DH50 SERIES. DATASHEET Rev. A

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1 DATASHEET DH50 SERIES 2:1 Wide Input Voltage Ranges Single Outputs, Efficiency up to 92% 2.0 x 1.0 x 0.4 Encapsulated Shielded Metal Package FEATURES RoHS & UL 94V-0 Compliant 50 Watts Output Power 2:1 Wide Input Voltage Ranges Single Outputs Remote ON/OFF Control 1500VDC I/O Isolation No Minimum Requirement High Efficiency up to 92% Trimmable Output Voltage Shielded Metal Case with Isolated Base-plate Over, Short Circuit, Over Voltage, and Over Temperature Protection UL/cUL and IEC/EN Safety Approvals (Pending) Heatsink (Optional) DESCRIPTION The DH50 series is the latest generation of high performance DC/DC converters setting a new standard concerning power density. These converters offer 50 Watts of continuous output power in a 2.0 x 1.0 x 0.4 encapsulated, shielded metal package. All models have a 2:1 wide input voltage range and a precisely regulated single output. Advanced circuit topology provides a very high efficiency up to 92% and an operating temperature range of - C to + C. Further features include remote on/off, trimmable output voltage, under-voltage shutdown as well as over load, over Voltage, short circuit, and over-temperature protection. These converters are RoHS complaint and are ideal for use in battery operated equipment, instrumentation, distributed power architectures in communication and industrial electronics and many other space critical applications. 04/17/ Fax Page 1 of 9

2 SPECIFICATIONS: DH50 SERIES All specifications are based on 25 C, Nominal Input Voltage, and Maximum Output Current unless otherwise noted. We reserve the right to change specifications based on technological advances. SPECIFICATION TEST CONDITIONS Min Typ Max Unit INPUT SPECIFICATIONS 12VDC nominal input models Input Voltage Range 24VDC nominal input models VDC 48VDC nominal input models VDC nominal input models Input Surge Voltage (ms max.) 24VDC nominal input models VDC 48VDC nominal input models VDC nominal input models 9 Start-up Voltage 24VDC nominal input models 18 VDC 48VDC nominal input models 36 12VDC nominal input models 8.3 Shutdown Voltage 24VDC nominal input models 16.5 VDC 48VDC nominal input models 33 Input Current Reflected Ripple Current (Page 7) Input Filter (Note 1) for EN55022 Class A compliance see Note 1 Pi Filter OUTPUT SPECIFICATIONS Output Voltage Start-up Time 25 ms Line Regulation Low line to high line at full load ±0.5 % Regulation min load to full load ±0.5 % Output Voltage Accuracy Full load an nominal Vin ±1.0 % Output Voltage Trim (Page 6) % of nominal output voltage ±10 % Output Power 50 W Output Current Minimum No minimum load required Ripple & Noise (MHz) (Page 7) Measured with a 1µF MLCC and a 3.3V & 5V output models mvp-p 10µF tantalum capacitor in parallel 12V & 15V output models 150 mvp-p Transient Recovery Time Measured to within 1% error band for a step change in output load from 75% to % 250 µs Temperature Coefficient ±0.02 %/ C PROTECTION Short Circuit Protection Hiccup, automatic recovery Over Voltage Protection (page 7) Over Protection Hiccup at nominal Vin % Over Temperature Protection yes 12VDC nominal input models 00mA slow-blow type Input Fuse (Note 2) 24VDC nominal input models 5000mA slow-blow type 48VDC nominal input models 2500mA slow-blow type GENERAL SPECIFICATIONS Efficiency Nominal input voltage and full load Switching Frequency 3 KHz Isolation Voltage (Input to Output) seconds 1500 VDC Isolation Resistance 500VDC 0 MΩ Isolation Capacitance khz, 1V 20 pf Maximum Capacitive REMOTE ON/OFF (Page 7) Positive Logic On 3.5~12V or open circuit Off 0V ~ 1.2 or short circuit Control Input Current On Vctrl = 5.0V 0.5 Off Vctrl = 0V -0.5 ma Control Common Referenced to negative input Stand-by Input Current Nominal Vin 2.5 ma PHYSICAL SPECIFICATIONS Weight 1.06oz (30g) Dimensions (L x W x H) 2.0 x 1.0 x 0.43 inches (50.8 x 25.4 x 11 mm) Case Material Aluminum alloy, black anodized coating Base Material FR4 PCB (flammability to UL 94V-0 rated) Potting Material Epoxy (UL 94V-0) Heatsink (optional) See page 4 SAFETY Safety Approvals (pending) UL/cUL recognition (CSA certificate), IEC/EN (CB-scheme) 04/17/ Fax Page 2 of 9

