ta1316an TOSHIBA Semiconductor CORPORATION, ta1316an Datasheet

no-image

ta1316an

Manufacturer Part Number
ta1316an
Description
Ycbcr/ypbpr Signal And Sync Processor For Digital Tv, Progressive Scan Tv And Double Scan Tv
Manufacturer
TOSHIBA Semiconductor CORPORATION
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TA1316AN
Manufacturer:
EMLSI
Quantity:
26
Part Number:
TA1316AN
Manufacturer:
TOSHIBA/东芝
Quantity:
20 000
Part Number:
ta1316anG
Manufacturer:
TOSHIBA/东芝
Quantity:
20 000
YCbCr/YPbPr Signal and Sync Processor for Digital TV, Progressive Scan TV and Double
Scan TV
TV, Progressive scan TV and Double scan TV.
luminance and color difference blocks. The sync circuit can
process 525I/P, 625I/P, 750P, 1125I/P, PAL100 Hz and
NTSC120 Hz formats.
controls are adjustable via the bus.
Features
Luminance Block
Color Difference Block
Text Block
Synchronization Block
TA1316AN is a component signal and sync processor for Digital
TA1316AN provides high performance signal processors in the
TA1316AN provides I
Black stretch, DC restoration
Dynamic Ä correction
SRT (LTI)
Y group delay correction (shoot balance correction)
APACON white peak limit
White pulse limit (white letter improvement)
Hi-bright color
Color detail enhancer (CDE)
VSM output
Flesh color correction
Dynamic Y/C correction
Color SRT (CTI)
Color Ä
White peak blue correction
OSD blending SW
ACB (only black level)
2 analog RGB inputs
Horizontal synchronization
(15.75 kHz, 31.5 kHz, 33.75 kHz, 45 kHz)
Vertical synchronization
(525I/P, 625I/P, 750P, 1125I/P, PAL 100 Hz, NTSC 120 Hz)
2-and 3-level sync. separation circuit
Accept both positive and negative HD/VD input
Mask for copy-guard signal
Vertical blanking
2
Toshiba Bipolar Linear Integrated Circuit Silicon Monolithic
C bus interface, so various functions and
TA1316AN
1
Weight: 5.55 g (typ.)
TA1316AN
2002-10-04

Related parts for ta1316an

ta1316an Summary of contents

Page 1

... Toshiba Bipolar Linear Integrated Circuit Silicon Monolithic YCbCr/YPbPr Signal and Sync Processor for Digital TV, Progressive Scan TV and Double Scan TV TA1316AN is a component signal and sync processor for Digital TV, Progressive scan TV and Double scan TV. TA1316AN provides high performance signal processors in the luminance and color difference blocks. The sync circuit can process 525I/P, 625I/P, 750P, 1125I/P, PAL100 Hz and NTSC120 Hz formats ...

Page 2

... Y RGB CP MATRIX DRIVE MIXER SW/ BLUE BACK CP S/H CUT OFF RGB Y CLAMP M BRIGHTNESS RGB CONTRAST TA1316AN CLAMP 7 MATRIX SW Y BLACK BLACK PEAK 2 BPH FILTER STRETCH DETECT BLACK LEVEL CORECTION DARK DARK AREA 1 DET DET FILTER DYNAMIC γ DC REST APL ...

Page 3

... K 44 RGB GND TA1316AN 43 R OUT 42 G OUT 41 B OUT 40 RGB V 39 ANALOG OSD ANALOG OSD ANALOG OSD DAC2 (ACB pulse) 35 ANALOG ANALOG ANALOG GND 31 SDA 30 SCL TA1316AN CC CC 2002-10-04 ...

Page 4

... Voltage value of this pin controls dynamic γ circuit gain. Connect filter for detecting black peak. 2 BPH FILTER Voltage value of this pin controls black stretch gain. Interface Circuit kΩ 200 Ω 1 kΩ TA1316AN Input Signal/Output Signal DC DC 2002-10-04 ...

