DC 전원공급기 (KC인증)

제품특징
  • 전압 및 전류 제어
  • 500kW 및 1,000kW 모델, 10MW까지 확장 가능
  • 12비트 정밀 제어
  • SCPI 명령을 사용한 원격 프로그래밍
  • 프로그래밍 가능한 보호 기능
  • 외부 비상 정지를 위한 안전 인터록
  • LabVIEW 드라이버
  • 최대 50°C 주변 온도에서 연속 최대 전력 작동
  • 37핀 아날로그-디지털 사용자 I/O 포트
  • 응축 제어를 위한 통합 솔레노이드
  • 고성능 마스터-슬레이빙
  • 로컬, 원격 및 리드리스 전압 감지
  • RS232 표준 및 LAN TCP/IP 이더넷 통신 옵션 사용 가능
  • RIS 패널 소프트웨어 플랫폼 포함
  • 미국에서 제작

                                                  

                          ⇧⇧⇧전원공급 시스템 홈페이지 바로가기 (클릭)⇧⇧⇧



고전압 및 고전류 출력을 지원하는 DC 전원 공급 장치

Magna-Power Electronics의 ML 시리즈는 전력 밀도와 성능에서 새로운 표준을 세우기 위해 처음부터 엔지니어링되었습니다. 고급 수냉 기술을 활용하여 500 kW 및 1,000 kW ML 시리즈 모델은 Magna-Power의 대체 공냉 모델에 비해 전력 밀도를 거의 4배 향상시켰습니다. 마스터-슬레이브 병렬 구성으로 연결할 수 있는 능력 덕분에, ML 시리즈는 10 MW를 초과하는 전력 수준에 도달할 수 있습니다. Magna-Power의 시그니처인 신뢰할 수 있는 전류 공급 전력 처리 토폴로지와 혁신적인 고조파 중립화 기술을 기반으로 제작된 ML 시리즈 전원 공급 장치는 낮은 고조파 왜곡으로 신뢰할 수 있고 효율적인 전력 변환을 제공합니다.


Current-Fed Topology : 강력한 전력 변환 기술

모든 MagnaDC 전원 공급 장치는 Current-Fed 토폴로지에서 고주파 IGBT 기반 전력 처리를 사용합니다.
이 토폴로지는 향상된 제어 및 시스템 보호를 위해 기존의 Voltage-Fed 토폴로지에 단계를 추가하여 고장  상태에서도 전원 공급 장치가 자체 보호되도록 보장합니다. 이 토폴로지의 자체 보호 특성으로 인해 빠르게 상승하는 전류 스파이크와 자기 코어 포화 가능성이 사라집니다.

강력한 토폴로지 외에도 MagnaDC 전원 공급 장치의 주요 성능 특성은 다음과 같습니다.

  • - 고정밀 전압 및 전류 프로그래밍 정확도
  • - 동급최고의 라인 및 부하 조절 성능
  • - 돌입 제한 회로가 있는  3상 AC 입력 전력 계수
  • - 컴퓨터 및 사용자 I/O가 전원 공급 장치 출력으로부터 절연 처리

For more details, read: Current-Fed Power Processing—Ride Through Robustness

표준 안전 기능

MagnaDC  전원 공급 장치는 다음과 같은 광범위한 진단 기능을 갖추고 있습니다.

  • - AC 위상 손실
  • - 과온 상태 알림
  • - 과전압 트립(프로그래밍 가능)
  • - 과전류 트립(프로그래밍 가능)
  • - 퓨즈
  • - 과도한 프로그램 라인 전압
  • - 인터락

대기 또는 진단 고장 시 AC 주전원은 내장된 AC 컨택터에 의해 기계적으로 분리되므로 원하는 경우에만 전력을 처리할 수 있습니다.

마지막으로, 전용 +5V 인터락 입력 핀과 모든 모델에 +5V reference 를 포함하면 외부 비상 정지 시스템을 외부 접점을 사용하여 쉽게 제어할 수 있습니다.

