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PDF TK65937M Data sheet ( Hoja de datos )

Número de pieza TK65937M
Descripción LARGE EL LAMP DRIVER
Fabricantes TOKO 
Logotipo TOKO Logotipo



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TK6593x
LARGE EL LAMP DRIVER
FEATURES
s High Ratio of Brightness / Input Power
s Constant Brightness Versus Input Supply Changes
s Optimized for 15 nf to 45 nf Panel Capacitance
s Panel Voltage Slew Rates Controlled for Life
Enhancement
s Panel Peak to Peak Voltage Independent of Input
Voltage and Temperature
s Panel Peak to Peak Frequency Independent of
Input Voltage and Temperature
s Miniature Package (SOT23L-6)
s Operates with Miniature Coil
s Minimum External Components
s Laser-Trimmed Fixed Frequency Operation
s PWM Control Method
s Adjustable Output Voltage
s Lower Noise (Audio and EMI)
s Intensity Control Application (Refer to Application
Information)
DESCRIPTION
The TK6593x Electroluminescent (EL) Lamp Driver has
been optimized for battery controlled systems where power
consumption and size are primary concerns. The miniature
device size (SOT23L-6), together with the miniature Toko
EL coils (D32FU, D31FU, D52FU), further helps system
designers reduce the space required to drive the small EL
panels.
The proprietary architecture (detailed in the Theory of
Operation section) of the TK6593x provides a constant
output power to the lamp, independent of variations in the
battery voltage. This architecture allows the output voltage
to remain relatively constant as battery voltages decay,
without the need for directly sensing the high voltage
output of the EL driver.
ORDERING INFORMATION
TK6593 MTL
Lamp Frequency Code
APPLICATIONS
s Battery Powered Systems
s Cellular Telephones
s Pagers
s LCD Modules
s Wrist Watches
s Consumer Electronics
The oscillator circuits for the boost converter and lamp
driver are both internally generated in the TK6593x, without
the need for external components. The clock frequency of
the boost converter is laser-trimmed to ensure good initial
accuracy that is relatively insensitive to variations in
temperature and supply voltage. The clock frequency of
the lamp driver tracks the frequency of the boost converter
by a constant scaling factor.
Furthermore, the drive architecture of the TK6593x has
been designed to limit peak drive current delivered to the
lamp. This approach limits the slew rate of the voltage
across the lamp and has the potential to improve lamp life
and decrease RF interference.
The TK6593x is available in a miniature, 6-pin
SOT23L-6 surface mount package.
TK6593x
EL+ VCC
20P HV GND
EL- IND
BLOCK DIAGRAM
VCC
HV BOOST
CONTROL
OSCILLATOR
IND
GND
HV
LAMP FREQUENCY CODE
TK65930
175 Hz TK65935*
TK65931*
200 Hz TK65936
TK65932
225 Hz TK65937*
TK65933*
250 Hz TK65938
TK65934
275 Hz TK65939*
300 Hz
325 Hz
350 Hz
375 Hz
400 Hz
TAPE/REEL CODE
TL: Tape Left
* Consult factory for availability
of other frequencies.
H
BRIDGE
EL+
EL-
May 2000 TOKO, Inc.
Page 1

1 page




TK65937M pdf
TK6593x
TYPICAL PERFORMANCE CHARACTERISTICS (CONT.)
USING TEST CIRCUIT
TK65931
AVERAGE CONVERTER SUPPLY
CURRENT vs. SUPPLY VOLTAGE
30
TK65939
AVERAGE CONVERTER SUPPLY
CURRENT vs. SUPPLY VOLTAGE
60
25 50
20 40
15 30
10 20
5
0
2.5 3 3.5 4 4.5 5 5.5
VCC (V)
6
10
0
2.5 3 3.5 4 4.5 5
VCC (V)
5.5 6
TK65931
PEAK CURRENT THRESHOLD
110 vs. SUPPLY VOLTAGE
TK65939
PEAK CURRENT THRESHOLD
110 vs. SUPPLY VOLTAGE
100 100
90 90
80 80
70 70
60
2.5 3 3.5 4 4.5 5 5.5 6
VCC (V)
TK65931
QUIESCENT CURRENT
vs. SUPPLY VOLTAGE
200
60
2.5 3 3.5 4 4.5 5 5.5 6
VCC (V)
TK65939
QUIESCENT CURRENT
vs. SUPPLY VOLTAGE
200
150 150
100 100
50 50
0
2.5 3 3.5 4 4.5 5 5.5 6
VCC (V)
May 2000 TOKO, Inc.
0
2.5 3 3.5 4 4.5 5 5.5 6
VCC (V)
Page 5

5 Page





TK65937M arduino
TK6593x
PIN DESCRIPTIONS
SUPPLY PIN (VCC)
This pin is the positive input supply for the TK6593x. Good design practices dictate capacitive decoupling to the ground
pin.
GROUND PIN (GND)
The pin provides the ground connection for the IC.
IND PIN
This pin is periodically pulled to ground by a power transistor acting as an internal switch to the TK6593x. Externally, this
pin is typically connected to an inductor and a rectifying diode. By modulating the switching action of the internal switch,
the TK6593x can boost the relatively low voltage of the battery to the high voltage required to drive the EL Lamp.
HV PIN
This pin is connected to the filter capacitor and the cathode of the rectifying diode in order to generate a high voltage
supply. This high voltage supply is switched to the terminals of the EL Lamp through the H-Bridge.
EL+ PIN
This pin is connected to one side of the EL Panel.
EL- PIN
This pin is connected to the other side of the EL Panel.
Note: Measuring the voltage across the EL lamp (EL+ pin to EL- pin) should be done with balanced scope probes using
differential measurement techniques to obtain a true waveform of the voltage across the EL lamp.
May 2000 TOKO, Inc.
Page 11

11 Page







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