Q48SE12025NRFA DELTA | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 14

Technical content

DS_Q48SE12025_06242013

APPLICATIONS

 Telecom / Datacom  Wireless Networks  Optical Network Equipment  Server and Data Storage  Industrial / Testing Equipment OPTIONS  Latched over voltage protection  Positive On/Off logic  Heat spreader available for extended operation.

FEATURES

 High efficiency : 95.2% @ 11.8V/25A  Size: (W/o heat spreader) (With heat spreader)  Standard footprint  Industry standard pin out  Fixed frequency operation  Input UVLO, Output OCP , OVP, OTP  Hiccup output over current protection (OCP)  Hiccup output over voltage protection (OVP)  Auto recovery OTP and input UVLO  2250V isolation and basic insulation  No minimum load required  ISO 9001, TL 9000, ISO 14001, QS9000, OHSAS18001 certified manufacturing facility  UL/cUL 60950-1 (US & Canada), EN 60950-1, 2nd ed., including Amendment 1 and 12 recognized Delphi Series Q48SE, Quarter Brick Family DC/DC Power Modules: 38~75V in, 11.8V/25A out, 300W The Delphi series Q48S E12025, quarter brick, 3 8~75V input, single output, isolated DC/DC converter is the latest offering from a world leader in power system and technology and manufacturing ― Delta Electronics, Inc. This product provides up to 300 watts of power in an industry standard footprint and pin out. With creative design technology and optimization of component placement, these converters possess outstanding electrical and thermal performances, as we ll as extremely high reliability under highly st ressful operating conditions. The Q48 SE12025 offers more than 95. 2% high efficiency at 25A full load. The Q48SE12025 is fully protected from abnormal input/output voltage, current, and temperature conditions and meets all safety requirements with basic insulation.

