• Part: AD73360
  • Description: Six-Input Channel Analog Front End
  • Manufacturer: Analog Devices
  • Size: 343.95 KB
Download AD73360 Datasheet PDF
Analog Devices
AD73360
AD73360 is Six-Input Channel Analog Front End manufactured by Analog Devices.
a Features Six 16-Bit A/D Converters Programmable Input Sample Rate Simultaneous Sampling 77 d B SNR 64 k S/s Maximum Sample Rate - 83 d B Crosstalk Low Group Delay (25 ␮s Typ per ADC Channel) Programmable Input Gain Flexible Serial Port which Allows Multiple Devices to Be Connected in Cascade Single (+2.7 V to +5.5 V) Supply Operation 80 m W Max Power Consumption at +2.7 V On-Chip Reference 28-Lead SOIC and 44-Lead TQFP Packages APPLICATIONS General Purpose Analog Input Industrial Power Metering Motor Control Simultaneous Sampling Applications GENERAL DESCRIPTION Six-Input Channel Analog Front End AD73360 metering or multichannel analog inputs. It Features six 16-bit A/D conversion channels each of which provide 77 d B signal-tonoise ratio over a dc to 4 k Hz signal bandwidth. Each channel also Features a programmable input gain amplifier (PGA) with gain settings in eight stages from 0 d B to 38 d B. The AD73360 is particularly suitable for industrial power metering as each channel samples synchronously, ensuring that there is no (phase) delay between the conversions. The AD73360 also Features low group delay conversions on all channels. An on-chip reference voltage is included and is programmable to acmodate either 3 V or 5 V operation. The sampling rate of the device is programmable with four separate settings offering 64 k Hz, 32 k Hz, 16 k Hz and 8 k Hz sampling rates (from a master clock of 16.384 MHz). A serial port (SPORT) allows easy interfacing of single or cascaded devices to industry standard DSP engines. The SPORT transfer rate is programmable to allow interfacing to both fast and slow DSP engines. The AD73360 is available in 28-lead SOIC and 44-lead TQFP packages. The AD73360 is a six-input channel analog front-end processor for general purpose applications including industrial power FUNCTIONAL BLOCK DIAGRAM VINP1 SIGNAL CONDITIONING VINN1 0/38d B PGA ANALOG ⌺-⌬ MODULATOR DECIMATOR SDI SDIFS VINP2 SIGNAL CONDITIONING VINN2 0/38d B PGA ANALOG ⌺-⌬...