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Steady State Fate (SSF) Ultra Random Redux

Steady State Fate (SSF) Ultra Random Redux
Steady State Fate (SSF) Ultra Random Redux
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  • Stock: In Stock
  • Model: SSF-ULTRA-RANDOM-REDUX
369.00€
Ex Tax: 310.08€

    The Ultra-Random Redux is a new and revised version of the original Ultra-Random Analog. Additional features and improvements have been applied to the major functions; including more accurate sampling of external signals and greatly enhanced sample holding time. Three different output modes are now available in the sample and hold section as well, providing the traditional bipolar output as well as full and have wave rectified outputs. Rectification may also be applied to external sampled signals. The Random Pulse section now features a rotary switch to select pulse division and a newly added G-SYNC (gated sync) function for randomized pulse bursts that will be synced to the A or B trigger input signals. The Integrator has been replaced with a wide range linear slew for processing external and internal signals. The Random Pulse output is normalized to the Linear Slew input jack as in the original URA. Finally, the Random Flux section has been updated with a dedicated Flux Trigger input and manual time constant control in addition to CV modulation inputs. Flux out can also now function as a fourth stepped random voltage output.



OUTPUT LEVELS

RANDOM PULSE: 0-10V (FREE MODE), follows trigger level in G-SYNC

LINEAR SLEW: Follows input signal level

RANDOM SAMPLING: 14Vpp maximum, follows external sample input level

TOGGLE: Follows S&H A and B

RANDOM FLUX: 11Vpp maximum.

CV INPUT RANGE:

RANDOM PULSE DENSITY: 0-10V, control behaves as positive oset for Bipolar CV signals

LINEAR SLEW DELTA: 0-10V, control behaves as positive oset for Bipolar CV signals

ALL TRIGGER INPUTS: Minimum of 2V amplitude trigger.

TOGGLE TRIGGER Follows S&H B

RANDOM FLUX DELTA: 0-10V, control behaves as positive oset for Bipolar CV signals

FLX PRB: +/-5V maximum input range.


TECHNICAL:

10hp width, 23mm depth

+100mA, -57mA maximum

power consumption

Reverse power protected