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Roland M-GS64

Roland M-GS64
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©
Soft
{Controller
number
67)
Stores
dnd
byte
rd
byte
Baki
43H
wit
OH
-
FH
Ach}
-
ch.16}
3
OOH
-
7FH
{0
-
127}
O-63=0FF
64-127=08
‘f=
MIDI
channel
number
weLontrol
value
*
Not
received
when Rx
SOFT
=
OFF.
{Initial
value
is
OR)
Portamento
control
(Controller
number
84)
Status
2nd
byte
3rd
byte
Br MH
kkHt
OH
-
FH
{cht
~
ch.16)
2
OOH
-
7FH{O
-
127)
n=
MIDI
chonnel
number
kk=source
note
number
*
&
Hote-on
received
immediately
after
a
Portomento
Contral
message
will
change
continuously
in
pitth,
storting
from
tho
pitth
of
the
Source
Rate
Humber.0
“ff
0
voice
is
already
sounding
for
a
note
number
Wentical
fo
the
Source
Note
Number,
this
voice
will
continue
sound
ing
{i.t.,
legato}
ond
will,
when
the
next
Hote-on
is
received,
smoothly
change
to
the
pitch
of
that
Note-on.
*
The
rate
of
the
pitch
chonge
caused
by
Portamento
Contrcl
is
determined
by
the
Portamento
Time
value.
Example
1)
On
MID:
___Deseription
Result
90
aC
4
Hote
on
(4
Gon
BO 54 3C
Portamento
Control
from
C4
tno
change
{C4
voice
still
sounding)
90.4040
Note
on
£4
Glide
from
(4
10
E4
803040
Hote
olf
C4
no
thonge
BO
40 40
Hote
off
£4
£4
of
Exomple
2)
Dp.
MID
Descrintion
Res
BO
54
3
Portamento
Control
from
(4
no
change
904040
Hote
on
E4
4
on
with
glide
from
C4
804046
Note
off
E4 £4
off
»
Effect
1
(Reverb
Send
Level)
{Controller
number
91)
Stous
nd
bye
Sed
byte
Bait
SBH
wil
OH
-
FH
feh.}
-
ch.16)
2
OOH
-
7FH
(0
-
127)
n=MIDI
channel
number
w=Contral
value
Initial
volue
=
28H
(40)
*
This
message
adjusts
the
Reverh
Send
Level
of
each
Part.
*
Effect
3
(Chorus
Send
Level)
(Controller
number
93)
Stotys
4nd
byte
3rd
byte
Bol
SDH
wi
OH
-
FH
{ch}
-
¢h,16)
2
OOH
-
7FH{Q-
127)
n=MIDI
channel
number
we(ontral
valve
Initial
value
=
GOH
{0}
*
This
message
adjusts
the
Chorus
Send
Level
of
each
Part.
«
Effect
4
(Delay
Send
Level}
{Controller
number
94)
[M]
Status
Ind
byte
ded
byte
Bolt
StH
wh
n=MIDI
channel
number
OH
-
FH
fch.]
ch.
16)
we(ontral
valve
:
IH
-
7FH
(0
-
127)
Initicl
value
=
OGH
(0)
*
This
messoge
adjusts
the
Delay
Send
Level
af
rath
Part.
*
Some
other
GS
devices
may
not
recognize
this
message.
*
Delay
connot
be
used
in
MODE-2
(Double
Moduis
mode}.
*
NRPN
MSB/ESB
Yatus
nd
byte
4rd
byte
Bn
63H
mimi
Bat
62H
Mlk
{Controller
number
98,99)
n=MIDI
chonnel number:
OH-
FH
{ch.]
-
ch.
16)
mm=upper
byte
of
the
porameter
number
specified
by
NRPH
l=lower
byte
of
the
porameter
number
spectfied
hy
HRPH
*
When
“GM
System
On”
is
received,
Rx.HRPN
will
be
set
OFF,
ond
NRPH
will
not
be
received.
When
“GS
Reset”
or
Rx
HRPH
=
ON
is
received,
NRPH
con
he
received.
*
The
valve
set
by
NRPN
wil
not
be
reset
even
i
Program
Change
of
Reset
All
Controllers
is
received.
