PQ55540HTL05 SYNQOR | Alldatasheet

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Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 1 TTechnicalechnical SSpecificationpecification PQ55540HTL05PQ55540HTL05 TThhee PPQQ5555554400HHTTLL0055 PPoowweerrQQoorr®® TTeerraa hhaallff--bbrriicckk ccoonnvveerrtteerr iiss aa nneexxtt--ggeenneerraattiioonn,, bbooaarrdd--mmoouunnttaabbllee,, iissoollaatteedd,, ffiixxeedd sswwiittcchh-- iinngg ffrreeqquueennccyy DDCC//DDCC ccoonnvveerrtteerr tthhaatt uusseess ssyynncchhrroonnoouuss rreeccttii-- ffiiccaattiioonn ttoo aacchhiieevvee eexxttrreemmeellyy hhiigghh ccoonnvveerrssiioonn eeffffiicciieennccyy.. TThhee ppoowweerr ddiissssiippaatteedd bbyy tthhee ccoonnvveerrtteerr iiss ssoo llooww tthhaatt aa hheeaattssiinnkk iiss nnoott rreeqquuiirreedd,, wwhhiicchh ssaavveess ccoosstt,, wweeiigghhtt,, hheeiigghhtt,, aanndd aappppllii-- ccaattiioonn eeffffoorrtt.. TThhee TTeerraa sseerriieess ccoonnvveerrtteerrss ooffffeerr tthhee mmaaxxiimmuumm uusseeaabbllee oouuttppuutt ppoowweerr ffoorr aa ssttaannddaarrdd ““hhaallff--bbrriicckk”” mmoodduullee.. TThhee 5544VV TTeerraa uunniittss aarree ddeessiiggnneedd ttoo bbee uusseedd pprriimmaarriillyy iinn PPoowweerr oovveerr EEtthheerrnneett ((PPooEE)) aapppplliiccaattiioonnss.. RRooHHSS CCoommpplliiaanntt ((sseeee ppaaggee 1122)).. PQ55540HTL05 Module 38-55V38-55V 54V54V 275W275W 2250Vdc2250Vdc Half-brick Half-brick InputInput OutputOutput PowerPower IsolationIsolation DC/DC ConverDC/DC Conver terter

  • Ultra-high efficiency, 93% at full rated load current
  • Delivers up to 275 Watts of output power with mini- mal derating - no heatsink required
  • Input voltage range: 38V – 55V suitable for 48V bus

applications

  • Fixed frequency switching provides predictable EMI performance Operational FeaturesOperational Features
  • Input under-voltage lockout disables converter at low input voltage conditions
  • Output current limit and short circuit shutdown protects converter and load from permanent damage
  • Active back bias limit prevents damage to converter from external load induced pre-bias
  • Output over-voltage protection
  • Thermal shutdown PrProtection Featuresotection Features
  • On/Off control referenced to input side (positive and negative logic options are available)
  • Remote sense for the output voltage compensates for output distribution drops
  • Output voltage trim permits custom voltages and voltage margining ContrContr ol Featuresol Features
  • 2250V, 30 M Ω input-to-output isolation
  • UL/cUL 60950-1 recognized (US & Canada), basic insulation rating
  • TUV certified to EN60950-1
  • Meets 72/23/EEC and 93/68/EEC directives
  • Meets UL94V-0 flammability requirements Safety FeaturesSafety Features
  • Industry standard half-brick pin-out configuration
  • Industry standard size: 2.3” x 2.4” (58.4 x 61.0mm)
  • Total height only 0.34” (8.7mm), permits better airflow and smaller card pitch
  • Total weight: 2.6 oz. (75 grams) Mechanical FeaturesMechanical Features

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 2 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V

54 V54 V

5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification 0.19 (4.8) 1.90 (48.3) 2.30 (58.4) 0.50 (12.7) 0.400 (10.16) Load Board Bottom side Clearance See Note 10 Lowest Component 1.400 (35.56) 2.40 (61.0) 0.400 (10.16) 1.000 (25.40) 1.400 (35.56) 0.700 (17.78) 0.343+/-0.017 (0.3+/-0.22) Top View Side View Pin No. Name Function

1 Vin(+) Positive input voltage

2 ON/OFF TTL input to turn converter

on and off, referenced to Vin(-), with internal pull up.

