Datasheet ICL7660S, ICL7660A (Renesas) - 3

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DescripciónSuper Voltage Converters
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Absolute Maximum Ratings. Thermal Information. Operating Conditions. Electrical Specifications. MIN. MAX. PARAMETER. SYMBOL

Absolute Maximum Ratings Thermal Information Operating Conditions Electrical Specifications MIN MAX PARAMETER SYMBOL

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link to page 3 link to page 3 link to page 7 link to page 4 link to page 3 link to page 3 link to page 4 link to page 4 link to page 4 link to page 4 link to page 3 link to page 3 link to page 7 ICL7660S, ICL7660A
Absolute Maximum Ratings Thermal Information
Supply Voltage . +13.0V Thermal Resistance (Typical, Notes 6, 7) JA (°C/W) JC (°C/W) LV and OSC Input Voltage (Note 5) 8 Ld PDIP (Note 8). 110 59 V+ < 5.5V . -0.3V to V+ + 0.3V 8 Ld Plastic SOIC. 160 48 V+ > 5.5V . V+ -5.5V to V+ +0.3V Storage Temperature Range . .-65°C to +150°C Current into LV (Note 5) Pb-Free Reflow Profile (Note 8). TB493 V+ > 3.5V . .20µA Output Short Duration VSUPPLY  5.5V . .Continuous
Operating Conditions
Temperature Range ICL7660SI, ICL7660AI . -40°C to +85°C ICL7660SC, ICL7660AC . 0°C to +70°C CAUTION: Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to such conditions may adversely impact product reliability and result in failures not covered by warranty. NOTES: 5. Connecting any terminal to voltages greater than V+ or less than GND may cause destructive latchup. It is recommended that no inputs from sources operating from external supplies be applied prior to “power up” of ICL7660S and ICL7660A. 6. JA is measured with the component mounted on a low effective thermal conductivity test board in free air. See Tech Brief TB379 for details. 7. For JC, the “case temp” location is taken at the package top center. 8. Pb-free PDIPs can be used for through-hole wave solder processing only. They are not intended for use in reflow solder processing applications.
Electrical Specifications
ICL7660S and ICL7660A, V+ = 5V, TA = +25°C, OSC = Free running (see Figure 12 on page 7, “ICL7660S Test Circuit”and Figure Figure 13 on page 7 “ICL7660A Test Circuit”), unless otherwise specified.
MIN MAX PARAMETER SYMBOL TEST CONDITIONS (Note 9 ) TYP (Note 9 ) UNITS
Supply Current (Note 11) I+ RL = , +25°C - 80 160 µA 0°C < TA < +70°C - - 180 µA -40°C < TA < +85°C - - 180 µA -55°C < TA < +125°C - - 200 µA Supply Voltage Range - High V+H RL = 10k, LV Open, TMIN < TA < TMAX 3.0 - 12 V (Note 12) Supply Voltage Range - Low V+L RL = 10k, LV to GND, TMIN < TA < TMAX 1.5 - 3.5 V Output Source Resistance ROUT IOUT = 20mA - 60 100 IOUT = 20mA, 0°C < TA < +70°C - - 120 IOUT = 20mA, -25°C < TA < +85°C - - 120 IOUT = 20mA, -55°C < TA < +125°C - - 150 IOUT = 3mA, V+ = 2V, LV = GND, - - 250 0°C < TA < +70°C IOUT = 3mA, V+ = 2V, LV = GND, - - 300 -40°C < TA < +85°C IOUT = 3mA, V+ = 2V, LV = GND, - - 400 -55°C < TA < +125°C Oscillator Frequency (Note 10) fOSC COSC = 0, Pin 1 Open or GND 5 10 - kHz COSC = 0, Pin 1 = V+ - 35 - kHz Power Efficiency PEFF RL = 5k 96 98 - % TMIN < TA < TMAX RL = 5k 95 97 - - Voltage Conversion Efficiency VOUTEFF RL =  99 99.9 - % FN3179 Rev 7.01 Page 3 of 14 Feb 10, 2020