PET NA FEATURES DESCRIPTION DATA SHEET

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PET750-12-050NA Best-in-class, 80 PLUS certified Platinum efficiency Wide input voltage range: 100-240 V AC FEATURES AC input with power factor correction Always-On 15 W standby output (5V/3A) Hot-plug capable Parallel operation with active current sharing Full digital controls for improved performance High density design: 20 W/in3 Small form factor: 50.5 x 40.0 x 300 mm I 2 C communication interface for control, programming and monitoring with PMBus protocol Overtemperature, output overvoltage and overcurrent protection One DC OK with fault signalling status LED DESCRIPTION The PET750-12-050NA is a 750 watts, 1U form factor power supply module with Active PFC (Power Factor Correction) and PMBus (Power Management Bus). It converts standard AC mains power into a main output of 12 VDC for powering intermediate bus architectures (IBA) in high performance and reliability servers, routers, and network switches. The PET750-12-050NA meets international safety standards and displays the CE-Mark for the European Low Voltage Directive (LVD). BCD.00360_AA_April-1-2014 1 www.power-one.com

1 ORDERING INFORMATION PET 750-12 - 050 N A Product Family PET Power Level 750 W Dash V1 Output 12 V Dash Width 50 mm Airflow N: Normal R: Reversed Input A: AC 2 OVERVIEW The PET750-12-050NA AC-DC power supply is a mainly DSP controlled, highly efficient front-end. It incorporates resonance-soft-switching technology and interleaved power trains to reduce component stresses, providing increased system reliability and very high efficiency. With a wide input operating voltage range and no derating of output power with input voltage and temperature, the PET750-12-050NA maximizes power availability in demanding server, switch, and router applications. The front-end is fan cooled and ideally suited for server integration with a matching airflow path. The PFC stage is controlled using a state-of-the-art integrated control-ic to guarantee best efficiency and unity power factor over a wide operating range. The DC-DC stage uses soft switching resonant techniques in conjunction with synchronous rectification. An active OR-ing device on the output ensures no reverse load current and renders the supply ideally suited for operation in redundant power systems. The always-on standby output with voltage level (5V) provides power to external power distribution and management controllers. Its protection with an active OR-ing device provides for maximum reliability. Status information is provided with front-panel LED. In addition, the power supply can be controlled and the fan speed set via the I 2 C bus. It allows full monitoring of the supply, including input and output voltage, current, power, and inside temperatures. Cooling is managed by a fan controlled by the DSP controller. The fan speed is adjusted automatically depending on the actual power demand and supply temperature and can be overridden through the I 2 C bus. 3 INPUT FEATURES 3.1 GENERAL PARAMETER DESCRIPTION / CONDITION MIN NOM MAX UNIT Vi nom Nominal Input Voltage 100 240 240 VAC Vi Input Voltage Ranges Normal operating (Vi min to Vi max) 90 264 VAC Ii max Max Input Current 4 9 Arms Ii p Inrush Current 1 35@115VAC Vi min to Vi max, 90, TNTC=25 C 70@240VAC Fi Input Frequency 47 63 Hz Ap 3.2 INPUT POWER FACTOR CORRECTION (ACTIVE PFC) The power factor at 100% of rated load shall be 0.95 at nominal input voltage and full load. 3.3 AC LINE TRANSIENT SPECIFICATION AC line transient conditions are characterized as sag and surge conditions. Sag conditions (also referred to as brownout conditions) will be defined as the AC line voltage dropping below nominal voltage. Surge conditions will be defined as the AC line voltage rising above nominal voltage. The power supply shall meet the regulation requirements under the following AC line sage and surge conditions. 1 The charging current for X capacitors is not considered as in-rush current. PET750-12-050NA 2 www.power-one.com