소트프웨어 및 드라이버

모든 MagnaDC 프로그램 가능 DC 전원 공급 장치는 National Instruments LabVIEW 및 IVI 드라이버와 함께 표준 제공됩니다. 또한 지원 SCPI 명령어는 모든 인터페이스를 통해 ASCII 명령어을 사용하여 사용하기 쉬운 API를 제공합니다.

자체 소프트웨어를 개발할 수 있을 뿐만 아니라 Magna-Power의 원격 인터페이스 소프트웨어도 모든 전원 공급 장치에 포함되어 있습니다. 이 소프트웨어는 컴퓨터 제어로 Magna-Power Electronics 전원 공급 장치를 작동하는 쉽고 직관적인 방법을 사용자에게 제공합니다. 원격 인터페이스 소프트웨어에는 다음을 포함하여 6개의 다른 기능이 있습니다.

  • Virtual Control Panel. 데스크탑의 가상 전면 패널을 사용하여 컴퓨터에서 전원 공급 장치를 원격으로 제어합니다.
  • Command Panel. 소프트웨어가 전원 공급 장치로 보내는 문자열의 로그와 함께 사용 가능한 모든 명령을 탐색합니다. (소프트웨어 개발용으로 사용)
  • Register Panel. 한 화면에서 모든 전원 공급 장치 레지스터의 상태를 빠르게 가져옵니다.
  • Calibration Panel. 내부 디지털 전위차계를 재보정합니다.
  • Firmware Panel. 전원 공급 장치의 펌웨어 업그레이드.
  • Modulation Panel. 무연 원격 감지를 위한 비선형 프로파일 또는 자동 보정을 모사합니다.

원격 인터페이스 소프트웨어는 USB 및 RS485 변환기와 함께 RS232, LXI TCP/IP 이더넷, IEEE-488을 지원합니다.

XR Series Software + Drivers Image


고성능 마스터-슬레이브 동작

모든 MagnaDC 전원 공급 장치에는 마스터 슬레이브 기능이 있습니다.

MagnaDC 마스터 슬레이브 전략은 마스터에서 슬레이브 장치로 직접 게이트 드라이브 신호를 제공하여 장치가 병렬 또는 직렬로 추가될 때 성능 저하를 방지하는 데 도움이 됩니다. 이 기술은 시스템에 대한 하나의 제어 루프를 보장하고 장거리에서 아날로그 제어 참조를 보낼 때 일반적으로 발견되는 노이즈 민감성을 제거합니다.

UID47(Universal Interface Device 47) 액세서리는 구성에 따라 거의 동일한 전류 또는 전압 공유를 가능하게 하는 Magna-Power DC 전원 공급 장치의 마스터-슬레이브 병렬 또는 직렬 구성을 용이하게 합니다.

아날로그 제어를 위한 외부 사용자 I/O

표준으로 포함된 후면 절연 37핀 I/O 커넥터를 사용하여 외부 신호를 사용하여 MagnaDC 전원 공급 장치를 제어하고 모니터링할 수 있습니다. 전압, 전류, 과전압 및 과전류 설정값은 0-10V 아날로그 신호를 적용하여 설정됩니다. 각 진단 조건에는 지정된 핀이 제공되며 High일 때 +5V를 읽습니다. 기준 +5V 및 +10V 신호가 제공되어 외부 전압 신호가 필요하지 않고 Dry Contact를 사용할 수 있습니다.

또한 전원 공급 장치는 정상적으로 닫혀 있는 외부 인터록 기능이 있어 활성화되면 전원 공급 장치를 다른 비상 정지 장비와 연결할 수 있습니다. 이 모든 핀은 출력 단자에서 절연되어 있으며 기본적으로 접지를 기준으로 하므로 추가 절연 장비나 옵션이 필요하지 않습니다.

