CAT661EVA-GT3 ON Semiconductor, CAT661EVA-GT3 Datasheet

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CAT661EVA-GT3

Manufacturer Part Number
CAT661EVA-GT3
Description
Charge Pumps CHG PUMP VOLT CONVERTER
Manufacturer
ON Semiconductor
Datasheet

Specifications of CAT661EVA-GT3

Rohs
yes
Function
Inverting
Output Voltage
5 V to 11 V
Output Current
100 mA
Supply Current
0.5 mA
Maximum Operating Temperature
+ 105 C
Package / Case
SOIC-8
Input Voltage
2.5 V to 5.5 V
Maximum Power Dissipation
500 mW
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Switching Frequency
12.5 KHz
CAT661
High Frequency 100 mA
CMOS Charge Pump,
Inverter/Doubler
Description
positive input voltage to a negative output. Only two external
capacitors are needed. With a guaranteed 100 mA output current
capability, the CAT661 can replace a switching regulator and its
inductor. Lower EMI is achieved due to the absence of an inductor.
battery or power supply. Inputs from 2.5 V to 5.5 V will yield a
doubled, 5 V to 11 V output.
high (typically 135 kHz) or low (25 kHz) internal oscillator frequency,
thus allowing quiescent current vs. capacitor size trade−offs to be made.
The 135 kHz frequency is selected when the FC pin is connected to V+.
The operating frequency can also be adjusted with an external capacitor
at the OSC pin or by driving OSC with an external clock.
ON Semiconductor marketing.
where higher oscillator frequency and smaller capacitors are needed. In
addition, the CAT661 is pin compatible with the 7660/1044, offering an
easy upgrade for applications with 100 mA loads.
Features
Applications
© Semiconductor Components Industries, LLC, 2012
July, 2012 − Rev. 12
The CAT661 is a charge−pump voltage converter. It can invert a
In addition, the CAT661 can double a voltage supplied from a
A Frequency Control pin (BOOST/FC) is provided to select either a
8−pin SOIC package is available. For die availability, contact
The CAT661 can replace the MAX660 and the LTC660 in applications
Optimize Capacitor Size
Operation
Compliant
Converts V+ to V− or V+ to 2V+
Low Output Resistance, 10 W Max.
High Power Efficiency
Selectable Charge Pump Frequency of 25 kHz or 135 kHz;
Low Quiescent Current
Pin−compatible to MAX660, LTC660 with Higher Frequency
Available in 8−pin SOIC Package
These Devices are Pb−Free, Halogen Free/BFR Free and are RoHS
Negative Voltage Generator
Voltage Doubler
Voltage Splitter
Low EMI Power Source
GaAs FET Biasing
Lithium Battery Power Supply
Instrumentation
LCD Contrast Bias
Cellular Phones, Pagers
1
1. All packages are RoHS−compliant (Lead−free,
2. For information on tape and reel specifications, in-
3. For detailed information and a breakdown of
CAT661EVA−GT3
BOOST/FC
Halogen−free).
cluding part orientation and tape sizes, please
refer to our Tape and Reel Packaging Specifica-
tions Brochure, BRD8011/D.
device nomenclature and numbering systems,
please see the ON Semiconductor Device No-
menclature document, TND310/D, available at
www.onsemi.com
Device
CAP+
CAP−
GND
CAT661EVA = CAT661EVA−GT3
ORDERING INFORMATION
MARKING DIAGRAMS
PIN CONFIGURATION
http://onsemi.com
1
CASE 751BD
CAT661EVA
(Top View)
V SUFFIX
SOIC−8
(Pb−Free)
Package
SOIC−8
Publication Order Number:
V+
OSC
LV
OUT
Tape & Reel
Shipping
3,000 /
CAT661/D

Related parts for CAT661EVA-GT3

CAT661EVA-GT3 Summary of contents

Page 1

... PIN CONFIGURATION 1 BOOST/FC CAP+ GND CAP− (Top View) MARKING DIAGRAMS CAT661EVA CAT661EVA = CAT661EVA−GT3 ORDERING INFORMATION Device Package CAT661EVA−GT3 (Pb−Free) 1. All packages are RoHS−compliant (Lead−free, Halogen−free). 2. For information on tape and reel specifications, in- cluding part orientation and tape sizes, please refer to our Tape and Reel Packaging Specifica- tions Brochure, BRD8011/D ...

