PTH12010 ADVANCEDENERGY | Alldatasheet

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©2021 Advanced Energy Industries, Inc. ARTESYN PTH12010

12 Vin Single Output

Total Power:

66 Watts

# of Outputs: Single DATA SHEETAdvanced Energy's Artesyn PTH12010 series of non-isolated DC-DC converters complies with the Point-of-Load Alliance (POLA) standard. The converters offer some of the most advanced POL functions in the industry, including Auto-Track™ sequencing for controlled power-up/power-down of complex semiconductor devices such as DSPs, FPGAs and ASICs, and voltage margining. Standard features include pre-bias startup, input undervoltage lockout, remote sense, remote On/Off and auto resetting short-circuit protection. There are two models in the PTH12010 series of converters, both of which have an input voltage range of 10.8 to 13.2 Vdc. One model offers an output voltage that can be trimmed from 0.8 to 1.8 Vdc, the other has an output that can be trimmed from 1.2 to 5.5 Vdc, enabling a broad diversity of semiconductor power needs to be satisfied. The 0.8 to 1.8 V output converter offers up to 89% efficiency while the higher output voltage model can achieve up to 94%. Both converters are rated at 66 watts output power and can deliver up to 12 amps. Available in through-hole horizontal mount and surface-mount versions, they have a small 0.62 x 1.37 inch (15.7 x 34.8 mm) footprint and an installed height of just 0.35 inch (9 mm). SPECIAL FEATURES  12 A output current  12 V input voltage  Wide-output voltage adjust: 1.2 - 5.5 Vdc for suffix ‘W’ 0.8 - 1.8 Vdc for suffix ‘L’  Auto-track™ sequencing*  Margin up/down controls  Efficiencies up to 94%  Output ON/OFF inhibit  Output voltage sense  Point-of-Load-Alliance (POLA) compatible  RoHS compliant  Two year warranty * Auto-track is a trademark of Texas Instruments. SAFETY  UL/cUL CAN/CSA-C22.2 No. 60950- 1-03/UL 60950-1, File No. E174104  TÜV Product Service (EN60950) Certificate No. B 04 06 38572 044  CB Report and Certificate to IEC60950, Certificate No. US/8292/UL

2 advancedenergy.com PTH12010 ELECTRICAL SPECIFICATIONS Input Input voltage ra nge (See Note 3) 10.8 - 13.2 Vdc Input current No load 10 mA typical Remote ON/OFF (See Note 1) Positive logic Start-up time 1 V/ms Undervoltage lockout 9.0 - 9.5 Vdc typical Track input voltage Pin 8 (See Notes 6 ) ±0.3 Vin Efficiency See Efficiency Table Insulation voltage Non-isolated Switching frequency Suffix ‘W’ Suffix ‘L’ 300 - 400 kHz 200 - 300 kHz Approvals and standards EN60950, UL/cUL60950 Material flammability UL94V-0 Dimensions L x W x H 34.80 x 15.75 x 9.00 mm 1.370 x 0.620 x 0.354 in Weight 5 g (0.18 oz) MTBF Telcordia SR-332 7,092,000 hours Output Voltage adjustability (See Note 4) 1.2 - 5.5 Vdc (Suffix ‘W’) 0.8 - 1.8 Vdc (Suffix ‘L’) Setpoint accuracy ±2.0% Vo Line regulation ±10 mV typical Load regulation ±12 mV typical Total regulation ±3.0% Vo Minimum load 0 A Ripple and noise 20 MHz bandwidth 25 mV pk-pk Temperature co-efficient -40 °C to +85 °C ±0.5% Vo Transient response (See Note 5) 70 μs recovery time Overshoot/undershoot 100 mV Margin adjustment ±5.0% Vo All specifications are typical at nominal input, full load at 25 °C unless otherwise stated. Cin = 560 μF, Cout = 0 μF. GENERAL SPECIFICATIONS

