D1U54-D-800-12-HB3BC MURATA-PS | Alldatasheet

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D1U54-D-800-12-HBXBC_A01 Page 1 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support PRODUCT OVERVIEW The D1U54-D-800-12-HBxBC products are high efficiency 800 watt front end supplies that provide a 12V main and 12V Standby output and features enhanced backpressure performance. An active current share (Analogue) characteristic is provided for parallel operation. The power supply may be hot plugged, recovers from over temperature faults and has status LED indicators in addition to hardware signal logic and PMBus™ digital communications signals. The low profile 1U package and high power density make this series ideal for delivering reliable, efficient power to servers, workstations, networking equipment, storage systems and other 12V distributed power architectures. ORDERING GUIDE Part Number Power Output -44 to -72Vdc Main Output Standby Output Airflow D1U54-D-800-12-HB3BC 800W 12Vdc 12Vdc Front to Back D1U54-D-800-12-HB4BC Back to front

FEATURES

 800W output power  93% efficiency at 50% load  12V Main output  12V Standby output  Sub 1U height; overall dimensions: (54.5mm x 236.6mm x 40mm)  25.4 Watts per cubic inch density  N+1 redundancy; Hot plug (swap) capable  Active current sharing 12V main output, droop sharing on VStandby output. Both outputs include ORing isolation  Overvoltage, Overcurrent, Over-temperature protection  Internal 28mm cooling fan (variable speed)  PMBus™/I2C interface with status indicators  RoHS compliant  Two Year Warranty Available now at: www.murata-ps.com/en/3d/acdc.html INPUT CHARACTERISTICS Parameter Conditions Min. Nom. Max. Units Input Source Voltage Operating Range -40.8 -48 to -60 -72 Vdc Turn-on Input Voltage Ramp up -41.5 -43 -43.5 Vdc Turn-off Input Voltage Ramp down -37.5 -38 -40.5 Input current at Vin = -48Vdc 800W 20.5 Adc Inrush Current Cold start between 0 to 200msec 25 Apk Efficiency (-53Vdc) excluding fan load 20% load 90 % 50% load 93 100% load 92 OUTPUT VOLTAGE CHARACTERISTICS Nominal Output Voltage Parameter Conditions Min. Typ. Max. Units 12V Output Set Point Accuracy 50% load; Tamb = 25°C 11.96 12.00 12.04 Vdc Line and Load Regulation Setpoint; temperature; line and load -1.0% +1.0% % Ripple Voltage & Noise1, 2 20MHz Bandwidth 120 mV p-p Output Current Range 0 66.7 A Load Capacitance 4000 μF 12VSB Output Set Point Accuracy 50% load; Tamb = 25°C 11.96 12.00 12.04 Vdc Line and Load Regulation Setpoint; temperature; line and load 11.7 12.3 Ripple Voltage & Noise1 20MHz Bandwidth 120 mVpp Output Current 0 2 A 1 Ripple and noise is measured with a parallel combination 0.1µF of ceramic and 10µF of tantalum capacitance on each measurement node. 2 Measurements assume the use of the minimum load capacitance as specified for the main 12V output and a minimum load of 5%.Below 5% loading the overall voltage deviation shall be within ±2.5%. Certificate and Test Report FOR FULL DETAILS GO TO : WWW .MURATA -PS.COM /ROHS