DURATION SAG Table 1: AC Line Sag Transient Performance OPERATING AC VOLTAGE LINE FREQUENCY LOAD PERFORMANCE CRITERI Continuous 10% Nominal AC Input ranges 50/60 Hz 100% No loss of function or performance 0-1 AC cycle 100% Nominal AC Input ranges 50/60 Hz 70% No loss of function or performance > 1 AC cycle > 10% Nominal AC Input ranges 50/60 Hz 100% Loss of function Acceptable Table 2: AC Line Surge Transient Performance DURATION SURGE OPERATING AC VOLTAGE LINE FREQUENCY PERFORMANCE CRITERI Continuous 10% Nominal AC Input ranges 50/60 Hz No loss of function or performance 0 - ½ AC cycle 30% Mid-point of Nominal AC Voltage 50/60 Hz No loss of function or performance 3.4 EFFICIENCY The power efficiency shall meet 80PLUS platinum level standard, tested at 230VAC Input. FAN power is not included into total power consumption. 4 OUTPUT FEATURES 4.1 OUTPUT POWER / CURRENTS Table 3: Load Range VOLTAGE MINIMUM LOAD MAXIMUM CONTINUOUS LOAD +12V 0A 62A +5VSB 0A 3A 4.2 VOLTAGE REGULATION, RIPPLE AND NOISE Table 4: Regulation, ripple and noise OUTPUT VOLTAGE +12V +5VSB Load Reg. ± 5% ± 5% Line Reg. ± 1% ± 1% Ripple & Noise 120mV 60mV Ripple and noise shall be measured using the following methods: a) Measurements made differentially to eliminate common-mode noise b) Ground lead length of oscilloscope probe shall be 0.25 inch. c) Measurements made where the cable connectors attach to the load. d) Outputs bypassed at the point of measurement with a parallel combination of 10uF tantalum capacitor in parallel with 0.1uF ceramic capacitors. e) Oscilloscope bandwidth of 0 Hz to 20MHz. f) Measurements measured at locations where remote sense wires are connected. g) Regulation tolerance shall include temperature change, warm up drift and dynamic load 4.3 CAPACITIVE LOADING The power supply shall be stable and meet all requirements in the following table, except dynamic loading requirements. BCD.00360_AA_April-1-2014 3 www.power-one.com

Table 5: Capacitive Loading Conditions OUTPUT MIN MAX UNITS +12V 10 11,000 uf +5VSB 1 350 uf 4.4 DYNAMIC LOADING The output voltages shall remain within the limits specified in Table-Regulation, ripple and noise for the step loading and within the limits specified in Table-Transient Load Requirement for the capacitive loading. The load transient repetition rate shall be tested between 50Hz and 5kHz at duty cycle ranging from 10%-90%. The load transient repetition rate is only a test specification. The Δ step load may occur anywhere within the MIN load to the MAX load shown in Table-Load Range. Table 6: Transient Load Requirements OUTPUT ΔSTEP LOAD SIZE LOAD SLEW RATE CAPACITIVE LOAD +12V 50% of Max. Load 0.5 A/uS 2200 uf +5VSB 50% of Max. Load 0.5 A/uS 1uF 4.5 OVERSHOOT AT TURN-ON/TURN-OFF Any output overshoot at turn on shall be less than 10% of the nominal output value. Any overshoot shall recover to be within regulation requirements in less than 10ms. 4.6 TIMING REQUIREMENTS ITEM DESCRIPTION MIN MAX UNITS Tvout_rise Output Voltage Timing Output voltage rise time from each main output 20 ms Output voltage rise time for the 5Vsb out put 25 ms Turn On/Off Timing Tsb_on-delay Delay from AC being applied to +5VSB being within regulation. 1500 ms Tac_on-delay Delay from AC being applied to all output voltages being within regulation. 2500 ms Tvout_holdup Time all output voltage stay within regulation after loss of AC tested at 60% of maximum load. 17 ms Tpwok_holdup Delay from loss of AC deassertion of PW_OK tested at 60% of maximum load. 16 ms Tpson_on_delay Delay from PS_ON# active to output voltage within regulation limits. 5 400 ms Tpson_pwok Delay from PS_ON# deactive to PW_OK being deasserted. 50 ms Tpwok_on Delay from output voltage within regulation limits to PW_OK asserted at turn on. 100 500 ms Tpwok_off Tpwok_low Delay from PW_OK deasserted to output voltage dropping out of regulation limits, tested at 60% of maximum load. Duration of PW_OK being in the deasserted state during an off/on cycle using AC or the PS_ON# signal. 1 ms 100 ms Tsb_vout Delay from +5VSB being in regulation to O/Ps being in regulation at AC turn on. 50 1000 ms PET750-12-050NA 4 www.power-one.com

