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AD9985A/PCB Scheda tecnica(PDF) 17 Page - Analog Devices

Il numero della parte AD9985A/PCB
Spiegazioni elettronici  110 MSPS/140 MSPS Analog Interface for Flat Panel Displays
PDF  32 Pages
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Produttore elettronici  AD [Analog Devices]
Homepage  http://www.analog.com
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AD9985A/PCB Scheda tecnica(HTML) 17 Page - Analog Devices

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AD9985A
Rev. 0 | Page 17 of 32
2-WIRE SERIAL REGISTER MAP
The AD9985A is initialized and controlled by a set of registers that determine the operating modes. An external controller is used to write
and read the control registers through the two-line serial interface port.
Table 10. Control Register Map
Hexadecimal
Address
Write and
Read or
Read-Only
Bits
Default
Value
Register
Name
Function
0x00
RO
7:0
Chip Revision
An 8-bit register that represents the silicon revision level.
0x011
R/W
7:0
01101001
PLL Div MSB
This register is for Bits [11:4] of the PLL divider. Greater values mean
the PLL operates at a faster rate. This register should be loaded first
whenever a change is needed. This will give the PLL more time to lock.
0x021
R/W
7:4
1101****
PLL Div LSB
Bits [7:4] of this word are written to the LSBs [3:0] of the PLL divider
word.
0x03
R/W
7:3
01******
Bits [7:6] VCO Range. Selects VCO frequency range. (See the PLL
description.)
**001***
Bits [5:3] Charge Pump Current. Varies the current that drives the
low-pass filter. (See the PLL description.)
0x04
R/W
7:3
10000***
Phase Adjust
ADC Clock Phase Adjustment. Larger values mean more delay.
(1 LSB = T/32)
0x05
R/W
7:0
10000000
Clamp
Placement
Places the clamp signal an integer number of clock periods after the
trailing edge of the Hsync signal.
0x06
R/W
7:0
10000000
Clamp
Duration
Number of clock periods that the clamp signal is actively clamping.
0x07
R/W
7:0
00100000
Hsync Output
Pulse Width
Sets the number of pixel clocks that HSOUT will remain active.
0x08
R/W
7:0
10000000
Red Gain
0x09
R/W
7:0
10000000
Green Gain
0x0A
R/W
7:0
10000000
Blue Gain
Controls the ADC input range (contrast) of each respective channel.
Greater values give less contrast.
0x0B
R/W
7:1
1000000*
Red Offset
0x0C
R/W
7:1
1000000*
Green Offset
0x0D
R/W
7:1
1000000*
Blue Offset
Controls dc offset (brightness) of each respective channel. Greater
values decrease brightness.
0x0E
R/W
7:0
0*******
Sync Control
Bit 7—Hsync Polarity Override. (Logic 0 = polarity determined by
chip, Logic 1 = polarity set by Bit 6 in Register 0x0E.)
*1******
Bit 6—Hsync Input Polarity. Indicates polarity of incoming Hsync
signal to the PLL. (Logic 0 = active low, Logic 1 = active high.)
**0*****
Bit 5—Hsync Output Polarity. (Logic 0 = logic high sync,
Logic 1 = logic low sync.)
***0****
Bit 4—Active Hsync Override. If set to Logic 1, the user can select the
Hsync to be used via Bit 3. If set to Logic 0, the active interface is
selected via Bit 6 in Register 0x14.
****0***
Bit 3—Active Hsync Select. Logic 0 selects Hsync as the active sync.
Logic 1 selects sync-on-green as the active sync. Note that the
indicated Hsync is used only if Bit 4 is set to Logic 1 or if both syncs
are active. (Bits 1, 7 = Logic 1 in Register 0x14.)
*****0**
Bit 2—Vsync Output Invert. (Logic 1 = no invert, Logic 0 = invert.)
******0*
Bit 1—Active Vsync Override. If set to Logic 1, the user can select the
Vsync to be used via Bit 0. If set to Logic 0, the active interface is
selected via Bit 3 in Register 0x14.
*******0
Bit 0—Active Vsync Select. Logic 0 selects raw Vsync as the output
Vsync. Logic 1 selects sync separated Vsync as the output Vsync.
Note that the indicated Vsync is used only if Bit 1 is set to Logic 1.
0x0F
R/W
7:1
0*******
Bit 7—Clamp Function. Chooses between Hsync for clamp signal or
another external signal to be used for clamping. (Logic 0 = Hsync,
Logic 1 = Clamp.)



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