Electrical Characteristics - Yamaha SB168-ES Manual De Instrucciones

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Electrical Characteristics

Output impedance of single generator: 150Ω
Measured with another SB168-ES through EtherSound
● Frequency Response
Input
Output
INPUT 1–16
OUTPUT 1–8
● Gain Error
Input
Output
INPUT 1–16
OUTPUT 1–8
● Total Harmonic Distortion
Input
Output
INPUT 1–16
OUTPUT 1–8
* Total Harmonic Distortion is measured with a 18 dB/octave filter @80 kHz.
● Hum & Noise
Input
Output
INPUT 1–16
OUTPUT 1–8
* Hum & Noise are measured with a 6 dB/octave filter @12.7 kHz; equivalent to a 20 kHz filter with infinite dB/octave attenuation.
● Dynamic Range
Input
Output
INPUT 1–16
OUTPUT 1–8
* Dynamic Range is measured with a 6 dB/octave filter @12.7 kHz; equivalent to a 20 kHz filter with infinite dB/octave attenuation.
● Crosstalk @ 1 kHz
From/To
INPUT N
INPUT (N-1) or (N+1)
OUTPUT N
OUTPUT (N-1) or (N+1)
● Phantom Voltage
Output
INPUT 1–16
● Sampling Frequency
Parameter
External Clock
Frequency Range
Internal Clock
168
SB168-ES Owner's Manual
Fs= 44.1 kHz or 48 kHz@20 Hz–20 kHz, reference to the nominal output level @ 1 kHz
RL
Conditions
600 Ω
GAIN: +10dB
Fs= 44.1 kHz, 48 kHz@ 1 kHz
RL
Input level: -62 dBu, GAIN: -62dB →
Output level +4.0 dBu (Typ.)
600 Ω
Input level: +10 dBu, GAIN: +10dB →
Output level +4.0 dBu (Typ.)
Fs= 44.1 kHz or 48 kHz
RL
+4 dBu@20 Hz–20 kHz, GAIN: -62dB
600 Ω
+4 dBu@20 Hz–20 kHz, GAIN: +10dB
Fs= 44.1 kHz or 48 kHz, EIN= Equivalent Input Noise
RL
Rs=150Ω, GAIN: -62 dB
600 Ω
Rs=150Ω, GAIN: +10 dB
Fs= 44.1 kHz or 48 kHz
RL
600 Ω
Fs= 44.1 kHz or 48 kHz
To/From
INPUT 1–16, adjacent inputs,
OUTPUT 1–8, input to output
Frequency
Accuracy
Min.
Typ.
-1.5
0
Conditions
Conditions
Conditions
Conditions
GAIN: +10dB
Conditions
GAIN: +10dB
Conditions
hot & cold: No load
Conditions
Max.
Unit
0.5
dB
Min.
Typ.
Max.
-2
0
2
-2
0
2
Min.
Typ.
Max.
0.1
0.05
Min.
Typ.
Max.
-128
EIN
-62
-84
-80
Min.
Typ.
Max.
108
Min.
Typ.
Max.
-80
-80
Min.
Typ.
Max.
46
48
50
Min.
Typ.
Max.
43.00
49.20
48
50
Unit
dB
Unit
%
Unit
dBu
Unit
dB
Unit
dB
Unit
V
Unit
kHz
kHz
ppm

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