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ISL5217KIZ

Description
Quad Programmable Up Converter
File Size2MB,43 Pages
ManufacturerIntersil ( Renesas )
Websitehttp://www.intersil.com/cda/home/
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ISL5217KIZ Overview

Quad Programmable Up Converter

DATASHEET
ISL5217
Quad Programmable Up Converter
The ISL5217 Quad Programmable UpConverter (QPUC) is a
QASK/FM modulator/FDM upconverter designed for high
dynamic range applications such as cellular basestations. The
QPUC combines shaping and interpolation filters, a complex
modulator, and timing and carrier NCOs into a single package.
Each QPUC can create four FDM channels. Multiple QPUCs can
be cascaded digitally to provide for up to 16 FDM channels in
multi-channel applications.
The ISL5217 supports both vector and FM modulation. In vector
modulation mode, the QPUC accepts 16-bit I and Q samples to
generate virtually any quadrature AM or PM modulation format.
The QPUC also has two FM modulation modes. In the FM with
pulse shaping mode, the 16-bit frequency samples are pulse
shaped/bandlimited prior to FM modulation. No band limiting filter
follows the FM modulator. This FM mode is useful for GMSK
type modulation formats. In the FM with band limiting filter mode,
the 16-bit frequency samples directly drive the FM modulator.
The FM modulator output is filtered to limit the spectral
occupancy. This FM mode is useful for analog FM or FSK
modulation formats.
The QPUC includes an NCO driven interpolation filter, which
allows the input and output sample rate to have an integer
and/or variable relationship. This re-sampling feature
simplifies cascading modulators with sample rates that do not
have harmonic or integer frequency relationships.
The QPUC offers digital output spectral purity that exceeds
100dB at the maximum output sample rate of 104MSPS, for
input sample rates as high as 6.5MSPS.
A 16-bit microprocessor compatible interface is used to load
configuration and baseband data. A programmable FIFO depth
interrupt simplifies the interface to the I and Q input FIFOs.
FN6004
Rev. 3.00
July 8, 2005
Features
• Output Sample Rates Up to 104MSPS with Input Data
Rates Up to 6.5MSPS
• Processing Capable of >140dB SFDR Out of Band
• Vector modulation for supporting IS-136, EDGE, IS95, TD-
SCDMA, CDMA-2000-1X/3X, W-CDMA, and UMTS
• FM Modulation for Supporting AMPS, NMT, and GSM
• Four Completely Independent Channels on Chip, Each With
Programmable 256 Tap Shaping FIR, Half-Band, and High
Order Interpolation Filters
• 16-Bit parallel
Processor
Interface and Four Independent
Serial Data Inputs
• Two 20-bit I/O Buses and Two 20-bit Output Buses Allow
Cascading Multiple Devices
• 32-Bit Programmable Carrier NCO; 48-Bit Programmable
Symbol Timing NCOs
• Dynamic Gain Profiling and Output Routing Control
• Pb-Free Plus Anneal Available (RoHS Compliant)
Applications
• Single or Multiple Channel Digital Software Radio
Transmitters (Wide-Band or Narrow-Band)
• Base Station Transmitter and Smart Antennas
• Operates with HSP50216 in Software Radio Solutions
• Compatible with the HI5960/ISL5961 or HI5828/ISL5929
D/A Converters
Ordering Information
PART
NUMBER
ISL5217KI
ISL5217KIZ (Note)
ISL5217EVAL1
TEMP
RANGE (
o
C)
-40 to 85
-40 to 85
25
PACKAGE
196 Ld BGA
Evaluation Kit
PKG. DWG.
#
V196.15x15
196 Ld BGA (Pb-free) V196.15x15
NOTE: Intersil Pb-free plus anneal products employ special Pb-free material sets;
molding compounds/die attach materials and 100% matte tin plate termination finish,
which are RoHS compliant and compatible with both SnPb and Pb-free soldering
operations. Intersil Pb-free products are MSL classified at Pb-free peak reflow
temperatures that meet or exceed the Pb-free requirements of IPC/JEDEC J STD-020.
Block Diagram
INPUT I/Q SHAPING I/Q
DATA
FILTER/
FM MOD.
I/Q HALF I/Q INTPL I/Q COMPLEX I/Q
MIXER
BAND
FILTER
SIN
COS
CARRIER
NCO
GAIN CONTROL
GAIN PROFILE
SDA
SDB
SDC
SDD
I0
Q0 4 CH
I1 SUM
Q1
I2
Q2
I3
Q3
SAMPLE
NCO
DELAY
SUM
CAS IOUT(19:0)
SUM
CAS
SUM QOUT(19:0)
QIN(19:0)
IIN(19:0)
CHANNEL 0
CHANNEL 1
CHANNEL 2
CHANNEL 3
P<15:0>
A<6:0>
{CNTRL}
1
2
3
4
PARALLEL HOST INTERFACE
CONFIGURATION AND CONTROL BUS
FN6004 Rev. 3.00
July 8, 2005
Page 1 of 43

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