DS_Q48SE12025_06242013 TECHNICAL SPECIFICATIONS (TA=25°C, airflow rate=300 LFM, Vin=48Vdc, nominal Vout unless otherwise noted; PARAMETER NOTES and CONDITIONS Q48SE12025 (Standard) Min. Typ. Max. Units ABSOLUTE MAXIMUM RATINGS Input Voltage Continuous 80 Vdc Transient 100ms 100 Vdc Operating Ambient Temperature -40 85 °C Storage Temperature -55 125 °C Input/Output Isolation Voltage 2250 Vdc INPUT CHARACTERISTICS Operating Input Voltage 38 48 75 Vdc Input Under-Voltage Lockout Turn-On Voltage Threshold 32.0 34.0 36.0 Vdc Turn-Off Voltage Threshold 30.0 32.0 34.0 Vdc Lockout Hysteresis Voltage 2 Vdc Maximum Input Current 100% Load, 38Vin 11 A No-Load Input Current Vin=48V, Io=0A 160 mA Off Converter Input Current Vin=48V, Io=0A 10 mA Inrush Current (I2t) 1 A2s Input Reflected-Ripple Current P-P thru 12µH inductor, 5Hz to 20MHz 10 mA Input Voltage Ripple Rejection 120 Hz -30 dB OUTPUT CHARACTERISTICS Output Voltage Set Point Vin=48V, Io=0, Tc=25°C 11.67 11.8 11.92 Vdc Output Voltage Regulation Over Load Vin=48V, Io=Io,min to Io,max ±30 ±80 mV Over Line Vin=38V to 75V, Io=Io min ±50 mV Over Temperature Vin=48V, Tc=-40°C to 85°C ±100 mV Total Output Voltage Range over sample load, line and temperature 11.44 12.16 Vdc Output Voltage Ripple and Noise 5Hz to 20MHz bandwidth Peak-to-Peak Full Load, 1µF ceramic, 10µF tantalum 120 mV RMS Full Load, 1µF ceramic, 10µF tantalum 50 mV Operating Output Current Range 0 25 A Output DC Current-Limit Inception Output Voltage 10% Low 110 140 % DYNAMIC CHARACTERISTICS Output Voltage Current Transient 48V, 10µF Tan & 1µF Ceramic load cap, 0.1A/µs Positive Step Change in Output Current 50% Io.max to 75% Io.max 300 mV Negative Step Change in Output Current 75% Io.max to 50% Io.max 300 mV Settling Time (within 1% Vout nominal) 300 µs Turn-On Transient Start-Up Time, From On/Off Control 70 ms Start-Up Time, From Input 80 ms Maximum Output Capacitance Low ESR CAP (OSCON), 100% load; 6000 µF EFFICIENCY 100% Load Vin=48V 95.2 % 60% Load Vin=48V 94.7 % ISOLATION CHARACTERISTICS Input to Output 2250 Vdc Isolation Resistance 10 MΩ Isolation Capacitance 1000 pF FEATURE CHARACTERISTICS Switching Frequency 160 kHz ON/OFF Control, Negative Remote On/Off logic Logic Low (Module On) Von/off at Ion/off=1.0mA 0 0.8 V Logic High (Module Off) Von/off at Ion/off=0.0 µA 2 50 V ON/OFF Control, Positive Remote On/Off logic Logic Low (Module Off) Von/off at Ion/off=1.0mA 0 0.8 V Logic High (Module On) Von/off at Ion/off=0.0 µA 2 50 V ON/OFF Current (for both remote on/off logic) Ion/off at Von/off=0.0V 1 mA Leakage Current (for both remote on/off logic) Logic High, Von/off=15V 50 uA Output Over-Voltage Protection Over full temp range; % of nominal Vout 115 140 % GENERAL SPECIFICATIONS MTBF(with heat spreader) Io=100% of Io, max; Tc=40°C;Airflow=600LFM 2.6 M hours Weight(without heat spreader) 50.5 grams Weight(with heat spreader) 65.5 grams Over-Temperature Shutdown ( Without heat spreader) Refer to Figure 18 for Hot spot 1 location (48Vin,80% Io, 200LFM,Airflow from Vin+ to Vin-) 128 °C Over-Temperature Shutdown (With heat spreader) Refer to Figure 20 for Hot spot 2 location (48Vin,80% Io, 200LFM,Airflow from Vin+ to Vin-) 122 °C Over-Temperature Shutdown ( NTC resistor ) Refer to Figure 18 for NTC resistor location 127 Note: Please attach thermocouple on NTC resistor to test OTP function, the hot spots’ temperature is just for reference.