Page 2

Typical Application 1 BOOST/ CAP+ OSC C1 + CAT661 3 LV GND CAP− OUT 100 mF Figure 1. Voltage Inverter Table 1. PIN DESCRIPTIONS Pin Number Name 1 Boost/FC Frequency Control for the internal ...

Page 3

Table 2. ABSOLUTE MAXIMUM RATINGS Parameters V+ to GND Input Voltage (Pins 1, 6 and 7) BOOST/FC and OSC Input Voltage Output Short−circuit Duration to GND (OUT may be shorted to GND for 1 sec without damage but shorting OUT ...

Page 4

Voltage Inverter BOOST/FC 2 CAP 100 mF GND 4 CAP− TYPICAL OPERATING CHARACTERISTICS (Typical characteristic curves are generated using the test circuit in Figure 3. Inverter test conditions are ...

Page 5

TYPICAL OPERATING CHARACTERISTICS 5.0 4.8 4.6 4.4 4.2 4 LOAD CURRENT (mA) Figure 8. Inverted Output Voltage vs. Load Open ...

Page 6

Voltage Doubler + 100 TYPICAL OPERATING CHARACTERISTICS (Typical characteristic curves are generated using the circuit in Figure 14. Doubler test conditions are GND, BOOST/FC = Open ...

Page 7

Application Information Circuit Description and Operating Theory The CAT661 switches capacitors to invert or double an input voltage. Figure 19 shows a simple switch capacitor circuit. In position 1 capacitor C1 is charged to voltage V1. The total charge on ...

Page 8

Oscillator Frequency Control The switching frequency can be raised, lowered or driven from an external source. Figure 22 shows a functional diagram of the oscillator circuit. The CAT661 oscillator has four control modes: Table 4. BOOST/FC OSC Pin Pin Connection ...

Page 9

Capacitor Selection Low ESR capacitors are necessary to minimize voltage losses, especially at high load currents. The exact values of C1 and C2 are not critical but low ESR capacitors are necessary. The ESR of capacitor C1, the pump capacitor, ...

Page 10

Capacitor Suppliers The following manufacturers supply low−ESR capacitors: Table 6. CAPACITOR SUPPLIERS Manufacturer Capacitor Type AVX/Kyocera TPS/TPS3 Vishay/Sprague 595 Sanyo MV−AX, UGX Nichicon F55 HC/HD Capacitor manufacturers continually introduce new series and offer different package styles recommended that ...

Page 11

Typical Applications Voltage Inversion Positive−to−Negative The CAT661 easily provides a negative supply voltage from a positive supply in the system. Figure 24 shows a typical circuit. The LV pin may be left floating for positive input voltages at or above ...

Page 12

Precision Voltage Divider A precision voltage divider is shown in Figure 26. With load currents under 100 nA, the voltage at pin 2 will be within 0.002% of V+/ ± 0.002 ≤ 100 nA L ...

Page 13

Cascade Operation for Higher Negative Voltages The CAT661 can be cascaded as shown in Figure 28 to generate more negative voltage levels. The output resistance is approximately the sum of the individual CAT661 output resistance − ...

Page 14

... SCILLC is an Equal Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner. PUBLICATION ORDERING INFORMATION LITERATURE FULFILLMENT: Literature Distribution Center for ON Semiconductor P.O. Box 5163, Denver, Colorado 80217 USA Phone: 303−675−2175 or 800−344−3860 Toll Free USA/Canada Fax: 303− ...

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