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EEC LowSwing Shifter

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Energy/Delay for Noise Models. LS(1): Coupling wires switching in opposite directions simultaneously ... LS(2): Coupling wires switching in opposite directions ... – PowerPoint PPT presentation

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Title: EEC LowSwing Shifter


1
EEC Low-Swing Shifter
  • Tom Deane

2
Circuit Diagram
Low-Swing Signal
Low Swing Driver
Decoder
Shifter Muxes
Amplifier
3
Basic Idea
Pull-up NMOS should turn off pass-transistor
across shifter
Pull-down NMOS must fight PMOS across shifter
4
Tradeoffs
Higher VBIAS Adv More current for NMOS
pull-down ? helps with the current fight ? faster
falling transition Disadv Cannot turn transistor
off unless we use higher Vswing ? more power for
two reasons.
Lower Vswing Adv Less dynamic power Disadv
Difficult to turn off n-pass transistor. Could
lower VBIAS but then pull-down NMOS cannot fight
the PMOS ? too little current.
Do we need to turn off amp n-pass? If we dont,
we draw static current in both logic states
5
Waves
6
Rough Energy and Delay Comparisons for Critical
Path
Restoring PMOS weaker Driving NMOS weaker
7
Sources of Noise
Coupling with full-swing wires
Power Supply Noise
  • More noise
  • Process variations (Vth, transistor mismatch)
  • Soft errors

Reference Voltage Variations
Coupling with adjacent low-swing wires
8
Sources of Noise
  • But most of these sources also exist in
    conventional CMOS.
  • Differences
  • No restoring stage anywhere in between
  • path goes up and down the shifter a few times
    before being restored.
  • Swing is about 6-10x less ? noise is 6-10x as
    significant

9
Coupling Capacitances
10
Effects of Coupling Capacitance Aligned
11
Effects of Coupling cap - 90 Phase shift
12
Coupling cap - 90 Phase shift
13
Power Supply noise Coupling Cap
14
Power Supply Noise
15
Power supply noise (2)
16
Ccouple Supply Vbias Vswing
17
Ccouple Supply Vbias Vswing
18
Ccouple Supply Vbias Vswing
19
Waves
20
Energy/Delay for Noise Models
LS(1) Coupling wires switching in opposite
directions simultaneously LS(2) Coupling wires
switching in opposite directions with 90 degress
phase-shift LS(3) LS(2) 17Vdd Drop LS(4)
LS(3) Vbias and Vswing Drop
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