3 Vin(-) Negative input voltage

4 Vout(-) Negative output voltage

5 SENSE(-) Return remote sense 1

6 TRIM Output voltage trim 2

7 SENSE(+) Positive remote sense 3

8 Vout(+) Positive output voltage

Notes: 1. SENSE(–) should be connected to Vout(–) either remotely or at the converter. 2. Leave TRIM pin open for nominal output voltage. 3. SENSE(+) should be connected to Vout(+) either remotely or at the converter. 0.145 (3.68) See Note 4 NOTES 1) Pins 1-3, 5-7 are 0.040” (1.02mm) diameter. with 0.080” (2.03mm) diameter standoff shoulders. 2) Pins 4 and 8 are 0.080” (2.03 mm) diameter with 0.125” (3.18mm) diameter standoff shoulders. 3) Other pin extension lengths available. Recommended pin length is 0.03” (0.76mm) greater than the PCB thickness. 4) All Pins: Material - Copper Alloy Finish (RoHS 5/6) - Tin/Lead over Nickel plate Finish (RoHS 6/6) - Matte Tin over Nickel plate 5) Undimensioned components are shown for visual reference only. 6) All dimensions in inches (mm) 7) Weight: 2.6 oz. (75g) typical 8) Workmanship: Meets or exceeds IPC-A-610C Class II 9) UL/TUV standards require a clearance greater than 0.04” (1.02mm) between input and output for Basic insulation. This issue should be considered if any copper traces are on the top side of the user’s board. Note that the ferrite cores are considered part of the input/primary circuit. PIN DESIGNATIONS MECHANICAL DIAGRAM

