SOS028H3U600D001

SOS028H3U600D001
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SOS028H3U600D001

Product catalog summary
Overview: The SOSA™ Aligned DC-DC Converter is a robust, conduction-cooled power supply designed for 3U Open VPX systems, compliant with the SOSA standard. It offers a wide input voltage range, high output power, and advanced monitoring capabilities.
Features & Benefits:
  • Compliance with Open VPX – VITA 62
  • Input voltage range of 18 – 45V
  • 600W output power
  • Conduction cooling with I2C IPMI 46.11 monitoring
  • Reverse-polarity protection and remote voltage sensing
  • Parallel operation with wireless current sharing
  • Protections against overcurrent, overvoltage, and overtemperature
  • Military standard compliance (MIL-STD-704F, MIL-STD-461G, MIL-STD-810G, MIL-STD-1275E, RTCA/DO-160G)
Typical Applications: Suitable for VPX power modules, avionics, and shipborne electronics.
Product Description: Utilizes Vicor proprietary technology for high efficiency and power density, supporting parallel operation with a current share accuracy of ±2A.
Connector Pin Configuration: Detailed descriptions for power and signal connections, including ENABLE*, INHIBIT*, and I2C communication pins.
Absolute Maximum Ratings: Handles up to 600W total output power, operational input voltage up to 100V for 50ms, and operating temperature from -40°C to 85°C.
Electrical Characteristics: Efficiency ranges from 85% to 90% depending on load, with an operating input voltage range of 18-45V and specific characteristics for +12V and +3.3V outputs.
Signal Characteristics: Details on ENABLE*, INHIBIT*, GA0*, GA1*, and FAIL* signals, with specified thresholds and debounce delays.
Mechanical and Thermal Characteristics: Dimensions are 6.634 x 3.937 x 0.951 inches, weighing 630g, operating within a temperature range of -40°C to 85°C.
Safety and Reliability: MTBF specified under different conditions, ranging from 614,742 to 859,170 hours.
Additional Information: Includes typical external circuits for signal pins and detailed tables for logic states and geographical address assignments.
Power Supply Specifications and Protections: Operates within an input voltage range of 16-18V, delivering a maximum power of 600W for up to 30 seconds, with several protection mechanisms:
  • Input Voltage Protection (IOVP): Shuts down outputs if input voltage is outside the specified range for more than 1ms.
  • Output Voltage Protection (OOVP): Monitors remote-sense lines and shuts down outputs if voltage exceeds limits, restarting every second until resolved.
  • Overcurrent Protection (OCP): Shuts off outputs during overcurrent faults, attempting to restart every second.
  • Overtemperature Protection (OTP): Activates at 95°C, shutting down outputs until temperature drops by 20°C.
Parallel and Standalone Operation: Supports parallel connection with load sharing and standalone operation via I2C commands, switchable up to 100,000 times due to memory wear limitations.
Conducted Emissions and Standards Compliance: Tested for conducted emissions under various conditions, complying with standards like MIL-STD-461F/G, MIL-STD-704F, MIL-STD-810G, and RTCA/DO-160G.
I2C Sensor Commands: Commands sent via SMBus-compatible packets over the I2C interface for reading sensor data and setting the status register, supporting non-VITA 46.11 commands.
Specifications:
  • Input Voltage: 28V with a high non-recoverable threshold of 60V.
  • Output: +3.3V at 15A and +12V at 40A.
  • Data Interface: Compliant with VITA 46.11, VITA 62-2016, and IPMI v2.0 specifications.
Commands and Data Format:
  • Commands such as 0x21, 0x99, 0x91, and 0x92 for reading sensor data and output currents.
  • Data transmitted with the most-significant bit and byte first, with checksum validation for data integrity.
Status Register:
  • Monitors input conditions and allows for a battle override mode to prevent shutdown during non-recoverable events.
  • Bits in the status register indicate conditions such as battle override, failure, and over-temperature warnings.
Sensor Data and Thresholds:
  • Sensors monitor input voltage, current, and temperature with specific thresholds for critical and non-recoverable conditions.
  • Exceeding thresholds triggers system event messages and potential shutdowns.
Power Architecture:
  • Includes EMI filtering and reverse voltage blocking.
  • Internal power configuration supports isolated outputs at VITA 3U P0 connector.
Mechanical and Connector Details:
  • Mechanical drawings provide dimensions and connector component specifications.
  • Connector components specified with part numbers and manufacturers.
Contact Information: For customer service and technical support, contact Vicor Corporation at the provided phone numbers and email addresses.
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Catalog excerpts

SOS028H3U600D001-1

SOSA™ Aligned Power Supply SOS028x3U600y00zSOSA-Aligned DC-DC Converter Features & Benefits • Open VPX - VITA 62 • 18 - 45V input voltage range • 600W output power • 3U Open VPX power supply • Conduction cooled • I2C IPMI 46.11 monitoring and control • Input voltage reverse-polarity protection • Remote voltage sensing for +12V and +3.3V auxiliary • Parallel operation capable with proprietary wireless current sharing • Overcurrent, overvoltage and overtemperature protections • IPC-A-610 class 3 • No aluminum electrolytic capacitors • Enable, inhibit, system reset and power fail controls • Meets military standard compliance: [a] ■ MIL-STD-704F ■ MIL-STD-461G ■ MIL-STD-810G ■ MIL-STD-1275E ■ RTCA/DO-160G Typical Applications • VPX power modules • Avionics • Shipborne electronics Product Description The Vicor SOSA-aligned power supply is a COTs power supply that is designed for 3U Open VPX systems that are developed to the SOSA standard. The module utilizes Vicor proprietary technology to enable high efficiency and power density for this highly rugged, conduction-cooled model. Up to four power supplies can be paralleled to increase output power capability of +12V main and +3.3V auxiliary outputs with proprietary wireless current sharing. Need for conventional current-share pins are eliminated. Current share accuracy is ±2A. Note: Product images may not highlight current product markings and cosmetic features. [a] See detailed specifications; contact Vicor Applications Engineering for report details. SOSA™ Aligned DC-DC Converter Page 1 of 26