전원 공급 장치에서 사용 가능한 I/O 목록

  • - 4 analog inputs (0-10V)
  • - 2 analog outputs (0-10V)
  • - 5 digital inputs (5V)
  • - 15 digital outputs (5V)
  • - +2.5V, +5V and +10V reference signals

High Slew Rate Output(+HS) 이 장착되면 높은 대역폭 작동이 빠른 상승 시간과 함께 활성화되어 MagnaDC  전원 공급 장치가 HIL(Hardware-in-the-Loop)에 대한 요구 사항을 해결할 수 있습니다.

XR Series External User I/O Image


제품사양표

다음 사양은 예고 없이 변경될 수 있습니다. 달리 언급되지 않는 한, 모든 사양은 제품의 최대 정격에서 측정되었습니다.

AC Input Specifications
SpecificationValue
Input Voltages Available

AC Input voltage specified at time of order and cannot be modified
440 Vac, 3-phase
480 Vac, 3-phase
Input Voltage Tolerance
± 10%
Input Voltage Frequency
50-60 Hz
Power Factor

Measured at max power
> 0.96
Input Isolation

Measured line-to-ground
± 2000 Vdc
AC Circuit Protection
UL/CSA listed circuit breaker
DC Output Specifications
SpecificationValue
Voltage Ripple
Model specific. Refer to models table.
Line Regulation
Voltage control: ± 0.04% of rated voltage
Current control: ± 0.03% of rated current
Load Regulation
Voltage control: ± 0.02% of rated voltage
Current control: ± 0.06% of rated current
Stability

FWHM, measured at 25ºC over 8 hrs after 30 min warm-up
± 0.10%
Temperature Coefficient
Voltage control: 0.04%/°C of rated voltage
Current control: 0.06%/ºC of rated current
Efficiency
Up to 94%. Model specific. Refer to Models table.
Slew Rate

Standard Models
< 170 ms, output voltage change from 0 to 63%
< 200 ms, output current change from 0 to 63%
Slew Rate

Models with High Slew Rate (+HS) Option
< 5 ms, output voltage change from 0 to 63%
< 10 ms, output current change from 0 to 63%
Output Isolation

Measured output-to-ground, models rated ≤ 1000 Vdc
± 1500 Vdc
Output Isolation

Measured output-to-ground, models rated > 1000 Vdc or models with High Isolation Output (+ISO) option
± 6000 Vdc
Programming Specifications
SpecificationValue
Resolution, Digital Programming

Front panel or communication interfaces
12-bit, 0.025% of rated voltage, current or power
Accuracy, Programming

Output value to set point value
Voltage: ± 0.075% of rated voltage
Current: ± 0.075% of rated current
Accuracy, Measurement

Output value to returned value
Voltage: ± 0.20% of rated voltage
Current: ± 0.20% of rated current
Trip Settings Range
Over Voltage: 10% to 110% of rated voltage
Over Current: 10% to 110% of rated current
Computer Command Protocol
Standard Commands for Programmable Instruments (SCPI) (ASCII-based commands)
Remote Sense Limits

Wired; Available on Models Rated ≤ 1000 Vdc
3% maximum voltage drop from output to load
Analog I/O

4 analog programming inputs, 2 analog measurement outputs, Reference signal provided
Analog programming inputs: 0-10 V
Analog programming impedance: 10 kΩ
Analog measurement outputs: 0-10V, 5 mA capacity
Analog measurement impedance: 100 Ω
Analog reference signal: 10 V, 5 mA capacity, 1 Ω
Digital I/O

5 digital control inputs, 15 digital monitoring outputs, Reference signal provided
Digital control inputs: 5 V
Digital control inputs impedance: 10 kΩ
Digital monitoring outputs: 5 V, 5 mA capacity
Digital reference signal: 5 V, 25 mA capacity
Interace Specifications
SpecificationValue
Front Panel Programming
Two machined aluminum 10-turn knobs and keypad
Communication Interfaces

