Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality should not be assumed,
damage may occur and reliability may be affected.
Recommended Operating Conditions
at Ta = 25°C
Parameter
Power supply voltage rating 1
Power supply voltage rating 2
Power supply voltage rating 3
Conditions
VDD output ON, DSP output ON
ILM output ON
Audio output ON, CD output ON
Ratings
7.7 to 16
10.8 to 16
10 to 16
Unit
V
V
V
* VCC1 should be as follows: VCC1>VCC-0.7V
Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond the Recommended
Operating Ranges limits may affect device reliability.
Electrical Characteristics
at Ta = 25°C, VCC = VCC1=14.4V (*2)
Parameter
Current drain
CTRL1 Input
Low input voltage
Middle input voltage
High input voltage
Input impedance
CTRL2 Input
Low input voltage
Middle1 input voltage
Middle2 input voltage
High input voltage
Input impedance
CTRL3 input.
Low input voltage
High input voltage
Input impedance
VDD5.7V output
Output voltage
Output current
Line regulation
Load regulation
Dropout voltage 1
Dropout voltage 2
Ripple rejection
VO1
IO1
ΔV
OLN1
ΔV
OLD1
VDROP1
VDROP1’
RREJ1
IO1 = 200mA
VO1
≥
5.35V
8.2V
<
VCC1
<
16V, IO1 = 200mA
1mA
<
IO1
<
200mA
IO1 = 400mA
IO1 = 200mA
f = 120Hz, IO1 = 200mA
30
5.415
300
30
70
0.5
0.25
40
100
150
1.2
0.6
5.7
5.985
V
mA
mV
mV
V
V
dB
Continued on next page.
VIL3
VIH3
RIH3
0
2.5
280
400
0.3
5.5
520
V
V
kΩ
VIL2
VIM12
VIM22
VIH2
RIH2
0
0.8
1.9
2.9
280
1.06
2.13
3.2
400
0.3
1.4
2.4
5.5
520
V
V
V
V
kΩ
VIL1
VIM1
VIH1
RIH1
0
1.1
2.5
280
400
1.65
0.3
2.1
5.5
520
V
V
V
kΩ
Symbol
ICC
Conditions
VDD no load, CTRL1/2/3 =
⎡L/L/L⎦
Ratings
min
typ
50
max
100
Unit
μA
No.A1914-2/16
LV5693P
Continued from preceding page.
Parameter
Symbol
Conditions
Ratings
min
typ
max
Unit
USB output: CTRL3 =
⎡H⎦
(When external power FET 2SJ650, it external resists 27kΩ, and 9.1kΩ is set)
USB output voltage
USB output current
Line regulation
Load regulation
Dropout voltage
Ripple rejection
VO2
IO2
ΔV
OLN2
ΔV
OLD2
VDROP2
RREJ1
VO3
IO3
ΔV
OLN3
ΔV
OLD3
VDROP3
VDROP3’
RREJ3
VO4
IO4
ΔV
OLN4
ΔV
OLD4
VDROP4
VDROP4’
RREJ4
VO5
IO5
VO7
IO7
ΔV
OLN7
ΔV
OLD7
RREJ7
VO8
IO8
ΔV
OLN8
ΔV
OLD8
VDROP8
RREJ8
10.5V
<
VCC
<
16V, IO8 = 1000mA
10mA
<
IO8
<
1000mA
IO8 = 1000mA
f = 120Hz, IO8 = 1000mA
40
10V
<
VCC
<
16V, IO7 = 200mA
1mA
<
IO7
<
200mA
f = 120Hz, IO7 = 200mA
IO8 = 1000mA
40
10.8V
<
VCC
<
16V, IO4 = 400mA
1mA
<
IO4
<
400mA
IO4 = 400mA
IO4 = 200mA
f = 120Hz, IO4 = 400mA
IO5 = 500mA
VO5
≤
VCC-1.0
IO7 = 200mA
40
IO2 = 1000mA
VO2
≥
4.75V
10V
<
VCC
<
16V, IO2 = 1000mA
10mA
<
IO2
<
1000mA
IO2 = 1000mA
f = 120Hz, IO2 = 1000mA
IO3 = 400mA
VO3
≥
8.0V
10V
<
VCC
<
16V, IO3 = 400mA
1mA
<
IO3
<
400mA
IO3 = 400mA
IO3 = 200mA
f = 120Hz, IO3 = 400mA
IO4 = 400mA
40
40
4.75
1000
50
100
1.0
50
90
150
1.5
5
5.25
V
mA
mV
mV
V
dB
AUDIO (8.4V) Output ; CTRL1 =
⎡M
or H⎦
AUDIO output voltage 1
AUDIO output current
Line regulation
Load regulation
Dropout voltage 1
Dropout voltage 2
Ripple rejection
8.0
500
30
70
0.4
0.2
50
90
150
0.8
0.4
8.4
8.8
V
mA
mV
mV
V
V
dB
ILM (8.4V) Output ; CTRL2 =
⎡M1
or H⎦
ILM output voltage
ILM output current
Line regulation
Load regulation
Dropout voltage 1
Dropout voltage 2
Ripple rejection
AMP_HS-SW; CTRL2 =
⎡M2
or H⎦
Output voltage
Output current
VCC-1.0
350
VCC-0.5
V
mA
8.0
500
30
70
1.0
0.7
50
90
150
1.5
1.05
8.4
8.8
V
mA
mV
mV
V
V
dB
DSP(3.3V output); CTRL1 =
⎡M
or H⎦
DSP output voltage
DSP output current
Line regulation
Load regulation
Ripple rejection
CD(8.0V output); CTRL1 =
⎡H⎦
CD output voltage
CD output current
Line regulation
Load regulation
Dropout voltage
Ripple rejection
7.6
1300
50
100
1.0
50
100
200
1.5
8.0
8.4
V
mA
mV
mV
V
dB
3.1
300
30
70
50
90
150
3.3
3.5
V
mA
mV
mV
dB
*2: The entire specification has been defined based on the tests performed under the conditions where Tj and Ta (=25°C) are almost equal. There tests were
performed with pulse load to minimize the increase of junction temperature (Tj).
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be
indicated by the Electrical Characteristics if operated under different conditions.
No.A1914-3/16
LV5693P
Package Dimensions
unit : mm
HZIP15J
CASE 945AC
ISSUE A
GENERIC
MARKING DIAGRAM*
XXXXXXXXXX
YMDDD
SOLDERING FOOTPRINT*
(Unit: mm)
Package name
HZIP15J
1.2
2.54
Through Hole Area
2.54
(1.91)
XXXXX = Specific Device Code
Y = Year
M = Month
DDD = Additional Traceability Data
2.54
2.54
NOTE: The measurements are not to guarantee but for reference only.
*For additional information on our Pb−Free strategy and soldering
details, please download the ON Semiconductor Soldering and