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CXA2039M Base Band Hue/Color Control Description The CXA2039M is a bipolar color difference signal processing IC for color TVs. This chip enables base band hue and color control for color difference signals. Features * 2 UV inputs, 1 UV output * 3 Y inputs, 2 Y outputs (1 of the 2 outputs outputs either of 2 inputs.) * Built-in color difference signal delay line circuit Absolute Maximum Ratings * Supply voltage VCC 12 V * Operating temperature Topr -20 to +75 C * Storage temperature Tstg -65 to +150 C * Allowable power dissipation PD 780 mW Operating Conditions Supply voltage 24 pin SOP (Plastic) Applications Color TVs Structure Bipolar silicon monolithic IC VCC 9 0.5 V Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits. -1- E96X26C1Y-PS 24 Y1 IN CLAMP RY1 IN Y1 R-Y1 B-Y1 CLAMP BY1 IN GND CLAMP CLAMP Delay Line YUV SW Y SW LEVEL Y OUT RY OUT IREF BY OUT VCC TV OUT -2- Block Diagram 1 2 3 4 5 6 Delay SW 7 8 ATT 9 10 DRIVE 11 12 HUE COLOR ATT TV Y B-Y ATT R-Y ATT VCC 23 22 Y2 IN Y2 R-Y2 B-Y2 YUV SW RY2 IN 21 BY2 IN LEVEL ATT 20 19 18 17 16 15 14 13 GND TV IN Y SW HUE COLOR DLY GND DLY SW CXA2039M CXA2039M Pin Description Pin No. Symbol Pin voltage Equivalent circuit Description VCC 1 VCC VCC 1 2 3 Y1 IN RY1 IN BY1 IN 2 3 1.5k 70k Y1, R-Y1 and B-Y1 signal inputs. Input the signals via capacitors. 4 14 20 GND GND. VCC VCC 5 CLAMP 8k 5 20p Clamp pulse (positive polarity) input. VILMAX = 2.5V VIHMIN = 3.5V VCC 60k VCC 6 YUV SW 6 1.5k YUV SW control. YUV SW 0.4V Y2 IN, RY2 IN, and BY2 IN signals selected. YUV SW 1.0V Y1 IN, RY1 IN, and BY1 IN signals selected. VCC 56k 7 LEVEL 7 36k RY OUT, BY OUT and TV OUT output level control. VILMAX = 6.0V VIHMIN = 6.8V VCC VCC VCC 8 Y OUT 8 4k 20k Y signal output. Outputs the signals input to Pins 1 and 23 attenuated by -6dB. -3- CXA2039M Pin No. Symbol Pin voltage Equivalent circuit VCC VCC VCC Description 9 RY OUT 9 4k 30k R-Y signal output. VCC VCC VCC 10 BY OUT 10 4k 30k B-Y signal output. 11 24 VCC 9V Power supply. VCC 1k VCC 12 TV OUT 30k 12 3k Y signal output. VCC 13 60k 13 DLY SW Delay on/off switching signal input. DLY SW 1.4V Delay off DLY SW 2.2V Delay on VCC 15 DLY 15 40k 18k Delay line reference current setting. Connect to GND via a resistor. When 10k is connected, the delay time is 600ns. Increasing the resistance value increases the delay time and vice versa. -4- CXA2039M Pin No. Symbol Pin voltage Equivalent circuit VCC 60k 16 Description 16 COLOR 20k 8k 4.5V 8k Color control. Control is performed by applying a voltage of 0 to 9V. VCC 60k 17 17 HUE 20k 8k 4.5V 8k Hue control. Control is performed by applying a voltage of 0 to 9V. VCC VCC 18 Y SW 18 1.5k Y SW control. DLY SW 1.4V TV IN signal selected. DLY SW 2.2V Y1 IN or Y2 IN signal selected (selected by YUV SW). VCC VCC VCC 19 19 TV IN 1.5k 70k Y signal input. Input the signal via a capacitor. VCC 21 VCC VCC 21 22 23 BY2 IN RY2 IN Y2 IN 22 23 1.5k 70k Y2, R-Y2 and B-Y2 signal inputs. Input the signals via capacitors. -5- CXA2039M Electrical Characteristics Setting conditions * Ta = 25C VCC = 9V * Set initially to: YUV SW = 0V, LEVEL = 0V, DLY SW = 0V, COLOR = 4.5V, HUE = 4.5V, Y SW = 0V. (when inputting the signals from Y2 