IC-Hersteller Texas Instruments

IC-Hersteller (103)

Texas Instruments ADC3660IRSBT | Demoboard ADC3660EVM

Dual, 16-bit, 0.5-MSPS to 65-MSPS, low-noise, ultra-low-power analog-to-digital converter (ADC)

Details

TopologieADC
IC-RevisionA

Beschreibung

The ADC3660 device is a low-noise, ultra-low power, 16-bit, 65-MSPS dual-channel, high-speed analog-to digital converter (ADCs). Designed for low power consumption, the device delivers a noise spectral density of –159 dBFS/Hz, combined with excellent linearity and dynamic range. The ADC3660 offers excellent dc precision, together with IF sampling support, which make the device an excellent choice for a wide range of applications. The ADC consumes only 71 mW/ch at 65 MSPS, and power consumption scales very well with lower sampling rates. In bypass mode (up to 31 MSPS) the output data is available after 1 or 2 clock cycles. The ADC3660 uses a serial CMOS (SCMOS) interface to output the data which minimizes the number of digital interconnects. The device supports a two-lane, a one-lane and a half lane option. The serialized CMOS interface supports output rates to 250 Mbps which translates to ~ 15 MSPS (2-wire) to ~ 3.75 MSPS (0.5-wire) output rates after complex decimation. Hence the ADC3660 can be operated in 'oversampling + decimating' mode using the internal decimation filter in order to improve the dynamic range and relax external anti-aliasing filter. The device comes in a 40-pin WQFN package (5 mm × 5 mm) and supports the extended industrial temperature range of –40 to +105⁰C.

Eigenschaften

  • Dual channel
  • 16-bit 65 MSPS ADC (max output rate = 31 Msps)
  • Noise floor: –159 dBFS/Hz
  • Ultra-low power: 71 mW/ch at 65 MSPS
  • 16-Bit, no missing codes
  • INL: ±2 LSB; DNL: ±0.2 LSB
  • Reference: external or internal
  • Input bandwidth: 900 MHz (3 dB)
  • Industrial temperature range: –40°C to +105°C
  • On-chip digital down converter– Decimation by 2, 4, 8, 16, 32– 32-bit NCO
  • Serial CMOS interface
  • Single 1.8-V supply
  • Small footprint: 40-WQFN (5 mm × 5 mm) package
  • Spectral performance (fIN = 5 MHz):– SNR: 81.9 dBFS– SFDR: 88 dBc HD2, HD3– SFDR: 102 dBFS worst spur

Typische Anwendungen

  • Power quality analyzer, Power quality meter,
  • Sonar, Radar, Defense radio, Wireless communications
  • Motor diagnostics & monitoring
  • Lab & field instrumentation, Data acquisition (DAQ), Lab & field instrumentation, Spectrometers

Weiterführende Informationen

Artikeldaten

Artikel Nr.
Daten­blatt
Simu­lation
Downloads
Status
Produktserie
C
Tol. C
VR(V (DC))
Bauform
Betriebstemperatur
DF(%)
RISO
Keramiktyp
L(mm)
B(mm)
H(mm)
Fl(mm)
Verpackung
Z @ 100 MHz(Ω)
Zmax(Ω)
Testbedingung Zmax
IR 2(mA)
RDC max.(Ω)
Typ
Muster
WCAP-CSGP MLCCs 16 V(DC), 1 µF, ±10%
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Kapazität1 µF
Kapazität±10% 
Nennspannung16 V (DC)
Bauform0603 
Betriebstemperatur -55 °C up to +125 °C
Verlustfaktor10 %
Isolationswiderstand0.1 GΩ
KeramiktypX7R Klasse II 
Länge1.6 mm
Breite0.8 mm
Höhe0.8 mm
Pad Dimension0.4 mm
Verpackung7" Tape & Reel 
WCAP-CSGP MLCCs 10 V(DC), 10 µF, ±10%
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Kapazität10 µF
Kapazität±10% 
Nennspannung10 V (DC)
Bauform0805 
Betriebstemperatur -55 °C up to +125 °C
Verlustfaktor10 %
Isolationswiderstand0.01 GΩ
KeramiktypX7R Klasse II 
Länge2 mm
Breite1.25 mm
Höhe1.25 mm
Pad Dimension0.5 mm
Verpackung7" Tape & Reel 
WE-CBF SMT-Ferrit, –, –
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
ProduktserieWE-CBF SMT-Ferrit
Bauform0402 
Betriebstemperatur -55 °C up to +125 °C
Länge1 mm
Breite0.5 mm
Höhe0.5 mm
Pad Dimension0.25 mm
Impedanz @ 100 MHz120 Ω
Maximale Impedanz200 Ω
Maximale Impedanz600 MHz 
Nennstrom 21100 mA
Gleichstromwiderstand0.2 Ω
TypBreitband