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 3 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification Parameter Min. Typ. Max. Units Notes & Conditions ABSOLUTE MAXIMUM RATINGS Input Voltage Non-Operating 60 V Continuous Operating 55 V Continuous Isolation Voltage (input to output) 2250 V Basic insulation level, Pollution degree 2 Operating Temperature -40 100 °C Storage Temperature -55 125 °C Voltage at ON/OFF input pin -2 18 V INPUT CHARACTERISTICS Operating Input Voltage Range 38 48 55 V Input Under-Voltage Lockout Turn-On Voltage Threshold 34.5 35.5 36.5 V Turn-Off Voltage Threshold 32.2 33.2 34.2 V Lockout Voltage Hysteresis 2.2 2.3 2.4 V Input Over-Voltage Shutdown 58.3 59.2 60.0 V Maximum Input Current 8.5 A 100% Load, 38 Vin, trim up 5% No-Load Input Current 95 125 mA Disabled Input Current 2.5 5 mA Inrush Current Transient Rating 0.058 A 2s Response to Input Transient 2 V 1000V/ms input trans; 200µF cap; Figure 17 Input Reflected Ripple Current 172 mA RMS thru 10 µH inductor; Figures 13 & 15 Input Terminal Ripple Current 174 mA RMS ; Figures 13 & 14 Recommended Input Fuse 20 A Fast blow external fuse recommended Input Filter Component Values (L\\C) 2\\11 µH\\µF Internal values, see Figure E Recommended External Input Capacitance 47 µF Typical ESR 0.1-0.2 Ω, see Figure 13 OUTPUT CHARACTERISTICS Output Voltage Set Point 53.50 54.00 54.50 V Output Voltage Regulation Over Line +0.05 \\ 20 +0.1 \\ 50 %\\mV Over Load +0.1 \\ 40 +0.15 \\ 75 %\\mV Over Temperature +150 +300 mV Total Output Voltage Range 52.4 55.6 V Over sample, line, load, temperature & life Output Voltage Ripple and Noise 1 20MHz bandwidth; Figures 13 & 16 Peak-to-Peak 190 225 mV Full Load, see Figures 13 & 16 RMS 50 75 mV Full Load, see Figures 13 & 16 Operating Output Current Range 0.5 5.1 A Subject to thermal derating; Figures 5 - 8 Output DC Current-Limit Inception 5.60 5.95 6.3 A Output Voltage 10% Low; Figure 23 Output DC Current-Limit Shutdown Voltage 30 V Maximum Output Capacitance 1,800 µF 54Vout at 5.1A Resistive Load DYNAMIC CHARACTERISTICS Input Voltage Ripple Rejection 50 dB 120 Hz; Figure 20 Output Voltage during Load Current Transient For a Step Change in Output Current (0.1A/µs) 500 mV 50-75-50% Iout max; 200µF cap; Figure 11 For a Step Change in Output Current (1A/µs) 500 mV 50-75-50% Iout max; 200µF cap; Figure 12 Settling Time 400 µs To within 1% Vout nom Turn-On Transient Turn-On Time 25 40 ms Full load, Vout=90% nom.; Figures 9 & 10 Start-Up Inhibit Time 200 220 240 ms -40°C to +125°C; Figure A Output Voltage Overshoot 0 % 1mF load capacitance, Iout = 0A EFFICIENCY 100% Load 92.9 % Figures 1 - 4 50% Load 93.6 % Figures 1 - 4 TEMPERATURE LIMITS FOR POWER DERATING CURVES Semiconductor Junction Temperature 125 °C Package rated to 150°C Board Temperature 125 °C UL rated max operating temp 130°C Transformer Temperature 125 °C See Figures 5 - 8 for derating curves Baseplate Temperature 100 °C Baseplated version only ISOLATION CHARACTERISTICS Isolation Voltage (dielectric strength) 2250 V Isolation Resistance 30 M Ω Isolation Capacitance2 3300 pF PQ55540HTL05 ELECTRICAL CHARACTERISTICS TA=25°C, airflow rate=300 LFM, V in=48Vdc unless otherwise noted; full operating temperature range is -40°C to +100°C ambient tem- perature with appropriate power derating. Specifications subject to change without notice. Note 1: For applications requiring reduced output voltage ripple and noise, consult SynQor applications suppor t (e-mail: support@synqor.com). Note 2: Higher values of isolation capacitance can be added exter nal to the module.

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 4 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification ParameterP Min. Typ. Max. Units Notes & Conditions FEATURE CHARACTERISTICS Switching Frequency 230 260 290 kHz Regulation and Isolation stages ON/OFF Control (Option P) Off-State Voltage -2 0.8 V On-State Voltage 2.7 18 V ON/OFF Control (Option N) Off-State Voltage 2.7 18 V On-State Voltage -2 0.8 V ON/OFF Control (Either Option) Figures A & B Pull-Up Voltage Vin/6 15 V Pull-Up Resistance 42 k Ω Output Voltage Trim Range -20 +5 % Measured across Pins 8 & 4; Figure C Output Voltage Remote Sense Range +5 % Measured across Pins 8 & 4 Output Over-Voltage Protection 110 % Over full temp range; % of nominal Vout Over-Temperature Shutdown 125 °C Average PCB Temperature Over-Temperature Shutdown Restart Hysteresis 9 °C Load Current Scale Factor 147 See App Note: Output Load Current Calc. RELIABILITY CHARACTERISTICS STANDARDS COMPLIANCE ParameterP Notes STANDARDS COMPLIANCE UL/cUL 60950-1 File # E194341, Basic insulation & pollution degree 2 EN60950-1 Certified by TUV 72/23/EEC 93/68/EEC Needle Flame Test (IEC 695-2-2) Test on entire assembly; board & plastic components UL94V -0 compliant IEC 61000-4-2 ESD test, 8kV - NP, 15kV air - NP (Normal Performance) GR-1089-CORE Section 7 - electrical safety, Section 9 - bonding/grounding

