IPM04C0A0R DELTA | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 15

Technical content

IPM04C0A0R/S06_10142013

FEATURES

 High efficiency: 93% @ 5.0Vin, 3.3V/6A out  Small size and low profile:  Output voltage adjustment: 0.9V~3.3V  Monotonic startup into normal and pre-biased loads  Input UVLO, output OCP  Remote ON/OFF  Output short circuit protection  Fixed frequency operation  Copper pad to provide excellent thermal performance  ISO 9001, TL 9000, ISO 14001, QS9000, OHSAS18001 certified manufacturing  UL/cUL 60950 (US & Canada) Recognized, and TUV (EN60950) Certified  CE mark meets 73/23/EEC and 93/68/EEC directives

APPLICATIONS

 Telecom/DataCom  Wireless Networks  Optical Network Equipment  Server and Data Storage  Industrial/Test Equipment OPTION  SMD or SIP package Delphi Series IPM, Non-Isolated, Integrated Point-of-Load Power Modules: 3V~5.5V input, 0.8~3.3V and 6A Output Current The Delphi Series IPM04C non -isolated, fully integrated Point-of-Load (POL) power modules, are the latest offerings from a world leader in power supply technology and manufacturing ― Delta Electronics, Inc. This product family provides up to 6A of output current or 19.8W of output power in an industry standard, compact, IC-like, molded package. It is highly integrated and does not require external components to provide the point -of-load function. A copper pad on the back of the module, in close contact with the internal heat dissipation components , provides excellent thermal per formance. The assembly process of the modules is fully automated with no manual assembly involved. These converters possess outstanding electrical and thermal performance, as well as extremely high reliability under highly stressful operating conditions. IPM04C operate from a 3V~5.5V source and provide a programmable output voltage of 0.8V~3.3V. The IPM product family is available in both a SMD or SIP package. IPM family is also available for input 8V~14V, please refer to IPM12C datasheet for details.

DS_IPM04C0A0R06_10142013 TECHNICAL SPECIFICATIONS TA = 25°C, airflow rate = 300 LFM, Vin = 5.0Vdc, nominal Vout unless otherwise noted. PARAMETER NOTES and CONDITIONS IPM04C0A0R/S06FA Min. Typ. Max. Units ABSOLUTE MAXIMUM RATINGS Input Voltage (Continuous) 0 6 Vdc Operating Temperature Refer to figure 33 for measuring point -40 116 °C Storage Temperature -55 125 °C INPUT CHARACTERISTICS Input Under-Voltage Lockout Turn-On Voltage Threshold 2.4 2.7 V Turn-Off Voltage Threshold 2.1 2.4 V Maximum Input Current Vin=Vin,min to Vin,max, Io=Io,max 7.0 A No-Load Input Current 100 mA Off Converter Input Current 3 10 mA Input Reflected-Ripple Current P-P 1µH inductor, 5Hz to 20MHz 100 150 mAp-p Input Voltage Ripple Rejection 120 Hz TBD dB OUTPUT CHARACTERISTICS Output Voltage Set Point Vin=5.0V, Io=Io,max, 0.889 0.900 0.911 % Vo,set Output Voltage Adjustable Range 0.8 3.3 V Output Voltage Regulation Over Line Vin=Vin,min to Vin,max 10 mV Over Load Io=Io,min to Io,max 10 mV Over Temperature Ta=-40°C to 85°C 15 mV Total Output Voltage Range Over sample load, line and temperature -3.0 +3.0 % Vo,set Output Voltage Ripple and Noise 5Hz to 20MHz bandwidth Peak-to-Peak Full Load, 1µF ceramic, 10µF tantalum 50 100 mVp-p RMS Full Load, 1µF ceramic, 10µF tantalum 10 15 mV Output Current Range 0 6 A Output Voltage Over-shoot at Start-up Vin=3.0V to 5.5V, Io=0A to 6A, 0 3 % Vo,set Output DC Current-Limit Inception 200 % Io DYNAMIC CHARACTERISTICS Dynamic Load Response 10µF Tan & 1µF Ceramic load cap, 0.5A/µs Positive Step Change in Output Current 50% Io, max to 100% Io, max 150 190 mVpk Negative Step Change in Output Current 100% Io, max to 50% Io, max 150 190 mVpk Setting Time to 10% of Peak Devitation 25 50 µs Turn-On Transient Io=Io.max Start-Up Time, From On/Off Control 5 12 20 ms Start-Up Time, From Input 5 12 20 ms Output Voltage Rise Time Time for Vo to rise from 10% to 90% of Vo,set, 5 10 ms Maximum Output Startup Capacitive Load Full load; ESR ≧1mΩ 1000 µF Full load; ESR ≧10mΩ 5000 µF EFFICIENCY Vo=0.9V Vin=5.0V, Io=Io,max, 80.0 % Vo=1.2V Vin=5.0V, Io=Io,max, 83.0 % Vo=1.5V Vin=5.0V, Io=Io,max, 86.0 % Vo=1.8V Vin=5.0V, Io=Io,max, 88.0 % Vo=2.5V Vin=5.0V, Io=Io,max, 91.0 % Vo=3.3V Vin=5.0V, Io=Io,max, 93.0 % FEATURE CHARACTERISTICS Switching Frequency 300 kHz ON/OFF Control, (Logic High-Module ON) Logic High Module On 2.2 Vin,max V Logic Low Module Off -0.2 0.8 V ON/OFF Current Ion/off at Von/off=0 0.25 1 mA Leakage Current Logic High, Von/off=5V 50 µA GENERAL SPECIFICATIONS MTBF Io=80% Io,max, 30.3 M hours Weight 6 grams