3 SPECIFICATION TEST CONDITIONS Min Typ Max Unit ENVIRONMENTAL SPECIFICATIONS 3.3VDC Output Models Operating Temperature (Without Heatsink) Operating Temperature (With Heatsink) Thermal Impedance (Without Heatsink) Thermal Impedance (With Heatsink) air convection LFM Nominal Vin and full load air convection LFM Nominal Vin and full load DH24S5-50, DH24S12-50 DH24S15-50, DH48S5-50 DH48S12-50, DH48S DH12S12-50, DH12S DH12S VDC Output Models DH24S5-50, DH24S12-50 DH24S15-50, DH48S DH48S12-50, DH48S15-50 DH12S12-50, DH12S DH12S convection 12.1 LFM convection 9.2 convection 7.8 0LFM convection 5.2 convection 9.8 LFM convection 5.4 convection 4.5 0LFM convection 3.0 Case Temperature +105 C Storage Temperature C Humidity (non-condensing) 95 % RH RFI Six-sided shielded metal case Cooling Free air convection Lead Temperature 1.5mm from case for 10 seconds 2 C MTBF (calculated) MIL-HDBK-217F at 25 C, Ground Benign 227, hours C C C/W C/W MODEL SELECTION TABLE Model Number Input Voltage Output Voltage Output Input Current Current No Max Reflected Ripple Current (Typ) Over Voltage Protection Output Power Efficiency Max Capacitive DH12S VDC 10A 85mA 3090mA 3.9 VDC 33W 89% 25757μF DH12S VDC 5 VDC 10A 110mA 4630mA 6.2 VDC 50W 90% 17000μF 50mA DH12S12-50 (9 18 VDC) 12 VDC 4.167A 1mA 4579mA 15 VDC 50W 91% 2950μF DH12S VDC 3.333A 1mA 4579mA 18 VDC 50W 91% 1887μF DH24S VDC 10A 50mA 1545mA 3.9 VDC 33W 89% 25757μF DH24S VDC 5 VDC 10A 70mA 2264mA 6.2 VDC 50W 92% 17000μF ma DH24S12-50 (18 36 VDC) 12 VDC 4.167A 85mA 2264mA 15 VDC 50W 92% 2950μF DH24S VDC 3.333A 85mA 2264mA 18 VDC 50W 92% 1887μF DH48S VDC 10A 35mA 772mA 3.9 VDC 33W 89% 25757µF DH48S VDC 5 VDC 10A 45mA 1132mA 6.2 VDC 50W 92% 17000µF 30mA DH48S12-50 (36 75 VDC) 12 VDC 4.167A 50mA 1132mA 15 VDC 50W 92% 2950µF DH48S VDC 3.333A 50mA 1132mA 18 VDC 50W 92% 1887µF NOTES 1. The DH50 series can meet EN55022 Class A with external capacitors in parallel with the input pins. 12Vin Models: 22µF/25V 1210 MLCC 24Vin Models: 3.3µF/50V 1210 MLCC 48Vin Models: 2.2µF/V 1210 MLCC 2. All DC/DC converters should be externally fused at the front end for protection. 3. To order the converter with a heatsink, please add the suffix HS to the model number. (Ex: DH12S12-50HS) 04/17/ Fax Page 3 of 9

4 POWER DERATING CURVES DH12S3.3-33, DH24S3.3-33, DH48S Derating Curve without Heatsink DH12S3.3-33, DH24S3.3-33, DH48S Derating Curve with Heatsink LFM LFM 0LFM 0LFM DH24S5-50, DH24S12-50, DH24S15-50, DH48S5-50, DH48S12-50, DH48S15-50 Derating Curve without Heatsink DH24S5-50, DH24S12-50, DH24S15-50, DH48S5-50, DH48S12-50, DH48S15-50 Derating Curve with Heatsink LFM LFM 0LFM 0LFM DH12S12-50 and DH12S15-50 Derating Curve without Heatsink DH12S12-50 and DH12S15-50 Derating Curve with Heatsink LFM 0LFM LFM 0LFM DH12S5-50 Derating Curve without Heatsink DH12S5-50 Derating Curve with Heatsink LFM 0LFM LFM 0LFM /17/ Fax Page 4 of 9