**NRPN™*
‘The
HRPN
{Hon
Reoistered
Parameter
Numbes}
message
allows
on
extended
range
of
control
changes
fa
be
uted
To
use
these
messoges,
you
must
first
use
NRPH
MSB
ond
NRPN
LSB
messages
to
specily
the
parameter
to
be
can-
‘tolled,
snd
then
use
Dete
Entry
messages
to
specify
the
value
of
the
specified
poremeter.
Once
an
NRPN
parameter
bas
been
specified,
all
Dota
Entry
messages
received
on
thot
chonnel
will
modify
the
value
of
that
purameler.
To
pre-
-
ver!
accidents,
it
is
recommended
thot
you
set
RPH
Null
{RPR
Number
=
7FH/7Fh)
when
you
have
finished
setting
the
voive
of
the
desired
porometer.
Refer
to
Section
5.
Supplementary
material
“Examples
of
actual
AID!
messages”
<Exomple
4>
{Pace
$0).
On
the
M-G564,
Data
entry
LSB
{IIH}
of
NRPN
is
ignored,
so
itis
no
problem
to
send
Data
entry
458
(mm)
only
{without
Dota
entry
LSB},
Gin
the
M-GS64,
NRPH
con
be
used
19
modify
the
following
parameters.
RPH
Dots
entry
MSRISE
HSE
O1H 08H
mm
Vibrato
Rate
(relotive
change}
mm;
OOH
~
40H
-
7FH
(-64-
0-
+63)
HOH
=
mm
Vibrato
Dapth
(relotive
change)
mm:
OOH
-
40H
-
7FH
(-64
-
0
-
+63)
QIN
OAH
=
mm
Vibrate
Delay
(refntive
change}
mm:
OOK
-
40H
-7FH
(-64
-
0
-
+63)
81H
20H
=
mm
WE
Cutoll
Frequency
(relative
chenge)
mm:
OOH
-
40H
-
7FH
{-64
-
0
-
+63)
OUR
2H
mmt
TF
Resonance
(relative
change)
amo:
OOH
-
408
-
7FH
{-64
-
0
-
+63)
OWN
63H
=
mmf
TVFETVA
Envelope
Attack
Time
(relative
chonge}
mm:
OOK
-
40H
-
7FH
{-64
-0-
+63)
OVHG4H
=
mimi
TVFRTVA
Envelope
Becay
Time
{relative
change)
mim:
OOH
-
40H
-
7FH
(-64
-0-
+63)
OTH
68H
mami
TVFRIVA
Envelope
Release
Time
{relative
change}
mim:
OOH
-
40H
-7FH
(-64
-0
-
+63)
1BH
ett
mimi
Drom
Instrument
Pitch
Course
{relative
chonge}
tv:
Drum
instrument
note
number
mmm;
OOH
40H
-
7FHi {-64
-
0
-
+63
semitone)
TAH
tH
mmi
Drom
Instrument
TVA
Level
(absolute
change}
r:
Drum
Instrument
note
number
mm:
OOH
-
7FH
(0
-
max}
VWH
oi
mmmit
Drum
instrument
Ponpot
(absolute
change)
1:
Drum
Instrument
note
sumber
mm:
OOH,
O1K
-
40H
-7FH
(rondom,
left-center-right)
DH
at
mm
Drum
Instrument
Reverb
Send
Level
{absolule
change}
tt:
Brom
Instrument
note
number
mm:
OOH
-
7FH
{0
-
max)
TRH
mom
Drum
Instrament
Chorus
Send
Level
{absolute
change)
sr:
Drum
Instrument
nole
number
mm:
OOH
-
7FH
(0
-
max}
FH
rH
mm
Drum
Instrument
Delay
Send
Level
{ahsolvte
change)
[A]
tt;
Drum
Insiriment
note
number
mm:
QOH
-
7FH
{0-
max)
*
Data
entry
£58
(IH)
is
ignored.
*
Forameters
morked
“relative
change”
will
change
relative
to
the
prese!
value
(40H).
Even
among
different
6S
devices,
“relative
change”
porometers
may
sometimes
differ
in
the
way
the
sound
changes
ot
in
the
range
of
thongs.
*
Porometers
marked
“absolute
change”
wil
be
set
to
the
absolute
value
of
the
porometer,
regardless
of
the
preset
value.
*
Hisnot
possibis
to
simultoneously
use
both
Chorus
Send
Level
ond
Deloy
Send
Level
on
o
single
Drum
Instrument.
37

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