advancedenergy.com 3 PTH12010 Electrostatic discharge EN61000-4-2, IEC801-2 Conducted immunity EN61000-4-6 Radiated immunity EN61000-4-3 Thermal performance (See Note 2) Operating ambient temperature Non-operating temperature -40 °C to +85 °C -40 °C to +125 °C MSL (‘Z’ suffix only) JEDEC J-STD-020C Level 3 Protection Short-circuit Auto reset 20 A typical Model Number (9) Output Power (Max.) Input Voltage Output Voltage Output Current (Min.) Output Current (Max.) Efficiency (Typical) Regulation Line Load PTH12010L 66 W 10.8 - 13.2 Vdc 0.8 - 1.8 Vdc 0 A 12 A 89% ±10 mV ±12 mV PTH12010W 66 W 10.8 - 13.2 Vdc 1.2 - 5.5 Vdc 0 A 12 A 94% ±10 mV ±12 mV EMC CHARACTERISTICS ENVIRONMENTAL SPECIFICATIONS

ORDERING INFORMATION

PART NUMBER SYSTEM WITH OPTIONS Product Family Input Voltage Output Current Mechanical Package Output Voltage Code Pin Option (8) Mounting Options Pin Option PTH 12 01 0 W A S T Point-of-Load Alliance compatible 12 = 12 V 01 = 12 A Always 0 W = Wide L = Low Voltage D = Horizontal through-hole (RoHS 6/6) Z = Surface-mount solder ball (RoHS 6/6) No Suffix = Trays T = Tape and Reel (8)

4 advancedenergy.com PTH12010 OUTPUT VOLTAGE ADJUSTMENT The ultra-wide output voltage trim range offers major advantages to users who select the PTH12010. It is no longer necessary to purchase a variety suffix ‘L’. When the PTH12010 converter leaves the factory the output has been adjusted to the default voltage of 1.2 V for the PTH12010W and 0.8 V for the PTH12010L. Efficiency Table: PTH12010W (Io = 8 A) Output Voltage Efficiency Vo = 5.0 V 94% Vo = 3.3 V 93% Vo = 2.5 V 91% Vo = 2.0 V 90% Vo = 1.8 V 89% Vo = 1.5 V 88% Vo = 1.2 V 86% Efficiency Table: PTH12010L (Io = 8 A) Output Voltage Efficiency Vo = 1.8 V 89% Vo = 1.5 V 88% Vo = 1.2 V 86% Vo = 1.0 V 84% Vo = 0.8 V 82% Notes: 1. Remote ON/OFF. Positive Logic ON: Pin 3 open; or V > Vin - 0.5 V OFF: Pin 3 GND; or V < 0.8 V (min - 0.2 V). 2. See Figures 1, 2 and 3 for safe operating curves for the PTH12010W and Figures 6 & 7 for the PTH12010L. 3. A 560 μF electrolytic input capacitor is required for proper operation. The capacitor must be rated for a minimum of 800 mA rms of ripple current. 4. An external output capacitor is not required for basic operation. Adding 330 μF of distributed capacitance at the load will improve the transient response. 5. 1 A/μs load step, 50 to 100% Iomax, Cout = 330 μF. 6. If utilized Vout will track applied voltage by ±0.3 V (up to Vo set point). 7. Tape and reel packaging only available on the surface-mount versions. 8. NOTICE: Some models do not support all options. Please contact your local Artesyn representative or use the on-line model number search tool at http://www.artesyn.com to find a suitable alternative.

advancedenergy.com 5 PTH12010 PTH12010W CHARACTERISTIC DATA Notes: A. SOA curves represent the conditions at which internal components are within the Artesyn derating guidelines. B. Characteristic data has been developed from actual products tested at 25 °C. This data is considered typical data for the converter. TEMPERATURE (ºC) Nat conv

100 LFM

200 LFM

400 LFM

OUTPUT CURRENT (A) 0 2 4 6 8 10 12 TEMPERATURE (ºC) Nat conv OUTPUT CURRENT (A) 0 2 4 6 8 10 12 Figure 2 - Safe Operating Area Vin = 12 V, Output Voltage = 3.3 V (See Note A) Figure 1 - Safe Operating Area Vin = 12 V, Output Voltage = 5 V (See Note A) EFFICIENCY (%) OUTPUT CURRENT (A) 5.0V 3.3V 2.5V 2.0V 1.8V 1.5V 100 0 246 8 10 12 1.2V Vout Figure 4 - Efficiency vs Load Current Vin = 12 V (See Note B) TEMPERATURE (ºC) Nat conv OUTPUT CURRENT (A) 0 2 4 6 8 10 12 Figure 3 - Safe Operating Area Vin = 12 V, Output Voltage ≤ 1.8 V (See Note A) Track 8910 PTH12010 (Top View) Margin Up Margin Down 543 GND GND Cin 560F (Required) Vin Inhibit Cout 330F (Optional) +RSET 1%, 0.1W (Required) Vout Vo Sense L O A D Figure 5 - Standard Application