DS_IPM04C0A0R06_10142013 DESIGN CONSIDERATIONS Safety Considerations For safety-agency approval the power module must be installed in compliance with the spacing and separation requirements of the end-use safety agency standards. For the converter output to be considered meeting the requirements of safety extra -low voltage (SELV), the input must meet SELV requirements. The power module has extra-low voltage (ELV) outputs when all inputs are ELV. The input to these units is to be provided with a maximum 10A time-delay fuse in the ungrounded lead. Remote On/Off The IPM series power modules have an On/Off control pin for output voltage remote On/Off operation. The On/Off pin is an open collector/drain logic input signal that is referenced to ground. When On/Off control pin is not used, leave the pin unconnected. The remote on/off pin is internal ly connected to +Vin through an internal pull-up resistor. Figure 27 shows the circuit configuration for applying the remote on/off pin. The module will execute a soft start ON when the transistor Q1 is in the off state. The typical rise for this remote on/off pin at the output voltage of 0.9V and 3.3V are shown in Figure 17 and 18. Vo On/Off Vin GND IPM RL Figure 27: Remote on/off implementation FEATURES DESCRIPTIONS Over-Current Protection To provide protection in an output over load fault condition, the unit is equipped with internal over -current protection. When the over -current protection is triggered, the unit enters hiccup mode. The units operate normally once the fault condition is removed. Pre-Bias Startup Capability The IPM would perform the monotonic startup into the pre-bias loads; so as to avoid a system voltage drop occur upon application. In complex digital systems an external voltag e can sometimes be presented at the output of the module during power on. This voltage may be feedback through a multi -supply logic component, such as FPGA or ASIC. Another way might be via a clamp diode as part of a power up sequencing implementation. Output Voltage Programming The output voltage of IPM can be programmed to any voltage between 0.9Vdc and 3.3Vdc by connecting one resistor (shown as Rtrim in Figure 28, 29) between the TRIM and GND pins of the module to trim up (0.9V ~ 3.3V) and between the Trim and +Output to trim down (0.8V ~ 0.9V). Without this external resistor, the output voltage of the module is 0.9 Vdc. To calculate the value of the resistor Rtrim for a particular output voltage Vo, please use the following equation: Trim up Rtrim = 7.0 - 0.187 (KΩ ) Vadj. –0.9 Trim Down Rtrim = 2.0 - 10.187 (KΩ ) 0.9 – Vadj. Rtrim is the external resistor in KΩ Vout is the desired output voltage

