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ICs for TV AN5769 H/V convergence correction IC I Overview The AN5769 is an IC to correct convergence in horizontal and vertical directions. It is possible to allow 100 mA (max.) DC current flow by connecting a coil between the output pins which operate with the reverse phase each other. 5.80.25 7.90.3 Unit: mm 3.50.25 1.20.25 10 3.3 9 7 6 5 4 3 2 1 1.70.25 * DC control input 0 V to 5 V * Output dynamic range 1.2 V to 3.8 V * Maximum output current 100 mA * CRT monitors HSIP012-P-0000 Note) The package of this product will be changed to lead-free type (HSIP012-P-0000D). See the new package dimensions section later of this datasheet. I Block Diagram 3 + 4 In-1 - 7 8 6 5 2 VCC1 = 12 V 1 Bias GND1 12 + In-2 - 10 11 9 GND2 GND3 1.70.25 I Applications +0.1 0.45 -0.05 2.54 I Features 28.00.3 29.40.3 8 0.50.1 1.20.25 12 11 Publication date: December 2001 SDB00028BEB 1 AN5769 I Pin Descriptions Pin No. 1 2 Description Power supply 12 V (VCC1) Output block power supply 7 V (VCC2), protection resistor is required. 3 Output block power supply 7 V (VCC3), protection resistor is required. 4 5 H-conv. control input V-conv. control input Pin No. 6 7 8 9 10 11 12 Description Output block GND (GND3) H-conv. positive output H-conv. negative output Output block GND (GND2) V-conv. positive output V-conv. negative output GND (GND1) I Absolute Maximum Ratings Parameter Supply voltage Symbol VCC1 VCC2 VCC3 Supply current ICC1 ICC2 ICC3 Power dissipation *2 *1 Rating 13.5 11.05 11.05 28 150 150 1 171 -25 to +75 -55 to +150 Unit V mA PD Topr Tstg *1 mW C C Operating ambient temperature Storage temperature Note) 1. *1: Except for the operating ambient temperature and storage temperature, all ratings are for Ta = 25C. *2: The power dissipation shown is for the IC package at Ta = 75C. 2. Pay attention to a breakdown to be caused by static electricity for pin 1. 3. Observe the following order of the supply power start-up: * Turn-on order First: Pin 2, pin 3 on (7 V) power supply Second: Pin 1 on (12 V) power supply * Turn-off order First: Pin 1 off (12 V) power supply Second: Pin 2, pin 3 off (7 V) power supply I Recommended Operating Range Parameter Supply voltage Symbol VCC1 VCC2 VCC3 Range 10.8 to 13.2 6.0 to 9.0 6.0 to 9.0 Unit V 2 SDB00028BEB AN5769 I Electrical Characteristics at Ta = 25C Parameter Circuit current 1 Circuit current 2 Circuit current 3 Circuit voltage 7 Circuit voltage 8 Circuit voltage 10 Circuit voltage 11 H-conv. output voltage 1 H-conv. output voltage 2 H-conv. output voltage 3 V-conv. output voltage 1 V-conv. output voltage 2 V-conv. output voltage 3 * Design reference data Note) The characteristics listed below are theoretical values based on the IC design and are not guaranteed. Symbol ICC1 ICC2 ICC3 V7-6 V8-6 V10-9 V11-9 EH1 EH2 EH3 EV1 EV2 EV3 Conditions VCC1 = 12 V, VCC2 = VCC3 = 7 V VCC1 = 12 V, VCC2 = VCC3 = 7 V VCC1 = 12 V, VCC2 = VCC3 = 7 V VCC1 = 12 V, VCC2 = VCC3 = 7 V VCC1 = 12 V, VCC2 = VCC3 = 7 V VCC1 = 12 V, VCC2 = VCC3 = 7 V VCC1 = 12 V, VCC2 = VCC3 = 7 V V7 -V8 at V4 = 2.5 V V7 -V8 at V4 = 5 V V7 -V8 at V4 = 0 V V10 -V11 at V5 = 2.5 V V10 -V11 at V5 = 5 V V10 -V11 at V5 = 0 V Min 17 2.8 2.8 2.8 2.8 - 0.15 +2.3 -2.7 - 0.15 +2.3 -2.7 Typ 22 0 0 3.0 3.0 3.0 3.0 0 +2.5 -2.5 0 +2.5 -2.5 Max 27 1 1 3.2 3.2 3.2 3.2 +0.15 +2.7 -2.3 +0.15 +2.7 -2.3 Unit mA mA mA V V V V V V V V V V Parameter Symbol Conditions Min - 0.1 - 0.1 - 0.1 - 0.1 - 0.1 - 0.1 Typ Max +0.1 +0.1 +0.1 +0.1 +0.1 +0.1 Unit V V V V V V EH/VCCH E with VCC1 change 12 V to 13.2 V, High-level H-conv. output fluctuation with supply voltage and VCC2, VCC3 from 7 V to 9 V Low-level H-conv. output EH/VCCL E with VCC1 change 12 V to 10.8 V, fluctuation with supply voltage and VCC2, VCC3 from 7 V to 6 V High-level V-conv. output EV/VCCH E with VCC1 change 12 V to 13.2 V, fluctuation with supply voltage and VCC2, VCC3 from 7 V to 9 V Low-level V-conv. output EV/VCCL E with VCC1 change 12 V to 10.8 V, fluctuation with supply voltage and VCC2, VCC3 from 7 V to 6 V H-conv. output fluctuation with temperature V-conv. output fluctuation with temperature EH/Ta EV/Ta E with Ta change from +25C to +70C and with Ta change from +25C to -20C E with Ta change from +25C to +70C and with Ta change from +25C to -20C SDB00028BEB 3 AN5769 I Terminal Equivalent Circuits Pin No. 1 Equivalent circuit Description Power supply 12 V (VCC1): Power supply pin Apply DC 12 V. Output block power supply 7 V (VCC2): Power supply pin for V-conv. output Apply DC 7 V via protective resistor. To 11 DC voltage (V) 12 1 2 7V 10 2 VCC1 7 To 10 To 9 3 7V 10 3 To 8 Output block power supply 7 V (VCC3): Power supply pin for H-conv. output Apply DC 7 V via protective resistor. 