6 advancedenergy.com PTH12010 PTH12010L CHARACTERISTIC DATA Notes: A. SOA curves represent the conditions at which internal components are within the Artesyn derating guidelines. B. Characteristic data has been developed from actual products tested at 25 °C. This data is considered typical data for the converter. EFFICIENCY (%) OUTPUT CURRENT (A) 1.8V 1.5V 1.2V 1.0V 0.8V 100 0 2468 10 Vout TEMPERATURE (ºC) OUTPUT CURRENT (A) 0 2 4 6 8 10 Nat conv Figure 7 - Efficiency vs Load Current Vin = 12 V (See Note B) Figure 6 - Safe Operating Area Vin = 12 V, Output Voltage ≤ 1.8 V (See Note A) Track 8910 PTH12010 (Top View) Margin Up Margin Down 543 GND GND L O A D Cin 560F (Required) Vin Inhibit Cout 330F (Optional) +RSET 1%, 0.1W (Required) Vout Vo Sense Figure 8 - Standard Application

advancedenergy.com 7 PTH12010 Plated through-hole Surface-mount MECHANICAL DRAWINGS Pin Assignments Pin Function

1 Ground

2 Vin

3 Inhibit*

4 Vo adjust

5 Vo sense

6 Vout

7 Ground

8 Track

9 Margin down*

10 Margin up*

*Denotes negative logic: Open = Normal operation Ground = Function active 0.070 (1.78) (Standoff Shoulder) Lowest Component 0.010 min. (0.25) Bottom side Cl earanceTOP VIEW SIDE VIEW 1.370 (34.80) 0.620 3 54 10 9 81 MAX. 0.350 (8.89) Host Board (15.75) ø0.040 (1.02)

5 Places

0.375 (9.52) 0.125 (3.18) 0.625 (15.88) 0.125 (3.18) (1.52) 0.060 (12.70) 0.500 (1.52) 0.060 (3.55) 0.140 Dimensions in Inches (mm) Tolerances (unless othe rwise speci/f_ied) 2 Places ± 0.030 (± 0.76) 3 Places ± 0.010 (± 0.25) TOP VIEW 1.370 (34.80) 0.620 3 54 10 9 81 (15.75) 0.375 (9.52) 0.125 (3.18) 0.625 (15.88) 0.125 (3.18) (1.52) 0.060 (12.70) 0.500 (1.52) 0.060 Dimensions in Inches (mm) Tolerances (unless otherwise speci/f_ied) 2 Places ± 0.030 ( ± 0.76) 3 Places ± 0.010 ( ± 0.25) Host Board Lowest Component 0.010 min. (0.25) Bottom side Cl earance SIDE VIEW Solder Ball ø0.040 (1.02)

10 Places

*A fter solder reflow on customer boar d0.350 (8.89) max.*

ENG-PTH12010-235-01 1.13 For international contact information, visit advancedenergy .com. powersales@aei.com (Sales Support) productsupport.ep@aei.com (Technical Support) +1 888 412 7832 ABOUT ADVANCED ENERGY Advanced Energy (AE) has devoted more than three decades to perfecting power for its global customers. AE designs and manufactures highly engineered, precision power conversion, measurement and control solutions for mission-critical applications and processes. Our products enable customer innovation in complex applications for a wide range of industries including semiconductor equipment, industrial, manufacturing, telecommunications, data center computing, and medical. With deep applications know-how and responsive service and support across the globe, we build collaborative partnerships to meet rapid technological developments, propel growth for our customers, and innovate the future of power. Specifications are subject to change without notice. Not responsible for errors or omissions. ©2021 Advanced Energy Industries, Inc. All rights reserved. Advanced Energy®, AE® and Artesyn™ are U.S. trademarks of Advanced Energy Industries, Inc.