IN, RY2 IN and BY2 IN) No. 1 2 3 4 5 6 7 8 9 10 Item Symbol surement pin Mea- Input signal Measurement conditions and contents Vcc pin inflow current Gain SW = Low MODE LEVEL 6V I/O gain Min. 14 -7.0 Typ. 19 -6.2 0 -6.2 -5.3 -4.7 -3.1 -2.3 6.1 -40 Max. Unit 24 -5.0 1.0 -5.0 -4.0 -4.0 -1.7 -1.3 6.8 -30 mA dB dB dB dB dB dB dB dB dB Current ICC consumption TV OUT output gain TV OUT output gain Y OUT output gain RY OUT output gain RY OUT output gain BY OUT output gain BY OUT output gain VTV1 VTV2 VY VRY1 VRY2 VBY1 VBY2 11 24 12 12 8 9 9 10 Y: 1.4Vp-p R-Y, B-Y: 0.7Vp-p Gain SW = High MODE -1.0 LEVEL 6.8V -7.0 Gain SW = Low MODE LEVEL 6V -7.0 I/O gain I/O gain Gain SW = High MODE -6.6 LEVEL 6.8V Gain SW = Low MODE LEVEL 6V -4.7 I/O gain 10 9 9 Gain SW = High MODE -4.3 LEVEL 6.8V Set the output when COLOR = 4.5V to 0dB and measure the output when COLOR = 9V. Set the output when COLOR = 4.5V to 0dB and measure the output when COLOR = 0 V. Output level during RY signal input only -1 = tan Output level during BY signal input only when HUE = 9V Output level during RY signal input only -1 = tan Output level during BY signal input only when HUE = 0V DLY SW = 3V. Measure the I/O delay. DLY SW = 3V. Measure the I/O delay. 5.3 Color variable Cmax. range 1 Color variable Cmin. range 2 Hue variable Hmax. range 1 11 10 B-Y = 0.7Vp-p R-Y = 0.5Vp-p 40 48 Deg. 12 Hue variable Hmin. range 2 RY OUT Delay BY OUT Delay 10 -48 -40 Deg. 13 14 RYDLY BYDLY fY fRY fBY fTV 9 10 8 Y signal 0.7Vp-p 530 530 -1.0 600 600 0 -3.5 -5.0 0 680 680 1.0 0 -1.0 1.0 ns ns dB dB dB dB Y OUT 15 frequency response RY OUT 16 frequency response BY OUT 17 frequency response TV OUT 18 frequency response 1.4Vp-p 9 200kHz, 5MHz 10 12 R-Y and B-Y signal 1.4Vp-p Y SW = 3V. Measure the 200kHz gain with respect to 5MHz. -6.0 -8.0 -1.0 200kHz, 5MHz -6- CXA2039M Electrical Characteristics Measurement Circuit 0.01 47 1 0.1 2 0.1 3 0.1 4 GND BY2 IN 21 0.1 5 0/3V CLAMP GND 20 BY1 IN RY2 IN 22 0.1 RY1 IN Y2 IN 23 0.1 Y1 IN VCC 24 9V 6 YUV SW TV IN 19 0.1 0/3V 0/9V 7 LEVEL Y SW 18 0V to 9V Y output 8 Y OUT HUE 17 0V to 9V R-Y output 9 RY OUT COLOR 16 10k B-Y output 0.01 10 BY OUT DLY 15 11 VCC GND 14 0/3V Main Y output 12 TV OUT DLY SW 13 When performing measurements with signals input from Y1 IN, RY1 IN and BY1 IN: YUV SW = 3V When performing measurements with signals input from Y2 IN, RY2 IN and BY2 IN: YUV SW = 0V -7- CXA2039M Description of Operation The Y, R-Y and B-Y signals input from Pins 1, 2, 3, 21, 22 and 23 are clamped by the clamp circuit and sent to the YUV SW circuit. The Y signal input from Pin 19 is clamped by the clamp circuit and then sent to the Y SW circuit. The YUV SW circuit receives the switching signal from Pin 6 and selects either the signals from Pins 1, 2 and 3 or from Pins 21, 22 and 23. The R-Y and B-Y signals output from the YUV SW circuit are attenuated and sent to the delay line and delay switch circuits. The delay time at the delay line circuit can be set as desired in the range of 500 to 700ns according to the resistance value connected between Pin 15 and GND. After passing through the delay line circuit, the signals are sent to the delay switch circuit where the Pin 13 control voltage is received and delay