ISO-9001 CERTIFIED BY DSCC M.S.KENNEDY CORP. 6W DC-DC CONVERTERS 4707 Dey Road Liverpool, N.Y. 13088 DHC2800S SERIES (315) 701-6751 MIL-PRF-38534 CERTIFIED FEATURES: 70% Typical Efficiency All Ceramic Capacitors Surface Mount Magnetics Withstands 5000G MIL STD 461C CE03 (With EFJ2803 Filter) 80 Volt Input Transient Tolerent No Derating - -55°C to +125°C Wide Supply Range - 10V to 50V High Isolation - 500V High Power Density - 17W/in³ Output Voltage Adjustment - Standard Remote Shutdown Operates to 11V Input at 5W Available with 3.3V or 5V Outputs See DAC2800s Series for 12V and 15V Versions Available to DSCC SMD 5962-94629 and 5962-93092 DESCRIPTION: The DHC2800S series of DC-DC converters provides the ruggedness, reliability and features required to meet the advanced design challenges of today's hi-rel market. The use of advanced substrate and reflow soldering techniques during construction results in a rugged, cost-effective and completely solderable package. DHC2800S hybrid converter series utilizes all ceramic capacitors and surface mount magnetics to provide reliable operation at all operating temperatures while surviving very high G forces. DHC2800S standard features include output fault monitoring and/or turn on voltage point programming via the shutdown pin. All three functions may be implemented simultaneously with a minimum of external components. An output voltage adjustment/load compensation pin is also standard. Fault tolerant design protects these converters from most external circuit faults. The output and output adjust pins will withstand +35V while the shutdown pin will withstand +50V protecting the converters from a variety of system or board faults i.e. solder bridges, etc. Unique load fault protection circuitry allows this converter to pull up loads having difficult static load line characteristics and allows short term load excursions significantly beyond ratings in most applications. A transformer isolated forward converter topology operating at a switching frequency of 400kHz allows operation over a wide input voltage range. Internal filtering of both input and output eliminates the need for external capacitors in many applications. The 8-pin DIP package is hermetically sealed and isolated from the internal circuits. Heat sinking is recommended for full power operation at elevated ambient temperatures. 1 Rev. F 9/05 EQUIVALENT SCHEMATIC PIN-OUT INFORMATION TYPICAL APPLICATIONS 1 2 3 4 5 Isolated Step Down Power Supply Microprocessor Power Source Low Voltage Subsystem Power Source +50V VIN Input Voltage (pin 7 to pin 6) Input Transient (pin 7 to pin 6 @ 50mS) 80V VINT Output Current IOUT DHC2803S 2.0A DHC2805S 1.5A Case Temperature Range TC DHC2800S H/E -55°C to +125°C DHC2800S -40°C to +85°C ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ 8 Case 7 -Input 6 +Input 1 ABSOLUTE MAXIMUM RATINGS ○ +Output -Output Adjust/Comp NC Shutdown Plus ○ ○ ○ ○ ○ ○ ○ ○ TST Storage Temperature Range TLD Lead Temperature Range (10 Seconds) PD Power Dissipation TJ Junction Temperature θJC Thermal Resistance (Switches) ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ -65°C to +150°C 300°C See Efficiency Curve 150°C ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ 6.5°C/W ○ NOTE: 1 Continuous operation at or above absolute maximum ratings may adversely effect the performance and/or life cycle. 