Page 5

... Interface Circuit 1 kΩ kΩ (including 5 kΩ 1 kΩ kΩ at 100% p-p 5 kΩ 5 Input Signal/Output Signal 1 V (including sync) at 100% color bar p 700 mV at 100% color bar for C p-p 6 TA1316AN 2002-10-04 ...

Page 6

... BUS 1 kΩ Input Signal/Output Signal 55 100 mV p-p 6  55 When YUV INPUT MODE = 00 or 01, 0~0.6 V: YCbCr → Internal YUV 0.9~5 V: YPbPr → Internal YUV Open: BUS control 6 TA1316AN at 100% color bar for  2002-10-04 ...

Page 7

... Interface Circuit 1 kΩ kΩ (including 5 kΩ 1 kΩ kΩ at 100% p-p 5 kΩ 7 Input Signal/Output Signal 1 V (including sync) at 100% color bar p 700 mV at 100% color bar for C p-p 6 TA1316AN 2002-10-04 ...

Page 8

... Recommended input amplitude: 700 mV color bar. Connect filter for detecting 11 COLOR LIMITER color limit. Interface Circuit 1 kΩ kΩ at 100% p-p 5 kΩ 5 kΩ Input Signal/Output Signal 55 700 mV at 100% color bar for C p TA1316AN / 2002-10-04 ...

Page 9

... VD2. Signal input can have 12 VD2 IN both positive and negative polarity. Inputs horizontal sync signal HD2. Signal input can have 13 HD2 IN both positive and negative polarity. Interface Circuit 19 1 kΩ kΩ TA1316AN Input Signal/Output Signal Threshold: 0. Threshold: 0.75 V Threshold: 0. Threshold: 0.75 V 2002-10-04 ...

Page 10

... Inputs sync signal via clamp 14 SYNC IN capacitor. Inputs vertical sync signal VD1. Signal input can have 15 VD1 IN both positive and negative polarity. Interface Circuit kΩ kΩ TA1316AN Input Signal/Output Signal White 100 p-p or Threshold: 0. Threshold: 0.75 V 2002-10-04 ...

Page 11

... H-BLK) because H-BPP width will be changed by the temperature. Interface Circuit 19 1 kΩ kΩ 200 Ω TA1316AN Input Signal/Output Signal Threshold: 0. Threshold: 0.75 V 2.2 V~2.8 V: BPP 4.7 V CP: 5.0 V BPP: 2 2002-10-04 ...

Page 12

... Maximum Ratings. Connect filter for detecting 20 AFC FILTER AFC. Connect ceramic oscillator for horizontal oscillation. 21 HVCO Use Murata CSBLA503KECZF30 oscillator. Interface Circuit  19 300 Ω kΩ 10 kΩ TA1316AN Input Signal/Output Signal  DC  2002-10-04 ...

Page 13

... Input Signal/Output Signal 19 At BUS control (horizontal frequency): output voltage value 00 (15.75 kHz (31.5 kHz (33.75 kHz 7 (45 kHz): At pin 22 control, horizontal frequency and input voltage value 4.5 V 0~1.0 V: 2.0~4.0 V: 1.5 V 5.0~7.0 V: 8.0~9 TA1316AN kHz 33.75 kHz 31.5 kHz 15.75 kHz DC 2002-10-04 ...

Page 14

... Input FBP and H-BLK for 24 FBP IN horizontal AFC. 25 DEF/DAC GND GND pin for DEF/DAC block. Horizontal output pin. Open 26 H-OUT collector output. Interface Circuit 19 24 500 Ω 1 kΩ 25  kΩ TA1316AN Input Signal/Output Signal max H-AFC threshold: 3.0 V BLK threshold: 1.5 V  2002-10-04 ...

