Yamaha RIVAGE PM10 Block Diagram Blockdiagram C0

User Manual: Yamaha RIVAGE PM10 Block Diagram

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Block Diagram

Block Diagram
RY1
16
16
16
16

16

System Overview

I/O Rack(RPio622)
Inputs
HY1

RY2
RY3

(HY256 - TL )

I/O Rack(RPio622)
RY1
Outputs
HY1

TWINLANe Network (400ch)
256
I/ O Net work

256

DSP Engine (DSP- R10)

I/ O Net wor k

RY4
RY5

RY3
RY5
RY6

16
16

16
16
16
16

MATRIX 1- 36

STEREO A / B

MIX 1- 72

MY 1

MY 1
MY 2

256

HY1
(HY256 - TL )

HY1
(HY256 - TL )

CH
1- 144

HY2

HY2
(HY144 - D)
256

MY2
256

HY2

DIRECT OUT

HY2
(HY144 - D)

16
16

128

HY3

HY3

256

INSERT 1

MY2
16

CUE A / B

INSERT 2

INSERT 1

INSERT 2

MATRIX
1- 36
INSERT 1

16

OUTPUT PATCH

INSERT 2

MY 2

MY 1
STEREO
A/ B
INSERT 1

16

MY 1
INPUT PATCH

16

INSERT 2

MIX
1- 72

CUE OUTS
CUE / MONITOR / PHONES
A/ B

MONITOR A / B
Console N et wor k

MONITOR OUTS
PHONES OUTS

Console N et work

256

HY4

MIX OUT

STEREO OUT
MATRIX OUT

(for Inserts)

(for Inserts / Send-Return)

TALKBACK

GEQ / PEQ
48x 31bandGEQ
(96x Flex 15GEQ )
(96x 8bandPEQ )
(1x 32Ch Automixer)
(1x 64Ch Automixer)

PLUG - INS
PLUGIN RACK
Max . 384 instances

OSCILLATOR

8

RECORDING
PATCH
( REC OUT)

CH REC OUT
RECORDING
PATCH
( PLAYBACK IN)

128

RY2
RY4

RY6

16
16
16

(HY256 - TL )

HY4

256

RTA

8x OMNI IN

8x OMNI OUT

4x AES / EBU

4x AES / EBU

8
8

8
16
16
1

MY 1

MY 1

MY 2

MY 2

16
16

4x PHONES

TALKBACK

8
2trk USB PLAYBACK

2trk USB RECORDER

Control Surface (CS-R10)
RIVAGE PM10 Block Diagram

3

Control Surface • I/O Rack • DSP Engine

MY slot 1/2

+48V

Control Surface (CS-R10)

ON

RY slot 1-6

METER

DELAY

1
GAIN

+48V MASTER
+48V

TRIM

16

3

OMNI OUT[1-8]

METER

ON

2

+
-

1
3

Silk

AD

DA

DELAY

8

GAIN

TRIM

ANALOG INPUT GAIN

PEAK

METER

ON

GAIN
COMPENSATION

RY slot 1-6

METER

OFF

+
-

2

22 1

+
-

1
33

TRIM

SIGNAL

AD

Silk

16

ANALOG INPUT GAIN

DELAY
TRIM

16

ON

GAIN

1
3

AES/EBU IN [1-8]

22 1

2
1

SRC

8

3

SRC

DELAY
GAIN

TRIM

33

8

SRC

GAIN

16

16

2
1
3

METER

Tip

ON

+
-

DA
AD

Ring

2

1

TRIM

PHONES A

TRIM

METER
128

256

HY slot 1

HY slot 1

(HY256-TL)

(HY256-TL)

Tip

DA

Ring

HY slot 2
(InputSplitting/Patchable Outputs)
CH 1- 16
CH 17- 32
CH 33- 48
CH 49- 64
CH 65- 80
CH 81- 96
CH 97- 112
CH113 - 128

I/O Network

PHONES LEVEL A

2

1

33

MY slot 1/2

ROUTING
MODE

[PHONES OUT A]

SRC

16
GAIN

128

Sleeve

ANALOG INPUT GAIN

1

METER

METER

LEFT HAND SIDE

+48V

16

DELAY

256

TALKBACK

33

22 1

DELAY

HY slot 2

1

22 1

RY16-AE

METER

RY16-AE

MY slot 1/2

AES/EBU OUT [1-8]

METER

+
-

DA

TRIM

METER

METER

RY16-DA

METER

METER

METER

OMNI IN [1-8]