Figure 1: Turn On/Off Timing 5 PROTECTION CIRCUITS Protection circuits inside the power supply shall cause only the power supply s main outputs to shutdown. If the power supply latches off due to a protection circuit tripping, an AC cycle OFF for 15 sec and a PSON# cycle HIGH for 1 sec must be able to restart the power supply. 5.1 OVER CURRENT PROTECTION (OCP) The power supply shall have current limit to prevent +12V outputs from exceeding the values shown in Table-Over Current Protection. The power supply shall latch off if the current exceeds the limit. Table 7: Over Current Protection VOLTAGE MINIMUM MAXIMUM SHUTDOWN MODE +12V 68A 93A Latch Off 5.2 OVER VOLTAGE PROTECTION (OVP) The power supply is protected against over voltage due to an internal regulator failure. When an over voltage condition is detected, all DC outputs are disabled (except the +5 VSB). The fault must be removed to restore the DC outputs. The limits are given in the following table. Table 8: Over Voltage Protection VOLTAGE MINIMUM MAXIMUM SHUTDOWN MODE +12V +13.3V +14.5V Latch Off 5.3 SHORT CIRCUIT PROTECTION The power supply shall shut down in a latch off mode when the +12V output voltage is short circuit. The power supply shall shut down in auto recovery mode when the +5VSB output voltage is short circuit. 5.4 NO LOAD OPERATION No damage or hazardous condition should occur with all the DC output connectors disconnected from the load. The power supply may latch into the shutdown state. 5.5 OVER TEMPERATURE PROTECTION (OTP) The power supply will shut down when an over temperature condition occurs; no damage shall be caused. BCD.00360_AA_April-1-2014 5 www.power-one.com

6 SIGNALING AND CONTROL 6.1 ELECTRICAL CHARACTERISTICS PARAMETER DESCRIPTION / CONDITION MIN NOM MAX UNIT Signal type PW_OK=High PW_OK=Low PW_OK TTL Characteristics +5VDC TTL Compatible output signal Power OK Power Not OK Logical low voltage Isink=4mA 0 0.4 V Logical high voltage Isource=200uA 2.4 3.3 5.25 V PW_OK rise and fall time - 100 us Signal type (Active Low) PS_ON#=Low PS_ON#=Open or High PS_ON# TTL Signal Characteristics Accepts an open collector/drain input from the system. Power ON Power OFF Logic level low power supply ON 0 1.0 V Logic level high power supply OFF 2.0 5.25 V Source current Vpson=low - 4 ma Signal Type (Active Low) SMB_Alert#=High SMB_Alert#=Low SMB_ALERT# Signal Characteristics +5VDC TTL Compatible output signal OK Alert to System Logic level low voltage Isink=4 ma 0 0.4 V Logic level high voltage Isource=50uA 2.0 3.3 5.25 V Sink current SMB_Alert#=low - 4 ma Source current SMB_Alert#=high 50 ua SMB_Alert# rise and fall time 100 us Signal Type Operating Frequency SCL and SDA Signal Characteristics TTL Compatible 100KHz Data Clock Input Low Voltage, (Vil) 0 0.8 V Data Clock Input High Voltage (Vih) 2.1 VDD V Data Clock Output Low Voltage (Vol) 0.4 V Input Leakage (Ileak) ±5 ua Current Through Pull-Up Resistor Or Current Source (Ipullup) 100 350 ua Nominal Bus Voltage (VDD) 2.7 5 V Note: For proper I 2 C communication, system designer must take account of all I 2 C devices connected to I 2 C bus and calculate appropriate pull-up resistors value that satisfy with above rating. 6.2 PG SIGNAL (PW_OK) The power supply shall provide TTL compatible PW_OK signal to the system. Low pass filter (104 capacitor is recommended) shall be added into the PW_OK signal to suppress the high frequency noise to keep the high level absolutely. However, this low pass filter shall be used in PSU or motherboard PW_OK circuit. Therefore, supplier must be subject to add this low pass filter in the PW_OK input circuit of motherboard if it cannot be added in PSU circuit due to the re-layout difficulty. 6.3 PS_ON# SIGNAL PS_ON# signal is required to remotely turn on/off the power supply module / PDB Combo. PS_ON# is an active low signal that turns on the +12V power rail and other DC to DC converters on the PDB. When this signal is not pulled low by the system, or left open, all the outputs (except for 5VSB) shall be turned off. Refer to Figure 1 On/Off Timing for timing diagram. PET750-12-050NA 6 www.power-one.com