DS_Q48SE12025_06242013 DESIGN CONSIDERATIONS Input Source Impedance The impedance of the input so urce connecting to the DC/DC power modules will interact with the modules and affect the stability. A low ac-impedance input source is recommended. If the source inductance is more than a few μH, we advise 100μF electrolytic capacitor (ESR < 0.7 Ω at 100 k Hz) mounted close to the input of the module to improve the stability. Layout and EMC Considerations Delta’s DC/DC power modules are designed to operate in a wide variety of systems and applications. For design assistance with EMC compliance and related PWB layout issues, please contact Delta’s technical support team. An external input filter module is available for easier EMC compliance design. Below is the reference design for an input filter tested with Q48SE12025XXXX to meet class B in CISSPR 22 Schematic and Components List CX1,CX2 is 1000nF ceramic caps; Cin1 is 100nF ceramic cap; Cin2 is 100uF ceramic cap; CY1,CY2 is 0.1uF ceramic caps; L1 is common-mode inductor,L1=809uH Test Result: Vin=48V, Io=25A quasi peak mode average mode Safety Considerations The power module must be installed in compliance with the spacing and separation requirements of the end-user’s safety agency standard, i.e., UL60950 -1, CAN/CSA-C22.2, No. 60950-1 and EN60950-1+A11 and IEC60950-1, if the system in which the power module is to be used must meet safety agency requirements. Basic insulation based on 75 Vdc input is provided between the input and output of the module for the purpose of applying insulation requirements when the input to this DC -to-DC converter i s identified as TNV -2 or SELV.An additional evaluation is needed if the source is other than TNV-2 or SELV. When the input source is SELV circuit, the power module meets SELV (safety extra -low voltage) requirements. If the input source is a hazardous voltage which is greater than 60 Vdc and less than or equal to 75 Vdc, for the module’s output to meet SELV requirements, all of the following must be met:  The input source must be insulated from the ac mains by reinforced or double insulation.  The input terminals of the module are not oper ator accessible.  If the metal baseplate is grounded , the output must be also grounded.  A SELV reliability test is conducted on the system where the module is used , in combination with the module, to ensure that under a single fault, hazardous voltage doe s not appear at the module’s output. When installed into a Class II equipment (without grounding), spacing consideration should be given to the end -use installation, as the spacing between the module and mounting surface have not been evaluated. The power module has extra -low voltage (ELV) outputs when all inputs are ELV. This power module is not internally fused. To achieve optimum safety and system protection, an input line fuse is highly recommended. The safety agencies require a normal-blow fuse with 30A m aximum rating to be installed in the ungrounded lead. A lower rated fuse can be used based on the maximum inrush transient energy and maximum input current. Soldering and Cleaning Considerations Post solder cleaning is usually the final board assem bly process before the board or system undergoes electrical testing. Inadequate cleaning and/or drying may lower the reliability of a power module and severely affect the finished circuit board assembly test. Adequate cleaning and/or drying is especially important for un-encapsulated and/or open frame type power modules. For assistance on appropriate soldering and cleaning procedures, please contact Delta’s technical support team.

DS_Q48SE12025_06242013 FEATURES DESCRIPTIONS Over-Current Protection The modules include an internal output over -current protection circuit, which will endure current li miting for an unlimited duration during output overload. If the output current exceeds the OCP set point, the modules will shut down (hiccup mode). The modules will try to restart after shutdown. If the overload condition still exists, the module will shu t down again. This restart trial will continue until the overload condition is corrected. Over-Voltage Protection The modules include an internal output over -voltage protection circuit, which monitors the voltage on the output terminals. If this voltage exceeds the over-voltage set point, the protection circui t will constrain the max duty cycle to limit the output voltage, if the output voltage continuously increases the modules will shut down, and then restart after a hiccup -time (hiccup mode). There is an option of latch mode. Please contact with Delta if needed. Over-Temperature Protection The over -temperature protection consists of circuitry that provides protection from thermal damage. If the temperature exceeds the over -temperature threshold the module will shut down. The module will restart after the temperature is within specification. Remote On/Off The remote on/off feature on the module can be either negative or positive logic. Negative logic turns the module on during a logic low and off dur ing a logic high. Positive logic turns the modules on during a logic high and off during a logic low. Remote on/off can be controlled by an external switch between the on/off terminal and the V i (-) terminal. The switch can be an open collector or open drain. For negative logic i f the remote on/off feature is not used, please short the on/off pin to Vi (-). For pos itive logic i f the remote on/off feature is not used, please leave the on/off pin to floating. The on/off signal should be longer than 120 us, module will not response to the less than 120us on/off signals. It is better for customer to use on/off signal much longer than 120us, DC level on/off signal is suggested. Figure 16: Remote on/off implementation