Standard
RS232: D-sub DB-9, Female
Communication Interfaces

Optional
LXI TCP/IP Ethernet (+LXI): RJ-45
External User I/O Port

Standard
37-pin D-sub DB-7, female
Referenced to ground; isolated from the DC output
See User Manual for pin layout
Physical Specifications
SpecificationValue
Size & Weight

500 kW models
Ships as two components: 500 kW Power Supply
76.4” H x 48” W x 31.5” D (194.1 x 121.9 x 80.0 cm)
2500 lbs (1134 kg) 500 kW Harmonic Neutralizer
76.4” H x 24” W x 31.5” D (194.1 x 61.0 x 80.0 cm)
1500 lbs (680 kg)
Size & Weight

1000 kW Models
Ships as two components: 1000 kW Power Supply
76.4” H x 72” W x 31.5” D (194.1 x 182.9 x 80.0 cm)
3750 lbs (1701 kg) 1000 kW Harmonic Neutralizer
76.4” H x 48” W x 31.5” D (194.1 x 121.9 x 80.0 cm)
2850 lbs (1293 kg)
Environmental Specifications
SpecificationValue
Ambient Operating Temperature
0°C to 50°C
Storage Temperature
-40°C to +85°C
Humidity
Relative humidity up to 95% non-condensing
Air Flow

To ensure even heat distribution for water cooling system
Bottom air inlet, top exhaust
Water Coolant Supply

Requirement for supplied coolant
Maximum inlet temperature: 25ºC
Maximum inlet pressure: 80 psi
Inlet and outlet fittings provided: 1” Female NPT
Materials in coolant path: Copper pipe, PEX tubing, brass solenoid & fittings
Minimum Coolant Flow Rate

500 kW models
15 GPM
Minimum Coolant Flow Rate

1000 kW models
24 GPM
Regulatory Specifications
SpecificationValue
EMC
Complies with 2014/30/EU (EMC Directive)
CISPR 22 / EN 55022 Class A
Safety
Complies with EN61010-1 and 2014/35/EU (Low Voltage Directive)
CE Mark
Yes

모델 주문 가이드

주문과 생산을 위해 ML 시리즈 모델은 다음 다이어그램에서 정의한 대로 몇 가지 주요 특성에 따라 고유하게 정의됩니다.

ML Series Ordering Guide

ML 시리즈 모델

                                                               ML 시리즈에는 500kW와 1000kW의 전력 수준에 걸쳐 38개의 다른 모델이 있습니다. 적절한 모델을 결정하려면:

  1.                                                        가장 왼쪽 열에서 원하는 최대 전압(Vdc)을 선택하세요.
  2.                                                        원하는 최대 전압이 포함된 같은 행에서 원하는 최대 전류(Adc)를 선택하세요.
  3.                                                        모델 주문 가이드에 따라 모델 번호를 구성하세요.

 500 kW1000 kW  
Max Voltage (Vdc)Max Current (Adc)Ripple (mVrms)Efficiency
1005000N/A10090%
1254000N/A10090%
1603125N/A12091%
2002500500012591%
2502000400013091%
3001666333316091%
3751333266617092%
4001250250018093%
5001000200022093%
600833166630093%
800625125040094%
1000500100050094%
125040080050094%
160031262560094%
200025050080094%
250020040090094%
3000166333100094%
4000125250110094%
5000100200150094%
600083166200094%

High Isolation Output
+ISO
250Vdc ~ 1000Vdc 정격 모델에서 사용할 수 있는 +ISO 옵션은 출력 절연을 크게 높여주며, 애플리케이션에서 표준 ±1000Vdc 출력 절연 정격을 넘어 플로팅 또는 연결 장치를 직렬로 연결해야 할 때 사용됩니다.

High Slew Rate Output
+HS
표준 출력 단계를 낮은 커패시턴스 필름 및/또는 높은 RMS 전류 정격 알루미늄 전해 커패시터 중 하나로 대체하는 하드웨어 및 제어 수정. 이 옵션은 더 빠른 출력 상승 및 하강 시간과 함께 더 높은 대역폭을 제공합니다.