5 MECHANICAL DRAWING Unit: inches (mm) 0. (10.16) 0. (5.08) Bottom View 1. (45.72) 2.00 (50.8) Ø0.04 (Ø1.00) PIN CONNECTIONS Pin Function 1 +Vin 2 -Vin 3 Remote On/Off 4 +Vout 5 -Vout 6 Trim 0.14 (3.6) Tolerance: X.XX±0.01 (X.X±0.25) X.XXX±0.005 (X.XX±0.13) Pin Diameter: Ø0.04±0.002 (Ø1.0±0.05) 0.04 (1.1) (10.16) 0. (10.16) 0.10 (2.54) 0.22 (5.5) 0.43 (11.0) 1.00 (25.4) Unit: inches (mm) Heatsink Option ( HS Suffix) Physical Characteristics Heatsink Material: Aluminum Finish: Black Anodized Coating Weight: 0.3 (9g) 0.91 (23.0) Advantages of Adding a Heatsink 1. To help heat dissipation and increase the stability and reliability of DC/DC converters at high operating temperature atmosphere. 2. To upgrade the operating temperature of DC/DC converters, please refer to Derating Curve (31.0) ref (18.0) ref. Heatsink Thermal pad Clamp 04/17/ Fax Page 5 of 9

6 EXTERNAL OUTPUT TRIM Output can be externally trimmed by using the method shown below Trim Up Trip Down DH50 Module Bottom View DH50 Module Bottom View Rup Rdown DHXXS TRIM TABLE DHXXS5-50 TRIM TABLE Trim Trim up R up Trim down R down Trim Trim up R up Trim down R down 1% 3.333V 70.50kΩ 3.267V 63.59kΩ 1% 5.050V 36.57kΩ 4.950V 45.53kΩ 2% 3.366V 29.28kΩ 3.234V 30.28kΩ 2% 5.V 16.58kΩ 4.900V.61kΩ 3% 3.399V 16.87kΩ 3.1V 18.19kΩ 3% 5.150V 9.92kΩ 4.850V 12.31kΩ 4% 3.432V 10.90kΩ 3.168V 11.95kΩ 4% 5.0V 6.59kΩ 4.0V 8.15kΩ 5% 3.465V 7.38kΩ 3.135V 8.13kΩ 5% 5.250V 4.59kΩ 4.750V 5.66kΩ 6% 3.498V 5.06kΩ 3.102V 5.56kΩ 6% 5.300V 3.25kΩ 4.700V 4.00kΩ 7% 3.531V 3.42kΩ 3.069V 3.70kΩ 7% 5.350V 2.30kΩ 4.650V 2.81kΩ 8% 3.564V 2.kΩ 3.036V 2.31kΩ 8% 5.0V 1.59kΩ 4.0V 1.92kΩ 9% 3.597V 1.25kΩ 3.003V 1.21kΩ 9% 5.450V 1.03kΩ 4.550V 1.23kΩ 10% 3.630V 0.49kΩ 2.970V 0.34kΩ 10% 5.500V 0.59kΩ 4.500V 0.68kΩ DHXXS12-50 TRIM TABLE DHXXS15-50 TRIM TABLE Trim Trim up R up Trim down R down Trim Trim up R up Trim down R down 1% 12.1V kΩ 11.8V kΩ 1% V kΩ V kΩ 2% 12.2V kΩ 11.7V kΩ 2% V kΩ V kΩ 3% 12.3V 94.97kΩ 11.6V kΩ 3% V kΩ V 145.kΩ 4% 12.4V 61.86kΩ 11.5V 68.86kΩ 4% 15.0V 71.43kΩ 14.0V 94.97kΩ 5% 12.0V 42.12kΩ 11.0V 46.39kΩ 5% V 48.85kΩ V 64.87kΩ 6% 12.7V 29.00kΩ 11.2V 31.36kΩ 6% V 33.71kΩ 14.V 44.92kΩ 7% 12.8V 19.66kΩ 11.1V.kΩ 7% V 22.86kΩ V 30.72kΩ 8% 12.9V 12.66kΩ 11.0V 12.51kΩ 8% 16.0V 14.69kΩ 13.0V.10kΩ 9% 13.0V 7.23kΩ 10.9V 6.21kΩ 9% V 8.33kΩ V 11.86kΩ 10% 13.0V 2.89kΩ 10.0V 1.17kΩ 10% V 3.23kΩ V 5.28kΩ 04/17/ Fax Page 6 of 9

