STV9306A STMicroelectronics, STV9306A Datasheet

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STV9306A

Manufacturer Part Number
STV9306A
Description
Manufacturer
STMicroelectronics
Datasheet

Specifications of STV9306A

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MAIN FEATURES
DESCRIPTION
The STV9306A is a fully I²C controlled vertical
deflection IC designed for use in 110°, 4:3 or 16:9
CRT applications. It integrates both the vertical
deflection and E/W correction circuits required for
110° chassis.
September 2003
This is preliminary information on a new product now in development or undergoing evaluation. Details are subject to change without notice.
Fully I²C controlled
DMOS Power Half-bridge Amplifier
DC Coupled Operation
Internal Flyback Generator (Up to 60 V)
Self Adapted Sawtooth (50/60 Hz)
100 Hz Operation
Vertical Linearity, Amplitude and Centering
Adjustments
Horizontal Width, Pincushion, Trapezoid and
Corner Adjustments
4:3 and 16:9 CRT Applications
Thermal Protection
Linear Vertical Zoom Function
E/W Class A Output
Few External Components
®
Bus-Controlled Vertical Deflection System
with East/West Correction Output Circuit
PRINCIPAL DIFFERENCES
E/W Output Dynamic Range
E/W Corner Correction
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
Order Code: STV9306A
(Plastic Package)
Multiwatt15
BREATHING
SENS1
EWFB
SENS2
EWOUT
VOPS
VOUT
GND
FLYBACK
VS
SYNC
CHOLD
SDA
CRAMP
SCL
STV9306
STV9306A
Positive
60 V
PRELIMINARY DATA
STV9306A
Negative
Positive/
42 V
1/16

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STV9306A Summary of contents

Page 1

... Linear Vertical Zoom Function E/W Class A Output Few External Components DESCRIPTION The STV9306A is a fully I²C controlled vertical deflection IC designed for use in 110°, 4:3 or 16:9 CRT applications. It integrates both the vertical deflection and E/W correction circuits required for 110° chassis. ...

Page 2

... I/O Pin Description ............................................................................................................. 3 Chapter 2 ELECTRICAL CHARACTERISTICS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4 2.1 Absolute Maximum Ratings ................................................................................................ 4 2.2 Thermal Data ...................................................................................................................... 4 2.3 Electrical Characteristics ...................................................................................................... 4 2.4 I²C Bus Interface ................................................................................................................. 8 2.5 I²C Bus Selection ................................................................................................................. 9 Chapter 3 INPUT/OUTPUT PIN CONFIGURATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .11 Chapter 4 APPLICATION DIAGRAM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .13 Chapter 5 LIST OF MODIFICATIONS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .14 Chapter 6 PACKAGE DESCRIPTION 2/16 Table of Contents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .15 STV9306A ...

Page 3

... Sync Input Supply Voltage Flyback Output Ground Vertical Output Vertical Output Power Supply E/W Output Vertical Current Sense 2 E/W Feedback Vertical Current Sense 1 Breathing Input Figure 1: STV9306A Block Diagram Corner Detection Amplitude C Correction S Correction Vertical Amplitude Ramp Adjustment & Format Generator ...

Page 4

... I Oversize Blank Input Current at Pin Input Frequency Range IN 4/16 Parameter Parameter unless otherwise specified. AMB Test Conditions Test Conditions CRAMP = 100 nF V_SAW = 100000 STV9306A Value Units 35 60 -0. -10, +70 -55, +150 +150 Value Units Max. 3 Min. 140 Min. Typ. Max. Units 16 28 ...

Page 5

... STV9306A Vertical Power Amplifier Symbol Parameter I Breathing Current Input Current at Pin 15 IBR V Breathing Operating Voltage at Pin 15 BREATH V Saturation Voltage to supply at Pin Saturation Voltage to Ground at Pin Bias Input Current at Pin 14 SENS1 I Bias Input Current at Pin 12 SENS2 Saturation Voltage to supply at Pin 9 versus V 9H ...

Page 6

... E/W Sink Average Current MAX 6/16 Test Conditions EW_AMP = 00000 8) EW_AMP = 11111 EW_DC = 00000 EW_DC = 11111 HShrink active EW_TRAP = 01111 (see Figure 10) EW_TRAP = 11111 EW_CORNER = 00000 /V EW_CORNER = 11111 COR PAR I = 500 mA OUT STV9306A Figure 7) Min. Typ. Max. Units -1 -0.5 µ +5.5 0.6 1 ...

