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SP828 Просмотр технического описания (PDF) - Signal Processing Technologies

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SP828
Sipex
Signal Processing Technologies Sipex
SP828 Datasheet PDF : 16 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
ABSOLUTE MAXIMUM RATINGS
These are stress ratings only and functional operation
of the device at these ratings or any other above those
indicated in the operation sections of the specifications
below is not implied. Exposure to absolute maximum
rating conditions for extended periods of time may
affect reliability.
VIN......................................................................+7.0V
V .....................................................................-7.0V
OUT
V Short Circuit to GND.............................Indefinite
OUT
IOUT......................................................................50mA
Storage Temperature........................-65˚C to +150˚C
Power Dissipation per Package
5-pin SOT23 (derate 2.98 mW/oC above +70oC)..240mW
Lead Temperature (Soldering)..........................300oC
ESD Rating......................2kV Human Body Model
SPECIFICATIONS
V
IN
=
+5.0V,
C1=C2=10µF
for
the
SP828,
C1=C2=3.3µF
for
the
SP829,
and
T=
AMB
-40°C
to
+85°C
unless
otherwise
noted.
Typical values are taken
specifically at TAMB=+25°C. Test Circuit Figure 19 unless otherwise noted.
PARAMETER
MIN.
TYP.
MAX. UNITS
CONDITIONS
Supply Voltage
1.25
1.5
Supply Current
Output Resistance
Oscillator Frequency
8.4
6
24.5
19
Voltage Conversion Efficiency
95
Power Efficiency (Ideal)
Power Efficiency (Actual)
1.0
1.0
50
130
21
12
35
99.9
98
97
91
5.5
80
115
200
300
50
65
15.6
20
45.5
54.3
V
RL=10k, TAMB=+25° C, Note 1
RL=10k, TAMB=-40° C to +85° C
SP828, TAMB=+25° C, RL =
µA
SP828,
RL =
TAMB=-40°
C
to
+85°
C,
SP829, TAMB=+25° C, RL =
SP829,
RL =
TAMB=-40°
C
to
+85°
C,
IOUT=5mA, TAMB=+25° C
I =5mA, T =-40° C to +85° C
OUT
AMB
SP828, TAMB=+25° C
kHz
SP828, TAMB=-40° C to +85° C
SP829, TAMB=+25° C
SP829, TAMB=-40° C to +85° C
%
R
L
=
% RL=10k, NOTE 2
%
RL=10k, NOTE 3
IOUT = 10mA, NOTE 3
NOTE 1: V = -V +200mV
OUT
IN
NOTE 2: Power Efficiency (Ideal) =
VOUT x IOUT
-VIN x (-VIN/RL)
NOTE 3:
Power Efficiency (Actual) =
VOUT x IOUT
VIN x IIN
SP828DS/03
SP828/829 High Efficiency Voltage Inverters
2
© Copyright 1999 Sipex Corporation

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