IEEE-488 GPIB
+GPIB
IEEE-488 일반 목적 인터페이스 버스(GPIB) 통신 인터페이스는 전체 명령 지원 및 다른 GPIB 장치와의 호환성을 제공합니다.

Integrated Blocking Diode
+BD
MagnaDC 프로그래밍식 DC 전원 공급 장치의 양극 출력 단자에 내부 방열판 보호 다이오드가 장착되어 제품의 출력 전압 정격을 크게 초과하는 역전압으로부터 제품 출력을 보호합니다.

LXI TCP/IP Ethernet
+LXI
기존 컴퓨터 네트워크를 사용하는 소켓 통신을 위한 LXI Class C 표준에 따라 인증된 TCP/IP 이더넷 통신 프로토콜 및 단일 RJ-45 인터페이스를 제공합니다.
Photovoltaic Power Profile Emulation
PPPE
Magna-Power 프로그래밍 가능 DC 전원 공급 장치를 위한 이 소프트웨어 인터페이스는 EN50530 모델링을 활용하여 전원 공급 장치가 태양 전지 어레이를 에뮬레이트하고 시간에 따라 특성을 변화시키기 위해 온도 및 햇빛의 함수로 비선형 태양 전지 어레이 프로파일을 생성 및 전송합니다.

Photovoltaic Power Profile Emulation License
PPPE-1
이미 PPPE를 구매한 사용자를 위한 추가 전원 공급 장치용 소프트웨어 라이센스입니다. 무제한 시트가 포함된 제품 일련 번호로 라이센스가 부여됩니다.
RS485 Converter
RS485
산업용 RS232에서 주소 지정 가능한 RS485 변환기. 제품의 RS232 포트에 꽂습니다.
UID46: Universal Interface Device 46
UID46
부하 공유를 위한 마스터-슬레이브 인터페이스 장치. 인터페이스 장치와 (2) D-Sub 37 케이블이 포함됩니다.
UID47: Universal Interface Device 47
UID47
부하 공유를 위한 마스터-슬레이브 인터페이스 장치. 인터페이스 장치와 브레이디드 실드가 있는 (2) D-Sub 37핀 케이블이 포함됩니다.
USB Edgeport Converter
USB
산업용 플러그 앤 플레이 USB to RS232 변환기. 어댑터는 제품의 RS232 포트에 연결됩니다.