ON

RY16-ML-SILK

+48V

METER
2

16

I/O Rack(RPio622)

+48V MASTER

MY slot 1/2

:
:
:
:
:
:
:
:

RY slot
RY slot
RY slot
RY slot
RY slot
RY slot
MY slot
MY slot

1
2
3
4
5
6
1
2

PHONES B
[PHONES OUT B]

Sleeve

PHONES LEVEL B

RIGHT HAND SIDE
Tip

DA

Ring

DSP Engine(DSP-R10)

PHONES A
METER

[PHONES OUT A]

METER

MY slot 1/2

Sleeve

MY slot 1/2

DELAY
GAIN

PHONES LEVEL A
Tip

DA

Ring

PHONES B

I/O Network

METER

(HY256-TL)

METER

HY slot 1
256

256

METER

HY slot 2
256

PLAYBACK

METER

SRC

SRC

2

GAIN

CUE A/B

Console Network

2trk USB RECORDER

GAIN

CUE A/B

256

Signal Processing
METER

METER

I/O Network

(HY256-TL)

METER

HY slot 2

PHONES LEVEL B

2trk USB PLAYBACK

16

HY slot 1

[PHONES OUT B]

Sleeve

TRIM

METER

HY slot 3

HY slot 3
256

RECORDER

256
METER

METER

HY slot 4

HY slot 4
256

256

Console Network

RIVAGE PM10 Block Diagram

4

CH 1-144

MIX1- 72 ST A ST B CUEA CUEB

(MATRIX 1- 36)

1 2

CH 1- 144

L R

L R

L R

L R
OUTPUT
PATCH

CH ON CH FADER CH DCA 1- 24

PRE FILTER
PRE DYN 1
PRE FADER
POST ON

PRE EQ
PRE DYN 2
POST FADER

71 72

ON

FOLLOW
ON

LEVEL

DIRECT
OUT
FOLLOW
DCA

FOLLOW
FADER

INSERT 1 OUT
INSERT POINT

144
INSERT 2 OUT

INSERT 1 IN

from PLUG - INS
from GEQ / PEQ
from INPUT PATCH

144

RECORDING
PATCH
(PLAYBACK IN)

INPUT
PATCH

PAN

INSERT 2 IN

CH REC OUT

DIGITAL
GAIN

Rec

CH 1(L)

A
B
A
B
Rec

CH 2(R)

PRE
FILTER
METER

PRE EQ EQ OUT
METER METER

PRE
DYN1
METER

∑

∑

∑

HPF
PRE
FILTER

LPF
PRE EQ

∑

4BAND
PEQ

DYN1
OUT
METER

PRE
DYN2
METER

DYN2
OUT
METER

PRE
FADER
METER

POST
FADER
METER

POST
ON
METER

∑

∑

∑

∑

∑

∑

GR METER

GR METER

DYNAMICS
1

DYNAMICS
2
PRE DYN 2

PRE DYN 1

LEVEL /
DCA 1- 24

POST PAN L
POST PAN R

ST A Lch
ST A Rch
TO ST A
ST B Lch
ST B Rch
TO ST B
ST A Lch

ON

LCR

ST B Cch

CSR
POST
FADER

PRE FADER
Same as the DYNAMICS 1

to PLUG - INS
to GEQ / PEQ

PAN / BAL

POST ON

ST A Rch

TO LCR

PAN LINK

ST / LCR

to CH 2(R)

L/ R PATH
(Only STEREO CH)

DELAY

OSCILLATOR

KEYIN [KEYIN SOURCE ]
SELF PRE EQ /
SELF POST EQ /
INPUT 1- 144 PRE EQ /
MIX 1- 72 PRE EQ /
STEREO A ,B PRE EQ /
DIRECT INPUT

PRE FADER (default )

KEYIN
FILTER

KEYIN CUE
ON

to MIX (FIX)
MONO to MONO
to MIX (FIX)
MONO to STEREO
to MIX (FIX)
STEREO to MONO

to MIX (FIX)
STEREO to STEREO

POST ON
POST PAN L
POST PAN R
POST ON
POST ON

to MIX / MATRIX (VARI ) PRE EQ PRE FILTER
PRE DYN 1
MONO to STEREO PRE DYN 2
PRE FADER
POST FADER
POST ON

ON

ON

to MIX 1
to MIX 2- 72
(same as above )

ON

to MIX 2
to MIX 3- 72
(same as above )

ON

LEVEL

CH ON CH FADER CH DCA 1- 24
to MIX 1(MATRIX 1)

