NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W
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NH020G (pdf) |
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Data Sheet March 28, 2008 n Distributed Power Architectures n Communication Equipment n Computer Equipment Options n Tight Tolerance output n -40 °C operation NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W n Compatible with RoHS EU Directive 200295/EC n Compatible in Pb- free or SnPb reflow environment n Nonisolated output n High efficiency 86% typical n Small size and low profile: mm x mm x 14 mm in x in x in n Remote On/Off n Output overcurrent protection n Output voltage adjustment n Overtemperature protection n UL* 60950 Recognized, CSA† C22.2 No. 60950-00 Certified, and 0805 IEC60950, 3rd edition Licensed n Meets FCC classA radiated limits The NH020-Series Power SIPs are nonisolated dc-dc converters that operate over an input voltage range of Vdc to Vdc and provide a precisely regulated dc output. The SIPs have a maximum output current rating of 6 A at a typical full-load efficiency of Standard features include remote on/off and output voltage adjustment. * UL is a registered trademark of Underwriters Laboratories, Inc. † CSA is a registered trademark of Canadian Standards Association. Document Name PDF Name:DS00-128EPS Replaces DS00-127EPS Data Sheet March 28, 2008 NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W Absolute Maximum Ratings Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress ratings only, functional operation of the device is not implied at these or any other conditions in excess of those given in the operations sections of the data sheet. Exposure to absolute maximum ratings for extended periods can adversely affect the device reliabiltiy. Parameter Input Voltage Continuous Operating Ambient Temperature* Storage Temperature On/Off Terminal Voltage Unit TQ31 Tstg Von/off * Forced 300 lfm minimum. Higher ambient temperatures are possible with increased airflow and/or decreased power output. See the Thermal Considerations section for more details. † The °C operation is optional. See Ordering Information section. Electrical Specifications Unless otherwise indicated, specifications apply over all operating input voltage, resistive load, and temperature conditions. Parameter Unit Operating Input Voltage Maximum Input Current VI = 0 to VI,max IO = IO,max Inrush Transient II,max Input Reflected-Ripple Current 5 Hz to 20 MHz 500nH source impedance;See Figure 14 mAp-p Input Ripple Rejection 100 - 120Hz CAUTION This power module is not internally fused. An input line fuse must always be used. This power SIP can be used in a wide variety of applications, ranging from simple stand-alone operation to an integrated part of a sophisticated power architecture. To preserve maximum flexibility, internal fusing is not included however, to achieve maximum safety and system protection, always use an input line fuse. The safety agencies require a normal-blow fuse with a maximum rating of 10 A see Safety Considerations section . To aid in the proper fuse selection for the given application, information on inrush energy and maximum dc input current is provided. Refer to the fuse manufacturer’s data for further information. Lineage Power Data Sheet March 28, 2008 NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W Electrical Specifications continued Parameter Output Voltage Set Point VI = V IO = IO, max TA = 25 °C Output Voltage Over all operating input voltage, resistive load, and temperature conditions until end of life. Output Regulation Line VI = V to V Load IO = 0 to IO, max Temperature TA = 0 °C to 55 °C Output Ripple and Noise Voltage See Figures and RMS Peak-to-peak 5 Hz to 20 MHz External Load Capacitance electrolytic Output Current Forced convection, 300 lfm Output Current-limit Inception VO = 90% of VO, set see Feature Descriptions section. Efficiency VI = V IO = IO, max TA = 25 °C see Figures and Switching Frequency Dynamic Response = 1 A/10 µs, VI = V, TA = 25 °C see Figures 10 and Load Change from IO = 0% to 100% of IO, max Peak Deviation Settling Time VO < 10% peak deviation Load Change from IO = 100% to 0% of IO, max Peak Deviation Settling Time VO < 10% peak deviation General Specifications Parameter Calculated MTBF IO = 80% of IO, max TA = 25 °C Weight Device NH020M NH020M2 NH020Y NH020Y2 NH020G NH020F NH020F2 NH020M NH020M2 NH020Y NH020Y2 NH020G NH020F NH020F2 All M Y F, G All F, G, M Y All NH020M NH020Y NH020G NH020F Symbol Min VO, set VO, set VO, set The temperature at this location should not exceed 115 °C. The output power of the SIP should not exceed the rated power for the SIP as listed in the Ordering Information table. Convection Requirements for Cooling To predict the approximate cooling needed for the SIP, determine the power dissipated as heat by the unit for the particular application. Figures