Page 15

... Power to pin 29 should be supplied from pin 19 via zener diode through resister. Interface Circuit 19 200 Ω 500 Ω  15 TA1316AN Input Signal/Output Signal VP output Start phase V-BLK input current: 780 µA SYNC OUT  2002-10-04 ...

Page 16

... SCL pin for I C BUS SDA SDA pin for I C BUS GND GND pin for I L block. Interface Circuit 19 5 kΩ SCL Ω 5 kΩ SDA 31 ACK  16 TA1316AN Input Signal/Output Signal  19   2002-10-04 ...

Page 17

... V p-p at 100% white 35 ANALOG R IN Outputs 1-bit DAC or ACB DAC2 pulse 36 (ACB pulse) Open-collector output Interface Circuit 40 1 kΩ kΩ 35 (no sync) 1 kΩ 500 Ω TA1316AN Input Signal/Output Signal 100 IRE: 0 ACB pulse 2002-10-04 ...

Page 18

... RGB GND GND pin for text/RGB block. Interface Circuit 40 1 kΩ kΩ 39 (no sync) 1 kΩ 200 Ω Input Signal/Output Signal  100 IRE: 2.3 V Conditions: UNI-COLOR = max SUB-CONT = Cent 0.7 V  TA1316AN 100 IRE: 0.7 V p-p  p-p p-p  2002-10-04 ...

Page 19

... RGB V pin S/H Sample-and-hold (S/H) pin. In ACB mode connect a 2.2-µ S/H capacitor. In CUTOFF mode connect a 0.01-µF capacitor S/H Interface Circuit 40 1 kΩ 500 Ω kΩ 5 kΩ TA1316AN Input Signal/Output Signal (typ.) p RGB 2002-10-04 ...

Page 20

... S S Int RGB: OSD RGB 10:0 S (analog OSD 7 5 0:10 Interface Circuit 40 300 Ω 49 300 Ω and 300 Ω TA1316AN Input Signal/Output Signal 0~0.5 V: Internal 1.5~9 V: Analog RGB, VSM mute 0~0.5 V: Internal 1.1~1.7 V: VSM mute 2.9~9 V: OSD, VSM mute 2002-10-04 ...

Page 21

... Also performs image mute or blanking. ABL and ACL input pin. Can set gain and start point for 53 ABCL IN ABL and dynamic ABL by BUS control. Interface Circuit 40 300 Ω kΩ 3 kΩ TA1316AN Input Signal/Output Signal 0~0.5 V: Internal 1.2~1.8 V: Half-tone 2.7~4.0 V: P-mute 7~9 V: Blanking DC 2002-10-04 ...

Page 22

... Connect filter for correcting DC restoration. 56 APL FILTER Leaving this pin open enables user to monitor Y signal after black stretch and dynamic γ. Interface Circuit 40 54 200 Ω 6  kΩ kΩ 1 kΩ TA1316AN Input Signal/Output Signal    2002-10-04 ...

Page 23

... DC REST RATE APL VS BSP B.L.C. WPL-LEVEL DYNAMIC ABL GAIN ABL GAIN STATIC γ -GAIN Y/C-DL1 WP BLUE POINT Y/C-DL2 YUV-IN H-OUT VP-OUT RGB-IN 23 TA1316AN D1 D0 Preset SYNC INPUT-SW 1000 0000 CLP-PHS 1000 0000 TEST 1000 0000 1000 0000 1000 0000 1000 0000 ...

Page 24

... When TEST = 01, outputs H-SYNC from pin 28 and ACB reference pulse from pin 36. Do not use TEST = 10/11 because this is used for IC Shipment Test mode. Explanation / INPUT-2 (Y2 TA1316AN Preset 33.75 kHz 41% INPUT-1 Open On HD/VD1 Center 1.1-µs delay ACB on (10 IRE) Inside IC 6.3% width ...