D1U54-D-800-12-HBXBC_A01 Page 2 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support OUTPUT CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Startup Time DC ramp up 3 s Transient Response Main and standby outputs – 10%-60% and 50% to 100% load step, 1A/μs di/dt 500 µs Current sharing accuracy >10% load; *of maximum output current capability * % Hot Swap Transients All outputs remain in regulation ± Holdup Time (Total Effective Hold Up - See Timing Waveforms) Full DC Input Source Range;100% load 1 ms ENVIRONMENTAL CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Storage Temperature Range -40 70 Operating Temperature Range1 -5 55 Operating Humidity Noncondensing; +45°C 5 90 % Storage Humidity 5 95 Altitude (without derating at 40°C) 3000 m Shock 30G non-operating Operational Vibration Sine sweep; 5-200Hz, 2G; random vibration, 5-500Hz, 1.11G MTBF(Target) Per Telcordia SR-332 M1C3 @40°C 462K hrs Safety Approval Standards CAN/CSA C22.2 No 60950-1-07, Amendment 1:2011, Amendment 2:2014 (MOD) ANSI/UL 60950-1-2014 IEC 60950-1:2005, IEC 60950-1:2005/AMD1:2009, IEC 60950-1:2005/AMD2:2013 GB17625.1-2012; GB4943.1-21011; GB/T9254-2008 (Class A) Input Fuse Power Supply has an internal fuse in the DC input negative line. Fuse Type: Fast-Acting; Interruption Rating: 500A @72Vdc Weight 1.74 lbs. (0.789 kg) 1 Operating temperature limits set to align with Telcordia NEBS GR-63-CORE; the UL of +55C accommodates the “abnormal” operating temperature at shelf level and sea level. To simulate for altitude to 1800m (5905ft rounded to 6000ft) an additional 1ºC shall be added for every 1000ft above sea level; worst case this requires testing at +61ºC and may require derating to be applied to meet. AIRFLOW; PRESSURE VS. FLOW (PQ) CURVES: D1U54P-D-800-12-HB3BC: D1U54P-D-800-12-HB4BC: Notes: 1. The above curves represent performance based upon a the use of a Delta 28mm thickness FFB0412UHN fan however since this model is being prepared using the base model of M1873/M1874 (which uses the Delta FFB0412EN variant fan) then these curves will require to be updated to reflect that performance; this shall be a deliverable at the time of production release. 2. Internal File reference: \\\\tOR-FILE04\\Data\\Design Control Database (DCD)\\1970_1971_M BM 800W DC-DC Mod1873\\05 - DVT1\\airflow\\M1970-1971 Airflow Test Report (9-19-2018)Curves generated with intermal fan running at 100% duty cycle 3. Simulated based on three input terminal block cover configurtions

D1U54-D-800-12-HBXBC_A01 Page 3 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support PROTECTION CHARACTERISTICS Output Parameter Conditions Min. Typ. Max. Units 12V Overtemperature Auto restart with 4°C hysteresis for recovery (warning issued at 65°C) 75 °C Overvoltage Latching 13 14.5 °C Overcurrent The output shall shutdown when an overcurrent condition is detected. It will auto restart after 1sec; however if the overcurrent condition is redetected the output will once again shutdown. The output will once again re-start, however if the overcurrent condition persists it will latch of after the fifth unsuccessful attempt. To reset the latch it will be necessary to toggle the PS_ON_L signal (B4) or recycle the incoming AC source. 70 80 A 12VSB Overvoltage Latching 13.0 14.5 V Overcurrent The output shall shutdown when an overcurrent is detected. It will auto restart after 2sec; however if the overcurrent is re-detected the output will once again shutdown. This cycle will occur indefinitely while the overcurrent condition persists. 2.1 3.5 A ISOLATION CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Insulation Safety Rating Input to Output tied to Chassis together 1500 Vdc Isolation Output to Chassis 500 Vdc EMISSIONS AND IMMUNITY Conducted Emissions FCC 47 CFR Part 15/CISPR 22/EN55022 Class A with 6dB margin ESD Immunity IEC/EN 61000-4-2 Level 4 criteria A Radiated Field Immunity IEC/EN 61000-4-3 Level 3 criteria B Electrical Fast Transients/Burst Immunity IEC/EN 61000-4-4 Level 3 criteria B Surge Immunity IEC/EN 61000-4-5 ±1kV common mode and differential mode, unit passes criteria A (normal performance)* RF Conducted Immunity IEC/EN 61000-4-6 Level 3 criteria A Magnetic Field Immunity IEC/EN 61000-4-8 3 A/m criteria B * Impedance is 2 ohms for differential and common mode. STATUS INDICATORS LED NAME LED MODE LED STATE/OPERATION DESCRIPTION Input OK Solid Green Input voltage operating within normal specified range Input OV/UV WARNING Blinking Green Input voltage operating in: 1) overvoltage warning, or 2) undervoltage warning range Input OFF OR FAULT Off Input voltage operating: 1) above overvoltage range, or 2) below undervoltage range, or 3) not present Output POWER GOOD Solid Green Main output and standby output enabled with no power supply warning or fault detected Output STANDBY Blinking Green Standby output enabled with no power supply warning or fault detected Output WARNING Blinking Amber Power supply warning detected as per PMBus™ STATUS_X reporting bytes• Output FAULT Solid Amber Power supply fault detected as per PMBus™ STATUS_X reporting bytes•