DS_Q48SE12025_06242013 THERMAL CONSIDERATIONS Thermal management is an important part of the system design. To ensure proper, reliable operation, sufficient cooling of the power module is needed over the entire temperature range of the module. Convection cooling is usually the dominant mode of heat transfer. Hence, the choice of equipment to characterize the thermal performance of the power module is a wind tunnel. Thermal Testing Setup Delta’s DC/DC power modules are characterized in heated vertical wind tunnels that simulate the thermal environments encount ered in most electronics equipment. This type of equipment commonly uses vertically mounted circuit cards in cabinet racks in which the power modules are mounted. The following figure shows the wind tunnel characterization setup. The power module is mount ed on a test PWB and is vertically positioned within the wind tunnel. The space between the neighboring PWB and the top of the power module is constantly kept at 6.35mm (0.25’’). AIR FLOW MODULE PWB 50.8(2.00") AIR VELOCITY AND AMBIENT TEMPERATURE SURED BELOW THE MODULE FANCING PWB Note: Wind Tunnel Test Setup Figure Dimensions are in millimeters and (Inches) Figure 17: Wind tunnel test setup Thermal Derating Heat can be removed by increasing airflow over the module. To enhance system reliability, the power module should always be operated below the maximum operating temperature. If the temperature exceeds the maximum module temperature, reliability of the unit may be affected.

DS_Q48SE12025_06242013 MECHANICAL DRAWING (WITH HEAT SPREADER) * For modules with through-hole pins and the optional heat spreader, they are intended for wave soldering assembly onto system boards; please do not subject such modules through reflow temperature profile.

DS_Q48SE12025_06242013 MECHANICAL DRAWING (WITHOUT HEAT SPREADER) Pin No. Name Function +Vin ON/OFF Case -Vin -Vout +Vout Positive input voltage Remote ON/OFF Optional Negative input voltage Negative output voltage Positive output voltage Pin Specification: Pins 1-4 1.00mm (0.040”) diameter Pins 5 &6 2. 1.50mm (0.059”) diameter All pins are copper with Tin plating and Nickel over plating.

DS_Q48SE12025_06242013 RECOMMENDED LAYOUT

DS_Q48SE12025_06242013 PART NUMBERING SYSTEM Q 48 S E 120 25 N R F A Form Factor Input Voltage Number of Outputs Product Series Output Voltage Output Current ON/OFF Logic Pin Length Option Code Q - Quarter Brick 48-38V~75V S - Single E- QB high power series 120 – 11.8V 25 - 25A N - Negative P - Positive K - 0.110” N - 0.146” R - 0.170” C - 0.181” S - 0.189” T - 0.220” L - 0.248” F- RoHS 6/6 (Lead Free) Space- RoHS5/6 A - Std. Functions without case pin H-with heat spreader and case pin N- with heat spreader without case pin MODEL LIST MODEL NAME INPUT OUTPUT EFF @ 100% LOAD Q48SE12025NRFA 38V~75V 11A 11.8V 25A 95.2% Q48SE12025NRFH 38V~75V 11A 11.8V 25A 95.2% Q48SE12025NRFN 38V~75V 11A 11.8V 25A 95.2% Q48SE12025NNFA 38V~75V 11A 11.8V 25A 95.2% Default remote on/off logic is negative and pin length is 0.170” For different remote on/off logic and pin length, please refer to part numbering system above or contact your local sales * For modules with through-hole pins and the optional heat spreader, they are intended for wave soldering assembly onto system boards; please do not subject such modules through reflow temperature profile. CONTACT: www.deltaww.com/dcdc USA: Telephone: East Coast: 978-656-3993 West Coast: 510-668-5100 Fax: (978) 656 3964 Email: DCDC@delta-corp.com Europe: Phone: +31-20-655-0967 Fax: +31-20-655-0999 Email: DCDC@delta-es.com Asia & the rest of world: Telephone: +886 3 4526107 ext 6220~6224 Fax: +886 3 4513485 Email: DCDC@delta.com.tw WARRANTY Delta offers a two (2) year limited warranty. Complete warranty informat ion is listed on our web site or is available upon request from Delta. Information furnished by Delta is believed to be accurate and reliable. However, no responsibility is assumed by Delta for it s use, nor for any infringements of patents or other rights of third parties, which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Delta. Delta reserves the right to revise these specificatio ns at any time, without notice.