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ATA006A0X4-SR

ATA006A0X4-SR

  • 厂商:

    LINEAGEPOWER

  • 封装:

  • 描述:

    ATA006A0X4-SR - 8.3 - 14Vdc input; 0.75Vdc to 5.5Vdc Output; 6A output current - Lineage Power Corpo...

  • 数据手册
  • 价格&库存
ATA006A0X4-SR 数据手册
Data Sheet May 19, 2009 Austin MicrolynxTM II 12V SMT Non-isolated Power Modules: 8.3Vdc – 14Vdc input; 0.75Vdc to 5.5Vdc Output; 6A Output Current RoHS Compliant Features Compliant to RoHS EU Directive 2002/95/EC (-Z versions) Compliant to ROHS EU Directive 2002/95/EC with lead solder exemption (non-Z versions) Flexible output voltage sequencing EZ-SEQUENCE TM EZ-SEQUENCETM Delivers up to 6A output current High efficiency – 89% at 3.3V full load (VIN = 12.0V) Small size and low profile: 27.9 mm x 11.4 mm x 7.24 mm (1.10 in x 0.45 in x 0.285 in) Low output ripple and noise High Reliability: Calculated MTBF = 15.3M hours at 25 C Full-load Output voltage programmable from 0.75 Vdc to 5.5Vdc via external resistor Line Regulation: 0.3% (typical) Load Regulation: 0.4% (typical) Temperature Regulation: 0.4 % (typical) Remote On/Off Output overcurrent protection (non-latching) Wide operating temperature range (-40°C to 85°C) UL* 60950-1Recognized, CSA† C22.2 No. 60950-1-03 Certified, and VDE‡ 0805:2001-12 (EN60950-1) Licensed ISO** 9001 and ISO 14001 certified manufacturing facilities o Applications Distributed power architectures Intermediate bus voltage applications Telecommunications equipment Servers and storage applications Networking equipment Enterprise Networks Latest generation IC’s (DSP, FPGA, ASIC) and Microprocessor powered applications Description Austin MicroLynx II 12V SMT (surface mount technology) power modules are non-isolated DC-DC converters that can deliver up to 6A of output current with full load efficiency of 89% at 5.0V output. These modules provide precisely regulated output voltage programmable via external resistor from 0.75Vdc to 5.5Vdc over a wide range of input voltage (VIN = 8.3 - 14V). The Austin MicroLynxTM II 12V series has a sequencing feature, EZ-SEQUENCETM that enable designers to implement various types of output voltage sequencing when powering multiple voltages on a board. TM * UL is a registered trademark of Underwriters Laboratories, Inc. † ‡ CSA is a registered trademark of Canadian Standards Association. VDE is a trademark of Verband Deutscher Elektrotechniker e.V. ** ISO is a registered trademark of the International Organization of Standards Document No: DS03-108 ver.1.42 PDF name: microlynx_II_12v_smt_ds.pdf Data Sheet May 19, 2009 Austin MicroLynxTM II 12V SMT Non-isolated Power Modules: 8.3 – 14Vdc input; 0.75Vdc to 5.5Vdc Output; 6A output current 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 reliability. Parameter Input Voltage Continuous Sequencing voltage Operating Ambient Temperature (see Thermal Considerations section) Storage Temperature All Tstg -55 125 °C All All Vseq TA -0.3 -40 VIN,max 85 Vdc °C Device All Symbol VIN Min -0.3 Max 15 Unit Vdc Electrical Specifications Unless otherwise indicated, specifications apply over all operating input voltage, resistive load, and temperature conditions. Parameter Operating Input Voltage Maximum Input Current (VIN= VIN, min to VIN, max, IO=IO, max ) Input No Load Current (VIN = VIN, nom, Io = 0, module enabled) Input Stand-by Current (VIN = VIN, nom, module disabled) Inrush Transient Input Reflected Ripple Current, peak-to-peak (5Hz to 20MHz, 1μH source impedance; VIN, min to VIN, max, IO= IOmax ; See Test configuration section) Input Ripple Rejection (120Hz) All All All It 30 30 2 Device Vo,set ≤ 3.63 Vo,set > 3.63 All VO,set = 0.75 Vdc VO,set = 5.0Vdc All Symbol VIN VIN IIN,max IIN,No load IIN,No load IIN,stand-by Min 8.3 8.3 Typ 12 12 Max 14 13.2 4.5 Unit Vdc Vdc Adc mA mA mA 17 100 1.2 0.4 As mAp-p dB 2 CAUTION: This power module is not internally fused. An input line fuse must always be used. This power module can be used in a wide variety of applications, ranging from simple standalone operation to being part of a complex 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 fastacting fuse with a maximum rating of 6 A (see Safety Considerations section). Based on the information provided in this data sheet on inrush energy and maximum dc input current, the same type of fuse with a lower rating can be used. Refer to the fuse manufacturer’s data sheet for further information. LINEAGE POWER 2 Data Sheet May 19, 2009 Austin MicroLynxTM II 12V SMT Non-isolated Power Modules: 8.3 – 14Vdc input; 0.75Vdc to 5.5Vdc Output; 6A output current Electrical Specifications (continued) Parameter Output Voltage Set-point (VIN=VIN, min, IO=IO, max, TA=25°C) Output Voltage (Over all operating input voltage, resistive load, and temperature conditions until end of life) Adjustment Range Selected by an external resistor Output Regulation Line (VIN=VIN, min to VIN, max) Load (IO=IO, min to IO, max) Temperature (Tref=TA, min to TA, max) Output Ripple and Noise on nominal output (VIN=VIN, nom and IO=IO, min to IO, max Cout = 1μF ceramic//10μFtantalum capacitors) RMS (5Hz to 20MHz bandwidth) Peak-to-Peak (5Hz to 20MHz bandwidth) External Capacitance ESR ≥ 1 mΩ ESR ≥ 10 mΩ Output Current Output Current Limit Inception (Hiccup Mode ) (VO= 90% of VO, set) Output Short-Circuit Current (VO≤250mV) ( Hiccup Mode ) Efficiency VIN= VIN, nom, TA=25°C IO=IO, max , VO= VO,set VO, set = 1.2Vdc VO,set = 1.5Vdc VO,set = 1.8Vdc VO,set = 2.5Vdc VO,set = 3.3Vdc VO,set = 5.0Vdc Switching Frequency Dynamic Load Response (dIo/dt=2.5A/μs; VIN = VIN, nom; TA=25°C) Load Change from Io= 50% to 100% of Io,max; 1μF ceramic// 10 μF tantalum Peak Deviation Settling Time (Vo
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