  • An external input fuse must always be used to meet these safety requirements. Contact SynQor for official safety certificates on new releases or download from the SynQor website. QUALIFICATION TESTING ParameterP # Units Test Conditions QUALIFICATION TESTING Life Test 32 95% rated V in and load, units at derating point, 1000 hours Vibration 5 10-55Hz sweep, 0.060” total excursion,1 min./sweep, 120 sweeps for 3 axis Mechanical Shock 5 100g minimum, 2 drops in x and y axis, 1 drop in z axis Temperature Cycling 10 -40°C to 100°C, unit temp. ramp 15°C/min., 500 cycles Power/Thermal Cycling 5 T operating = min to max, Vin = min to max, full load, 100 cycles Design Marginality 5 T min-10°C to Tmax+10°C, 5°C steps, Vin = min to max, 0-105% load Humidity 5 85°C, 85% RH, 1000 hours, 2 minutes on and 6 hours off Solderability 15 pins MIL-STD-883, method 2003
  • Extensive characterization testing of all SynQor products and manufacturing processes is performed to ensure that we supply robust, reliable product. Contact the factory for official product family qualification documents. ELECTRICAL CHARACTERISTICS (Continued) OPTIONS SynQor provides various options for Logic Sense, Pin Length and Feature Set for this family of DC/DC converters. Please consult the last page of this specification sheet for infor mation on available options. PATENTS SynQor is protected under various patents, including but not lim - ited to U.S. Patent #s 5,999,417; 6,222,742 B1; 6,594,159 B2; 6,545,890 B2.

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 5 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification Load Current (A) Efficiency (%)

38 Vin

48 Vin

55 Vin

Air Flow (LFM) Efficiency (%) 25 C 40 C 55 C Figure 2: Efficiency at nominal output voltage and 60% rated power vs. airflow rate for ambient air temperatur es of 25 °C, 40°C, and 55 °C (nominal input voltage). Load Current (A) Power Dissipation (W) Figure 3: Power dissipation at nominal output voltage vs. load current for minimum, nominal, and maximum input voltage at 25 °C. 0 100 200 300 400 Air Flow (LFM) Power Dissipation (W) 25 C 40 C 55 C Figure 4: Power dissipation at nominal output voltage and 60% rated power vs. airflow rate for ambient air temperatures of 25 °C, 40°C, and 55°C (nominal input voltage). 0.0 1.0 2.0 3.0 4.0 5.0 6.0 0 25 40 55 70 85 Ambient Air Temperature (ºC) Iout (A) 400 LFM (2.0 m/s) 300 LFM (1.5 m/s) 200 LFM (1.0 m/s) 100 LFM (0.5 m/s) Figure 5: Maximum output power derating cur ves vs. ambient air tem - perature for airflow rates of 100 LFM through 400 LFM with air flow- ing from input to output (nominal input voltage). Figure 6: Thermal plot of conver ter at 4.2 amp load cur rent (227W) with 55°C air flowing at the rate of 200 LFM. Air is flowing across the converter from input to output (nominal input voltage). Figure 1: Efficiency at nominal output voltage vs. load current for min- imum, nominal, and maximum input voltage at 25 °C.

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 6 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification 0 25 40 55 70 85 Ambient Air Temperature (ºC) Iout (A) 400 LFM (2.0 m/s) 300 LFM (1.5 m/s) 200 LFM (1.0 m/s) 100 LFM (0.5 m/s) Figure 7: Maximum output power derating curves vs. ambient air tem- perature for airflow rates of 100 LFM thr ough 400 LFM with air flow - ing from output to input (nominal input voltage). Figure 8: Thermal plot of converter at 4.0 amp load current (216W) with 55°C air flowing at the rate of 200 LFM. Air is flowing acr oss the converter from output to input (nominal input voltage). Figure 9: Turn-on transient at full load (resistive load) (10 ms/div). Input voltage pre-applied. Top Trace: Vout (20V/div). Bottom Trace: ON/OFF input (5V/div). Figure 10: Turn-on transient at 0.5A load (10 ms/div). Top Trace: Vout (20V/div). Bottom Trace: ON/OFF input (5V/div). Figure 11: Output voltage response to step-change in load current (50%-75%- 50% of Iout(max); dI/dt = 0.1A/µs). Load cap: 200µF , 450 mΩ ESR electrolytic cap and 1µF ceramic cap. Top trace: Vout (1V/div), Bottom trace: Iout (1A/div). Figure 12: Output voltage response to step-change in load current (50%-75%- 50% of Iout(max): dI/dt = 1A/ µs). Load cap: 200 µF , 450 mΩ ESR electrolytic cap and 1 µF ceramic cap. Top trace: Vout (1V/div), Bottom trace: Iout (1A/div).