DS_IPM04C0A0R06_10142013 The amount of power delivered by the module is the voltage at the output terminals multiplied by the output current. When using the trim feature, the output voltage of the module can be in creased, which at the same output current would increase the power output of the module. Care should be taken to ensure that the maximum output power of the module must not exceed the maximum rated power (Vo.set x Io.max ≤ P max). Voltage Margining Output voltage margining can be implemented in the IPM modules by connecting a resistor, R margin-up, from the Trim pin to the ground pin for margining -up the output voltage and by connecting a resistor, Rmargin-down, from the Trim pin to the output pin for margining -down. Figure 31 shows the circuit configuration for output v oltage margining. If unused, leave the trim pin unconnected. Vo On/Off Vin GND Trim IPM Rmargin-up Rmargin-down Rtrim Figure 31: Circuit configuration for output voltage margining FEATURE DESCRIPTIONS (CON.) Table 1 provides Rtrim values required for some common output voltages, while Table 2 provides value of external voltage source, Vtrim , f or the same common output voltages. By using a 0.5% tolerance resistor, set point tolerance of ±2% can be achieved as specified in the electrical specification. Table 1 VO (V) Rtrim (Ω)

0.9 Open

1.2 23.146K 1.5 11.479K 1.8 7.590K 2.5 4.188K 3.3 2.729K Table 2 VO (V) Vtrim (V) 0.9 0.7000 1.2 0.6943 1.5 0.6887 1.8 0.6831 2.5 0.6700 3.3 0.6551

DS_IPM04C0A0R06_10142013 PICK AND PLACE LOCATION SURFA CE-MOUNT TAPE & REEL All dimensions are in millimeters (inches) All dimensions are in millimeters (inches) LEAD FREE PROCESS RECOMMEND TEMP . PROFILE Time 60 ~ 150 sec. Above 217 0C 20 ~ 40 sec. Ramp up max. 3.0 0C/sec Preheat time 60 ~ 180 sec. Ramp down max. 6.0 0C/sec Temp. Time 250C 150 0C 200 0C 217 0C Peak Temp. 240 ~ 245 0C Time 60 ~ 150 sec. Above 217 0C 20 ~ 40 sec. Ramp up max. 3.0 0C/sec Preheat time 60 ~ 180 sec. Ramp down max. 6.0 0C/sec Temp. Time 250C 150 0C 200 0C 217 0C Peak Temp. 240 ~ 245 0C Note: All temperature refers to topside of the package, measured on the package body surface.

DS_IPM04C0A0R06_10142013 MECHANICAL DRAWING SMD PACKAGE SIP PACKAGE Note: The copper pad is recommended to connect to the ground Note: All dimension are in millimeters (inches) standard dimension tolerance is± 0.10(0.004”) RECOMMEND PWB HOLE LAYOUT 1 2 3 4 5 1 2 3 4 5 7 6 1 2 3 4 5 RECOMMEND PWB PAD LAYOUT

DS_IPM04C0A0R06_10142013 PART NUMBERING SYSTEM IPM 04 C 0A0 R 06 F A Product Family Input Voltage Number of Outputs Output Voltage Package Output Current Option Code Integrated POL Module 04 - 3V ~ 5.5V 12 - 8V ~ 14V C - Low current 0A0 – programmable output R - SIP S - SMD 06 - 6A F- RoHS 6/6 (Lead Free) A - Standard Functions MODEL LIST Model Name Packaging Input Voltage Output Voltage Output Current Efficiency (Typical @ full load) IPM12C0A0R04FA SIP 8V ~14V 0.8V ~ 5V 4A 91% IPM12C0A0S04FA SMD 8V ~14V 0.8V ~ 5V 4A 91% IPM04C0A0R06FA SIP 3V ~ 5.5V 0.8V ~ 3.3V 6A 93% IPM04C0A0S06FA SMD 3V ~ 5.5V 0.8V ~ 3.3V 6A 93% CONTACT: www.deltaww.com/dcdc USA: Telephone: East Coast: 978-656-3993 West Coast: 510-668-5100 Fax: (978) 656 3964 Email: DCDC@delta-corp.com Europe: Phone: +31-20-655-0967 Fax: +31-20-655-0999 Email: DCDC@delta-es.com Asia & the rest of world: Telephone: +886 3 4526107 ext 6220~6224 Fax: +886 3 4513485 Email: DCDC@delta.com.tw WARRANTY Delta offers a two (2) year limited warranty. Complete warranty information is listed on our web site or is available upon request from Delta. Information furnished by Delta is believed to be accurate and reliable. However, no responsibility is assumed by Delta 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 Delta. Delta reserves the right to revise these specifications at any time, without notice.