Produktdetails

Resolution (Bits) 10 Number of channels 6 Sample rate (Msps) 65 Gain (min) (dB) 0 Gain (max) (dB) 26 Pd (typ) (mW) 1040 Supply voltage (max) (V) 3.6 Operating temperature range (°C) 0 to 70 Output data format CMOS Rating Catalog
Resolution (Bits) 10 Number of channels 6 Sample rate (Msps) 65 Gain (min) (dB) 0 Gain (max) (dB) 26 Pd (typ) (mW) 1040 Supply voltage (max) (V) 3.6 Operating temperature range (°C) 0 to 70 Output data format CMOS Rating Catalog
TQFP (PFC) 80 196 mm² 14 x 14
  • 3.3-V Single Supply Operation
  • CDS or S/H Processing with Negative
    Input Signal Polarity
  • 32.5-MHz Channel Rate
  • Enhanced ESD Protection on Host
    Interface Pins: SHP, SHD, CLPIN,
    BLKCLP, AGC_ONB, MCLK, RESETB,
    SENB, SCLK, SDI, SDO
  • Low Power CMOS Design
  • 4-Wire Serial interface
  • 2 Channel Symmetrical Architecture
  • Independent Gain and Offset Correction
    for Each Channel
  • Digital Black Level Calibration for
    Each Channel
  • Digital White Level Calibration for
    Each Channel
  • Programmable Input Clamp
  • 3.3-V Single Supply Operation
  • CDS or S/H Processing with Negative
    Input Signal Polarity
  • 32.5-MHz Channel Rate
  • Enhanced ESD Protection on Host
    Interface Pins: SHP, SHD, CLPIN,
    BLKCLP, AGC_ONB, MCLK, RESETB,
    SENB, SCLK, SDI, SDO
  • Low Power CMOS Design
  • 4-Wire Serial interface
  • 2 Channel Symmetrical Architecture
  • Independent Gain and Offset Correction
    for Each Channel
  • Digital Black Level Calibration for
    Each Channel
  • Digital White Level Calibration for
    Each Channel
  • Programmable Input Clamp

The LM98519 is a fully integrated, high performance 10-Bit, 65 MSPS signal processing solution for digital color copiers, scanners, and other image processing applications. High-speed signal throughput is achieved with an innovative six channel architecture utilizing Correlated Double Sampling (CDS), or Sample and Hold (SH) type sampling. 1x or 2x gain settings are available in the CDS/SH input stage. Each channel has a dedicated 1x to 10x (8 bit) PGA that allows accurate gain adjustment of each channel. The Digital White Level auto calibration loop can automatically set the PGA value to achieve a selected white target level. Each channel also has a ±4-bit coarse and ±10-bit fine analog offset correction DAC that allows offset correction before the sample-and-hold amplifier. These correction values can be controlled by an automated Digital Black Level correction loop. The PGA and offset DACs for each channel are programmed independently allowing unique values of gain and offset for each of the six channels. A 2-to-1 multiplexing scheme routes the signals to three 65-MHz high performance ADCs. The fully differential processing channels achieve exceptional noise immunity, having a very low noise floor of –67.5 dB. The 10-bit analog-to-digital converters have excellent dynamic performance making the LM98519 transparent in the image reproduction chain.

The LM98519 is a fully integrated, high performance 10-Bit, 65 MSPS signal processing solution for digital color copiers, scanners, and other image processing applications. High-speed signal throughput is achieved with an innovative six channel architecture utilizing Correlated Double Sampling (CDS), or Sample and Hold (SH) type sampling. 1x or 2x gain settings are available in the CDS/SH input stage. Each channel has a dedicated 1x to 10x (8 bit) PGA that allows accurate gain adjustment of each channel. The Digital White Level auto calibration loop can automatically set the PGA value to achieve a selected white target level. Each channel also has a ±4-bit coarse and ±10-bit fine analog offset correction DAC that allows offset correction before the sample-and-hold amplifier. These correction values can be controlled by an automated Digital Black Level correction loop. The PGA and offset DACs for each channel are programmed independently allowing unique values of gain and offset for each of the six channels. A 2-to-1 multiplexing scheme routes the signals to three 65-MHz high performance ADCs. The fully differential processing channels achieve exceptional noise immunity, having a very low noise floor of –67.5 dB. The 10-bit analog-to-digital converters have excellent dynamic performance making the LM98519 transparent in the image reproduction chain.

Herunterladen Video mit Transkript ansehen Video

Technische Dokumentation

star =Von TI ausgewählte Top-Empfehlungen für dieses Produkt
Keine Ergebnisse gefunden. Bitte geben Sie einen anderen Begriff ein und versuchen Sie es erneut.
Alle anzeigen 1
Typ Titel Datum
* Data sheet LM98519 10-bit 65 MSPS 6 Channel Imaging Signal Processor datasheet (Rev. C) PDF | HTML 07 Okt 2014

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Simulationstool

PSPICE-FOR-TI — PSpice® für TI Design-und Simulationstool

PSpice® für TI ist eine Design- und Simulationsumgebung, welche Sie dabei unterstützt, die Funktionalität analoger Schaltungen zu evaluieren. Diese voll ausgestattete Design- und Simulationssuite verwendet eine analoge Analyse-Engine von Cadence®. PSpice für TI ist kostenlos erhältlich und (...)
Gehäuse Pins Herunterladen
TQFP (PFC) 80 Optionen anzeigen

Bestellen & Qualität

Beinhaltete Information:
  • RoHS
  • REACH
  • Bausteinkennzeichnung
  • Blei-Finish/Ball-Material
  • MSL-Rating / Spitzenrückfluss
  • MTBF-/FIT-Schätzungen
  • Materialinhalt
  • Qualifikationszusammenfassung
  • Kontinuierliches Zuverlässigkeitsmonitoring
Beinhaltete Information:
  • Werksstandort
  • Montagestandort

Empfohlene Produkte können Parameter, Evaluierungsmodule oder Referenzdesigns zu diesem TI-Produkt beinhalten.

Support und Schulungen

TI E2E™-Foren mit technischem Support von TI-Ingenieuren

Inhalte werden ohne Gewähr von TI und der Community bereitgestellt. Sie stellen keine Spezifikationen von TI dar. Siehe Nutzungsbedingungen.

Bei Fragen zu den Themen Qualität, Gehäuse oder Bestellung von TI-Produkten siehe TI-Support. ​​​​​​​​​​​​​​

Videos