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 7 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification Figure 13: Test set-up diagram showing measurement points for Input Terminal Ripple Current (Figure 14), Input Reflected Ripple Current (Figure 15) and Output V oltage Ripple (Figur e 16). µH source impedance DC/DC Converter See Fig. 15 See Fig. 14 See Fig. 16 1 µF ceramic capacitor 200 µF, 450mΩ ESR electrolytic capacitor 47 µF, <1Ω ESR electrolytic capacitor VSOURCE iS iC VOUT Figure 14: Input Terminal Ripple Current, i c, at full rated output cur- rent and nominal input voltage with 10 µH source impedance and 47 µF electrolytic capacitor (200 mA/div). (See Figure 13) Figure 15: Input reflected ripple current, i s, through a 10 µH source inductor at nominal input voltage and rated load current (10 mA/div). (See Figure 13) Figure 16: Output voltage ripple at nominal input voltage and rated load current (50 mV/div). Load capacitance: 1 µF ceramic capacitor and 200µF electrolytic capacitor. Bandwidth: 20 MHz. (See Figure 13) Figure 17: Output voltage r esponse to step-change in input voltage (1000V/ms). Load cap: 200µF , electrolytic output capacitance. Ch 1: Vin (10V/div), Ch 2: Vout (1V/div). Figure 18: Load current (2A/div) as a function of time when the con - verter attempts to turn on into a 3.3 Ω short circuit. Top trace (2.5ms/div) is an expansion of the on-time por tion of the bottom trace.

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 8 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification 0.001 0.01 0.1 10 100 1,000 10,000 100,000 Hz Output Impedance ( Figure 19: Magnitude of incremental output impedance (Z out = vout/iout) for minimum, nominal, and maximum input voltage at full rated power and 200µF capacitance. -80 -70 -60 -50 -40 -30 -20 -10 10 100 1,000 10,000 100,000 Hz Forward Transmission (dB) Figure 20: Magnitude of incremental forward transmission (FT = vout/vin) for minimum, nominal, and maximum input voltage at full rated power and 200µF capacitance. -50 -40 -30 -20 -10 10 100 1,000 10,000 100,000 Hz Reverse Transmission (dB) Figure 21: Magnitude of incremental reverse transmission (RT = iin/iout) for minimum, nominal, and maximum input voltage at full rated power and 200µF capacitance. 100 10 100 1,000 10,000 100,000 Hz Input Impedance ( Figure 22: Magnitude of incremental input impedance (Z in = vin/iin) for minimum, nominal, and maximum input voltage at full rated power and 200µF capacitance. 0123456 Load Current (A) Output Voltage (V) 38 V 48 V 55 V Figure 23: Output voltage vs. load current showing typical current limit curves and converter shutdown points.