Page 25

... Selects Y/color difference signal input mode. 00: Y/Cb/Cr, 01: Y/Pb/Pr, 10: Through, 11: Y/U/V (TA1270) YUV INPUT MODE Control by pin takes priority at 00 and 01 (table 4). (Ref.) Y/Cb/Cr: ITU-R BT 601 Y/Pb/Pr: ITU-R BT 709 (1125/60/2:1) Explanation = 00: Trap (at peak FREQ) = 11: Flat 1: 130 IRE 25 TA1316AN Preset 32 H 1281 H Off P-MUTE 1 min Center On C-MUTE Center − ...

Page 26

... Adjusts DC restoration rate. DC REST RATE 000 (100%) ~111 (135% (65%) ) Selects DC restoration limit point. DC REST LIMIT 00: 57%, 01: 71 ¸, 10: 78%, 11: 78% Explanation ) ~11111111 (1 p-p p-p , 10: 0. 11: 0.58 V p-p p-p p-p p-p 26 TA1316AN Preset Center R Center Center min Center min Center 4.3 MHz Off 1.65 V p-p Center All off Off −7.5 ns Off 13 ...

Page 27

... Adjust Y/C relative phase: Y phase before RGB matrix is changed. Y/C DL1/2 Y/C DL2 = 0 and Y/C DL1 = 0: −10 ns, Y/C DL2 = 0 and Y/C DL1 = 1: −5 ns Y/C DL2 = 1 and Y/C DL1 = 0: 0 ns, Y/C DL2 = 1 and Y/C DL1 = Adjusts APACON white peak limiter. APACON WPL 000 (Off) ~111 (Maximum effect of positive limiter) Explanation 27 TA1316AN Preset Center 0 IRE Off 3 IRE On Center min ...

Page 28

... Hz (31.5 kHz) V-BLK P. 545H 1125I/60 Hz (33.75 kHz) (C.BLK P.) 500H 525P/60 Hz (31.5 kHz) +20 H PAL/SECAM/50 Hz (15.625 kHz), 290H 100 Hz (31.5 kHz) NTSC/60 Hz (15.734 kHz), 240H 120 Hz (31.5 kHz)   PHASE-2 (stop phase) 50H~78H (0000: C-BLK OFF) C-BLK OFF 28 TA1316AN Preset Center min Center min  2002-10-04 ...

Page 29

... Cannot be used. Cannot be used. Cannot be used. MATRIX YCbCr → Internal YUV YPbPr → Internal YUV YCbCr → Internal YUV YCbCr → Internal YUV YPbPr → Internal YUV YPbPr → Internal YUV  Through  YUV → Internal YUV 29 TA1316AN pin. M 2002-10-04 ...

Page 30

... NG (no input (input) RGB-IN Returns OK when AC signal is detected on all three inputs. If signals are small or are DC voltage, does not return OK. SYNC-IN self-check result: detects input to pin 14. SYNC- (no input (input) Drive Gain1 Explanation 30 TA1316AN Drive Gain2 2002-10-04 ...

Page 31

... Start and Stop Condition SDA SCL S Start condition Bit Transfer SDA SCL Acknowledge SDA by transmitter SDA by receiver SCL from master Stop condition SDA stable Change of SDA allowed Bit 9: High-impedance Clock pulse for acknowledge 31 TA1316AN A0 W/R 0 0/1 Bit 9 only: Low-impedance 2002-10-04 ...

Page 32

... Transmit data bits 2 C specifications. Sub address A Transmit data 1 7 bits 8 bits MSB 2 C Standard Specification as defined by 32 TA1316AN P: Stop condition Transmit data bits MSB 2 C Patent Rights to use these 2002-10-04 ...

Page 33

... Printed circuit board B Printed circuit board C 2717 2551 2297 1848 1735 Printed circuit board 150 Ambient temperature Ta (°C) 33 TA1316AN Unit PCB p-p 3378 mW 27.0 mW/°C −20~65 °C −55~150 °C 8.7 V 9.0 9.3 2002-10-04 ...