FOLLOW
ON
ON

ON

FOLLOW
FADER

FOLLOW
DCA

CH ON CH FADER CH DCA 1- 24
PAN
LEVEL
FOLLOW
ON

to MIX / MATRIX (VARI )
PRE FILTER
STEREO to MONO
PRE EQ
PRE DYN 1
L CH PRE DYN 2 PRE FADER
POST FADER
POST ON
PRE FILTER
PRE EQ
PRE DYN 1
PRE DYN 2
R CH
PRE FADER
POST FADER
POST ON

FOLLOW
FADER

FOLLOW
DCA

to MIX 2- 72(MATRIX 2- 36)
(same as above )

to MIX 1(MATRIX 1)
to MIX 2(MATRIX 2)
to MIX 3- 72(MATRIX 3- 36)
(same as above )

CH ON CH FADER CH DCA 1- 24
LEVEL
to MIX 1(MATRIX 1)

to MIX 1(MATRIX 1)
FOLLOW
ON

to MIX / MATRIX (VARI )
PRE FILTER
STEREO to STEREO
PRE EQ
PRE DYN 1
PRE DYN 2
L CH
PRE FADER
POST FADER
POST ON
PRE FILTER
PRE EQ
PRE DYN 1
PRE DYN 2
R CH
PRE FADER
POST FADER
POST ON

ON

FOLLOW
FADER

FOLLOW
DCA

to MIX 2- 72(MATRIX 2- 36)
(same as above )

CH ON CH FADER CH DCA 1- 24
LEVEL
to MIX 1(MATRIX 1)
BALANCE
to MIX 2(MATRIX 2)
FOLLOW
ON

to CUE A
PFL (PRE FILTER )
PFL (PRE FADER )
AFL (POST FADER )
AFL (POST PAN L )
AFL (POST PAN R )

to MIX 1
to MIX 2- 72
(same as above )
to MIX 1
to MIX 2
to MIX 3- 72
(same as above )
to MIX 1

to MIX 1

POST PAN L
POST PAN R

to MIX / MATRIX (VARI ) PRE EQ PRE FILTER
PRE DYN 1
MONO to MONO
PRE DYN 2
PRE FADER
POST FADER
POST ON

ON

FOLLOW
FADER

FOLLOW
DCA

to MIX 3- 72(MATRIX 3- 36)
(same as above )

FOLLOW PAN
ON

CUE A Lch
CUE A Rch

CUE POINT

to CUE B

SAME AS AB OVE

CUE B Lch
CUE B Rch

RIVAGE PM10 Block Diagram

5

MIX1-72

MIX
1 2

71 72

ST A
L R

MIX1- 72

ST B
L R

MATRIX
1 2

35 36

CUEA
L R

CUEB
L R
OUTPUT
PATCH

INSERT 1 OUT

72
INSERT 2 OUT

INSERT 1 IN

from PLUG - INS
from GEQ / PEQ
from INPUT PATCH

to PLUG - INS
to GEQ / PEQ

INSERT 2 IN

PRE FILTER
METER
∑

PRE EQ
METER

EQ OUT
METER

∑

∑

PRE
DYN
METER

∑

∑

DIMMER
for TALKBACK

from TALKBACK 2

PRE FADER
METER

POST FADER
METER

∑

∑

GR METER

HPF
from TALKBACK 1

DYN
OUT
METER

DYNAMICS

DELAY

PRE DYN

PRE EQ

PRE FILTER

∑

ON

8BAND
PEQ

LPF

LEVEL /
DCA 1- 24

POST ON
METER

PRE DELAY

PRE FADER

POST FADER

POST ON

BALANCE
(Only ST)

ASSIGN

ASSIGN

to MONITOR
to PLUG - INS

[KEYIN SOURCE ]
SELF PRE EQ /
SELF POST EQ /
INPUT 1- 144 PRE EQ /
MIX 1- 72 PRE EQ /
STEREO A ,B PRE EQ /
DIRECT INPUT

KEYIN

KEYIN
FILTER

KEYIN CUE
ON

POST PAN L
POST PAN R
ST A Lch

PAN

PAN / BAL
ST A Rch
TO ST A

to STEREO

MONO to STEREO
STEREO to STEREO

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER

ST B Lch

ON

CH ON
ST B Rch
TO ST B

CSR
ST A Lch
ST B Cch
ST A Rch

LCR

TO LCR
ST / LCR

to MATRIX(VAR I)
MONO to MONO

to MATRIX(VAR I)
MONO to STEREO

to MATRIX(VAR I)
STEREO to MONO
L CH

R CH

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER
POST ON

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER
POST ON

PRE FILTER
PRE DYN
PRE FADER
POST ON
PRE FILTER
PRE EQ
PRE DYN
PRE DELAY
PRE FADER
POST FADER
POST ON
PRE EQ
PRE DELAY
POST FADER