[MPE] Solar Emulation and Inverter Testing

Solar Emulation and Inverter TestingOverviewSolar arrays produce a DC output with non-linear characteristics varying as a function of temperature and irradiance. Devices directly connected to solar arrays, such as solar inverters, account for these variations to both characterize the array’s output and maximize the amount power converted. Solar array output characteristics vary significantly from a standard DC power supply, requiring additional controls to be implemented for a DC power supply to satisfy these testing requirements.Solar Array CharacteristicsThe voltage and current characteristics of solar arrays fluctuate with temperature and irradiance of the panels; loosely defined by irradiance affecting output current and temperature affecting output voltage. Solar array connected devices, such as solar inverters, must maximize the solar array’s power output by locating the maximum operating point. In addition, devices equipped with maximum power point tracking must also adjust the operating point to account for fluctuations in temperature and sunlight.Why Magna-Power ElectronicsSolar Array Emulation or Standard Power Supply: Magna-Power Electronics Photovoltaic Power Profile Emulation software enables any Magna-Power Electronics power supply to emulate the non-linear characteristics of a solar array and vary these characteristics as a function of time. Any Magna-Power Electronics power supply can be toggled back and forth between standard power supply operation, with CV and CC modes, or solar emulation operation. This dual operation enables maximum utilization of the test equipment for a wide variety of applications.Accurate Programming and Measurement: Magna-Power Electronics programming and measurement accuracy is among the highest in the industry. Engineers can rely on measurements directly from the power supply for calibration, meaning less instrumentation and complication in test environments.Harmonic Neutralization: Magna-Power Electronics has pioneered harmonic neutralization technology, enabling central inverter testing into multi-megawatts with as high as 48-pulse waveforms produced by the power supply.High Slew Rate Option (+HS): The high slew rate option, available for all Magna-Power Electronics products, provides reduced output capacitance and use of film capacitor technology instead of standard aluminum electrolytic. For solar inverter testing, the high slew rate option is highly recommended, as the reduced output capacitance means less interaction with inverter ripple components, while affording the power supply with a higher bandwidth.Solar Array Emulation SoftwareMagna-Power Electronics Photovoltaic Power Profile Emulation (PPPE) Software generates non-linear voltage/current (V/I) profiles based on the EN50530 standard, allowing variation of these V/I characteristics as a function of temperature and sunlight. These profiles can be sequentially sent to the power supply, allowing variations in solar parameters to change the power supply output characteristics over user-defined intervals. In addition, an interpolation function allows automated profile generation between curves, for smooth transitions from one temperature and irradiance condition to another. This functionality can be used, for example, to transition from cloudy winter conditions to summer sunny conditions. Alternatively, a profile may be stored internally to the power supply, for use when disconnected from a computer. In addition, a command export is available to leverage PPPE’s ease of solar profile generation from an automated environment such as LabVIEW or Visual Studio.Figure 1. Main Screen of Magna-Power Electronics Photovoltaic Power Profile Emulation SoftwareFigure 2. Photovoltaic Power Profile Emulation software's Live Output Viewer screenThree different methods are provided for generating profiles:- Reference Parameters: If a reference solar cell and array characteristics are known, profiles can be generated using solar cell parameter values: Tref, Irref, Vmp, Imp, Voc, Isc, β, and α. A drop-down is provided to select polysilicon (cSi) or thin film technology, to autopopulate the β and α values in accordance with the EN50530 standard. After populating the reference values, generating a new curve is as simple as specifying a temperature and irradiance value for each new curve.- 4-Parameter: The simplest profile generation method, profiles can be generated using just the maximum power point, max voltage (open-circuit), and max current (short-circuit): Vmp, Isc, Voc, and Isc. - Up to 50-manual points: A manual curve can be used with PPPE software, either by manually entering voltage and current points, or importing values from a comma separated value (.csv) file. A maximum of 50-point can be entered, however, the power supply will perform a piecewise linear approximation between these points during operation, ensuring high resolution.A live output viewer provides a full window simultaneously displaying voltage, current, and power output and tracks these parameters over time. This window provides a clear overview of the connected load’s ability to track changes in temperature and irradiance over time. Data logging functionality is provided to save output voltage, current, and power values as well as the defined output characteristics over time.Expansive and Modular Product OfferingMagna-Power Electronics offers the broadest range of standard programmable