Figure 2: PS_ON# Signal Characteristics 6.4 SMB_ALERT# SIGNAL This signal indicates that the power supply is experiencing a problem that the user should investigate. This shall be asserted due to Critical events or Warning events and that power supply is operating in an environment exceeding the specified limits. 6.5 SCL AND SDA SIGNAL PMBus device uses System Management Bus (SMBus) Version 2.0, for transport layer, which is a two-wire communication protocol based on I2C. Both SCL and SDL lines are bi-directional, connected to a positive supply voltage through a pull-up resistor or a current source. 7 PMBUS 7.1 Command Summary Refer to SPAINWN-01G Communication Manual. Below table shows PMBus address setting. PARAMETER Table 9: Device address locations DEFINITION/DESCRIPTION PDB addressa1/a0 0/0 0/1 1/0 1/1 PSU PMBUS Device B0h B2h B4h B6h Note: 1. Address Set 0 =Pin Connects to GND 2. Address Set 1 =Pin through resistor 10kΩ pulled up to 3.3V or leave the pin open 7.2 LINEAR FORMAT Most of data exchanges with power supply are done with Linear Format. Linear Format is a two byte value with 5bit s two s complement exponent and 11bit two s complement mantissa. The relation between Y, N and the real world value is: Where, as described above: X is a real world value BCD.00360_AA_April-1-2014 7 www.power-one.com

Y is a 11 bit, two s complement integer; and N is a 5 bit, two s complement integer. 7.3 VOUT FORMAT Vout Format is a two steps reading process which involve with reading a VOUT_MODE (Command 0x20) byte and a Vout_Command word as shown below: The Voltage, in volts, is calculated from the equation: Where: Voltage is the parameter of interest in volts; V is a 16bit signed binary integer; and N is a 5bit two s complement binary integer. 7.4 MFR INFORMATION Table 10: MFR Meanings COMMAND CODE COMMAND NAME MEANING 99h MFR_ID Power-One 9Ah MFR_MODEL PET750-12-050NA 9Bh MFR_SERIAL vvv 9Eh MFR_REVSION xxzzzzzzzzvvvuuuuu A0h MFR_VIN_MIN 100VAC A1h MFR_VIN_MAX 240VAC A7h MFR_POUT_MAX 750W 8 LED INDICATORS There will be a LED on each power module to indicate power status Table 11: LED Color and Power Status POWER SUPPLY STATUS Normal State Standby (AC In, Only +5VSB output) Power Fail Fan Fail Note: Power will send a gentle alarm to indicate its readiness when switched on. COLOR Green Blinking Green Yellow Blinking Yellow PET750-12-050NA 8 www.power-one.com