ON

LEVEL

ON

LEVEL

CH ON

to MATRIX 1
to MATRIX 2- 36
(same as above )
PAN

to MATRIX 1
to MATRIX 2
to MATRIX 3- 36
(same as above )

LEVEL
ON

L CH

to MATRIX 1

R CH

to MATRIX 1

to MATRIX 2- 36
(same as above )

to MATRIX(VAR I)
STEREO to STEREO
L CH

R CH

to CU E A

PRE FILTER
PRE DYN
PRE FADER
POST ON
PRE FILTER
PRE EQ
PRE DYN
PRE DELAY
PRE FADER
POST FADER
POST ON

PRE EQ
PRE DELAY
POST FADER

LEVEL
L CH

ON

to MATRIX 1

R CH

to MATRIX 2

BALANCE

PFL (PRE FADER )
AFL (POST ON )
PFL (PRE FADER )
AFL (POST ON )

to CU E B

ON

to MATRIX 3- 36
(same as above )
CUE A Lch
CUE A Rch

CUE B Lch

SAME AS AB OVE
CUE B Rch

RIVAGE PM10 Block Diagram

6

STEREO A/B

ST A / B

MATRIX

L R

1 2

35 36

CUEA

CUEB

L R

L R
OUTPUT
PATCH

STEREO A/ B
INSERT 1 OUT

INSERT 2 OUT

INSERT 1 IN

from PLUG - INS
from GEQ / PEQ
from INPUT PATCH

to PLUG - INS
to GEQ / PEQ

INSERT 2 IN

PRE FILTER
METER

MONO
(STEREO B Only )

PRE EQ
METER
∑

∑

EQ OUT
METER
∑

PRE
DYN
METER

KEYIN

from TALKBACK 1

DYNAMICS

ASSIGN

from TALKBACK 2
ASSIGN

POST ON
METER

∑

∑

DELAY

PRE DYN

PRE EQ

PRE FILTER

LEVEL /
DCA 1- 24

POST FADER
METER

ON

8BAND
PEQ

LPF

- 6dB

to R

∑

GR METER

HPF

MONO

PRE FADER
METER

∑

∑

DIMMER
for TALKBACK

DYN
OUT
METER

[KEYIN SOURCE ]
SELF PRE EQ /
SELF POST EQ /
INPUT 1- 144 PRE EQ /
MIX 1- 72 PRE EQ /
STEREO A ,B PRE EQ /
DIRECT INPUT

PRE DELAY

PRE FADER

POST FADER

BALANCE
(Only ST)

POST ON

to MONITOR
to PLUG - INS

KEYIN FILTER
KEYIN CUE
ON
CH ON

to MATRIX(VAR I)
STEREO to MONO

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER
POST ON

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER
POST ON

L CH

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER
POST ON

R CH

PRE EQ
PRE DELAY
POST FADER

PRE FILTER
PRE DYN
PRE FADER
POST ON

to MATRIX(VAR I)
STEREO to STEREO

to CU E A

ON

LEVEL
to MATRIX 1

to MATRIX 1
to MATRIX 2- 36
(same as above)

LEVEL
ON

L CH

to MATRIX 1

R CH

to MATRIX 2
BALANCE

PFL (PRE FADER )
AFL (POST ON )

PFL (PRE FADER)
AFL (POST ON )

ON

to MATRIX 3- 36
(same as above)

