SS26 CANDD | Alldatasheet
Document overview
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Technical content
Features
G Non isolated DC/DC Converter designed to operate from a regulated 5V bus G Output voltage Range: 1.8V - 3.6V G Easy resistive programming for desired output G No resistive programming gives 3.3 Vdc output G Wave solderable
Description
The SS26 (SuperSIP TM) DC/DC converter accepts a regulated 5V input (±10%) and provides 1.8Vdc to 3.6Vdc at 6A. The circuit is optimized for high efficiency and fast load transient response needed by telecom, DSP , and microprocessor applications. Advanced thermal design, monolithic power circuitry, planar magnetics, and synchronous rectification result in outstanding performance and value. Pins are staked for wave solderability. Multiple programming, power good and on/ off options allow superior flexibility and drop in compatibility for most existing designs. Internet: http://www.cdpowerelectronics.com Power Electronics Division, United States
3400 E Britannia Drive, T ucson, Arizona 85706
Phone: 520.295.4100 Fax: 520.770.9369 Power Electronics Division, Europe C&D T echnologies (Power Electronics) Ltd. 132 Shannon Industrial Estate , Shannon, Co. Clare, Ireland More product information and application notes are available on our website at www.cdpowerelectronics.com
SUPERSIP26 11/99 REV CPage 2 Electrical Specifications Unless otherwise specified, operating conditions are as follows: Vin=5V , Vo=3.3V , Io=6A, TA=25°C, Cin=100µF, Co=0F . Notes 1. Input source<3” from SuperSIP™, Load transient <3A per SIP . 100 µF low ESR capacitor for load transients >3A. 3. 100 lfm air, V o=3.3V , Io=6A. See Thermal Design Guide for other conditions. Parameters Conditions Min. Typ. Max. Units Input Input Voltage V in 4.5 5.0 5.5 V DC Input Current Ripple 200 mA RMS Required Capacitance C in Note 1 0 100 µF Output Output Voltage V o Nominal 3.25 3.3 3.35 V DC Output Program Range Note 2 1.8 3.6 V DC Output Current I o TA=25°C 0 6 Amps Output Ripple 20 Mhz BW 15 50 mVp-p Output Rise time T 700 µS Output Capacitance Range C o 0 5000 µF Line Regulation ±0.5 % Load Regulation I o min-Io max ±1.0 % T emperature Coefficient T c 0.01 %/ °C Combined variation V in min-max Io min-max Current Limit I limit Vin = 4.75Vdc 6.5 9 12 A General Switching Frequency 800 kHz Dynamic Response ∆ IO/∆ t = 1A/10 !sec, Vi = 5.0V , TA = 25°C Load Change from IO = 0% to IO = 100% Peak Deviation 30 mV Settling time (V O<10% Peak Deviation) 100 µsec Load change from IO = 100% to IO = 0% Peak Deviation 30 mV Settling time (VO<10% Peak Deviation) 100 µsec T emperature Operating Temperature Note 3 0 +60 °C Storage T emperature -40 +125 °C
SUPERSIP26 11/99 REV C Page 3 Thermal Design Guide Locate your operating current, read the junction temp rise from the graph and add to your maximum ambient. 135°C is the maximum allowable operating junction tem- perature. T est conditions: Device soldered into 4” x 4 ” PCB, 2 sided with power and ground planes for heat con- duction. Due to the difficulty in predicting the thermal effects of airflow velocity and direction, and thermal con- duction through ground planes it is important that the SS26 SuperSIP TM be evaluated thermally in each application. For high ambient temperature/high current application please request our Application Note 35-118-01, “Accurate Measurements of SS26 SuperSIP TM Junction T empera- ture”, for further assistance. Programming T o program the SS26 SuperSIPTM for Vout<3.3, connect resistor across pins 8 (TRIM) and 1(Vo). For Vout>3.3, re- sistor is connected across pins 8 and 4 (Gnd). Tj Rise vs. Io (Junction Temp Rise vs. Output Current) EFFICIENCY % OUTPUT CURRENT AMPS Vo=3.3V , Cout-Oµf, Vi=5V , Cin=100µf Efficiency 100 Temp Rise C OUTPUT CURRENT - AMPS 0.5 1.5 2.5 3.5 4.5 5.5 STILL AIR 100LFM 300LFM 3.3V 25C 2.1V 25C Table 2 Vout Resistor Value V out Resistor Value 1.8 576 Ω 2.8 18.2k 1.9 1.21k 2.9 24.3k 2.0 1.96k 3.0 34.8k 2.1 2.8k 3.1 54.9k 2.2 3.83k 3.2 110.0k 2.3 4.99k 3.3 OPEN 2.4 6.49k 3.4 66.5k 2.5 8.25k 3.5 29.4k 2.6 10.7k 3.6 18.2k 2.7 13.7k Transient Response Operating conditions are as follows: Vin=5V , Vo=3.3V , Load change from Io=0% to Io=100%, T A=25°C, Cin=0F , Co=µF. Operating conditions are as follows: Vin=5V , Vo=3.3V , Load change from Io=100% to Io=0%, TA=25°C, Cin=0F , Co=µF.
SUPERSIP26 11/99 REV CPage 4
Ordering Information
T ypical examples: Pin Out Pin Function Description 1V o Output Voltage 2V o Output Voltage 3V o Output Voltage
4 GND Ground
5 GND Ground
7A P good Power Good Option
8 Trim Output Voltage Adjust
9 Enable Enable Option
The information provided herein is believed to be reliable; however, C&D TECHNOLOGIES assumes no responsibility for inaccuracie s or omissions. C&D TECHNOLOGIES assumes no responsibility for the use of this information, and all use of such information shall be entirely at the user ’s own risk. Prices and specifications are subject to change without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. C&D TECHNOLOGIES does not authorize or warrant any C&D TECHNOLOGIES product for use in life support devices/systems or in aircraft control applications. Power Good Enable Programming (See Table 2) A = Pin 7A installed for Power A = logic1 or open = ON A = Standard 3.3V with Pin 8 open Good option logic 0 or gnd = OFF or program per T able 2. B = Pin omitted (industry standard) B = logic 0 or gnd = ON logic 1 = OFF Mechanical TOLERANCES +.008” for 3 place decimals + .02” for 2 place decimals + .002” for pin diameter .14 (3.56) 0.28 (7.2) 1 2 3 4 2.50 (63.5) 1.900 (48.26) SQUARE TIP OPTIONAL 0.100 (2.54) 0.55 (14.0) 0.14 (3.56) 0.30 (7.62) .16 (4.06) 5 6 7 7A 8 9 SS 26 - A - A - A Standard configuration 5V to 3.3V with 1.8V-3.6V trim range SS 26 - B - A - A