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SOS028H3U600D001-2

Note: See mechanical drawing on page 30 for connector information. SOSA™ Aligned DC-DC Converter Page 2 of 26

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SOS028H3U600D001-3

SOSA™ Aligned DC-DC Converter Page 3 of 26 Rev 1.0 09/2023 VIGOR

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SOS028H3U600D001-4

Part Ordering Information

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SOS028H3U600D001-5

All data at nominal line and nominal load unless otherwise specified.

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SOS028H3U600D001-6

Signal Characteristics All of the following plots are at nominal line and 600W aggregate load unless otherwise noted. INHIBIT*: Inhibit* SOSA™ Aligned DC-DC Converter Page 6 of 26 Rev 1.0 09/2023 VIGOR

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SOS028H3U600D001-7

All of the following plots are at nominal line and 600W aggregate load unless otherwise noted. • The GA0* and GA1* pins sets the I2C address of the power supply. Geographical address is set at start up and cannot be changed without a power cycle. • The GA0* and GA1* pins have an internal pull-up to VCC and is referenced to the Signal Return pin of the power supply.

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SOS028H3U600D001-8

Figure 1 — Response time from VIN applied to outputs available; under 200ms start; VIN = 28V Figure 3 — AUX (+3.3V) ripple, AC-coupled SOSA™ Aligned DC-DC Converter Page 8 of 26 Figure 2 — VS1 (+12V) ripple at 10% load (4A), AC-coupled

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SOS028H3U600D001-9

General Characteristics SOSA™ Aligned DC-DC Converter Page 9 of 26 Rev 1.0 09/2023 VIGOR

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SOS028H3U600D001-10

Table 1 — ENABLE & INHIBIT logic Table 2 — Geographical address assignment Signal Pin Functions ENABLE* & INHIBIT* Enable and Inhibit pins express active low logic. Table 1 has the truth table for the output state of the power supply. It is necessary to avoid the indeterminate output state where 0.8 - 2.0V is applied to the ENABLE* or INHIBIT* pins. A digital debounce filter is present on the signals of both pins to prevent false transitions. The ENABLE* and INHIBIT* also have a minimum delay between successive output enable transitions to prevent repeated starts into high capacitance loads....

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SOS028H3U600D001-11

SOS028x3U600y00z Card Edge Temperature Sensors Fault Operation The PCBA card edge temperature sensor internal to the power supply is mounted on the edge of the PCBA card edge. Consequently, the temperature sensor measures a temperature that is generally higher than the heat-sink-to-rail mounting interface and lower than the hot spot of the internal converters in the power supply. See Table 5 for nonrecoverable fault thresholds which trigger a fault and shut down/restart of the outputs of the supply. Response from the power supply to I2C command 0x21 provides the temperature measured by the internal...

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SOS028H3U600D001-12

Parallel Operation For proper load regulation and paralleling of SOS028x3U600y00z power supplies, sense lines shall be connected to the load. An open or unconnected sense line will lead to a fault condition where all outputs remain off. A single kelvin connection between each sense pin and load is ideal on the backplane. Another method of connecting sense lines to the load is to bus sense lines between the power supplies and have a single backplane connection to the point-of-load. Under normal parallel power supply operation, each supply's PoL regulated output will be at different voltage with...

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SOS028H3U600D001-13

Table 4 — Byte sequence to set the power supply in standalone Standalone Operation Switching the power supply from paralleling to standalone can be done on a single-use basis or permanently by the user using I2C. Each unit ships from the factory capable of paralleling multiple identical power supplies. If the power supply is used in standalone mode without additional identical supplies connected in parallel, the output voltages of the power supply that are shareable, namely, VS1 and VAUX, will not droop with increased current load and will regulate the output voltage close to the no-load voltage....

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SOS028H3U600D001-14

SOS028x3U600y00z Conducted Emissions Testing CE102, Conducted Emissions, Power Leads Limit Level Line Under Test: Positive 28VDC Input EUT Mode: EUT Loaded Line 1 Measured Emissions Ambient Scan Measured Value Amplitude (dBµV) Figure 6 — Conducted emissions of +28V input line at full load CE102, Conducted Emissions, Power Leads Limit Level Line Under Test: Return Input EUT Mode: EUT Loaded Line 2 Measured Emissions Ambient Scan Measured Value Amplitude (dBµV) Figure 7 — Conducted emissions of +28V return line at full load SOSA™ Aligned DC-DC Converter Rev 1.0 Page 14 of 26 09/2023

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SOS028H3U600D001-15

Limit Level Ambient Scan Measured Value Line Under Test: Positive 28VDC Input EUT Mode: EUT Unloaded CE102, Conducted Emissions, Power Leads Line 1 Measured Emissions Figure 8 — Conducted emissions of of +28V input line at no load CE102, Conducted Emissions, Power Leads Line 2 Measured Emissions Line Under Test: Return Input EUT Mode: EUT Unloaded Limit Level Ambient Scan Measured Value Figure 9 — Conducted emissions of +28V return line at no load SOSA™ Aligned DC-DC Converter Page 15 of 26

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