CUE A Lch
CUE A Rch

to CU E B

CUE B Lch

SAME AS AB OVE
CUE B Rch

RIVAGE PM10 Block Diagram

7

MATRIX1-36

MATRIX
1 2

35 36

CUEA

CUEB

L R

L R

OUTPUT
PATCH

MA TRIX1- 36
INSERT 1 OUT

36
INSERT 2 OUT

INSERT 1 IN

36

from PLUG - INS
from GEQ / PEQ
from INPUT PATCH

to PLUG - INS
to GEQ / PEQ

INSERT 2 IN

PRE EQ
METER

PRE FILTER
METER

∑

∑

EQ OUT
METER
∑

DIMMER
for TALKBACK

DYN
OUT
METER

PRE FADER
METER

∑

∑

∑

GR METER

HPF

8BAND
PEQ

LPF

PRE EQ

PRE FILTER

from TALKBACK 1

PRE
DYN
METER

LEVEL /
DCA 1- 24

POST FADER
METER

POST ON
METER

∑

∑

ON

DYNAMICS

DELAY

PRE DYN

PRE DELAY

PRE FADER

POST FADER

POST ON

ASSIGN
KEYIN

from TALKBACK 2

ASSIGN

to CU E A

[KEYIN SOURCE ]
SELF PRE EQ /
SELF POST EQ /
INPUT 1- 144 PRE EQ /
MIX 1- 72 PRE EQ /
STEREO A ,B PRE EQ /
DIRECT INPUT

BALANCE
(Only ST)

to MONITOR

to PLUG - INS
KEYIN FILTER

KEYIN CUE
ON

PFL (PRE FADER)
AFL (POST ON)
PFL (PRE FADER)
AFL (POST ON)

ON

CUE A Lch

CUE A Rch

to CU E B
CUE B Lch

SAME AS AB OVE
CUE B Rch

RIVAGE PM10 Block Diagram

8

CUE/MONITOR/MISC.
CUE A

CUE A / MONITO R A / PHO NES A

L R
OUTPUT
PATCH

OUTPUT
PATCH

CUE

To RTA

CUE
MODULE
METER

CUE METER

METER

CUE A

L

∑

PRE
DELAY

R

LEVEL
METER

8Band
PEQ

∑

METER

POST DELAY

MONO

- 3dB

PRE EQ

∑

DELAY

METER

8Band
PEQ

∑

CUE TRIM
(INPUT(PFL)/OUTPUT(PFL)/DCA)

INSERT

PRE EQ

MONITO R
PRE
DELAY

MONITOR
SOURCE
DEFINE
1- 8

36
16

from TALKBACK
from DIRECT OUT 1- 144

1

L

MONITOR
SELECT

POST DELAY

DELAY
PRE
DELAY

R

CUE

L
MONI

PRE
DELAY

INSERT
- 3dB

METER

0dB

METER

PRE EQ
METER

CENTER CHANNEL ON

∑

C

8Band
PEQ

∑

- 3dB

R

∑

CUE A OUT R

POST EQ

DIMMER ON TALK BACK

PRE EQ

LEVEL

ON

METER

L

∑

MONITOR A OUT L

POST EQ
METER

R

∑

MONITOR A OUT R

POST EQ
METER
∑

C

MONITOR A OUT C

POST EQ

MONITOR OUT MODE
(INSERT IN )

(INSERT OUT )

from PLUG - INS
from GEQ / PEQ
(INSERT IN )

PHONES POINT
(MONITOR )

DIMMER /
DIMMER ON TALKBACK

to PLUG - INS
to GEQ / PEQ

from PLUG - INS
from GEQ / PEQ

PHONES POINT
(CUE )

8Band
PEQ

∑

DIMMER ON
CUE

PRE DELAY
POST DELAY

8Band
PEQ

PRE EQ

CUE / SOLO
LOGIC

OSCILLATOR

METER
∑

0dB

MONO

- 3dB

∑

POST DELAY

DELAY

CUE A OUT L

METER

DIMMER /
DIMMER ON TALKBACK

METER

R

L

POST EQ

MONITOR PEQ

∑

POST DELAY

DELAY

C

144

MONITOR
MODULE
METER
METER

ON

METER
∑

CUE PEQ

CUE OUT MODE

from STEREO A - B
from MIX 1- 72
from MATRIX 1- 36

DIMMER ON TALKBACK

∑

PRE
DELAY

∑

(INSERT OUT )
to PLUG - INS
to GEQ / PEQ

METER

POST DELAY

DELAY

METER

CUE A

from PLUG - INS
from GEQ / PEQ
(INSERT IN )

(INSERT OUT )
to PLUG - INS
to GEQ / PEQ

CUE
PRE DELAY
POST DELAY

PRE DELAY
POST DELAY

L
MONI

PHO NES

PRE DELAY
POST DELAY

to PHONES A OUT L

0dB

CUE
PRE DELAY
POST DELAY

- 3dB
R

MONI

to PHONES A OUT R

0dB

INSERT

CENTER CHANNEL ON

C

PHONES
LEVEL LINK

- 3dB

MONI

LR+C DOWNMIX

CUE / SOLO
LOGIC

CUE B
L R

CUE B / MONITO R B / PHO NES B
CUE B OUT L
CUE B OUT R
MONITOR B OUT L

SA ME A S A BO V E

MONITOR B OUT R
MONITOR B OUT C

to PHONES B OUT L

to PHONES B OUT R

TALKBACK (Control Surface)