show typical heat dissipation for the SIP over a range of output currents. Figure NH020G Power Dissipation vs. Output Current. Lineage Power Data Sheet March 28, 2008 NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W Figure NH020F Power Dissipation vs. Output Current. With the known heat dissipation and a given local ambient temperature, the minimum airflow can be chosen from the derating curves in Figure Figure Power Derating vs. Local Ambient Temperature and Air Velocity. For example, if the unit dissipates W of heat, the minimum airflow in an 80 °C environment is m/s 200 ft./min. . Keep in mind that these derating curves are approximations of the ambient temperatures and airflows required to keep the power SIP temperature below its maximum rating. Once the SIP is assembled in the actual system, the SIP’s temperature should be checked as shown in Figure 28 to ensure it does not exceed 115 °C. Layout Considerations Copper paths must not be routed between pins 2 and 3 and pins 7 and Lineage Power Data Sheet March 28, 2008 NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W Through-Hole Lead-Free Soldering Information The RoHS-compliant through-hole products use the SAC Sn/Ag/Cu Pb-free solder and RoHS-compliant components. They are designed to be processed through single or dual wave soldering machines. The pins have an RoHScompliant finish that is compatible with both Pb and Pb-free wave soldering processes. A maximum preheat rate of 3°C/s is suggested. The wave preheat process should be such that the temperature of the power module board is kept below 210°C. For Pb solder, the recommended pot temperature is 260°C, while the Pb-free solder pot is 270°C max. Not all RoHS-compliant through-hole products can be processed with paste-through-hole Pb or Pb-free reflow process. If additional information is needed, please consult with your Tyco Electronics Power System representative for more details. Post Solder Cleaning and Drying Considerations Post solder cleaning is usually the final circuit-board assembly process prior to electrical board testing. The result of inadequate cleaning and drying can affect both the reliability of a power module and the testability of the finished circuit-board assembly. For guidance on appropriate soldering, cleaning and drying procedures, refer to Tyco Electronics Board Mounted Power Modules Soldering and Cleaning Application Note AP01-056EPS . Solder Ball and Cleanliness Requirements The open frame no case or potting power module will meet the solder ball requirements per J-STD-001B. These requirements state that solder balls must neither be loose nor violate the power module minimum electrical spacing. The cleanliness designator of the open frame power module is C00 per J specification . Lineage Power Data Sheet March 28, 2008 NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W Outline Diagram for Through-Hole Module Dimensions are in millimeters and inches . Tolerances x.x mm ± mm x.xx in. ± in. [unless otherwise indicated] x.xx mm ± mm x.xxx in. ± in. Front View Side View Function TRIM ON/OFF Lineage Power Data Sheet March 28, 2008 Recommended Hole Pattern Component-side footprint. Dimensions are in millimeters and inches . NH020-Series Power SIPs 5 Vdc Input Vdc to Vdc Output 20 W Note No copper should be placed between pins 2 and 3 and pins 7 and Lineage Power Data Sheet March 28, 2008 Ordering Information Please contact your Tyco Electronics’ Sales Representative for pricing, availability and optional features. Table Device Codes Input Voltage Output Voltage V 3.3V V Output Current 9W W 15 W 20 W 20W 15 W Device Code NH020M NH020Y NH020G NH020F NH020FZ NH020GZ NH020Y2Z Comcodes 107870065 TBD 107917114 107221145 CC109114121 CC109102753 CC109102761 Optional features can be ordered using the suffixes shown below. The suffixes follow the last letter of the Product Code and are placed in descending alphanumerical order. Table Device Options Option Tight tolerance output not available on the NH020G °C operation RoHS Compliant Suffix 2 A sia-Pacific Head qu art ers T el +65 6 41 6 4283 World W ide Headq u arters Lin eag e Po wer Co rp oratio n 30 00 Sk yline D riv e, Mes quite, T X 75149, U SA +1-800-526-7819 Outs id e U .S.A +1- 97 2-2 84 -2626 ag ep ower.co m e-m ail tech sup lin ea gep ower.co m Eu ro pe, M id dle-East an d Afric a He ad qu arters Tel +49 8 9 6089 286 Ind ia Head qu arters Tel +91 8 0 28411633 Lineage Power reserves the right to make changes to the produc t s or information contained herein without notice. No liability is ass umed as a res ult of their use or applic ation. No rights under any patent acc ompany the sale of any s uc h pr oduct s or information. 2008 Lineage Power Corpor ation, Mesquite, Texas All International Rights Res er ved. March 2008 PDF Name:DS00-128EPS Replaces DS00-127EPS |
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