Evaluates: MAX9311–MAX9314
Minimum Required Equipment
•Five matched SMA-male-to-SMA-male 50Ωcoax
cables for inputs: CLKSEL, CLK0, CLK0, CLK1, and
CLK1
•Two matched SMA-male-to-SMA-male 50Ωcoax
cables for outputs: Q0 and Q0
•Two differential adjustable clock sources like the
Agilent 8133A 3GHz pulse generator
•One single-ended adjustable clock select (CLKSEL)
source
•One 10GHz bandwidth oscilloscope with 50Ωinput
impedance like the Tektronix 11801C digital sam-
pling oscilloscope with the SD-24 sampling head
•Two power supplies
Power supply 1: +2V with 1A current capability
Power supply 2: adjustable -0.25V to -1.8V with
1A current capability
Procedure
1) Connect two of the five matched input cables to the
first differential clock source. Then connect the other
end of the cables to CLK0 and CLK0 on the
MAX9311 EV kit board.
2) Connect two of the five matched input cables to the
second differential clock source. Then connect the
other end of the cables to CLK1 and CLK1 on the
MAX9311 EV kit board.
3) Connect one of the five matched input cables to the
single-ended clock select source. Then connect the
other end of the cable to CLKSEL on the MAX9311
EV kit board.
4) Unsolder and remove the termination resistors locat-
ed on the Q0 and Q0 outputs (R28 and R29). Make
sure the input impedance of the oscilloscope is 50Ω.
5) Connect the two matched output cables to the oscil-
loscope. Then connect the other end of the cables
to Q0 and Q0 on the MAX9311 EV kit board.
6) Connect a +2VDC power supply to the pads labeled
VCC on the MAX9311 EV kit board. This ensures
that the outputs are loaded with 50Ωto VCC - 2V.
7) Connect a -1.3VDC power supply to the pads
labeled VEE on the MAX9311 EV kit board.
8) Configure the adjustable clock sources to the
desired input levels defined in the MAX9311/
MAX9313 IC data sheet. Note that VCC = +2V.
9) Enable all clock sources.
10) Verify the timing of the waveforms using the oscillo-
scope.
Detailed Description
Clock and Clock Select Inputs
All clock inputs are located on the left edge of the
MAX9311 EV kit board. The board provides SMA con-
nectors and 50Ωtermination for all clock inputs. The
MAX9311 features an on-chip reference voltage, VBB,
allowing single-ended operation. Connect VBB to one of
the differential inputs for single-ended operation.
Single-ended operation is limited to 3V ≤(VCC - VEE) ≤
3.8V. Differential operation can be used throughout the
full supply range: 2.25V ≤(VCC - VEE) ≤3.8V.
The clock select input accepts a single-ended input ref-
erenced to VCC. The clock select input has its own
SMA connector and 50Ωtermination on the board.
Outputs
The 10 differential outputs are in numeric order and are
located on the top, right, and bottom edges of the
MAX9311 EV kit board. All outputs are terminated with
50Ωon the board. Note: When analyzing an output,
remove the corresponding output termination resistor
on the MAX9311 EV kit board. (The output is connected
to test equipment that has a 50Ωinput impedance.)
MAX9311 Evaluation Kit
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