2 Rev. F 9/05 ELECTRICAL SPECIFICATIONS DHC2803S Parameter 8 Group A Subgroup Test Conditions 1 Step Load Recovery Step Line Response 2 Step Line Recovery 2 3.18 3.30 3.42 VDC 3.45 - - - VDC 1 152 - 1520 152 - 1520 mA 2,3 152 - 1520 - - - mA 1 152 - 1820 152 - 1820 mA 2,3 152 - 1820 - - - mA 1 - 85 190 - 85 190 mVp-p 2,3 - - 475 - - - mVp-p 1 - 165 200 - 165 225 mAp-p 2,3 - - 200 - - - mAp-p 1 - ±6 ±15 - ±6 ±20 mV 2,3 - - ±50 - - - mV VIN=16V, 28V and 40V 1 - ±10 ±25 - ±10 ±30 mV IOUT=0A, 0.9A and 1.8A 2,3 - - ±50 - - - mV 1 61 66 - 61 66 - % 2,3 58 - - - - - % IOUT=0.9A to/from 1.8A 4 - ±430 ±600 - ±430 ±650 mV BW=10KHz to 2MHz BW=10KHz to 2MHz VIN=16V to 40V Transition TIme=30µS 5,6 - - ±850 - - - mV IOUT=0.9A to/from 1.8A 4 - 85 300 - 85 300 µS Transition TIme=30µS 5,6 - - 300 - - - µS VIN=16V to/from 40V 4 - ±190 ±500 - ±190 ±500 mV Transition Time=30µS 5,6 - - ±500 - - - mV VIN=16V to/from 40V 4 - 120 500 - 120 500 µS Transition Time=30µS 5,6 - - 500 - - - µS 4 - 0 200 - 0 200 mV 5,6 - 0 200 - - - mV 4 - 30 50 - 30 50 mS 5,6 - - 50 - - - mS 4 - 220 500 - 220 500 µS 5,6 - - 500 - - - µS - - 60 - - 60 - mS POUT=6W MAX. 1,2,3 12 - 50 12 - 50 V POUT=5W MAX. 1,2,3 11 - 50 11 - 50 V POUT=2.5W MAX. 1,2,3 10 - 50 10 - 50 V Enabled, IOUT=0mA 1,2,3 - 35 40 - 35 45 mA mA Shutdown Delay 2 Shutdown Recovery 2 Capacitive Load 2 Isolation Max. 3.40 Start Up Delay Quiescent Current Typ. - Start Up Overshoot Input Voltage Range 2 Min. 3.30 Efficiency Step Load Response Max. 3.15 16V≤VIN≤50V Load Regulation Typ. 3.20 Output Current 2 Line Regulation Units Min. 1 12V≤VIN≤50V Input Current Ripple 2 DHC2803S 2,3 Output Voltage Output Voltage Ripple DHC2803S H/E Disabled IOUT=0mA 1,2,3 - 2 5 - 2 5 No Effect on DC Performance 1,2,3 - - 300 - - 300 µF Input to output or any pin to case @ 500V 1 100 - - 100 - - MΩ Short Circuit Current Limit 7 1 2.3 2.8 3.6 2.3 2.8 3.6 A Switching Frequency 4 375 400 425 350 400 450 KHz 1 ±10 - - ±10 - - % VOUT Adjustment Range RPOT=50KΩ NOTES: +VIN = 28V, IOUT = 1.8A for DHC2803S, IOUT = 1.0A for DHC2805S, TA=TC=25°C unless otherwise specified. Guaranteed by design but not tested. Typical parameters are representative of actual device performance but are for reference only. Industrial grade and "E" suffix devices shall be tested to subgroups 1 and 4 unless otherwise specified. Military grade devices ("H" suffix) shall be 100% tested to subgroups 1, 2, 3 and 4. Subgroups 5 and 6 testing available upon request. Subgroup 1, 4 TA=TC=+25°C 2, 5 TA=TC=+125°C 3, 6 TA=TC= -55°C 7 Device has internal shutdown feature that pulses the output with a low duty cycle during faults. 8 Refer to DSCC SMD for electrical specifications for devices purchased as such. 1 2 3 4 5 6 3 Rev. F 9/05 ELECTRICAL SPECIFICATIONS DHC2805S Parameter 8 Group A Subgroup Test Conditions 1 Step Load Recovery Step Line Response 2 Step Line Recovery 2 Start Up Overshoot Start Up Delay Capacitive Load 2 Isolation Max. 5.05 4.90 5.00 5.10 VDC 5.20 - - - VDC 1 120 - 1200 120 - 1200 mA 2,3 120 - 1200 - - - mA 1 120 - 1500 120 - 1500 mA 2,3 120 - 1500 - - - mA 1 - 75 190 - 75 190 mVp-p 2,3 - - 475 - - - mVp-p 1 - 100 200 - 100 225 mAp-p 2,3 - - 200 - - - mAp-p 1 - ±6 ±15 - ±6 ±20 mV 2,3 - - ±50 - - - mV VIN=16V, 28V and 40V 1 - ±10 ±25 - ±10 ±30 mV IOUT=0A, 0.5A and 1A 2,3 - - ±50 - - - mV 1 64 70 - 64 70 - % 2,3 62 - - - - - % IOUT=500mA to/from 1000mA 4 - ±300 ±500 - ±300 ±500 mV BW=10KHz to 2MHz BW=10KHz to 2MHz VIN=16V to 40V Transition TIme=30µS 5,6 - - ±750 - - - mV IOUT=500mA to/from 1000mA 4 - 90 300 - 90 300 µS Transition TIme=30µS 5,6 - - 300 - - - µS VIN=16V to/from 40V 4 - ±160 ±500 - ±160 ±500 mV Transition Time=30µS 5,6 - - ±500 - - - mV VIN=16V to/from 40V 4 - 140 500 - 140 500 µS Transition Time=30µS 5,6 - - 500 - - - µS 4 - 0 200 - 0 200 mV 5,6 - 0 200 - - - mV 4 - 30 50 - 30 50 mS 5,6 - - 50 - - - mS 4 - 220 500 - 220 500 µS 5,6 - - 500 - - - µS - - 60 - - 60 - mS POUT=6W MAX. 1,2,3 12 - 50 12 - 50 V POUT=5W MAX. 1,2,3 11 - 50 11 - 50 V POUT=2.5W MAX. 1,2,3 10 - 50 10 - 50 V Enabled, IOUT=0mA 1,2,3 - 35 40 - 35 45 mA mA IOUT=1A IOUT=0A and 1A Shutdown Recovery 2 Quiescent Current Typ. - Shutdown Delay 2 Input Voltage Range 2 Min. 5.00 Efficiency Step Load Response Max. 4.80 16V≤VIN≤50V Load Regulation Typ. 4.95 Output Current 2 Line Regulation Units Min. 1 12V≤VIN≤50V Input Current Ripple 2 DHC2805S 2,3 Output Voltage Output Voltage Ripple DHC2805S H/E Disabled IOUT=0mA 1,2,3 - 2 5 - 2 5 No Effect on DC Performance 1,2,3 - - 300 - - 300 µF Input to output or any pin to case @ 500V 1 100 - - 100 - - MΩ Short Circuit Current Limit 7 1 1.6 1.9 2.2 1.5 1.9 2.3 A Switching Frequency 4 375 400 425 350 400 450 KHz 1 ±10 - - ±10 - - % VOUT Adjustment Range RPOT=50KΩ NOTES: 1 2 3 4 5 6 +VIN = 28V, IOUT = 1.8A for DHC2803S, IOUT = 1.0A for DHC2805S, TA=TC=25°C unless otherwise specified. Guaranteed by design but not tested. Typical parameters are representative of actual device performance but are for reference only. Industrial grade and "E" suffix devices shall be tested to subgroups 1 and 4 unless otherwise specified. Military grade devices ("H" suffix) shall be 100% tested to subgroups 1, 2, 3 and 4. Subgroups 5 and 6 testing available upon request. Subgroup 1, 4 TA=TC=+25°C 2, 5 TA=TC=+125°C 3, 6 TA=TC= -55°C 7 Device has internal shutdown feature that pulses the output with a low duty cycle during faults. 8 Refer to DSCC SMD for electrical specifications for devices purchased as such. 4 Rev. F 9/05 APPLICATION NOTES POWER SUPPLIES LOAD FAULT RESPONSE The output voltage of the DHC2800S may be adjusted from 90% to 110% of nominal value by the use of a 50KΩ potentiometer as shown. Adjustment beyond this range is possible however certain characteristics of the converter such as but not limited to input voltage range, efficiency, ripple and temperature performance will change. Characterization by the user is recommended in such applications. The DHC2800S series of dc-dc converters share load fault philosophies. Load fault conditions include short-circuit and severe overload conditions. The DHC2800S converter series responds to load faults by turning off all power conversion circuits for 250mS and then attempting to restart for 10mS (typical). The net "on" duty factor during a fault is very low resulting in low converter dissipation and immunity from overheating at 125°C. Current beyond rated can flow into the load at startup time. This allows the converter to bring up capacitive and other difficult load