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AN3317 Datasheet(PDF) 14 Page - STMicroelectronics

Part # AN3317
Description  PCB guidelines for SPEAr1340
PDF  22 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN3317 Datasheet(HTML) 14 Page - STMicroelectronics

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DDR memory interface
AN3317
14/22
Doc ID 18249 Rev 2
5.4
Return path integrity
To minimize signal delays, significant crosstalk, and timing violations, a continuous path for
return current must exist for all DRAM signals.
To simplify return paths, route all signals referenced to a ground plane.
Do not route any DDR3 signals on top of split planes or copper voids.
For traces routed near the edge of a reference plane, keep a minimum of 30 mil between the
trace and the edge of the reference plane.
Signal layer changes
The preferred location for layer change vias is near the signal ball under a device, either
DRAM or SPEAr, enabling a signal return path through the device ground vias and
decoupling capacitors.
If layer changes through a via to a different reference plane are necessary away from the
devices:
Provide the layer transitions a nearby path for return current.
If both layers are ground, place a return path ground via less than 1 mm from the signal
via.
Avoid sharing return current vias; each signal via should have its own nearby return via
(ground via). If multiple signals change layers in close proximity:
Provide each signal via its own return current via.
Use a stagger pattern to separate signal vias (and their return current vias) from
other signal vias.
If routing density prevents a stagger pattern, add as many ground vias as possible
among the signal vias.
5.5
Vref routing
Provide an accurate and quiet Vref to both the dram and the controller. Because of the slope
of the signal, a noisy Vref effectively introduces jitter, which can be a significant source of
jitter-caused timing errors.
Vref is generated by a precision voltage divider.
Recommended: Use 0.1% tolerance resistors.
Place a decoupling capacitor very close (within 1 mm) to the Vref balls.
Use good capacitor layout techniques. Place the voltage divider resistors close to the DRAM
device to minimize trace length, but not so close that they interfere with other critical signal
or power routing.
Do not route the Vref trace near noisy traces or planes.
Do not place a decoupling capacitor at the junction of the resistors – only at the Vref balls.
If the Vref trace length must be long, make the divider resistor value close to 2x the
characteristic impedance of the Vref trace; 150
Ω should work well without consuming too
much power. If a long trace, noise coupling, or both is unavoidable between the DRAM and
the controller, it is preferable to generate a separate Vref for the DRAM and the controller.



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