MIX1- 72

TA LK BA CK

+48V

+48V MASTER

PLUGIN RA CK

+48V

ON

ON
2

CUEA

CUEB

L R

L R

METER

+
-

1

MATRIX 1- 36
LEVEL

ON

STEREO A / B
TALKBACK OUT
MONITOR SELECT

AD

3

PLUG-INS
(mono)

OUTPUT
PATCH

TALKBACK OUT ON

ANALOG INPUT GAIN
ON

CUEA ON

INPUT PATCH
CUEB ON

MIX 1- 72 OUT
MATRIX 1- 36 OUT
STEREO A / B OUT

PLUG-INS
(stereo)

MATRIX

MIX
1 2

O SCILL AT OR

CUEA ON

Lch
Rch

CUEB ON

Lch
Rch

71 72

1 2

35 36

ST A
L

R

ST B
L

R

CH 1- 144
ON

SINE WAVE

METER

LEVEL

METER

PLUG-INS
(1in/2out)

SINE WAVE 2CH
Sine Wave:
FREQUENCY 20Hz – 20kHz

LEVEL

2

CUEA ON

Lch
Rch

PINK NOISE

CUEB ON

Lch
Rch

BURST NOISE

HPF

LPF

2

to INPUT CH

to MONITOR

LEVEL

RIVAGE PM10 Block Diagram

9

Max.Input[+30dBu]
GAIN MIN.

Nominal Input[+10dBu]
GAIN MIN.

0
-10
-20
-30
-40
-50
-60

AD

MY/RY CARD IN

+20
+10

ATT

Max.Input[-30dBu]
GAIN MAX.(TALKBACK)
Max.Input[-42dBu]
GAIN MAX.
Nominal Input[-50dBu]
GAIN MAX.(TALKBACK)
Nominal Input[-62dBu]
GAIN MAX.

-70
-80
-90
-100
-110
-120
-130
-140
-150
-160
-170
-180
-190

[0dBu = 0.775Vrms]

dBFS Bit
0
0
1
-10
2
-20 3
4
-30 5
6
-40
7
8
-50
9
-60 10
11
-70
12
13
-80
14
-90 15
16
-100
17
-110 18
19
-120 20
21
-130
22
-140 23
24
-150 25
26
-160
27
-170 28
29
-180 30
31
-190
32
-200 33
34
-210 35
36

HY3,4 CARD OUT

HY3,4 CARD IN
Digital Clipping Level

Analog
TRIM

LEVEL

DELAY

TWINLANe

BALANCE

INSERT

ON

INSERT

LEVEL/DCA

DELAY

INSERT

DYNAMICS

INSERT

8PEQ

INSERT

HPF/LPF

INSERT

BUS Adder

INSERT

ON

LEVEL/DCA

DELAY

INSERT

DYNAMICS 2

INSERT

DYNAMICS 1

INSERT

4PEQ

INSERT

HPF/LPF

INSERT

DIGITAL GAIN

Digital

SILK TRIM

Digital

Analog
dBu
+30

HA

INPUT PATCH

PAD
[18dB]

Digital
TWINLANe

Analog

OUTPUT PATCH

Level Diagram

DA

MY/RY CARD OUT

Max. Output
[+24dBu]

CASCADE IN CASCADE OUT
INSERT OUT
INSERT IN

Nominal Output
[+4dBu]

Analog
dBu
+30
+24
+20
+10
+4
0
-10
-20
-30
-40
-50
-60
-70
-80
-90
-100
-110
-120
-130
-140
-150
-160

Max. DSP Noise Floor

-170
-180
-190

[0dBFS = Full Scale]

RIVAGE PM10 Block Diagram

10

Yamaha Pro Audio global website
http://www.yamahaproaudio.com/
Yamaha Downloads
http://download.yamaha.com/

Manual Development Department
© 2015 Yamaha Corporation
Published 06/2017 IPCP*.*-**C0

ZY97710



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Author                          : Manual Development Group, Yamaha Corporation
Create Date                     : 2017:06:23 09:48:06+09:00
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Subject                         : rivage_pm10_blockdiagram_c0.pdf
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Title                           : RIVAGE PM10 Block Diagram
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