types more reliably than competing converters. Adjust/comp (pin 3) may be driven by external circuitry referenced to pin 2 (-output) if desired. Grounding pin 3 causes voltage to increase (25% typically) while driving pin 3 above 1.3V causes output voltage to decrease. Pin 3 may be driven through 10KΩ or more if connection of the comp function is also required. The comp function of pin 3 allows capacitive loads as large as 1000µF to be accommodated on the DHC2805S without loss of stability. This feature may be utilized by connecting a 10nF capacitor between pins 3 and 1. This is generally recommended when low ESR load capacitances of 100µF or greater are used. SHUTDOWN PLUS Pin 5 is used for remote shutdown, output fault detection, and/or setting the input voltage point at which the converter will turn on as shown in the typical application diagram. No connection to pin 5 is necessary for normal operation of the converter. Pin 5 is referenced to the -input (pin 7). Shutdown may be implemented by simply connecting pin 5 to an open collector logic output or switch rated at 2.5mA, 25Vdc or higher. Input voltage turn on point is programmed with a single resistor from pin 5 to 7. An input turn on/off hysteresis (typically 3.5% of Vin) will be observed. This should be considered when making or verifying set point adjustment. The value of the setpoint resistor may be determined by the following: R= 210·10³ ETO-9.5 (±10% accuracy at 25°C) Set point temperature coefficient is typically +400ppm/°C. Output fault monitoring is accomplished by observing pin 5 with a high impedance monitoring circuit. Pin 5 voltage drops from over 10V to below 1V when a load fault causes the converters fault protection circuitry to activate. It will remain low for at least 100mS and return high. If the load fault is still present pin 5 will return low and the cycle will repeat. A resistor >400KΩ from pin 5 to 7 provides pull down for pin 5 if there is no input setpoint programming resistor already in place. 5 Rev. F 9/05 TYPICAL APPLICATION CIRCUIT 6 Rev. F 9/05 TYPICAL PERFORMANCE CURVES DHC2803S EFFICIENCY CONTOURS EFFICIENCY CONTOURS 65% 20 1V LOAD TRANSIENT RESPONSE 1000µF VOUT 1.8A 500mA OUTPUT RESPONSE, X (UNITS/DIV) VOUT (1V/DIV) .9A IOUT INCLUDES 1000µF ON OUTPUT BUS 1V VOUT 1.8A 500mA OUTPUT RESPONSE, X (UNITS/DIV) VOUT (1V/DIV) 0.5 1.0 1.5 2.0 OUTPUT CURRENT, IOUT (A) LOAD TRANSIENT RESPONSE .9A IOUT NO OUTPUT BUS CAPCITANCE LINE TRANSIENT RESPONSE VOUT 40V 16V VIN TIME, t (200µsec/DIV) TURN ON THRESHOLD TURN ON RESPONSE 12 10K 20K 30K 40K 60K 90K SET POINT RESISTOR, RSP (Ω) RESPONSE, XV(UNITS/DIV) OUT(1V/DIV) 10 V 1V 16 11 .18 .36 .72 1.08 1.44 1.8 OUTPUT CURRENT, IOUT (A) LOAD TRANSIENT RESPONSE 100µF LINE TRANSIENT RESPONSE VOUT 28V INCLUDES 100µF ON OUTPUT BUS TIME, t (5msec/DIV) 7 VOUT 80V 11V VIN TIME, t (200µsec/DIV) 3.3V 0V VIN .9A IOUT INCLUDES 100µF ON OUTPUT BUS LOAD 1.8A 0V VOUT 1.8A 0 28 20 65% 66% TIME, t (200µsec/DIV) TIME, t (500µsec/DIV) 24 20 TIME, t (100µsec/DIV) OUTPUT RESPONSE, V XOUT (UNITS/DIV) (50mV/DIV) 10V 50mV INPUT VOLTAGE, VIN (V) OUTPUT DC CURRENT RATING 12 64% 67% 68% 11 .18 .36 .72 1.08 1.44 1.8 OUTPUT CURRENT, IOUT (A) LOW LINE DROP OUT 14 62% 30 68% 70% 16 66% 67% INPUT VOLTAGE, VIN (V) 69% 63% 60% 1V 20 60% 55% 500mA 68% 