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ADV101KN30ADN/a10avaiCMOS 80 MHz, Triple 8-Bit Video DAC
ADV101KP30N/a850avaiCMOS 80 MHz, Triple 8-Bit Video DAC
ADV101KP30ADN/a10000avaiCMOS 80 MHz, Triple 8-Bit Video DAC
ADV101KP50ADN/a2avaiCMOS 80 MHz, Triple 8-Bit Video DAC


ADV101KP30 ,CMOS 80 MHz, Triple 8-Bit Video DACSpecifications T to T unless otherwise noted.)SYNC MIN MAXParameter 80 MHz Version 50 MHz Version 3 ..
ADV101KP30 ,CMOS 80 MHz, Triple 8-Bit Video DACSpecifications T to T unless otherwise noted.)MIN MAXParameter All Versions Units Test Conditions/C ..
ADV101KP50 ,CMOS 80 MHz, Triple 8-Bit Video DACGENERAL DESCRIPTIONPRODUCT HIGHLIGHTSThe ADV101 is a digital-to-analog video converter on a single1 ..
ADV202BBC-115 ,JPEG 2000 Video CODECAPPLICATIONS Complete single-chip JPEG2000 compression and Networked video and image distribution s ..
ADV202BBC-135 ,JPEG 2000 Video CODECapplications. Flexible asynchronous SRAM-style host interface allows glueless connection to most 1 ..
ADV202BBC-150 ,JPEG 2000 Video CODECApplications.... 34 SPI Port Timing .. 18 Encode—Multichip Mode... 34 Pin BGA Assignments and Funct ..
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ADV101KN30-ADV101KP30-ADV101KP50
CMOS 80 MHz, Triple 8-Bit Video DAC
REV.BCMOS
80 MHz, Triple 8-Bit Video DAC
FUNCTIONAL BLOCK DIAGRAM
FEATURES
80 MHz Pipelined Operation
Triple 8-Bit D/A Converters
RS-343A/RS-170 Compatible Outputs
TTL Compatible Inputs
+5 V CMOS Monolithic Construction
40-Pin DIP or 44-Pin PLCC Package
Plug-In Replacement for BT101
Power Dissipation: 400 mW
APPLICATIONS
High Resolution Color Graphics
CAE/CAD/CAM Applications
Image Processing
Instrumentation
Video Signal Reconstruction
Desktop Publishing
SPEED GRADES
80 MHz
50 MHz
30 MHz
GENERAL DESCRIPTION

The ADV101 is a digital-to-analog video converter on a single
monolithic chip. The part is specifically designed for high reso-
lution color graphics and video systems. It consists of three,
high speed, 8-bit, video D/A converters (RGB); a standard TTL
input interface and high impedance, analog output, current
sources.
The ADV101 has three separate, 8-bit, pixel input ports, one
each for red, green and blue video data. Additional video input
controls on the part include sync, blank and reference white. A
single +5 V supply, an external 1.23 V reference and pixel clock
input are all that are required to make the part operational.
The ADV101 is capable of generating RGB video output sig-
nals, which are compatible with RS-343A and RS-170 video
standards, without requiring external buffering.
The ADV101 is fabricated in a +5 V CMOS process. Its mono-
lithic CMOS construction ensures greater functionality with low
power dissipation. The part is packaged in both a 0.6", 40-pin
plastic DIP and a 44-pin plastic leaded (J-lead) chip carrier,
PLCC.
*ADV is a registered trademark of Analog Devices Inc.
PRODUCT HIGHLIGHTS
Fast video refresh rate, 80 MHz.Compatible with a wide variety of high resolution color
graphics video systems.Guaranteed monotonic with a maximum differential nonlin-
earity of ±0.5 LSB. Integral nonlinearity is guaranteed to be
a maximum of ±1 LSB.
ADV101–SPECIFICATIONS
(VAA = +5 V 6 5%; VREF = +1.235 V; RL = 37.5 V, CL = 10 pF; RSET = 560 V. ISYNC
connected to IOG. All Specifications TMIN to TMAX1 unless otherwise noted.)

NOTESTemperature Range (TMIN to TMAX); 0°C to +70°C.Sample tested at +25°C to ensure compliance.TTL input values are 0 to 3 volts, with input rise/fall times ≤ 3 ns, measured between the 10% and 90% points. Timing reference points at 50% for inputs and
outputs. See timing notes in Figure 1.
NOTESTTL input values are 0 to 3 volts, with input rise/fall times ≤3 ns, measured between the 10% and 90% points. Timing reference points at 50% for inputs and out-
puts. See timing notes in Figure 1.Temperature range (TMIN to TMAX): 0°C to +70°C.Sample tested at +25°C to ensure compliance.
Specifications subject to change without notice.
TIMING CHARACTERISTICS1(VAA = +5 V 6 5%; VREF = +1.235 V; RL = 37.5 V, CL = 10 pF; RSET = 560 V.
ISYNC connected to IOG. All Specifications TMIN to TMAX2 unless otherwise noted.)