7 To 7 To 6 4 VCC1 4 3 k GND1 H-conv. control input: Control input for H-conv. Apply DC 0 V to 5 V. (typ. = 2.5 V) 5 VCC1 5 3 k GND1 6 To 3 V-conv. control input: Control input for V-conv. Apply DC 0 V to 5 V. (typ. = 2.5 V) GND3: Grounding pin of H-conv. output block 0 To 7 6 To 8 4 SDB00028BEB AN5769 I Terminal Equivalent Circuits (continued) Pin No. 7 Equivalent circuit Description H-conv. positive output: Positive output pin for H-conv. Outputs polarity as same as that of pin 4. DC voltage (V) 1.7 to 4.2 To 3 7 To 6 8 To 3 8 To 6 H-conv. negative output: Negative output pin for H-conv. Outputs polarity opposite to that of pin 4. 1.7 to 4.2 9 To 2 GND2: Grounding pin of V-conv. output block 0 To 10 9 10 To 11 To 2 10 To 9 11 To 2 11 To 9 V-conv. positive output: Positive output pin for V-conv. Outputs polarity as same as that of pin 5. 1.7 to 4.2 V-conv. negative output: Negative output pin for V-conv. Outputs polarity opposite to that of pin 5. 1.7 to 4.2 12 12 GND1 GND1: Grounding pin for 12V-system 0 SDB00028BEB 5 AN5769 I Application Circuit Example 10 11 VCC1 12 V 20 F 10 10 33 33 7V 6.8 k 5 k 6.8 k 5 k I New Package Dimensions (Unit: mm) * HSIP012-P-0000D (Lead-free package) 2.300.20 29.400.30 28.000.30 3.300.10 8.000.20 3.500.20 12.800.20 1 (0.73) 3.800.20 1.700.15 1.700.15 12 2.54 0.50+0.10 -0.05 1.40+0.10 -0.05 1.300.20 0.40+0.10 -0.05 Seating plane 6 SDB00028BEB (3.40) GND1 12 VCC1 1 VCC2 2 VCC3 3 4 5 GND3 6 7 8 GND2 9 Request for your special attention and precautions in using the technical information and semiconductors described in this material (1) An export permit needs to be obtained from the competent authorities of the Japanese Government if any of the products or technologies described in this material and controlled under the "Foreign Exchange and Foreign Trade Law" is to be exported or taken out of Japan. (2) The technical information described in this material is limited to showing representative characteristics and applied circuit examples of the products. It does not constitute the warranting of industrial property, the granting of relative rights, or the granting of any license. (3) The products described in this material are intended to be used for standard applications or general electronic equipment (such as office equipment, communications equipment, measuring instruments and household appliances). Consult our sales staff in advance for information on the following applications: * Special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combustion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. * Any applications other than the standard applications intended. (4) The products and product specifications described in this material are subject to change without notice for reasons of modification and/or improvement. At the final stage of your design, purchasing, or use of the products, therefore, ask for the most up-to-date Product Standards in advance to make sure that the latest specifications satisfy your requirements. (5) When designing your equipment, comply with the guaranteed values, in particular those of maximum rating, the range of operating power supply voltage and heat radiation characteristics. Otherwise, we will not be liable for any defect which may arise later in your equipment. Even when the products are used within the guaranteed values, redundant design is recommended, so that such equipment may not violate relevant laws or regulations because of the function of our products. (6) When using products for which dry packing is required, observe the conditions (including shelf life and after-unpacking standby time) agreed upon when specification sheets are individually exchanged. (7) No part of this material may be reprinted or reproduced by any means without written permission from our company. Please read the following notes before using the datasheets A. These materials are intended as a reference to assist customers with the selection of Panasonic semiconductor products best suited to their applications. Due to modification or other reasons, any information contained in this material, such as available product types, technical data, and so on, is subject to change without notice. Customers are advised to contact our semiconductor sales office and obtain the latest information before starting precise technical research and/or purchasing activities. B. Panasonic is endeavoring to continually improve the quality and reliability of these materials but there is always the possibility that further rectifications will be required in the future. Therefore, Panasonic will not assume any liability for any damages arising from any errors etc. that may appear in this material. C. These materials are solely intended for a customer's individual use. Therefore, without the prior written approval of Panasonic, any other use such as reproducing, selling, or distributing this material to a third party, via the Internet or in any other way, is prohibited. 2001 MAR |
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