9 ELECTROMAGNETIC COMPATIBILITY Table 12 EMC Requirements PARAMETER DESCRIPTION / CONDITION CRITERION Electromagnetic Interference FCC CFR Title 47 Part 15, Sub Part B, EN55022/EN55024 Conducted B Class Radiated B Class Harmonics IEC61000-3-2 D Flicker IEC61000-3-3 ESD Susceptibility EN-61000-4-2, ± 8KV by Air, ± 4KV by Contact B Radiated Susceptibility 80MHz~1000MHz(3V/m(rms) Amplitude 80% AM 1KHz A EFT/Burst EN61000-4-4, 5KHz, AC: 1KV, B Surge Voltage EN61000-4-5, Line-to-Line: 1KV, Line-to-Ground: 2KV B Conducted Susceptibility EN61000-4-6, 0.15MHz~80MHz 3Vrms amplitude 80% AM 1KHz A Power frequency Magnetic field immunity EN61000-4-8, 30A/m A 30%(Voltage Dips), 10 ms B Voltage Dips and Interruptions EN61000-4-11 60%(Voltage Dips), 100ms C >95%(Voltage Dips), 500ms C Leakage Current 10 SAFETY AND RELIABILITY PARAMETER Agency Approvals MTBF EN60950-1, 3.5mA@240VAC Table 13 Safety and Reliability Requirements DESCRIPTION / CONDITION CB: IEC 60950-1:2005 (2nd Edition); Am 1:2009 TUV: EN60950-1/A12:2011 UL: UL60950-1, 2nd Edition, 2011-12-19 CCC: GB4943.1-2011 GB9254-2008 GB17625.1-2003 BSMI: CNS14336-1 (99). CNS13438(95) >100,000 hour @ Full rated load; 120V AC input; Ground Benign; 25 C 11 ENVIRONMENTAL PARAMETER DESCRIPTION / CONDITION MIN NOM MAX UNIT Temperature Humidity Altitude Mechanical Shock Vibration 12 MECHANICAL Operating Ambient, normal mode (inlet air): 0 +50 C Non-operating Ambient -40 70 C Operating (Non-condensing) 20 90 % Non-operating (Non-condensing) 5 95 % Operating, above Sea Level 10,000 Feet Non-operating, above Sea Level 40,000 Feet Non-Operating: 50 G Trapezoidal Wave, 11mS half sin wave. The shock is to be applied in each of the orthogonal axes. Subjected to a vibration test consisting of a 10 to 300 Hz sweep at a constant acceleration of 2.0g for duration of one (1) hour for each of the perpendicular axes X, Y and Z (0.1 octave/minute). The output voltages shall remain within specification. PARAMETER DESCRIPTION / CONDITION MIN NOM MAX UNIT Dimensions Width 50.5 Height 40.0 Depth 300 Weight 870 g mm BCD.00360_AA_April-1-2014 9 www.power-one.com

Figure 3- Mechanical Drawing-Side/Top View Figure 4 Front View Figure 5 - Rear View Figrue 6 Mating Connector PET750-12-050NA 10 www.power-one.com

13 CONNECTIONS The AC input receptacle (CN1) shall be a 3 pins inlet. For the pin assignment of DC connectors please refer to Figure 8 and Table 18. Figure 7 Pin Assignment of DC Connector Table 18 Output Pin Assignment PIN NAME DESCRIPTION +12V +12V power output TO SYSTEM 12V BUS GND Grounding GND 5VSB +5V standby power TO SYSTEM 5VSB BUS A0 I2C Address A1 I2C Address Refer to Table 10 A2 Pending PW_OK Power Good Output. Signal is pulled HIGH to indicate all outputs ok. TO SYSTEM Power Good PS_ON# Module PS_ON#. Remote control power On/Off (Pulled LOW=POWER ON) PS_KILL Activate PSU by hot-plug activity Grounded at backplane SCL I2C CLOCK TO SYSTEM I2C BUS SDA I2C DATA TO SYSTEM I2C BUS PDB_ALERT# SMB_ALERT# To receive ALERT signal from system or PSU backplane, If signal is pulled LOW, the power internal fan shall be forced to run at maximum speed to improve thermal performance If PSU FAIL,FAN FAIL,OCP occurs, signal will be pulled from High to Low, PSU normal=high(ttl LEVEL) This signal pin can be controlled by system, or floating via backplane. To system related bus 12LS 12V Load Share Connect pin to pin at backplane for each power module PRESENT This pin is grounded with a 47R resistor. To indicate a power has been plugged in. Floating via backplane. 12VRS+ +12V Remote sense TO SYSTEM 12V BUS 12VRS- +12V negative feedback Grounded at backplane PDB_FAULT To receive a FAULT signal. Power shall be shutdown if this pin is pulled HIGH. Floating via backplane. AC_OK Floating via backplane. NUCLEAR AND MEDICAL APPLICATIONS - Power-One products are not designed, intended for use in, or authorized for use as critical components in life support systems, equipment used in hazardous environments, or nuclear control systems without the express written consent of the respective divisional president of Power-One, Inc. TECHNICAL REVISIONS - The appearance of products, including safety agency certifications pictured on labels, may change depending on the date manufactured. Specifications are subject to change without notice. BCD.00360_AA_April-1-2014 11 www.power-one.com