DC power supplies with solar emulation capability. Magna-Power Electronics rack-mount products are offered as low as 2 kW and floor-standing systems as large as 4,000 kW, with voltages as high as 4,000 Vdc (floating) and currents as high as 24,000 Adc. The entire product line features identical controls and identical programming options. Units come standard with front panel step-less rotary control, RS-232 computer interface, and isolated 37-pin analog/digital external control. Options such as LXI TCP/IP Ethernet (+LXI), IEEE 488.2 GPIB (+GPIB), and USB Edgeport (External) (+USB) are available as additional programming interfaces. All programming interfaces support the basic SCPI command set and are compatible with the Photovoltaic Power Profile Emulation software. In addition, Remote Interface Software for computer-based front panel control and IVI drivers are included, for ease of programming remote. As power requirements grow, so too can the power solar array emulator. With the modular building blocks offered by Magna-Power Electronics power supplies, units can be added in master/slave parallel or series at any time. For maximum flexibility, units may be used individually, in smaller master/slave systems, or all together in one large system assuming all the module are like models.For central inverter testing, MT Series products are offered in 100 kW, 150 kW, and 250 kW module sizes. The independent IGBT-based MT Series units are among the largest standard switch-mode power supplies on the market, minimizing the number of switching components when comparing to smaller module sizes. Scaling in the multi-megawatts is accomplished using the UID47 device, which provides master/slave control: one power supply takes command over the remaining units, for true system operation.All Magna-Power Electronics power supplies can be configured for master/slave parallel or series operation with other equivalently rated power supplies. Plug & Play master/slave operation is provided by the UID47 device, which interconnects control signals between the power supplies.For burn-in applications, central inverters demand high voltages and high currents, but often not simultaneously. Therefore, having a power supplies capable of being reconfigured in different arrays of series and parallel modules is advantageous and, furthermore, offers the most cost-effective solution. For example, consider distinct inverter burn-in requirements for 2000 Vdc at 500 Adc and also 500 Vdc at 2000 Adc. Rather than specifying a power supply capable of both 2000 Vdc and 2000 Adc, a much smaller and less expensive solution can be specified using Magna-Power Electronics modular configuration, changing the power supplies from series to parallel operation for the distinct test requirements.Reconfiguring the power supply’s output stage from series to parallel is accomplished through an external contactor or low-cost throw switch. Reconfiguration should not take place while the outputs are energized, instead, the power supply should be at zero volts and amperes. In addition, UID47 control wires must also be changed, as the slave unit(s) receive different signals depending on series or parallel operation. Magna-Power Electronics application engineers are available to aid with best practices for this process.High Slew Rate Option (+HS)The high slew rate option solves several limitations inherent in switching power supply design. Rapid voltage transitions require internal electronics to supply the energy to charge and discharge output capacitors. Peak currents internal to the power supply define slew rate; utilizing less capacitance enables voltage transitions in shorter time periods. Additionally, less capacitance reduces requirements for discharge demands during open circuit conditions.The standard output stage Magna-Power Electronics power supplies has been designed to provide the lowest possible output ripple voltage within the constraints of available components, size, and cost. Part of the output stage consists of a bank of aluminum electrolytic capacitors which has the desired electrical properties to provide this function. These components require bleed resistors to discharge any voltage when the power supply has no load and is disabled. While the presence of these components and the resulting performance are normally industry accepted, there are applications where lower output capacitance and lower loss bleed resistors are extremely desirable and higher ripple voltage is acceptable. To meet this need, a high-slew rate option is available which has an output stage consisting of low capacitance film and aluminum electrolytic capacitors.For photovoltaic emulation applications, higher bandwidth and lower output capacitance enable improved performance with higher speed, maximum power tracker algorithms. Maximum power tracker circuitry deviates the operating point of photovoltaic arrays to determine maximum power output. Slow responding emulation sources can present a problem when the speed of the algorithm exceeds that of the source. Furthermore, with lower output capacitance, changes in the operating point and transients, caused by shorting the solar inverter input, produce lower unwanted input currents.High Isolation Output Option (+ISO)When tying units together in series, it’s important to note the product’s output isolation rating, which varies depending on the product series and model, as per the product’s specifications. The