  • LED fault/warning operation follows PMBus fault/warning reporting status flags and will thus also be 'sticky' (i.e. even if actual fault/warning is cleared, LED will still be in FAULT or WARNING mode until PMBus™ status flags are cleared with the CLEAR_FAULTS command

D1U54-D-800-12-HBXBC_A01 Page 4 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support STATUS AND CONTROL SIGNALS Signal Name I/O Description Interface Details INPUT_OK (DC Source) Output The signal output is driven high when the input source is available and within acceptable limits. The output is driven low to indicate loss of input power. There is a minimum of 5ms pre-warning time before signal changes to a high impedance state or is driven low to indicate loss of 12V. The power supply must ensure that this interface signal provides accurate status when DC power is lost. Pulled up internally via 10K to 3.3Vdc. A logic high >2.0Vdc; A logic low <0.8Vdc Driven low by internal CMOS buffer (open drain output). PW_OK (Output OK) Output The signal is asserted, driven high, by the power supply to indicate that all outputs are valid. If any of the outputs fail then this output will be hi-Z or driven low. The output is driven low to indicate that the Main output is outside of lower limit of regulation. Pulled up internally via 10K to 3.3Vdc. A logic high >2.0Vdc; A logic low <0.8Vdc Driven low by internal CMOS buffer (open drain output). SMB_ALERT (FAULT/WARNING) Output The signal output is driven low to indicate that the power supply has detected a warning or fault and is intended to alert the system. This output must be driven high when the power is operating correctly (within specified limits). The signal will revert to a high level when the warning/fault stimulus (that caused the alert) is removed. SMB_Alert and LED Fault / warn status assert together. CML errors do not assert SMB_Alert and LED status. Pulled up internally via 10K to 3.3Vdc. A logic high >2.0Vdc;A logic low <0.8Vdc Driven low by internal CMOS buffer (open drain output). PRESENT_L (Power Supply Absent) Output The signal is used to detect the presence (installed) of a PSU by the host system. The signal is connected to PSU logic SGND within the power module. Passive connection to +VSB_Return. A logic low <0.8Vdc PS_ON (Power Supply Enable/Disable Input This signal is pulled up internally to the internal housekeeping supply (within the power supply). The power supply main 12Vdc output will be enabled when this signal is pulled low to +VSB_Return. In the low state the signal input shall not source more than 1mA of current. The 12Vdc output will be disabled when the input is driven higher than 2.4V, or open circuited. Cycling this signal shall clear latched fault conditions. Pulled up internally via 10K to 3.3Vdc. A logic high >2.0Vdc A logic low <0.8Vdc Input is via CMOS Schmitt trigger buffer. PS_KILL Input This signal is used during hot swap to disable the main output during hot swap extraction. The input is pulled up internally to the internal housekeeping supply (within the power supply). The signal is provided on a short (lagging pin) and main output is enabled when this signal is pulled down (+VSB_Return). Pulled up internally via 10K to 3.3Vdc. A logic high >2.0Vdc; A logic low <0.8Vdc Input is via CMOS Schmitt trigger buffer. ADDR (Address Select) Input An analogue input that is used to set the address of the internal slave devices (EEPROM and microprocessor) used for digital communications. Connection of a suitable resistor to +VSB_Return, in conjunction with an internal resistor divider chain, will configure the required address (see ADDR Address Selection table). DC voltage between the limits of 0 and +3.3Vdc. SCL (Serial Clock) Both A serial clock line compatible with PMBusTM Power Systems Management Protocol Part 1 – General Requirements Rev 1.1. No additional internal capacitance is added that would affect the speed of the bus. The signal is provided with a series isolator device to disconnect the internal power supply bus in the event that the power module is completely unpowered, VIL is 0.8V maximum VOL is 0.4V maximum when sinking 3mA VIH is 2.1V minimum SDA (Serial Data) Both A serial data line compatible with PMBusTM Power Systems Management Protocol Part 1 – General Requirements Rev 1.1. The signal is provided with a series isolator device to disconnect the internal power supply bus in the event that the power module is completely unpowered, VIL is 0.8V maximum VOL is 0.4V maximum when sinking 3mA VIH is 2.1V minimum V1_SENSE V1SENSE_RTN Input Remote sense connections intended to be connected at and sense the voltage at the point of load. The voltage sense will interact with the internal module regulation loop to compensate for voltage drops due to connection resistance between the output connector and the load. If remote sense compensation is not required then the voltage shall be configured for local sense by: 1. V1_SENSE directly connected to power blades 6 to10 (inclusive) 2. V1_SENSE_RTN directly connected to power blades 1 to 5 (inclusive) Compensation for up to 0.12Vdc total connection drop (output and return connections). ISHARE Bi- Directional Analogue Bus The current sharing signal is connected between sharing units (forming an ISHARE bus). It is an input and/or an output (bi-directional analogue bus) as the voltage on the line controls the current share between sharing units. A power supply will respond to a change in this voltage but a power supply can also change the voltage depending on the load drawn from it. On a single unit the voltage on the pin (and the common ISHARE bus would read 8VDC at 100% load (module capability). For two identical units sharing the same 100% load this would read approximately 4VDC for perfect current sharing (i.e. 50% module load capability per unit). Analogue voltage: Approximately +8V maximum; 10K to +12V_RTN