Page 34

... Power-on reset (POR) threshold voltage for bus operation 3.3 V (typ.) Logic operation 1.5 V (typ.) Figure (Note 3) Timing from immediately after power-on to time at which H-out is output ( 25° ° ° ° and finally to pin 40/pin 55 (RGB DEF/DAC TA1316AN / 2002-10-04 ...

Page 35

... V, which is the maximum voltage CC (pin 19) CC H-out stop voltage (max (pin 29) DD below 1 condition at power-off CC DFF/DAC V (Pin 19 Control signal by micro-processor and so on. H-out waveform 35 TA1316AN L V (pin 29) is over 1 the DD 6.2 V Approximately ten milli seconds or more t 2002-10-04 ...

Page 36

... H-AFC H-BLK OSD VSM MUTE BLK P-MUTE HALF TONE = = = = 9 V 25°C, unless otherwise specified) CC Test Symbol Min Typ. Max Circuit I 21.0 24.2 26.9  CC1 I  55.3 63.6 70.8 CC2 I 21.0 24.1 26.8  CC3 I 39.3 45.3 50.3  CC4 36 TA1316AN Min Typ. Max Unit 8.5 8.8 9.1 V 8.7 9.0 9.3 1.8 2.0 2.2  1.0  V p-p  0.7  2.0 3.0 5.0 V 2.0 5.0 9.0 V p-p 0.9 1.0 1.1 4.7 5.0 9.0 2.2 2.5 2.8 8.0 9.0 9 ...

Page 37

... 0.3 16  V 3.9 4.4 4  5.8 6.5 7.2 20  V 5.0 5.3 5  2.2 2.5 2.8 23  V 3.65 3.95 4.25 33  V 3.65 3.95 4.25 34  V 3.65 3.95 4.25 35  V 3.65 3.95 4.  3.65 3.95 4.25 38  V 3.65 3.95 4.  3.5 4.0 4  3.5 4.0 4.5 47  V 3.5 4.0 4  0.0 0.1 0.2 49  V 0.0 0.1 0.2 50  V 0.0 0.1 0.2 51  V 0.0 0.1 0.2 52  V 5.85 6.1 6.  4.2 4.4 4.6 54  V 4.8 5.0 5 TA1316AN Unit V 2002-10-04 ...

Page 38

γ γ γ    −                        −          ...

Page 39

     −  −  −  −  −  −  −  −                     ...

Page 40

             − −    −  −  −  −  − − − − − − − − − − − ...

Page 41

     −    −                         − − − − ...

Page 42

     −  −      −  −          −  − − − − − − − − − − − − − ...

Page 43

∆ ∆ + ∆ − θ θ θ θ θ θ γ γ γ γ ∆ γ    −                    ...

Page 44

        (−     ∆                        ∆  + ...

Page 45

 +  −  +  −  +  −  +  −  +  −  +  −  +  −  +  −         ...

Page 46

γ γ γ ∆ ∆ ∆ θ θ θ + −              −  −              ...

Page 47

       −             ∆  ∆  ∆      τ   ∆  τ   ∆  ...

Page 48

 −                                  ...

Page 49

τ   ∆  τ   ∆  τ   ∆  τ   ∆    ∆  τ   ∆      α  α  α  α ...

Page 50

           ∆ −  ∆ +  ∆                      = ...

Page 51

                                    ...

Page 52

                        µ ...

Page 53

                                µ ...

Page 54

SW4 = SW5 = B, SW7 = OPEN, SW8~SW10 = B, SW20 = ON, SW23 = B, SW33∼SW39 = A, SW54 = (2) After sending bus control data with preset values, set ACB MODE to off ...

Page 55

+ = − = − ÷ × = − ÷ × = ± ...

Page 56

= = = + = = ∆ × = ∆ × = ± ∆ ∆ ∆ *** ...

