tc7660s Microchip Technology Inc., tc7660s Datasheet

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tc7660s

Manufacturer Part Number
tc7660s
Description
Super Charge Pump Dc-to-dc Voltage Converter
Manufacturer
Microchip Technology Inc.
Datasheet

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© 2001 Microchip Technology Inc.
SUPER CHARGE PUMP DC-TO-DC VOLTAGE CONVERTER
FEATURES
FUNCTIONAL BLOCK DIAGRAM
ORDERING INFORMATION
Part No.
TC7660SCOA
TC7660SCPA
TC7660SEJA
TC7660SEOA
TC7660SEPA
TC7660SMJA
TC7660EV
Oscillator boost from 10kHz to 45kHz
Converts +5V Logic Supply to 5V System
Wide Input Voltage Range .................... 1.5V to 12V
Efficient Voltage Conversion ......................... 99.9%
Excellent Power Efficiency ............................... 98%
Low Power Supply .............................. 80 A @ 5 V
Low Cost and Easy to Use
— Only Two External Capacitors Required
Available in Small Outline (SOIC) Package
Improved ESD Protection ..................... Up to 10kV
No External Diode Required for High Voltage
Operation
BOOST
OSC
LV
DS21467A
Package
8-Pin SOIC
8-Pin Plastic DIP
8-Pin CerDIP
8-Pin SOIC
8-Pin Plastic DIP
8-Pin CerDIP
Evaluation Kit for
Charge Pump Family
1
7
6
TC7660S
OSCILLATOR
RC
REGULATOR
INTERNAL
VOLTAGE
– 55 C to +125 C
– 40 C to +85 C
– 40 C to +85 C
– 40 C to +85 C
Temperature
0 C to +70 C
0 C to +70 C
2
Range
TRANSLATOR
VOLTAGE–
IN
LEVEL
GENERAL DESCRIPTION
try standard TC7660 charge pump voltage converter. It
converts a +1.5V to +12V input to a corresponding -1.5V to
-12V output using only two low-cost capacitors, eliminating
inductors and their associated cost, size and EMI. Added
features include an extended supply range to 12V, and a
frequency boost pin for higher operating frequency, allowing
the use of smaller external capacitors.
of 10kHz. Frequency is increased to 45kHz when pin 1 is
connected to V+. Operation below 10kHz (for lower supply
current applications) is possible by connecting an external
capacitor from OSC to ground (with pin 1 open).
small outline (SOIC) packages in commercial and extended
temperature ranges.
PIN CONFIGURATION (DIP AND SOIC)
GND
Boost
CAP +
CAP –
3
GND
8
V + CAP +
The TC7660S is a pin-compatible upgrade to the Indus-
The on-board oscillator operates at a nominal frequency
The TC7660S is available in both 8-pin DIP and 8-pin
1
2
3
4
TC7660SCPA
TC7660SEJA
TC7660SEPA
2
EVALUATION
AVAILABLE
8
7
6
5
V
OSC
LOW
VOLTAGE (LV)
V OUT
KIT
+
NETWORK
LOGIC
Boost
CAP +
CAP
GND
4
5
1
2
3
4
CAP –
V OUT
TC7660SCOA
TC7660SEOA
TC7660S
8
7
6
5
TC7660S-14 9/16/96
V
OSC
LOW
VOLTAGE (LV)
V OUT
+

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tc7660s Summary of contents

Page 1

... Frequency is increased to 45kHz when pin 1 is connected to V+. Operation below 10kHz (for lower supply current applications) is possible by connecting an external capacitor from OSC to ground (with pin 1 open). The TC7660S is available in both 8-pin DIP and 8-pin small outline (SOIC) packages in commercial and extended temperature ranges. Temperature ...

Page 2

... OUT FF Z Oscillator Impedance OSC NOTES: 1. Connecting any input terminal to voltages greater than V inputs from sources operating from external supplies be applied prior to "power up" of the TC7660S. 2. Derate linearly above 5.5mW/ C. TC7660S-14 9/16/96 SUPER CHARGE PUMP DC-TO-DC Operating Temperature Range C Suffix .................................................. + Suffix ............................................. – ...

Page 3

... Failure to accomplish this will result in high power losses and probable device latch-up. This problem is eliminated in the TC7660S by a logic network which senses the output voltage (V with the level translators, and switches the substrates of S and S ...

Page 4

... The output characteristics of the circuit in Figure 3 are those of a nearly ideal voltage source in series with 70 . Thus, for a load current of –10mA and a supply voltage of +5V, the output voltage would be – 4.3V. The dynamic output impedance of the TC7660S is due, primarily, to capacitive reactance of the charge transfer + supply for voltages ...

Page 5

... It is also possible to increase the conversion efficiency of the TC7660S at low load levels by lowering the oscillator ) frequency. This reduces the switching losses, and is achieved by connecting an additional capacitor, C Figure 7. Lowering the oscillator frequency will cause an ...

Page 6

... Figure 10 shows a TC7660S transforming – +5V (or +5V to +10V, etc.). The only problem here is that the internal clock and switch- drive section will not operate until some positive voltage has been generated ...

Page 7

... TC7660S 3 6 – – Figure 11. Splitting a Supply in Half with Boost Pin = 12V IN - TEMPERATURE ( C) Voltage Conversion Without Load 10K Load INPUT VOLTAGE V (V) IN TC7660S-14 9/16/ – 100 = ...

Page 8

... OUTPUT CURRENT (mA) Supply Current vs. Temperature 200 175 150 125 V 100 -40 - TEMPERATURE ( C) TC7660S-14 9/16/96 SUPER CHARGE PUMP DC-TO-DC Output Source Resistance vs. Temperature 100 20mA 20 OUT 8.5 9.5 10.5 11.5 12 -40 100 ...

Page 9

... Microchip Technology Inc. DS21467A V = 12. 5. 100 8-Pin Plastic DIP PIN 1 .260 (6.60) .240 (6.10) .070 (1.78) .040 (1.02) .400 (10.16) .348 (8.84) .040 (1.02) .020 (0.51) .015 (0.38) .008 (0.20) .022 (0.56) .015 (0.38) 9 TC7660S .310 (7.87) .290 (7.37) 3 MIN. .400 (10.16) .310 (7.87) Dimensions: inches (mm) TC7660S-14 9/16/96 ...

Page 10

... MAX. .400 (10.16) .370 (9.40) .200 (5.08) .160 (4.06) .200 (5.08) .125 (3.18) .065 (1.65) .045 (1.14) .050 (1.27) TYP. .197 (5.00) .189 (4.80) .020 (0.51) .013 (0.33) TC7660S-14 9/16/96 SUPER CHARGE PUMP DC-TO-DC 8-Pin CerDIP PIN 1 .300 (7.62) .230 (5.84) .020 (0.51) MIN. .040 (1.02) .020 (0.51) .015 (0.38) .150 (3.81) .008 (0.20) MIN. .020 (0.51) .016 (0.41) 8-Pin Plastic SOIC .157 (3.99) ...

Page 11

... Centro Direzionale Colleoni Palazzo Taurus Colleoni 1 20041 Agrate Brianza Milan, Italy Tel: 39-039-65791-1 Fax: 39-039-6899883 United Kingdom Arizona Microchip Technology Ltd. 505 Eskdale Road Winnersh Triangle Wokingham Berkshire, England RG41 5TU Tel: 44 118 921 5869 Fax: 44-118 921-5820 01/09/01 Printed on recycled paper. TC7660S-14 9/16/96 ...

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