KAC-9618 Eastman Kodak Company, KAC-9618 Datasheet - Page 33

IC SENSOR IMAGE VGA MONO 48-CLCC

KAC-9618

Manufacturer Part Number
KAC-9618
Description
IC SENSOR IMAGE VGA MONO 48-CLCC
Manufacturer
Eastman Kodak Company
Type
CMOS Imagingr
Datasheet

Specifications of KAC-9618

Pixel Size
7.5µm x 7.5µm
Active Pixel Array
648H x 488V
Frames Per Second
30
Voltage - Supply
3.3V
Package / Case
48-CLCC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
LM9618IEA
LM9618IEA

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
KAC-9618
Manufacturer:
IXYS
Quantity:
2 100
IMAGE SENSOR SOLUTIONS
Type
Reset Value
Register Name Video Gain Register
Address
Mnemonic
Type
Reset Value
Register Name Blue Pixels Gain Register
Address
Mnemonic
Type
Reset Value
Register Name Green Pixels Gain Register
Address
Mnemonic
Type
Reset Value
Register Name Red Pixels Gain Register
Address
Mnemonic
Reset Value
www.kodak.com/go/imagers 585-722-4385
7:0
7:0
7:0
7:0
7:0
Bit
Bit
Bit
Bit
Bit
FDelay [7:0]
VidGain
BlueGain
GreenGain
RedGain
Bit Symbol
Bit Symbol
Bit Symbol
Bit Symbol
Bit Symbol
Read/Write
00 Hex
19 Hex
VGAIN
Read/Write
00 Hex
1A Hex
BGAIN
Read/Write
00 Hex
1B Hex
GGAIN
Read/Write
00 Hex
1C Hex
RGAIN
00 Hex
Use to program the overall video
gain. 00hex corresponds to a gain
of 0dB while 3Fhex corresponds
to a gain of 15dB. Steps are in log-
arithmic increments.
Use to program the gain of green
pixels. 00hex corresponds to a
gain of 0dB while 7Fhex corre-
sponds to a gain of 14dB. Steps
are in linear increments.
Use to program the gain of green
pixels. 00hex corresponds to a
gain of 0dB while 7Fhex corre-
sponds to a gain of 14dB. Steps
are in linear increments.
Use to program the gain of red
pixels. 00hex corresponds to a
gain of 0dB while 7Fhex corre-
sponds to a gain of 14dB. Steps
are in linear increments.
Use to program the LSBs of
the frame delay.
Description
Description
Description
Description
Description
33
Register Name Break Point 1 Slope High Register
Address
Mnemonic
Type
Reset Value
Register Name Break Point 1 Slope Low Register
Address
Mnemonic
Type
Reset Value
Register Name Break Point 3 Level Register
Address
Mnemonic
Type
Reset Value
Register Name Break Point 2 Slope High Register
Address
Mnemonic
Type
Reset Value
7:6
5:0
7:0
7:0
7:6
5:0
Bit
Bit
Bit
Bit
Bp1Slope[13:8]
Bp1Slope[7:0]
Bp1LevelA
Bp2Slope[13:8]
Bit Symbol
Bit Symbol
Bit Symbol
Bit Symbol
1D Hex
BP1SLOPEH
Read/Write
00 Hex.
1E Hex
BP1SLOPEL
Read/Write
00 Hex
1F Hex
BP1LEVA
Read/Write
00 Hex
20 Hex
BP2SLOPEH
Read/Write
00 Hex
Reserved
This register allows the slope
of the curve up to the first
breakpoint (slope 0 in figure
22) to be programed. When
the high and low registers are
cleared no breakpoint will
result.
This register allows the slope
of the curve up to the first
breakpoint (slope 0 in figure
22) to be programed. When
the high and low registers are
cleared no breakpoint will
result.
This register defines the level
at which the first breakpoint is
applied (break point 1 in figure
22). Note Bp1LevelB (register
BP1LEVB) must be pro-
grammed to be equal to
Bp1LevelA
Reserved
This register allows the slope
of the curve to the second
breakpoint (slope 1 in figure
22) to be programed. When
the high and low registers are
cleared no breakpoint will
result.
Email:imagers@kodak.com
Description
Description
Description
Description

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