参数资料
型号: EL5825IR
厂商: Intersil
文件页数: 8/12页
文件大小: 0K
描述: IC TFT-LCD VREF GEN 24-TSSOP
标准包装: 62
应用: 转换器,TFT,LCD
输入电压: 4.5 V ~ 16.5 V
输出数: 8
输出电压: 0.5 V ~ 14.95 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 24-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 24-TSSOP
包装: 管件
EL5825
V OUT ( IDEAL ) = V REFL + ------------- × ( V REFH - V REFL )
Internal Refresh Clock Oscillator
The EL5825 requires an internal clock or external clock to
refresh its outputs. The outputs are refreshed at the falling
OSC clock edges. The output refreshed switches open at
the rising edges of the OSC clock. The driving load shouldn’t
be changed at the rising edges of the OSC clock. Otherwise,
it will generate a voltage error at the outputs. This clock may
be input or output via the clock pin labeled OSC. The internal
clock is provided by an internal oscillator running at
approximately 25kHz and can be output to the OSC pin. In a
multiple chip system, if the driving loads are stable, one chip
may be programmed to use the internal oscillator; then the
OSC pin will output the clock from the internal oscillator.
Subsequent chips may have the OSC pin connected to this
clock source. In these chips, the program will set them to
external OSC Mode by setting bit 14 to 1. See the control
bits logic table and serial programming example for details.
For transient load application, the external clock Mode
should be used to ensure all functions are synchronized
together. The positive edge of the external clock to the OSC
pin should be timed to avoid the transient load effect. The
Application Drawing on page 10 shows the LCD H rate
signal used, here the positive clock edge is timed to avoid
the transient load of the column driver circuits.
After power on, the chip will start with the internal oscillator
condition to prevent contention. After programming the
oscillator with bit 14, the pin will be set to the appropriate
mode.
Transfer Function
The transfer function is:
data
1024
where data is the decimal value of the 10-bit data binary
input code.
The output voltages from the EL5825 will be derived from
the reference voltages present at the V REFL and V REFH
pins. The impedance between those two pins is about 32k ? .
Care should be taken that the system design holds these
two reference voltages within the limits of the power rails of
the EL5825. GND < V REFH ≤ V S and GND ≤ V REFL ≤
V REFH .
In some LCD applications that require more than 8 channels,
the system can be designed such that one EL5825 will
provide the Gamma correction voltages that are more
positive than the V COM potential. The second EL5825 can
provide the Gamma correction voltage more negative than
the V COM potential. The Application Drawing on page 10
shows a system connected in this way.
mode. At this time, the OSC pin will be in a high impedance
Block Diagram
REFERENCE HIGH
OUTA
OUTB
OUTC
OUTD
SERIAL DATA INPUT
EIGHT
CHANNEL
REGISTERS
VOLTAGE
SOURCES
OUTE
OUTF
OUTG
OUTH
REFERENCE LOW
CAP
SERIAL DATA OUTPUT
SERIAL CLOCK
CONTROL IF
ENABLE
OSCILLATOR INPUT/OUTPUT3
8
FN7005.4
June 24, 2005
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