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STK415-100-E Datenblatt(PDF) 2 Page - Sanyo Semicon Device

Teilenummer STK415-100-E
Bauteilbeschribung  2-Channel Power Switching Audio Power IC, 60W60W
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Hersteller  SANYO [Sanyo Semicon Device]
Direct Link  https://www.sanyo-av.com/us/
Logo SANYO - Sanyo Semicon Device

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STK415-100-E
No. A1469-2/12
Specifications
Absolute maximum ratings at Ta=25
°C (excluding rated temperature items), Tc=25°C unless otherwise specified
Parameter
Symbol
Conditions
Ratings
Unit
VH maximum quiescent supply voltage 1
VH max (1)
When no signal
±65
V
VH maximum supply voltage 2
VH max (2)
RL≥6Ω
±57
V
VH maximum supply voltage 3
VH max (3)
RL≥4Ω
±46
V
VL maximum quiescent supply voltage 1
VL max (1)
When no signal
±42
V
VL maximum supply voltage 2
VL max (2)
RL≥6Ω
±37
V
VL maximum supply voltage 3
VL max (3)
RL≥4Ω
±29
V
Maximum voltage between VH and VL *4
VH-VL max
No loading
60
V
Standby pin maximum voltage
Vst max
-0.3 to +5.5
V
Thermal resistance
θj-c
Per power transistor
1.8
°C/W
Junction temperature
Tj max
Both the Tj max and Tc max conditions must be met.
150
°C
IC substrate operating temperature
Tc max
125
°C
Storage temperature
Tstg
-30 to +125
°C
Allowable load shorted time
*3
ts
VH=±39V, VL=±29V, RL=8Ω, f=50Hz,
PO=60W, 1-channel active
0.3
s
Electrical Characteristics at Tc=25
°C, RL=8Ω (non-inductive load), Rg=600Ω, VG=40dB, VZ=15V
Conditions *1
Ratings
Parameter
Symbol
V
(V)
f
(Hz)
PO
(W)
THD
(%)
min
typ
max
unit
PO (1)
VH
VL
±39
±29
20 to 20k
0.8
60
Output power
PO (2)
VH
VL
±32
±24
1k
0.8
RL=4Ω
60
W
Total harmonic distortion
THD
VH
VL
±39
±29
20 to 20k
60
0.4
%
Frequency characteristics
fL, fH
VH
VL
±39
±29
1.0
+0 -3dB
20 to 50k
Hz
Input impedance
ri
VH
VL
±39
±29
1k
1.0
55
k
Ω
Output noise voltage
*2
VNO
VH
VL
±47
±31
Rg=2.2k
Ω
1.0
mVrms
VH
±47
30
Quiescent current
ICCO
VL
±31
RL=∞
100
mA
Output neutral voltage
VN
VH
VL
±47
±31
-70
0
+70
mV
Pin 17 voltage when
standby ON
*7
VST ON
VH
VL
±39
±29
Standby
0
0.6
V
Pin 17 voltage when
standby OFF
*7
VST OFF
VH
VL
±39
±29
Operating
2.5
3.0
V
[Remarks]
*1: Unless otherwise specified, use a constant-voltage power supply to supply power when inspections are carried out.
*2: The output noise voltage values shown are peak values read with a VTVM. However, an AC stabilized (50Hz)
power supply should be used to minimize the influence of AC primary side flicker noise on the reading.
*3: Use the designated transformer power supply circuit shown in the figure below for the measurements of allowable
load shorted time and output noise voltage.
*4: Design circuits so that (
|VH|-|VL|) is always less than 40V when switching the power supply with the load connected.
*5: Set up the VL power supply with an offset voltage at power supply switching (VL-VO) of about 8V as an initial target.
*6: Please connect –Pre VCC pin (#5 pin) with the stable minimum voltage and connect so that current does not flow in
by reverse bias.
*7: Use the standby pin (pin 17) so that the applied voltage never exceeds the maximum rating.
The power amplifier is turned on by applying +2.5V to +5.5V to the standby pin (pin 17).
*8: Thermal design must be implemented based on the conditions under which the customer’s end products are
expected to operate on the market.
*9: A thermoplastic adhesive resin is used for this hybrid IC.


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