IC-Hersteller Analog Devices

IC-Hersteller (103)

Analog Devices AD7626

16-Bit, 10 MSPS, PulSAR Differential ADC

Details

TopologieAufwärtswandler
Eingangsspannung5 V
IC-RevisionC

Beschreibung

The AD7626 is a 16-bit, 10 MSPS, charge redistribution successive approximation register (SAR) based architecture analog-to-digital converter (ADC). SAR architecture allows unmatched performance both in noise (91.5 dB SNR) and in linearity (±0.45 LSB INL). The AD7626 contains a high speed, 16-bit sampling ADC, an internal conversion clock, and an internal buffered reference. On the CNV edge, it samples the voltage difference between the IN+ and IN− pins. The voltages on these pins swing in opposite phase between 0 V and REF. The 4.096 V reference voltage, REF, can be generated internally or applied externally.

All converted results are available on a single LVDS self-clocked or echoed-clock serial interface, reducing external hardware connections.

The AD7626 is housed in a 32-lead, 5 mm × 5 mm LFCSP with operation specified from −40°C to +85°C.

Eigenschaften

  • Throughput: 10 MSPS
  • SNR: 91.5 dB
  • 16-bit no missing codes
  • INL: ±0.45 LSB
  • DNL: ±0.35 LSB
  • Power dissipation: 136mW
  • 32-lead LFCSP (5 mm × 5 mm)
  • SAR architecture
  • No latency/no pipeline delay
  • 16-bit resolution with no missing codes
  • Zero error: ±1LSB
  • Differential input range: ±4.096 V
  • Serial LVDS interface
  • Self-clocked mode
  • Echoed-clock mode
  • LVDS or CMOS option for conversion control (CNV signal)
  • Reference options
  • Internal: 4.096 V
  • External (1.2 V) buffered to 4.096V
  • External: 4.096 V

Typische Anwendungen

  • CCD and IR cameras
  • Spectrum analysis
  • Test equipment
  • Digital X-ray
  • High dynamic range telecommunications receivers
  • Digital imaging systems
  • Digital MRI
  • High speed data acquisition

Weiterführende Informationen

Artikeldaten

Artikel Nr.
Daten­blatt
Simu­lation
Downloads
Status
Produktserie
Z @ 100 MHz(Ω)
Zmax(Ω)
Testbedingung Zmax
IR 2(mA)
RDC max.(Ω)
Typ
Muster
WE-CBF SMT-Ferrit, 470 Ω, 780 Ω
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
ProduktserieWE-CBF SMT-Ferrit
Impedanz @ 100 MHz470 Ω
Maximale Impedanz780 Ω
Maximale Impedanz300 MHz 
Nennstrom 2950 mA
Gleichstromwiderstand0.45 Ω
TypBreitband