MAX660CPA Maxim Integrated Products, MAX660CPA Datasheet - Page 8

IC VOLTAGE CONVERTER CMOS 8-DIP

MAX660CPA

Manufacturer Part Number
MAX660CPA
Description
IC VOLTAGE CONVERTER CMOS 8-DIP
Manufacturer
Maxim Integrated Products
Type
Switched Capacitor (Charge Pump), Doubler, Invertingr
Datasheet

Specifications of MAX660CPA

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
-1.5 ~ -5.5 V, 3 ~ 11 V
Current - Output
100mA
Frequency - Switching
10kHz, 80kHz
Voltage - Input
1.5 ~ 5.5 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Power - Output
727mW
Function
Inverting, Step Up
Output Voltage
- 1.5 V to - 5.5 V, 3 V to 11 V
Output Current
100 mA
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Mounting Style
Through Hole
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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CMOS Monolithic Voltage Converter
The following is a list of manufacturers who provide
low-ESR electrolytic capacitors:
8
Manufacturer/
Figure 3. Cascading MAX660s to Increase Output Voltage
AVX TPS Series
AVX TAG Series
Matsuo 267 Series (714) 969-2491
Sprague 595
Series
Sanyo MV-GX
Series
Sanyo CV-GX
Series
Nichicon PL
Series
United Chemi-Con
(Marcon)
TDK
C1
_______________________________________________________________________________________
Series
3
4
2
MAX660
"1"
(803) 946-0690
(803) 946-0690
(603) 224-1961
(619) 661-6835
(619) 661-6835
(847) 843-7500
(847) 696-2000
(847) 390-4373
Phone
5
8
C1n
+V
IN
C2
(803) 626-3123
(803) 626-3123
(714) 960-6492
(603) 224-1430
(619) 661-1055
(619) 661-1055
(847) 843-2798
(847) 696-9278
(847) 390-4428
2
3
4
Fax
V
MAX660
OUT
"n"
= -nV
IN
Low-ESR
tantalum SMT
Low-cost
tantalum SMT
Low-cost
tantalum SMT
Aluminum elec-
trolytic thru-hole
Aluminum elec-
trolytic SMT
Aluminum elec-
trolytic thru-hole
Low-ESR
tantalum SMT
Ceramic SMT
Ceramic SMT
8
5
Comments
C2n
V
OUT
To produce larger negative multiplication of the initial
supply voltage, the MAX660 may be cascaded as
shown in Figure 3. The resulting output resistance is
approximately equal to the sum of the individual
MAX660 R
an integer representing the number of devices cascad-
ed, is defined by V
Paralleling multiple MAX660s reduces the output resis-
tance. As illustrated in Figure 4, each device requires
its own pump capacitor C1, but the reservoir capacitor
C2 serves all devices. The value of C2 should be
increased by a factor of n, where n is the number of
devices. Figure 4 shows the equation for calculating
output resistance.
Figure 4. Paralleling MAX660s to Reduce Output Resistance
C1
2
3
4
OUT
MAX660
"1"
values. The output voltage, where n is
OUT
R
OUT
C1n
8
5
+V
= -n (V
=
IN
n (NUMBER OF DEVICES)
R
OUT
IN
2
3
4
Paralleling Devices
Cascading Devices
(of MAX660)
).
MAX660
"n"
8
5
C2
R
L

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