Page 7

... STV9306A Figure 2: Vertical Amplitude and Position I PP Figure 3: Zoom Mode Normal Mode Figure 4: S Correction I SC Figure 5: C Correction Figure 6: Breathing Correction Zoom Mode PPB ELECTRICAL CHARACTERISTICS Figure 7: E/W Output 100 EWOUT + EWSENS 1 k Figure 8: Pincushion Correction V PAR Figure 9: Horizontal Width Adjustment ...

Page 8

... Start and Stop 8/16 Test Conditions 3mA 1.5V Figure 12: Serial Bus Timing t buf hd, sta t low t su, sta STV9306A Min. Typ. Max. Units -0.3 1.5 3.0 5.5 -10 10 µA 0 100 kHz 1000 ns 300 -0.3 1.5 3.0 5.5 -10 10 µA 10 ...

Page 9

... STV9306A 2.5 I²C Bus Selection 2.5.1 Write Mode: Slave Address: 1000 1100 (8C) Subaddress Data Vertical Shift (V_SH Correction (V_SC) & Zoom Position Correction (V_CC) & Progressive Zoom (V_ZOOM Horizontal Width Adjustment (EW_VDC Vertical Amplitude X 0 Sign Vertical Shift Correction X 0 Sign C ...

Page 10

... External E/W Transistor Internal E/W Transistor Positive Trapezium Correction Negative Trapezium Correction Min. Level Correction Max. Level Correction Normal Mode High Impedance Mode Normal Temperature Thermal Security Active Flyback Pulse detected Lack of Flyback Pulse Sync Pulse Present Lack of Sync Pulse STV9306A ...

Page 11

... STV9306A 3 INPUT/OUTPUT PIN CONFIGURATION Figure 13: I²C Bus Clock 30 V Clamp SCL 1 Figure 14: Ramp Capacitor VS CRAMP 2 Figure 15: I²C Bus Data 30 V Clamp SDA CHOLD SYNC 5 V INPUT/OUTPUT PIN CONFIGURATION Figure 16: Hold Capacitor Figure 17: Sync Input VS 5 Figure 18: Flyback Output VS 7 FLYBACK ...

Page 12

... INPUT/OUTPUT PIN CONFIGURATION Figure 19: Vertical Output VOPS VS Figure 20: Vertical Output Power Supply VOPS 10 Figure 21: E/W Output 42 V EWOUT 11 12/16 9 VOUT SENS2 Clamp 60 V Clamp Figure 22: Vertical Current Sense VS Figure 23: E/W Feedback VS EWFB 13 Figure 24: Breathing Input VS BREATHING 15 STV9306A VS 14 SENS1 ...

Page 13

... STV9306A 4 APPLICATION DIAGRAM VSYNC OVERSIZE BLANKING V. YOKE 1.3 A 12V 470 µF EW DIODE MODULATOR 47 µF Figure 25: STV9306A Application Diagram SCL SDA BC557 24 V 470 µF 1N4004 PP 100 R 0.9 SENS 100 1000 µ 4 BCL 12V 220 k 4 100 APPLICATION DIAGRAM 100 1 SCL ...

Page 14

... Revision 1.0 First Issue 1.1 Modification of No Corner value in table to Preliminary Data datsheet. 1.2 Modification of Vertical Output (Pin 9) on page 5 page 6. 14/16 Modification East/West Correction on page 6. Document upgraded and V Value in East/West Correction on DCEW STV9306A Date Sept. 2001 Nov. 2001 March 2002 ...

Page 15

... STV9306A 6 PACKAGE DESCRIPTION Dimension Min 0.49 F 0.66 G 1.02 G1 17.53 H1 19. 21.9 L1 21.7 L2 17.65 L3 17.25 L4 10.3 L7 2.65 M 4.25 M1 4.63 S 1.9 S1 1.9 Dia1 3.65 Figure 26: 15-Pin Plastic Multiwatt Package Millimeters Typ. Max. 5 2.65 1.6 1 0.55 0.75 1.27 1.52 17.78 18.03 20.2 22.2 22.5 22 ...

Page 16

... Australia - Brazil - Canada - China - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - U.S.A. 16/16 express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics © 2003 STMicroelectronics - All Rights Reserved STMicroelectronics GROUP OF COMPANIES www.st.com STV9306A ...

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