Page 57

(∆ ∆ = − *** = ± ∆ ...

Page 58

= = ∆ ∆ = ∆ ∆ ∆ ± ∆ ...

Page 59

∆ = ∆ × × ∆ = ± ...

Page 60

γ γ γ γ + γ γ + γ γ γ γ γ = × × × × *** = ± γ γ γ + − − − ...

Page 61

γ γ γ γ + γ = ×  − − γ γ + γ = ×  − − = ± γ γ ...

Page 62

+ = − ÷ = − ÷ = − − ÷ ± ...

Page 63

+ = − × = − × = ± + ...

Page 64

= − × = − × = − × = − × = ± ...

Page 65

= ×  ÷ *** *** = ×  ÷ *** *** * = ± ...

Page 66

= ×  ÷ *** *** * = ± ...

Page 67

= × × ± ...

Page 68

= = × × × ×  *** *** ± ...

Page 69

= ×  ×  ×  ×  ×  ×  ×  ×  ± ...

Page 70

= ± ...

Page 71

= ± ...

Page 72

= ± ...

Page 73

+ + + + + = − = − = − = ± ...

Page 74

= × × × × ± ...

Page 75

= − = ± ...

Page 76

= ± ...

Page 77

= × × × ± ...

Page 78

SW1 = B, SW2 = B, SW20 = ON, SW33∼SW39 = A, SW54 = OPEN, SW56 = OPEN (2) Send BUS control data with preset values. (3) Set ACB MODE to off (0) and high bright color (HI BRT) ...

Page 79

= γ γ γ = × × × × × × ± γ γ ...

Page 80

= = × × × × × × × × × × ± ...

Page 81

= = ± ∆ ∆ ...

Page 82

= = ± ...

Page 83

γ ± γ γ − γ − γ − γ − γ γ γ ∆γ γ γ γ γ γ γ ...

Page 84

= = ± − ...

Page 85

Unless otherwise specified, measure bus data using preset values. (2) Set the following data: Sub-address (00) to data (02) Sub-address (05) to data (7F) Sub-address (09) to data (40) Sub-address (0B) to data (7F) Sub-address (0C) to data (82) ...

Page 86

= = = − ×  × = − ×  × = − ×  × ± ...

Page 87

= = ± µ ...

Page 88

= = = − − + − = ± + − − + − + − + − ...

Page 89

= = Ω − + µ − − = − × − × ± ...

Page 90

= = − = − = − = − = − = − = − = − = − = − = − = − = − = − = − = − = ± ...

Page 91

= = ± ...

Page 92

γ γ ∆ ∆ ∆ ∆ γ ∆ γ ∆ γ γ ± γ γ γ γ ...

Page 93

= = ± = ...

Page 94

= = ± ...

Page 95

= = = = = = = = Ω + − − − + − ± ...

Page 96

= = ± ...

Page 97

= = = = − − = − × − × ± ...

Page 98

= = ± − − − − ...

Page 99

= = = = − − = − × − ×  ± ...

Page 100

↓ ↓ = ↓ ↓ α α α α α α α = α α α α α α α ± = α α = α α ...

Page 101

= = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = = µ µ µ µ ...

Page 102

µ = × Ω = − = − = − = − = × × × × ...

Page 103

µ µ ∆ − ∆ + µ µ ∆ − ∆ + ...

Page 104

∆ µ µ ∆ µ µ ...

Page 105

µ µ µ µ ...

Page 106

= + × Ω Ω + − ...

Page 107

µ µ µ ...

Page 108

...

Page 109

Video signal (2) Input signal 1 (3) Input signal 2 (4) Input signal 3 µ ...

Page 110

Input signal 4 (2) (3) µ µ µ τ τ τ τ ...

Page 111

µ µ ...

Page 112

µ µ µ µ µ µ µ ...

Page 113

+ ...

Page 114

...

Page 115

• • • • • ...

Related keywords