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 9 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification BASIC OPERATION AND FEATURES The PowerQor series converter uses a two-stage power conver- sion topology. The first stage is a buck-converter that keeps the output voltage constant over variations in line, load, and temper- ature. The second stage uses a transformer to provide the func- tions of input/output isolation and voltage step-down to achieve the low output voltage required. Both the first stage and the second stage switch at a fixed fre- quency for predictable EMI performance. Rectification of the transformer’s output is accomplished with synchronous rectifiers. These devices, which are MOSFETs with a very low on-state resis- tance, dissipate far less energy than Schottky diodes. This is the primary reason that the PowerQor converter has such high effi- ciency, even at very low output voltages and very high output cur- rents. Dissipation throughout the converter is so low that it does not require a heatsink for operation. Since a heatsink is not required, the PowerQor conver ter does not need a metal baseplate or pot - ting material to help conduct the dissipated energy to the heatsink. The PowerQor conver ter can thus be built more simply and reliably using high yield sur face mount techniques on a PCB substrate. The PowerQor series of half-brick, quar ter-brick and eighth-brick converters uses the industr y standard footprint and pin-out config - uration. CONTROL FEATURES REMOTE ON/OFF (Pin 2 ): The ON/OFF input, Pin 2, permits the user to control when the converter is on or off. This input is referenced to the return terminal of the input bus, Vin(-). There are two versions of the converter that differ by the sense of the logic used for the ON/OFF input. In the positive logic version, the ON/OFF input is active high (meaning that a high turns the converter on). In the negative logic version, the ON/OFF signal is active low (meaning that a low turns the converter on). Figure A details five possible circuits for driving the ON/OFF pin. Figure B is a detailed look of the inter- nal ON/OFF circuitry. REMOTE SENSE(+ ) (Pins 8 and 6) : The SENSE(+ ) inputs cor- rect for voltage drops along the conductors that connect the con - verter’s output pins to the load. Pin 8 should be connected to Vout(+) and Pin 6 should be con- nected to Vout(-) at the point on the board where regulation is desired. A remote connection at the load can adjust for a voltage drop only as large as that specified in this datasheet, that is [Vout(+) - Vout(-)] – [Vsense(+) - Vsense(-)] < Sense Range % x V out Pins 8 and 6 must be connected for proper regulation of the out - put voltage. If these connections are not made, the conver ter will deliver an output voltage that is slightly higher than its specified value. Note : the output over-voltage protection circuit senses the voltage across the output (pins 9 and 5) to determine when it should trig- Open Collector Enable Circuit Figure A: Various circuits for driving the ON/OFF pin. Figure B: Internal ON/OFF pin circuitry Remote Enable Circuit Direct Logic Drive Negative Logic (Permanently Enabled) Positive Logic (Permanently Enabled) ON/OFF Vin(_) ON/OFF ON/OFF Vin(_) ON/OFF TTL/ CMOS Vin(_) ON/OFF Vin(_) Vin(_) TTL 50k 274k Vin(+) ON/OFF Vin(_) 50k 100pF

