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LR38603 データシートの表示(PDF) - Sharp Electronics

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LR38603 Datasheet PDF : 26 Pages
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LR38603
ADDRESS
NAME
34h CWPA_IQ
35h CTLD_AW0
36h AWB_IP_L
37h AWB_IM_L
38h AWB_QP_L
39h AWB_QM_L
3Ah AWB_IP_S
3Bh AWB_IM_S
3Ch AWB_QP_S
3Dh AWB_QM_S
3Eh AWB_IW_L
3Fh AWB_QW_L
40h AWB_IW_S
AWB_QW_S
41h AWB_C_I
AWB_C_Q
42h WBR1
43h WBB1
44h WBR2
45h WBB2
46h WBR3
47h WBB3
48h REF_GA_R1M
49h REF_GA_B1M
4Ah REF_GA_R1P
4Bh REF_GA_B1P
4Ch REF_GA_R2M
4Dh REF_GA_B2M
4Eh REF_GA_R2P
4Fh REF_GA_B2P
50h REF_GA_R3M
51h REF_GA_B3M
BIT
CONTENTS
[7 : 0] Position and area of AWB center.
[7 : 0] Reset range of WB frame (compared with IRIS)
[7 : 0] Outside, I-axis positive of AWB detect area (in fast processing)
[7 : 0] Outside, I-axis negative of AWB detect area (in fast processing)
[7 : 0] Outside, Q-axis positive of AWB detect area (in fast processing)
[7 : 0] Outside, Q-axis negative of AWB detect area (in fast processing)
[7 : 0] Inside, I-axis positive of AWB detect area (in normal processing)
[7 : 0] Inside, I-axis negative of AWB detect area (in normal processing)
[7 : 0] Inside, Q-axis positive of AWB detect area (in normal processing)
[7 : 0] Inside, Q-axis negative of AWB detect area (in normal processing)
[6 : 0] White area, I-axis, outside (for hysteresis).
[6 : 0] White area, Q-axis, outside (for hysteresis).
[7 : 4] White area, I-axis, inside (for targeted white area).
[3 : 0] White area, Q-axis, inside (for targeted white area).
[7 : 4] WB convergence orientation, I-axis coordinate (complement of 2)
[3 : 0] WB convergence orientation, Q-axis coordinate (complement of 2)
[7 : 0] WB1 R side constant (9 bits data which includes 0 at MSB)
[7 : 0] WB1 B side constant (9 bits data which includes 0 at MSB)
[7 : 0] WB2 R side constant (9 bits data which includes 0 at MSB)
[7 : 0] WB2 B side constant (9 bits data which includes 0 at MSB)
[7 : 0] WB3 R side constant (9 bits data which includes 0 at MSB)
[7 : 0] WB3 B side constant (9 bits data which includes 0 at MSB)
[7 : 0] Chrominance gain of R – Y negative direction when WB1 is fixed or auto-
controlled (present WBR factor ≤ WBR1).
[7 : 0] Chrominance gain of B – Y negative direction when WB1 is fixed or auto-
controlled (present WBR factor ≤ WBR1).
[7 : 0] Chrominance gain of R – Y positive direction when WB1 is fixed or auto-
controlled (present WBR factor ≤ WBR1).
[7 : 0] Chrominance gain of B – Y positive direction when WB1 is fixed or auto-
controlled (present WBR factor ≤ WBR1).
[7 : 0] Chrominance gain of R – Y negative direction when WB2 is fixed or auto-
controlled (present WBR factor ≤ WBR2).
[7 : 0] Chrominance gain of B – Y negative direction when WB2 is fixed or auto-
controlled (present WBR factor ≤ WBR2).
[7 : 0] Chrominance gain of R – Y positive direction when WB2 is fixed or auto-
controlled (present WBR factor ≤ WBR2).
[7 : 0] Chrominance gain of B – Y positive direction when WB2 is fixed or auto-
controlled (present WBR factor ≤ WBR2).
[7 : 0] Chrominance gain of R – Y negative direction when WB3 is fixed or auto-
controlled (present WBR factor ≤ WBR3).
[7 : 0] Chrominance gain of B – Y negative direction when WB3 is fixed or auto-
controlled (present WBR factor ≤ WBR3).
10

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