7 TEST CONFIGURATIONS Input Reflected-Ripple Current Test Setup Input reflected-ripple current is measured with an inductor Lin (4.7µH) and Cin (2µF, ESR < 1.0Ω at KHz) to simulate source impedance. Capacitor Cin offsets possible battery impedance. Current ripple is measured at the input terminals of the module. Measurement bandwidth is KHz. To Oscilloscope +Vin +Out + + Lin Battery Cin Current Probe DC/DC -Vin -Out Peak-to-Peak Output Noise Measurement Test Use a 1µF ceramic capacitor and a 10µF tantalum capacitor. Scope measurement should be made by using a BNC socket, measurement bandwidth is 0-MHz. Position the load between 50mm and 75mm from the DC/DC. +Vin +Out Copper Strip Single Output DC/DC Cout Scope Resistive -Vin -Out Copper Strip DESIGN & FEATURE CONSIDERATIONS Remote On/Off Positive logic remote on/off turns the module on during a logic high voltage on the remote on/off pin and off during a logic low. To turn the module on and off, the user must supply a switch to control the voltage between the on/off terminal and the Vin terminal. The switch can be an open collector or equivalent. A logic low is 0V to 1.2V. A logic high is 3.5V to 12V. The maximum sink current at on/off terminal (Pin 3) during a logic low is -µa Over Current Protection To provide protection in a fault (output overload) condition, the unit is equipped with internal current limiting circuitry and can endure overload for an unlimited duration. Over Voltage Protection The output over voltage clamp consists of control circuitry which is independent of the primary regulation loop that monitors the voltage on the output terminals. The control loop of the clamp has a higher voltage set point than the primary loop. This provides a redundant voltage control that reduces the risk of output over voltage. The OVP level can be found in the model selection table. 04/17/ Fax Page 7 of 9

8 Input Source Impedance The power module should be connected to a low ac-impedance input source. Highly inductive source impedances can affect the stability of the power module. In applications where power is supplied over long lines and output loading is high, it may be necessary to use a capacitor at the input to ensure startup. Capacitor mounted close to the power module helps ensure stability of the unit, it is recommended to use a good quality low Equivalent Series Resistance (ESR < 1.0Ω at KHz) capacitor of 33µF for the 12V input devices and a 10µF for the 24V and 48V devices. + +Vin +Out DC Power Source - + Cin -Vin DC/DC -Out Output Ripple Reduction A good quality low ESR capacitor placed as close as possible across the load will give the best ripple and noise performance. To reduce output ripple, it is recommended to use 4.7µF capacitors at the output. + +Vin +Out DC Power Source - -Vin Single Output DC/DC -Out Cout Maximum Capacitive The LANEUW series has a limitation of maximum connected capacitance on the output. The power module may be operated in current limiting mode during start-up, affecting the ramp-up and the start-up time. The maximum capacitance can be found in the model selection tables. Thermal Considerations Many conditions affect the thermal performance of the power module, such as orientation, airflow over the module, and board spacing. To avoid exceeding the maximum temperature rating of the components inside the power module, the case temperature must be kept below 105 C. The derating curves are determined from measurements obtained in a test setup. Position of air velocity probe and thermocouple 15mm / 0.6in 50mm / 2in Air Flow DUT 04/17/ Fax Page 8 of 9

9 COMPANY INFORMATION Wall Industries, Inc. has created custom and modified units for over 50 years. Our in-house research and development engineers will provide a solution that exceeds your performance requirements on-time and on budget. Our ISO certification is just one example of our commitment to producing a high quality, well-documented product for our customers. Our past projects demonstrate our commitment to you, our customer. Wall Industries, Inc. has a reputation for working closely with its customers to ensure each solution meets or exceeds form, fit and function requirements. We will continue to provide ongoing support for your project above and beyond the design and production phases. Give us a call today to discuss your future projects. Contact Wall Industries for further information: Phone: Toll Free: Fax: Web: Address: (3) (888) (3) sales@wallindustries.com 5 Watson Brook Rd. Exeter, NH /17/ Fax Page 9 of 9

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