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 10 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification ger, not the voltage across the converter’s sense leads (pins 8 and 6). Therefore, the resistive drop on the board should be small enough so that output OVP does not trigger, even during load transients. OUTPUT VOLTAGE TRIM (Pin 7) : The TRIM input permits the user to adjust the output voltage across the sense leads up or down according to the trim range specifications. To decrease the output voltage, the user should connect a resistor between Pin 7 and Pin 6 (SENSE(-) input). For a desired decrease of the nominal output voltage, the value of the resistor should be Rtrim-down = ( 100% ) - 2 (k Ω)∆ where ∆%= Vnominal – Vdesired x 100%Vnominal To increase the output voltage, the user should connect a resistor between Pin 7 and Pin 8 (SENSE(+) input). For a desired increase of the nominal output voltage, the value of the resistor should be Figure C graphs the relationship between the trim resistor value and Rtrim-up and Rtrim-down, showing the total range the output voltage can be trimmed up or down. Figure C: Trim Graph for 54Vout module Note: the TRIM feature does not affect the voltage at which the output over -voltage protection circuit is triggered. T rimming the output voltage too high may cause the over -voltage protection cir- cuit to engage, par ticularly during transients. It is not necessary for the user to add capacitance at the Trim pin. The node is internally bypassed to eliminate noise. Total DC Variation of Vout: For the converter to meet its full specifications, the maximum variation of the DC value of Vout, due to both trimming and remote load voltage drops, should not be greater than that specified for the output voltage trim range. PROTECTION FEATURES Input Under-Voltage Lockout : The converter is designed to turn off when the input voltage is too low, helping avoid an input system instability problem, described in more detail in the appli- cation note titled “Input System Instability”. The lockout circuitry is a comparator with DC hysteresis. When the input voltage is ris - ing, it must exceed the typical Turn-On Voltage Threshold value (listed on the specification page) before the converter will turn on. Once the converter is on, the input voltage must fall below the typical Turn-Off Voltage Threshold value before the converter will turn off. Input Over-Voltage Shutdown : The converter turns off when the input voltage is too high, allowing the converter to withstand an input voltage as high as 60V without destruction. The shut- down circuitry is a comparator with DC hysteresis. When the input voltage exceeds the typical Input Over-Voltage Shutdown value, the converter will turn off. Once the converter is off, it will turn back on when the input voltage falls below the minimum Input Over-Voltage Shutdown value. Output Current Limit : The maximum current limit remains con - stant as the output voltage drops. However , once the impedance of the short across the output is small enough to make the output voltage drop below the specified Output DC Current-Limit Shutdown Voltage, the converter turns off. The converter then enters a “hiccup mode” where it repeatedly turns on and off at a 5 Hz (nominal) frequency with a 5% duty cycle until the short circuit condition is removed. This prevents excessive heating of the converter or the load board. Output Over-Voltage Limit : If the voltage across the output pins exceeds the Output Over-Voltage Protection threshold, the converter will immediately stop switching. This prevents damage to the load circuit due to 1) excessive series resistance in output current path from converter output pins to sense point, 2) a release of a short-circuit condition, or 3) a release of a current limit condition. Load capacitance determines exactly how high the output voltage will rise in response to these conditions. After 200 ms the converter will automatically restart. 100 1,000 10,000 100,000 0 2 4 6 8 1 01 21 41 61 82 0 Trim Resistance (kOhms) % Increase in Vout % Decrease in Vout (kΩ)Rtrim-up = Vnominal – 2) x VDES + VNOM 1.225 VDES - VNOM

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 11 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification Over-Temperature Shutdown : A temperature sensor on the converter senses the average temperature of the module. The thermal shutdown circuit is designed to turn the converter off when the temperature at the sensed location reaches the Over- Temperature Shutdown value. It will allow the converter to turn on again when the temperature of the sensed location falls by the amount of the Over-Temperature Shutdown Restart Hysteresis value. APPLICATION CONSIDERATIONS Input System Instability: This condition can occur because any DC/DC converter appears incrementally as a negative resistance load. A detailed application note titled “Input System Instability” is available on the SynQor website which provides an understanding of why this instability arises, and shows the preferred solution for correcting it. Application Circuits: Figure D below provides a typical cir- cuit diagram which details the input filtering and voltage trim- ming. Input Filtering and External Capacitance: Figure E below provides a diagram showing the internal input filter components. This filter dramatically reduces input terminal ripple current, which otherwise could exceed the rating of an external electrolyt- ic input capacitor. The recommended external input capacitance is specified in the “Input Characteristics ” section. More detailed information is available in the application note titled “EMI Characteristics” on the SynQor website. Vin External Input Filter Trim Vin(+) Iload Cload L C Vout(+) Rtrim-up or Rtrim-down Vsense(+) ON/OFF Vin(_) Vin(+) Vin(_) Vout(_) Vsense(_) Figure D: Typical application circuit (negative logic unit, permanently enabled). Figure E: Internal Input Filter Diagram (component values listed on page 3). Electrolytic Capacitor 47µF

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 12 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification Startup Inhibit Period: The Startup Inhibit Period ensures that the converter will remain off for approximately 200ms when it is shut down for any reason. When an output short is present, this generates a 5Hz "hiccup mode," which prevents the converter from overheating. In all, there are seven ways that the converter can be shut down, initiating a Startup Inhibit Period:

