SAA4981
SAA4981 is Monolithic integrated 16 : 9 compressor manufactured by Philips Semiconductors.
FEATURES
GENERAL DESCRIPTION
Patent notice QUICK REFERENCE DATA ORDERING INFORMATION BLOCK DIAGRAMS PINNING FUNCTIONAL DESCRIPTION
CONTROL REGISTER DESCRIPTION
LIMITING VALUES THERMAL CHARACTERISTICS CHARACTERISTICS 12 13 13.1 13.2 13.3 13.4 13.5 14 15 16 PACKAGE OUTLINE SOLDERING
SAA4993H
Introduction to soldering surface mount packages Reflow soldering Wave soldering Manual soldering Suitability of surface mount IC packages for wave and reflow soldering methods DATA SHEET STATUS DEFINITIONS DISCLAIMERS
2001 Nov 23
Philips Semiconductors
Product specification
Field and line rate converter with noise reduction
1 FEATURES
2 GENERAL DESCRIPTION
SAA4993H
- Upconversion of all 1f H film and video standards up to 292 active input lines per field
- 100/120 Hz 2 : 1, 50/60 Hz 1 : 1 and 100/120 Hz 1 : 1 output formats
- 4 : 1 : 1, 4 : 2 : 2 and 4 : 2 : 2 Differential Pulse Code Modulation (DPCM) input colour formats; 4 : 1 : 1 and 4 : 2 : 2 output colour formats
- Full 8-bit accuracy
- Scalable performance by applying 2 or 3 external field memories
- Improved recursive de-interlacing
- Film (25 and 30 Hz) upconversion to 100/120 movement phases per second
- Variable vertical sharpness enhancement
- Motion pensated 3D dynamic noise reduction
- High quality vertical zoom
- 2 Mbaud serial interface (SNERT)
- Demonstration mode for noise reduction, motion pensation and colour overlay.
The SAA4993H is a pletely digital monolithic integrated circuit which can be used for field and line rate conversion of all global TV standards. It features improved Natural Motion™(1) performance. It can be configured to emulate the SAA4990H as well as the SAA4991WP. For demonstration purposes a split screen mode to show the Dynamic Noise Reduction (DNR) function and natural motion is available, and a colour vector overlay mode exists. The SAA4993H supports a Boundary Scan Test (BST) circuit in accordance with IEEE 1149. 2.1 Patent notice
Notice is herewith given that the subject...