D1U54-D-800-12-HBXBC_A01 Page 5 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support OUTPUT CONNECTOR & SIGNAL INTERFACE; FCI PN 10122460-005LF NB: Signals annotated “3” in Column 5, refers to the shortest sequenced signal pin; the “shortest” pins are the “last to make, first to break” in the mating sequence. OUTPUT CONNECTOR PIN ASSIGNMENTS (Power Supply) FCI PN 10122460-005LF Pin Signal Name Comments 6, 7, 8, 9, 10 V1 (+12VOUT) +12V Main Output 1, 2, 3, 4, 5 +12V RTN/PGND +12V Main Output Return A1 +VSB Standby Output B1 +VSB Standby Output C1 +VSB Standby Output D1 +VSB Standby Output E1 +VSB Standby Output A2 +VSB_Return Standby Output Return B2 +VSB_Return Standby Output Return C2 Unused No End User Connection D2 Unused No End User Connection E2 Unused No End User Connection A3 ADDR I2C Address Protocol Selection; (Select address by appropriate pull down resistor – See table below) B3 Unused No End User Connection C3 SDA I2C Serial Data Line D3 V1_SENSE_R -VE Remote Sense Return E3 V1_SENSE +VE Remote Sense A4 SCL I2C Serial Clock Line B4 PS_ON_L Remote On/Off (Enable/Disable) C4 SMB_ALERT Alert signal to host system D4 Unused No End User Connection E4 INPUT_OK DC Input Source Present & “OK” A5 PS_KILL Power Supply “kill”; short pin B5 ISHARE Active Current Share Bus C5 PW_OK Power “OK”; short pin D5 Unused No End User Connection E5 PRESENT_L Power Module Present; short pin WIRIN

D1U54-D-800-12-HBXBC_A01 Page 6 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support MATING CONNECTOR Part Number Description TE Connectivity 2-1926739-5 FCI 10108888-R10253SLF Right Angle Right Angle ADDRESS SELECTION ADDR pin (A3) resistor to GND (K-ohm)* Power Supply Main Controller (Serial Communications Slave Address) Power Supply External EEPROM (Serial Communications Slave Address) 0.82 0xB0 0xA0 2.7 0xB2 0xA2 5.6 0xB4 0xA4 8.2 0xB6 0xA6 15 0xB8 0xA8 27 0xBA 0xAA 56 0xBC 0xAC 180 0xBE 0xAE * The resistor shall be +/-5% tolerance or better Link: Back to signal table WIRING DIAGRAM FOR OUTPUT CURRENT SHARE NOTES 1. Main Output: Current sharing is achieved using the active (analogue) current share method. 2. Current sharing can be achieved with or without the remote (V_SENSE and V_SENSE_R) connected to the common load. 3. +VSB Outputs can be tied together for redundancy but total combined output power must not exceed the rated standby power. The +VSB output has an internal ORING MOSFET for additional redundancy/internal short protection. 4. The current sharing pin B5 is connected between sharing units (forming an ISHARE bus). It is an input and/or an output (bi-directional analogue bus) as the voltage on the line controls the current share between sharing units. A power supply will respond to a change in this voltage but a power supply can also change the voltage depending on the load drawn from it. On a single unit the voltage on the pin (and the common ISHARE bus would read 8VDC at 100% (power module load capability). For two units sharing the same 100% load this would read approximately 4VDC for perfect current sharing (i.e. 50% power module load capability per unit). The load for both the main 12V and the VSB rails at initial startup shall not be allowed to exceed the capability of a single unit. The load can be increased after a delay of 3sec (minimum), to allow all sharing units to achieve steady state regulation.

