LM2661MMX National Semiconductor, LM2661MMX Datasheet - Page 6

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LM2661MMX

Manufacturer Part Number
LM2661MMX
Description
Manufacturer
National Semiconductor
Datasheet

Specifications of LM2661MMX

Operating Supply Voltage (min)
1.5V
Operating Supply Voltage (max)
5.5V
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Package Type
MSOP
Pin Count
8
Mounting
Surface Mount
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM2661MMX
Manufacturer:
NS/国半
Quantity:
20 000
www.national.com
Pin
1
1
2
3
4
5
6
7
8
Pin Description
Circuit Description
The LM2660/LM2661 contains four large CMOS switches
which are switched in a sequence to invert the input supply
voltage. Energy transfer and storage are provided by exter-
nal capacitors. Figure 2 illustrates the voltage conversion
scheme. When S
supply voltage V+. During this time interval switches S
S
and S
of cycles, the voltage across C
the anode of C
cathode of C
in the switches, and no ESR in the capacitors. In reality, the
charge transfer efficiency depends on the switching fre-
quency, the on-resistance of the switches, and the ESR of
the capacitors.
4
are open. In the second time interval, S
(LM2660)
(LM2661)
Name
CAP+
CAP−
GND
OSC
OUT
2
FC
SD
LV
V+
and S
FIGURE 2. Voltage Inverting Principle
2
4
equals −(V+) assuming no load on C
are closed, C
2
Frequency control for internal oscillator:
FC = open, f
FC = V+, f
FC has no effect when OSC pin is driven externally.
Shutdown control pin, tie this pin to the ground in
normal operation, and to V+ for shutdown.
Connect this pin to the positive terminal of
charge-pump capacitor.
Power supply ground input.
Connect this pin to the negative terminal of
charge-pump capacitor.
Negative voltage output.
Low-voltage operation input. Tie LV to GND when
input voltage is less than 3.5V. Above 3.5V, LV can
be connected to GND or left open. When driving OSC
with an external clock, LV must be connected to
GND.
Oscillator control input. OSC is connected to an
internal 15 pF capacitor. An external capacitor can be
connected to slow the oscillator. Also, an external
clock can be used to drive OSC.
Power supply positive voltage input.
is connected to ground, the output at the
1
and S
3
OSC
1
are closed, C
OSC
is charging C
2
= 80 kHz (typ);
will be pumped to V+. Since
= 10 kHz (typ);
Voltage Inverter
1
1
2
and S
. After a number
charges to the
3
2
are open
, no loss
01291121
2
and
6
Application Information
SIMPLE NEGATIVE VOLTAGE CONVERTER
The main application of LM2660/LM2661 is to generate a
negative supply voltage. The voltage inverter circuit uses
only two external capacitors as shown in the Basic Applica-
tion Circuits. The range of the input supply voltage is 1.5V to
5.5V. For a supply voltage less than 3.5V, the LV pin must be
connected to ground to bypass the internal regulator cir-
cuitry. This gives the best performance in low voltage appli-
cations. If the supply voltage is greater than 3.5V, LV may be
connected to ground or left open. The choice of leaving LV
open simplifies the direct substitution of the LM2660/
LM2661 for the LMC7660 Switched Capacitor Voltage Con-
verter.
The output characteristics of this circuit can be approximated
by an ideal voltage source in series with a resistor. The
voltage source equals −(V+). The output resistance R
function of the ON resistance of the internal MOS switches,
the oscillator frequency, and the capacitance and ESR of C
and C
where R
MOS switches shown in Figure 2.
High value, low ESR capacitors will reduce the output resis-
tance. Instead of increasing the capacitance, the oscillator
frequency can be increased to reduce the 2/(f
Once this term is trivial compared with R
further increasing in oscillator frequency and capacitance will
become ineffective.
Function
2
Same as inverter.
Same as inverter.
Same as inverter.
Power supply positive voltage input.
Same as inverter.
Power supply ground input.
LV must be tied to OUT.
Same as inverter except that OSC cannot be driven
by an external clock.
Positive voltage output.
. A good approximation is:
SW
is the sum of the ON resistance of the internal
Voltage Doubler
SW
osc
and ESRs,
x C
1
out
) term.
is a
1

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