mainframe systems that provides digital control signals
Mainframe ReFlex Power™ 2-20 M380056-01 Rev J Item AMETEK Part No. Description Qty Manufacturer Part No. Manufacturer Suggested Source(s) 1 855-
ReFlex Power™ Mainframe M380056-01 Rev J 2-21 output connectors that provide digital and analog control signals, respectively, to a following Mainf
Mainframe ReFlex Power™ 2-22 M380056-01 Rev J Table 2-6. J1 DIGITAL CTRL OUT Connector Pinout Pin Name Function Signal Level 1 ADR_MAI
ReFlex Power™ Mainframe M380056-01 Rev J 2-23 J2 DIGITAL CONTROL IN Refer to Figure 2-9 for a view of the DIGITAL CTRL IN, J2, connector. The pinou
Mainframe ReFlex Power™ 2-24 M380056-01 Rev J Table 2-7. J2 DIGITAL CTRL IN Connector Pinout Pin Name Function Signal Level 1 A0 Input: chassis a
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ReFlex Power™ Mainframe M380056-01 Rev J 2-25 J3 ANALOG CONTROL OUT Refer to Figure 2-10 for a view of the ANALOG CTRL OUT, J3, connector. The pino
Mainframe ReFlex Power™ 2-26 M380056-01 Rev J J4 ANALOG CONTROL IN Refer to Figure 2-11 for a view of the ANALOG CTRL IN, J4, connector. The pinout
ReFlex Power™ Mainframe M380056-01 Rev J 2-27 Table 2-10. Mainframe Connector Terminations Mainframe J1, J2, J3, J4, and J5 Connector Wire Size/Len
Mainframe ReFlex Power™ 2-28 M380056-01 Rev J Table 2-11. Wire Data AWG Copper Area, cm2 Resistance, Ω/m at 20 °C Resistance, Ω/m at 100 °C Curre
M380056-01 Rev J 3-1 SECTION 3 CONTROLLER 3.1 GENERAL DESCRIPTION The ReFlex Power™ system Controller (RFPC) provides a single command and status c
ReFlex Power™ Controller ReFlex Power™ 3-2 M380056-01 Rev J design features integral, variable-speed fans so that the cooling performance scales wit
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-3 3.2.2 GENERAL FEATURES • Small size, light weight • Digital control • Universal in
ReFlex Power™ Controller ReFlex Power™ 3-4 M380056-01 Rev J Figure 3-1. ReFlex Power™ Controller Front The power switch on the Controller front pa
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-5 Figure 3-2. ReFlex Power™ Controller Rear CAUTION Do not “hot swap” – permanent dama
ReFlex Power™ Controller ReFlex Power™ 3-6 M380056-01 Rev J 3.3 SPECIFICATIONS Performance specifications are valid at 25 °C, +/- 5 °C. Power On Se
iii Important Safety Instructions Before applying power to the system, verify that your product is configured properly for your particular applicat
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-7 3.3.4 COMMAND SETS/DRIVERS DIRECT COMMUNICATION LANGUAGE SCPI DRIVERS IVI DC Class Comp
ReFlex Power™ Controller ReFlex Power™ 3-8 M380056-01 Rev J 3.3.6 ENVIRONMENTAL CHARACTERISTICS OPERATING TEMPERATURE Standard: 0 to 50 °C Extended
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-9 3.3.7 REGULATORY AGENCY COMPLIANCE SAFETY COMPLIANCE European Low Voltage Directive, IE
ReFlex Power™ Controller ReFlex Power™ 3-10 M380056-01 Rev J 3.4 INSTALLATION This section provides instructions for inspection, installation and i
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-11 CAUTION Inadequate airflow and excessive ambient air temperature could result in overh
ReFlex Power™ Controller ReFlex Power™ 3-12 M380056-01 Rev J Figure 3-3. Module Installation 3.4.5 INPUT POWER REQUIREMENTS The RFPC module will o
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-13 3.4.7 AC/DC INPUT DISCONNECT DEVICE The ReFlex Power™ system does not have any means t
ReFlex Power™ Controller ReFlex Power™ 3-14 M380056-01 Rev J 3.4.8 CONNECTORS The ReFlex Power™ Controller module has all user interface connectors
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-15 INTERFACE CONNECTOR Provides user access to programmable digital I/O and ReFlex Power™
ReFlex Power™ Controller ReFlex Power™ 3-16 M380056-01 Rev J Pin Type Signal Function Signal Level 5 A DIG2-I/ O Input/Output: programmable digit
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ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-17 LAN CONNECTOR Primary user interface to the ReFlex Power™ system via Ethernet connectio
ReFlex Power™ Controller ReFlex Power™ 3-18 M380056-01 Rev J 3.5.1 CONTROLS AND INDICATORS Figure 3-5. RFPC Front Panel Controls, Indicators, and
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-19 6 Power 0n/Off switch: rocker switch for RFPC internal power to the modules. 7 Lan –
ReFlex Power™ Controller ReFlex Power™ 3-20 M380056-01 Rev J Figure 3-6. Slot Numbering Assignment, Empty Mainframe Front View All modules use onl
ReFlex Power™ ReFlex Power™ Controller M380056-01 Rev J 3-21 COMMUNICATION/CONFIGURATION CHECK After all modules have completed their Power-On Self
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M380056-01 Rev K 4-1 SECTION 4 AC POWER SUPPLY (ACPS) 4.1 GENERAL DESCRIPTION The ReFlex Power™ system includes an AC power supply rated at 875VA
AC Power Supplies ReFlex Power™ 4-2 M380056-01 Rev K technology. An FPGA-based implementation uses VHDL digital feedback control systems, embedde
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-3 • User programmable supervisories for current and voltage • ACPS IVI drivers • 2 models wi
AC Power Supplies ReFlex Power™ 4-4 M380056-01 Rev K Figure 4-1. ACPS Module Front Panel (875VA)
v Product Family: ReFlex Power™ Warranty Period: One Year WARRANTY TERMS AMETEK Programmable Power, Inc. (“AMETEK”), provides this written warranty
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-5 Figure 4-2. Rear View of Typical AC Supply Module 4.3 SPECIFICATIONS All specifications are
AC Power Supplies ReFlex Power™ 4-6 M380056-01 Rev K 4.3.1 PRODUCT MATRIX Model Voltage Full-Scale Rating Current Full-Scale Rating Power Rating
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-7 4.3.2 OUTPUT CHARACTERISTICS Voltage Programming Range 0 to 102% of full scale Voltage Digit
AC Power Supplies ReFlex Power™ 4-8 M380056-01 Rev K Voltage Line Transient Less than 1% of full scale maximum excursion decaying to steady-state
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-9 Frequency Programming Range: 1.2 kHz option: 45 through 1200 Hz 5.0 kHz option: 45 through 5
AC Power Supplies ReFlex Power™ 4-10 M380056-01 Rev K Current Resolution 6mA Active Power Range (version 3.0 and up only) 0 to 1000 Watt Active P
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-11 Crest Factor Range (version 3.0 and up only) 0 to 5 Crest Factor Accuracy +/- .15, @ > 10
AC Power Supplies ReFlex Power™ 4-12 M380056-01 Rev K Input Current Power factor corrected single-phase AC input; unipolar DC input; sinusoidal c
ReFlex Power™ AC Power Supplies M380056-01 Rev K 4-13 Output Relays Isolation relays are optionally provided on the main and auxiliary outputs. 4.
AC Power Supplies ReFlex Power™ 4-14 M380056-01 Rev K 4.3.9 ENVIRONMENTAL CHARACTERISTICS Operating Temperature Standard: 0 to 50 °C Extended R
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