D1U54-D-800-12-HBXBC_A01 Page 7 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support TIMING SPECIFICATIONS Turn-On Delay & Output Rise Time: Time Min Max Vsb Power-on-delay 2700ms V1 Power-on-delay 3000ms Vsb Rise time 100mS 200ms V1 PS_ON delay 300ms Input _OK (Delay) 100ms 2000ms V1 Rise time 20mS 120mS PWOK delay 750ms 1. The turn-on delay after application of AC input within the operating range shall as defined in the following tables opposite. 2. The output rise times shall be measured from 10% of the nominal output to the lower limit of the regulation band as defined in the following tables. 3. Timing relationships require confirmation and update prior to formal release of datasheet 4. Timing diagrams not to (time) scale Turn-Off (Shutdown by PS_ON) Turn-Off Timing Min Max Notes V1 Fall time - - Must be monotonic V1 PS_OFF delay - 6ms PW_OK delay off 1.0ms 1. This characteristic is applicable for the main 12Vdc output shutdown from PS_ON pulled high. 2. Timing relationships require confirmation and update prior to formal release of datasheet 3. Timing diagrams not to (time) scale Power Removal Holdup Power Removal Timing Min Max Notes Vsb holdup 20ms 50ms +VSB Full Load PWOK Hold 2.0ms 4.0ms 100% Load V1 holdup (Total Effective) 1ms 100% load DC (Input) fail Warning 400µs 1000µs PWOK delay off 750µs 100% load 1. Note this characteristic is applicable for the main 12Vdc output shutdown from PS_ON pulled high. 2. Timing relationships require confirmation and update prior to formal release of datasheet 3. Vsb Fall Time is a factor of load

D1U54-D-800-12-HBXBC_A01 Page 8 of 8 D1U54-D-800-12-HBxBC 54mm 1U Front End DC-DC Power Module www.murata-ps.com/support MECHANICAL DIMENSIONS Notes: This drawing is a graphical representation of actual product, intended to define the product’s envelope dimensions and basic feature location. Fine details such as screw head patterns, plastic part surface appearance, internal components, texture, colours may vary from actual product. DC input connector: Dinkle Terminal Block, Dinkle Enterprise: Part No. DT-7C-B14W-02 Reference File: D75090019701_v2 OPTIONAL ACCESSORIES Description Part Number 12V D1U54P Output Connector Card D1U54P-12-CONC APPLICATION NOTES Document Number Description Link ACAN-64 D1U54P Output Connector Card http://power.murata.com/datasheet?/data/apnotes/acan-64.pdf ACAN-87 D1U54-x Communication Protocol http://power.murata.com/datasheet?/data/apnotes/acan-87.pdf Murata Power Solutions, Inc. 129 Flanders Rd. Westborough, Ma 01581, USA. ISO 9001 and 14001 REGISTERED This product is subject to the following operating requirements and the Life and Safety Critical Application Sales Policy. Refer to: http://www.murata-ps.com/requirements/ Murata Power Solutions, Inc. (“Murata”) makes no representation that the use of its products in the circuits described herein, or the use of other technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not imply the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Buyer represents and agrees that it has all the necessary expertise to create and implement safeguards that anticipate dangerous consequences of failures, monitor failures and their consequences, lessen the likelihood of failures that might cause harm, and take appropriate remedial actions. Buyer will fully indemnify Murata, its affiliated companies, and its representatives against any damages arising out of the use of any Murata products in safety-critical applications. Specifications are subject to change without notice. © 2018 Murata Power Solutions, Inc.