30 50% 40 100mV 67% 55% TEMP = 125°C 30% 40% 20V 30 50% OUT(1V/DIV) OUTPUT RESPONSE, XV(UNITS/DIV) 63% 65% 40 (100mV/DIV) OUTPUT RESPONSE, V XOUT (UNITS/DIV) 60% TEMP = –55°C 40% AUDIO REJECTION, A V (dB) 50% 55% 40 11 .18 .36 .72 1.08 1.44 1.8 OUTPUT CURRENT, IOUT (A) TURN ON VOLTAGE, ETO (V) 50 30% TEMP = 25°C 40% 10 0.0 EFFICIENCY CONTOURS 50 30% INPUT VOLTAGE, VIN (V) INPUT VOLTAGE, VIN (V) 50 –20 AUDIO REJECTION VIN = 28V IOUT = 2.0A –40 –60 –80 –100 100 200 400 1K 2K 4K 10K 20K 40K 100K FREQUENCY, f (Hz) Rev. F 9/05 TYPICAL PERFORMANCE CURVES DHC2805S EFFICIENCY CONTOURS EFFICIENCY CONTOURS 30% TEMP = 25°C 40% 50% 55% 40 60% 30 65% 68% 70% 71% 20 TEMP = –55°C 40% 40 50% 55% 30 60% 63% 66% 20 68% 69% TEMP = 125°C 50% 55% 40 60% 63% 30 66% 20 68% 69% 70% 70% LOAD TRANSIENT RESPONSE 100µF 500mA 1.2A IOUT 600mA INCLUDES 1000µF ON OUTPUT BUS LINE TRANSIENT RESPONSE LOAD = 1.2A VOUT 40V 16V VIN INCLUDES 100µF ON OUTPUT BUS TIME, t (200µsec/DIV) TURN ON THRESHOLD TURN ON RESPONSE 16 12 10K 20K 30K 40K 60K 90K SET POINT RESISTOR, RSP (Ω) RESPONSE, XV(UNITS/DIV) OUT(2V/DIV) 10 V 2V 20 INCLUDES 100µF ON OUTPUT BUS VOUT 28V 0V VIN INCLUDES 100µF ON OUTPUT BUS 8 LOAD = 1.2A VIN 11V TIME, t (200µsec/DIV) 5.0V TIME, t (5msec/DIV) VOUT 80V LOAD = 1.2A 0V INCLUDES 100µF ON OUTPUT BUS LINE TRANSIENT RESPONSE 0 28 600mA IOUT TIME, t (200µsec/DIV) TIME, t (500µsec/DIV) 24 500mA TIME, t (100µsec/DIV) 100mV VOUT VOUT 1.2A 20V 1V LOAD TRANSIENT RESPONSE 1000µF NO OUTPUT BUS CAPCITANCE (100mV/DIV) OUTPUT RESPONSE, V XOUT (UNITS/DIV) 0.4 0.8 1.2 1.6 OUTPUT CURRENT, IOUT (A) 600mA IOUT AUDIO REJECTION, A V (dB) 10 0.0 1.2A 500mA 12 OUTPUT RESPONSE, V XOUT (UNITS/DIV) (50mV/DIV) 10V 50mV OUTPUT DC CURRENT RATING 14 VOUT 1V LOAD TRANSIENT RESPONSE OUT(1V/DIV) OUTPUT RESPONSE, XV(UNITS/DIV) LOW LINE DROP OUT 1V 11 .12 .24 .48 .78 .96 1.2 OUTPUT CURRENT, IOUT (A) OUTPUT RESPONSE, X (UNITS/DIV) VOUT (1V/DIV) 11 .12 .24 .48 .78 .96 1.2 OUTPUT CURRENT, IOUT (A) TEMP = 25°C INPUT VOLTAGE, VIN (V) 30% 40% 11 .12 .24 .48 .78 .96 1.2 OUTPUT CURRENT, IOUT (A) 16 OUTPUT RESPONSE, V X OUT (UNITS/DIV) (1V/DIV) INPUT VOLTAGE, VIN (V) 30% 50 72% TURN ON VOLTAGE, ETO (V) EFFICIENCY CONTOURS 50 INPUT VOLTAGE, VIN (V) INPUT VOLTAGE, VIN (V) 50 –20 AUDIO REJECTION VIN = 28V IOUT = 1.2A –40 –60 –80 –100 100 200 400 1K 2K 10K 20K FREQUENCY, f (Hz) 100K Rev. F 9/05 MECHANICAL SPECIFICATIONS ESD TRIANGLE INDICATES PIN 1 WEIGHT= 14.5 GRAMS TYPICAL CONTAINS INTERNAL BeO (BERYLLIUM OXIDE) ALL DIMENSIONS ARE ±0.010 INCHES UNLESS OTHERWISE LABELED ORDERING INFORMATION Part Number DHC2803S DHC2803SE DHC2803SH DHC2805S DHC2805SE DHC2805SH 5962-93092 5962-94629 Screening Level Output Voltage Industrial Extended Reliability Mil-PRF-38534 Class H Industrial Extended Reliability Mil-PRF-38534 Class H DSCC-SMD for DHC2805S DSCC-SMD for DHC2805S 3.3V 5.0V M.S. Kennedy Corp. 4707 Dey Road, Liverpool, New York 13088 Phone (315) 701-6751 FAX (315) 701-6572 www.mskennedy.com The information contained herein is believed to be accurate at the time of printing. MSK reserves the right to make changes to its products or specifications without notice, however, and assumes no liability for the use of its products. Please visit our website for the most recent revision of this datasheet. 9 Rev. F 9/05