Figure 1. Video Input/Output Timing
ADV101
CAUTION

ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000V readily
accumulate on the human body and test equipment and can discharge without detection.
Although the ADV101 features proprietary ESD protection circuitry, permanent damage may
occur on devices subjected to high energy electrostatic discharges. Therefore, proper ESD
precautions are recommended to avoid performance degradation or loss of functionality.
PIN CONFIGURATIONS
RECOMMENDED OPERATING CONDITIONS
ORDERING GUIDE1

NOTESAll devices are specified for 0°C to +70°C operation.N = Plastic DIP; P = Plastic Leaded Chip Carrier.PLCC: Plastic Leaded Chip Carrier (J-lead).
ABSOLUTE MAXIMUM RATINGS1

VAA to GND . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .+7 V
Voltage on Any Digital Pin . . . .GND – 0.5 V to VAA + 0.5 V
Ambient Operating Temperature (TA) . . . . . . . .0°C to +70°C
Storage Temperature (TS) . . . . . . . . . . . . . .–65°C to +150°C
Junction Temperature (TJ) . . . . . . . . . . . . . . . . . . . .+150°C
Soldering Temperature (10 secs) . . . . . . . . . . . . . . . . . .300°C
Vapor Phase Soldering (1 minute) . . . . . . . . . . . . . . . . .220°C
IOR, IOB, IOG, ISYNC to GND2 . . . . . . . . . . . . . .0 V to VAA
NOTESStresses above those listed under “Absolute Maximum Ratings” may cause
permanent damage to the device. This is a stress rating only and functional
operation of the device at these or any other conditions above those listed in the
operational sections of this specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.Analog output short circuit to any power supply or common can be of an indefinite
duration.
DIP
REF WHITE
COMP
VREF
FS ADJUST
GND
VAA
ISYNC
IOG
IOR
IOB
GND
SYNC
BLANKG4
VAA
GND
CLOCK
PLCC
BLANK
SYNC
CLOCK
REF WHITE
COMP
GND
GND
IOG
IORIOB
GNDB2B6
GND
GND
REF
SYNC
PIN FUNCTION DESCRIPTION
ADV101
TERMINOLOGY
Blanking Level

The level separating the SYNC portion from the video portion
of the waveform. Usually referred to as the front porch or back
porch. At 0 IRE units, it is the level which will shut off the pic-
ture tube, resulting in the blackest possible picture.
Color Video (RGB)

This usually refers to the technique of combining the three pri-
mary colors of red, green and blue to produce color pictures
within the usual spectrum. In RGB monitors, three DACs are
required, one for each color.
Sync Signal (SYNC)

The position of the composite video signal which synchronizes
the scanning process.
Gray Scale

The discrete levels of video signal between reference black and
reference white levels. An 8-bit DAC contains 256 different lev-
els, while a 6-bit DAC contains 64.
Raster Scan

The most basic method of sweeping a CRT one line at a time to
generate and display images.
Reference Black Level

The maximum negative polarity amplitude of the video signal.
Reference White Level

The maximum positive polarity amplitude of the video signal.
Sync Level

The peak level of the SYNC signal.
Video Signal

That portion of the composite video signal which varies in gray
scale levels between reference white and reference black. Also re-
ferred to as the picture signal, this is the portion which may be
visually observed.
CIRCUIT DESCRIPTION AND OPERATION

The ADV101 contains three 8-bit D/A converters, with three
input channels, each containing an 8-bit register. Also inte-
grated on board the part is a reference amplifier and CRT con-
trol functions BLANK, SYNC and REF WHITE.
Digital Inputs

24-bits of pixel data (color information) R0–R7, G0–G7 and
B0–B7 are latched into the device on the rising edge of each
clock cycle. This data is presented to the three 8-bit DACs and
is then converted to three analog (RGB) output waveforms.
(See Figure 2.)
Three other digital control signals are latched to the analog
video outputs in a similar fashion. BLANK, SYNC and REF
WHITE are each latched on the rising edge of CLOCK to
maintain synchronization with the pixel data stream.
The BLANK and SYNC functions allow for the encoding of
these video synchronization signals onto the RGB video output.
This is done by adding appropriately weighted current sources
to the analog outputs, as determined by the logic levels on the
BLANK and SYNC digital inputs. Figure 3 shows the analog
output, RGB video waveform of the ADV101. The influence of
SYNC and BLANK on the analog video waveform is illustrated.
The REF WHITE control input drives the RGB video outputs
to the white level. This function could be used to overlay a cur-
sor or crosshair onto the RGB video output.
Table I details the resultant effect on the analog outputs of
BLANK, SYNC and REF WHITE.
All these digital inputs are specified to accept TTL logic levels
Clock Input

The CLOCK input of the ADV101 is typically the pixel clock
rate of the system. It is also known as the dot rate. The dot rate
and hence the required CLOCK frequency, will be determined
by the on-screen resolution, according to the following equation.
Dot Rate = (Horiz Res) × (Vert Res) × (Refresh Rate)/
Dot Rate = (Retrace Factor)
Horiz Res=Number of pixels/line
Vert Res=Number of lines/frame
Refresh Rate=Horizontal Scan Rate. This is the rate at
which the screen must be refreshed, typi-
cally 60 Hz for a noninterlaced system or
30 Hz for an interlaced system.
Retrace Factor=Total blank time factor. This takes into ac-
count that the display is blanked for a certain
fraction of the total duration of each frame
(e.g., 0.8).
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