on/off switching is performed. The signals output from the delay switch circuit are input to the base band hue and color control circuits where the Pins 16 and 17 control voltages are received and hue and color control is performed. Then, the signals are amplified by the drive circuit and output from Pins 9 and 10. The drive circuit gain can be switched between two values according to the voltage applied to Pin 7. Two types of Y signals, 0dB and -6dB with respect to the input level, are output from the YUV SW circuit. The 0dB signal is sent as is to the Y SW circuit, and the -6dB signal is output from Pin 8. The Y SW circuit receives the switching signal from Pin 18 and selects the Pin 19 signal and either the Pin 1 or Pin 23 signal selected by YUV SW. Two types of Y signals, an unadjusted signal and a signal attenuated by -6dB, are output from the Y SW circuit. These signals are sent to the level switch circuit where one of them is selected according to the voltage applied to Pin 7 and output from Pin 12. Curve Data Hue 10 40 0 20 Color Output gain [dB] 0 Hue [deg] -10 -20 -30 -40 0 -20 -40 -50 2 4 6 Hue control voltage [V] 8 0 2 4 6 Color control voltage [V] 8 I/O delay 750 700 650 Delay [ns] 600 550 500 450 400 350 6 7 8 10 9 IREF resistance [k] 11 12 -8- CXA2039M Application Circuit 0.01 1 Y1 input 0.1 2 0.1 3 0.1 4 GND BY2 IN 21 0.1 5 Clamp Pulse input 6 Y/B-Y/R-Y switching signal input 7 Y output CLAMP GND 20 BY1 IN RY2 IN 22 0.1 RY1 IN Y2 IN 23 0.1 Y1 IN VCC 24 47 9V R-Y1 input Y2 input B-Y1 input R-Y2 input B-Y2 input YUV SW TV IN 19 0.1 Main Y input LEVEL Y SW 18 8 Y OUT HUE 17 Y switching signal input (TV IN and Y1 IN/Y2 IN switching) Control DC (0 to 9V) R-Y output 9 RY OUT COLOR 16 10k B-Y output 0.01 10 BY OUT DLY 15 Delay = 600ns Delay increases as resistance increases 11 VCC Main Y output GND 14 12 TV OUT DLY SW 13 Delay on/off signal input Pin 7 (Pins 9, 10 and 12 output level switching) 9V = Output High MODE [RYOUT: -2.3dB (Typ.)/BYOUT: -4.7dB (Typ.)] 0V = Output Low MODE [RYOUT: -3.1dB (Typ.)/BYOUT: -5.3dB (Typ.)] Application circuits shown are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits or for any infringement of third party patent and other right due to same. -9- CXA2039M Package Outline Unit: mm 24PIN SOP (PLASTIC) + 0.4 15.0 - 0.1 24 13 + 0.4 1.85 - 0.15 0.15 + 0.3 5.3 - 0.1 7.9 0.4 + 0.2 0.1 - 0.05 0.45 0.1 1.27 + 0.1 0.2 - 0.05 0.12 M PACKAGE STRUCTURE MOLDING COMPOUND SONY CODE EIAJ CODE JEDEC CODE SOP-24P-L01 SOP024-P-0300-A LEAD TREATMENT LEAD MATERIAL PACKAGE WEIGHT EPOXY/PHENOL RESIN SOLDER PLATING COPPER ALLOY / 42ALLOY 0.3g - 10 - 0.5 0.2 1 12 6.9 CXA2039M Package Outline Unit: mm 24PIN SOP (PLASTIC) + 0.4 15.0 - 0.1 24 13 + 0.4 1.85 - 0.15 0.15 + 0.3 5.3 - 0.1 7.9 0.4 + 0.2 0.1 - 0.05 0.45 0.1 1.27 + 0.1 0.2 - 0.05 0.12 M PACKAGE STRUCTURE MOLDING COMPOUND SONY CODE EIAJ CODE JEDEC CODE SOP-24P-L01 SOP024-P-0300-A LEAD TREATMENT LEAD MATERIAL PACKAGE WEIGHT EPOXY/PHENOL RESIN SOLDER PLATING COPPER ALLOY / 42ALLOY 0.3g LEAD PLATING SPECIFICATIONS ITEM LEAD MATERIAL SOLDER COMPOSITION PLATING THICKNESS SPEC. COPPER ALLOY Sn-Bi Bi:1-4wt% 5-18m 0.5 0.2 1 12 6.9 - 11 - Sony Corporation |
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