Produktdetails

Number of input channels 2 Resolution (Bits) 14 Sample rate (max) (Msps) 250 Features Decimating Filter, Differential Inputs, High Dynamic Range, Nap Mode, Out of Range Indicator, Power Down Analog input BW (MHz) 750 Power consumption (typ) (mW) 1630 Operating temperature range (°C) -40 to 85 Rating Catalog
Number of input channels 2 Resolution (Bits) 14 Sample rate (max) (Msps) 250 Features Decimating Filter, Differential Inputs, High Dynamic Range, Nap Mode, Out of Range Indicator, Power Down Analog input BW (MHz) 750 Power consumption (typ) (mW) 1630 Operating temperature range (°C) -40 to 85 Rating Catalog
HTQFP (PFP) 80 196 mm² 14 x 14
  • Differential Analog IF Input, DDR LVDS Digital IF Output
  • Up to 125-MHz Signal Bandwidth per Receiver
    • With 40- and 75-MHz optimized bands
  • High Dynamic Performance
  • High Impedance Input
  • 80-Pin TQFP Package with PowerPAD
  • APPLICATIONS
    • ADS58C20: Multi-Carrier GSM/3G/LTE/TDS-CDMA Cellular Base-station Receiver
    • ADS58C23: Multi-Carrier 3G/LTE/TDS-CDMA Cellular Base-station Receiver

  • Differential Analog IF Input, DDR LVDS Digital IF Output
  • Up to 125-MHz Signal Bandwidth per Receiver
    • With 40- and 75-MHz optimized bands
  • High Dynamic Performance
  • High Impedance Input
  • 80-Pin TQFP Package with PowerPAD
  • APPLICATIONS
    • ADS58C20: Multi-Carrier GSM/3G/LTE/TDS-CDMA Cellular Base-station Receiver
    • ADS58C23: Multi-Carrier 3G/LTE/TDS-CDMA Cellular Base-station Receiver

The ADS58C20 and ADS58C23 are dual IF receivers for wideband, multi-mode cellular infrastructure base stations. Each channel provides high dynamic performance up to 125 MHz of bandwidth, with optimized bands of 40- and 75-MHz. The IF receiver architecture eases front end filter design for wide bandwidth receivers. The receivers have integrated buffers at the analog inputs with benefits of uniform performance and input impedance across a wide frequency range.

The ADS58C20 is a high performance part with superior specifications for single/multi-mode cellular base-station receivers that include multi-carrier GSM. It can also process other cellular protocols such as TDS-CDMA/3G/LTE and prior generation systems.

The ADS58C23 offers the same functionality and pinout as ADS58C20 but with reduced minimum performance specifications for lower cost and performance systems, such as TDS-CDMA/3G/LTE single/multi-mode receivers (when GSM is not required). It can also process prior generation protocols.

The devices are available in a 80-pin TQFP package, and are specified over the full industrial temperature range (–40°C to 85°C).

The ADS58C20 and ADS58C23 are dual IF receivers for wideband, multi-mode cellular infrastructure base stations. Each channel provides high dynamic performance up to 125 MHz of bandwidth, with optimized bands of 40- and 75-MHz. The IF receiver architecture eases front end filter design for wide bandwidth receivers. The receivers have integrated buffers at the analog inputs with benefits of uniform performance and input impedance across a wide frequency range.

The ADS58C20 is a high performance part with superior specifications for single/multi-mode cellular base-station receivers that include multi-carrier GSM. It can also process other cellular protocols such as TDS-CDMA/3G/LTE and prior generation systems.

The ADS58C23 offers the same functionality and pinout as ADS58C20 but with reduced minimum performance specifications for lower cost and performance systems, such as TDS-CDMA/3G/LTE single/multi-mode receivers (when GSM is not required). It can also process prior generation protocols.

The devices are available in a 80-pin TQFP package, and are specified over the full industrial temperature range (–40°C to 85°C).

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet ADS58C20 and ADS58C23 Features datasheet 30 Jun 2011
Application note Band-Pass Filter Design Techniques for High-Speed ADCs 27 Feb 2012
Application note High-Speed, Analog-to-Digital Converter Basics 11 Jan 2012
Application note Understanding Low-Amplitude Behavior of 11-bit ADCs 22 Okt 2011

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