product’s isolation should not be exceeded by a system of series configured power supplies. The following table provides a quick reference for available output isolation ratings:Table 1. Output isolation rating for models with the High Isolation Output (+ISO) option Standard Output Isolation for Models Rated 1000 Vdc and Below, No OptionOutput Isolation for Model Rated 250-1000 Vdc With +ISO OptionStandard Output Isolation for Models Rated Above 1000 Vdc, No OptionXR Series1000 VdcN/AN/ATS Series1000 Vdc±(2000 Vdc + Vo/2) ±(2000 Vdc + Vo/2) MS Series1000 Vdc±(2000 Vdc + Vo/2) ±(2000 Vdc + Vo/2) MT Series1000 Vdc4000 Vdc4000 VdcNote: Vo is the product's output voltage ratingThe standard isolation for XR Series, TS Series, and MS Series models A high isolation option (+ISO) is available for TS Series and MS Series products 1000 Vdc and below, enabling output isolation up to 2000 Vdc + Vo/2 fully floating, where Vo is the product’s output voltage rating. MT Series products 400 Vdc and above are available with 4000 Vdc output isolation.Central Inverter Energy RecyclingDevelopment and production megawatt-scale central inverters place unique requirements on testing equipment and power installations. The AC output of the inverter can be fed back into the input of DC supply, allowing power recycling. The solar inverter output is commonly recycled into the input of the DC power supply, allowing the power system to be rated to supply only the overall losses; a small fraction of the total power conversion. With this type of configuration, power harmonics play a critical role on testing performance and reliability.Input current harmonics are a by-product of nearly all power supplies. Power can only be delivered to the load if the frequency and phase of the voltage and current match. For a three phase power supply using a three phase input rectifier, the input current has a theoretical spectrum of 6n±1 where n is an integer incrementing from 1; this is known as a 6-pulse waveform. This means that a power supply with a three phase input rectifier will produce input currents at 1, 5, 7, 11, 13, 17, 19 ... times the fundamental frequency. The theoretical magnitude decays as the reciprocal of the harmonic component. The 5th and 7th harmonic components have magnitudes of 20% and 14% of the fundamental component, respectively.Harmonics currents in power systems can find unusual paths and can cause problems if the magnitude is significant and there are loads sensitive to harmonic frequencies. For example, lighting ballasts have series connected capacitors and inductors which can be excited by harmonic currents. IEEE has introduced standard, IEEE 519, which defines recommended limits. Implementing this standard requires knowledge of the power system and other loads producing harmonics. Unfortunately, the standard can allow the same power supply to possibly exceed limits in one application and not in another. In the same respect, a power supply may or may not cause a harmonic related problem with or without meeting IEEE 519. The best solution to minimize the risk of a harmonic problem is to eliminate the harmonic current at the source.Magna-Power Electronics harmonic neutralizers suppress families of harmonics by increasing the number of power phases. It can be used when multiple power supplies are used in series or parallel and are equally loaded. Harmonic neutralizers can produce 12-pulse, 18-pulse, 24-pulse or 48-pulse waveforms which have harmonic current components on the order of 12n±1, 18n±1, 24n±1, or 48n±1, respectively. Figure 1 shows the theoretical difference between 6-pulse and 12-pulse waveforms; 18-pulse waveforms are similar, but with more steps. Figure 2 shows the resulting spectral differences. HN Series harmonic neutralizers are protected with appropriate sized circuit breaker.All 250 kW MT Series products come with an integrated 12-pulse harmonic neutralizer, meaning 250 kW sources will produce 12-pulse AC waveforms as standard. To reach higher power levels, multiple 250 kW MT Series units are tied together in master/slave parallel and/or series using the UID47 device. For central inverters in the multi-megawatts, Magna-Power Electronics offers a 500 kW 24-pulse harmonic neutralizer, HN500, or 48-pulse harmonic neutralizer, HN1000, to meet even the most demanding harmonic requirements. When this option is supplied with a large MT Series system, one HN500 device is used with every two 250 kW power supplies or one HN1000 is used with every four 250 kW power supplies. The incoming AC power is supplied to the HN500/HN1000’s primary for a single point of entry. Cabling from the HN500/HN1000’s secondary side to the power supply’s AC input is provided by Magna-Power Electronics.SummaryMagna-Power Electronics offers a broad range of solutions for solar inverter testing requirements. The Photovoltaic Power Profile Emulation software provides non-linear V/I curve generation in accordance with the EN50530 standard, data logging, as well as sequential emulation of curves through a Magna-Power Electronics power supply. Options such as the High Slew Rate Output (+HS) and High Isolation Output (+ISO) deliver output upgrades for specific solar inverter testing requirements. Finally, Magna-Power Electronics novel harmonic neutralizing technology enables clean AC waveforms, even while utilizing switched-mode power supply technology into the multi-megawatts.

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