  • Input Under-Voltage Lockout
  • Input Over-Voltage Shutdown (not present in Quarter-brick)
  • Output Over-Voltage Protection
  • Over Temperature Shutdown
  • Current Limit
  • Short Circuit Protection
  • Turned off by the ON/OFF input Figure F shows three turn-on scenarios, where a Startup Inhibit Period is initiated at t 0, t1, and t2: Before time t0, when the input voltage is below the UVL threshold, the unit is disabled by the Input Under-Voltage Lockout feature. When the input voltage rises above the UVL threshold, the Input Under-Voltage Lockout is released, and a Startup Inhibit Period is initiated. At the end of this delay, the ON/OFF pin is evaluated, and since it is active, the unit turns on. At time t1, the unit is disabled by the ON/OFF pin, and it cannot be enabled again until the Startup Inhibit Period has elapsed. When the ON/OFF pin goes high after t 2, the Startup Inhibit Period has elapsed, and the output turns on within the typical Turn-On Time. RoHS Compliance: The EU led RoHS (Restriction of Hazardous Substances) Directive bans the use of Lead, Cadmium, Hexavalent Chromium, Mercury, Polybrominated Biphenyls (PBB), and Polybrominated Diphenyl Ether (PBDE) in Electrical and Electronic Equipment. This SynQor product is available as 5/6 RoHS compliant (product with lead) or 6/6 RoHS compliant. For more information please refer to SynQor’s RoHS addendum available at our RoHS Compliance / Lead Free Initiative web page or e-mail us at rohs@synqor .com. Under-Voltage Lockout Turn-On Threshold ON/OFF (pos logic) Figure F: Startup Inhibit Period (turn-on time not to scale) Vout Vin 200ms 200ms 200ms (typical start-up inhibit period) t0 t1 t2 t 25ms (typical turn on time) ON ON ONOFF OFF

Product # PQ55540HTL05 Phone 1-888-567-9596 www.synqor.com Doc.# 005-2HT554F Rev. A 04/20/06 Page 13 Input:Input: Output:Output: Current:Current: PPackage:ackage: 38-55 V38-55 V 5.1 A 5.1 A (275W)(275W) Half-brickHalf-brickTTechnical Sechnical Specificationpecification PART NUMBERING SYSTEM The part numbering system for SynQor’s PowerQor DC/DC converters follows the format shown in the example below. The first 12 characters comprise the base par t number and the last 3 characters indicate available options. Although there are no default values for enable logic and pin length, the most common options are negative logic and 0.145” pins. These part numbers are more likely to be readily available in stock for evaluation and prototype quantities. A “-G” suffix indi - cates 6/6 RoHS compliance. Application Notes A variety of application notes and technical white papers can be downloaded in pdf for mat from our website .

ORDERING INFORMATION

The tables below show the valid model numbers and ordering options for converters in this product family. When ordering SynQor converters, please ensure that you use the complete 15 character part number consisting of the 12 character base part number and the additional 3 characters for options. To order 6/6 RoHS compliant product please add a “-G” suffix. The following option choices must be included in place of the x y z spaces in the model numbers listed above. Output Max Output Voltage Current PQ55540HTL05xyz 38 - 55 V 54 V 5.0 A PQ55540HTM05xyz 38 - 55 V 54 V 5.0 A Model Number Input Voltage Enable Pin Feature Logic Length Set P - Positiv e N - Negative N - 0.145" R - 0.180" S - Standard Options Description: x y z PQ 55 540 H T L 05 N N S Product Family Package Size Performance Level Thermal Design Output Current Options (see Ordering Information) Input Voltage Output Voltage Warranty SynQor offers a three (3) year limited warranty. Complete warranty information is listed on our website or is available upon request from SynQor. Information furnished by SynQor is believed to be accurate and reliable. However, no responsibility is assumed by SynQor for its 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 SynQor. Contact SynQor for further information: Phone: 978-849-0600 Toll Free: 888-567-9596 Fax: 978-849-0602 E-mail: power@synqor .com Web: www .synqor.com Address: 155 Swanson Road Boxborough, MA 01719 USA