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PDF KA2143B Data sheet ( Hoja de datos )

Número de pieza KA2143B
Descripción R/G/B VIDEO AMPLIFIER WITH OSD INTERFACE FOR MONITORS
Fabricantes Samsung 
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No Preview Available ! KA2143B Hoja de datos, Descripción, Manual

APRIL. 1998
DATA SHEET
KA2143B

1 page




KA2143B pdf
KA2143B
R/G/B VIDEO AMPLIFIER WITH OSD INTERFACE FOR MONITORS
PIN DESCRIPTION
Pin No
Pin Name
1 Red OSD Input
(ROSD)
2 Green OSD Input
(GOSD)
3 Blue OSD Input
(BOSD)
Table 2. Pin Description
Schematic
Description
VCC
OSD input signals are in TTL level and
will be connected to ground when
switching video input
1.4V
PIN 1
4 Video/OSD
Switch
(VI/OSD_SW)
PIN 4
VCC
5.6V
Videl/OSD switch signal is TTL level
OSD Input = “High”
Video Input = “Low”
5 Red Video Input
(RIN)
7 Green Video Input
(GIN)
9
Blue Video Input
PIN 5
(BIN)
VCC
MAX Input Video Signal is 0.7Vpp
6 VCC1
8 GND
- Supply Voltage (except drive stage)
- Ground
4

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KA2143B arduino
KA2143B
R/G/B VIDEO AMPLIFIER WITH OSD INTERFACE FOR MONITORS
NOTES;
1. Absolute maximum rating indicates limit beyond which damage to the device may occur.
2. Operating ratings indicate conditions for which the device is functional but do not guarantee specific performance limits.
For guaranteed specifications and test conditions, See the Electrical Characteristics. The guaranteed specifications
apply only for the test conditions listed. Some performance characteristics may degrade when the device is not
operated under the listed test conditions.
3. VCC supply pins 6 and 18 must be externally wired together to prevent internal damage during VCC power on/off cycles.
4. The supply current specified is the quiescent current for VCC1 and VCC2 with RL = , The supply current for VCC2
(pin 18) also depends on the output load.
5. Output voltage is dependent on load resistor. Test circuit uses RL = 390.
6. Measure gain difference between any two amplifiers Vin = 560mVPP.
7. Av track is a measure of the ability of any two amplifiers to track each other and quantifies the matching of the three
attenuators. It is the difference in gain change between any two amplifiers with the contrast voltage (V10) at either 4V
or 2V measured relative to an Avmax condition V10 = 4V. For example, at AVmax the three amplifier` gains might be
17.1dB. 16.9dB, and 16.8dB and change to 11.2dB, 10.9dB and 10.7dB respectively for V10 = 2V. This yields the
measured typical + 0.1dB channel tracking.
8. When measuring video amplifier bandwidth or pulse rise and fall times, a double sided full ground plane printed circuit
board without socket is recommended. Video amplifier 10MHz isolation test also requires this printed circuit board.
The reason for a double sided full ground plane PCB is that large measurement variations occur in single sided PCB.
9. Adjust input frequency from 10MHz (Avmax reference level ) to the - 3dB frequency (f -3dB).
10. Measure output levels of the other two undriven amplifiers relative to the driven amplifier to determine channel separation.
Terminate the undriven amplifier inputs to simulate generator loading. Repeat test at fin = 10MHz for Iso_10MHz.
11. A minimum pulse width of 200 ns is guaranteed for a horizontal line of 15kHz.
This limit is guaranteed by design. If a lower line rate is used a longer clamp pulse may be required.
12. During the AC test the 4V DC level is the center voltage of the AC output signal .
For example. if the output is 4 VPP the signal will swing between 2V DC and 6V DC.
13. When V1 = V2 = V3 = 0V and the video input is 0.7V. then tr (OSD S) = 11ns and ft (OSD S) = 4ns The video Output
wave form will be inverted from the one shown in AC Test Circuit. Thus tr (OSD S) is actually a fall time andft(OSD S)
is actually a rise time in this condition.
14. These parameters are not tested on each product which is controlled by an internal qualification procedure.
10

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