参数资料
型号: LV56801P-E
厂商: ON Semiconductor
文件页数: 2/14页
文件大小: 0K
描述: IC MULTI-PWR SUPPLY CAR HZIP15
标准包装: 20
应用: 转换器,汽车音响系统
输入电压: 7 V ~ 16 V
输出数: 8
输出电压: 多重
工作温度: -40°C ~ 85°C
安装类型: 通孔
封装/外壳: 15-SSIP 裸露焊盘,成形引线
供应商设备封装: 15-HZIPJ
包装: 管件
LV56801P
Specifications
Absolute Maximum Ratings at Ta = 25 ° C
Parameter
Supply voltage
Conditions
VCC max
Conditions
Ratings
36
Unit
V
Peak supply voltage
VCC peak
See below for the waveform applied.
50
V
Allowable Power dissipation
Pd max
Independent IC
Ta ≤ 25 ° C
1.5
W
Al heat sink *
With an infinity heat sink
5.6
32.5
W
W
Junction temperature
Operating ambient temperature
Storage temperature
Tj max
Topr
Tstg
150
-40 to +85
-55 to +150
° C
° C
° C
* : When the Aluminum heat sink (50mm × 50mm × 1.5mm) is used
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating
Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.
Allowable Operating range at Ta = 25 ° C
Parameter
Operating supply voltage 1
Operating supply voltage 2
Operating supply voltage 3
Operating supply voltage 4
Conditions
VDD output, SW output, ACC output
ILM output at 10V
ILM output at 8V
Audio output at 9V
CD output (CD output current = 1.3A)
CD output (CD output current ≤ 1A)
Ratings
7.5 to 16
12 to 16
10 to 16
10 to 16
10.5 to 16
10 to 16
Unit
V
V
V
V
V
V
Electrical Characteristics at Ta = 25°C, VCC = 14.4V
*: All the specifications are defined based on the tests that Tj is almost equal to Ta (=25 ° C). To suppress the rise of Tj in the junction
temperature as much as possible, it tests by the pulse loading.
Parameter
Symbol
Conditions
min
Ratings
typ
max
Unit
Current drain
ICC
VDD no load, CTRL1/2 = ? L/L ? , ACC = 0V
400
800
μ A
CTRL1 Input
Low input voltage
VIL1
0
0.5
V
M1 input voltage
M2 input voltage
High input voltage
Input impedance
VIM11
VIM21
VIH1
RIH1
0.8
1.9
2.9
350
1.1
2.2
3.3
500
1.4
2.5
5.5
650
V
V
V
k Ω
CTRL2 Input
Low input voltage
VIL2
0
0.5
V
M input voltage
High input voltage
Input impedance
VIM2
VIH2
RIH2
1.1
2.5
350
1.65
3.3
500
2.1
5.5
650
V
V
k Ω
VDD 3.3V Output *1
The VDD 3.3V output supplies the output currents of SW 3.3V and ACC 3.3V.
Output voltage 1
Output voltage 2
Output total current
Line regulation
Load regulation
Dropout voltage 1
Dropout voltage 2
Dropout voltage 3
Ripple rejection
VO1
VO1 ’
Ito1
Δ VOLN1
Δ VOLD1
VDROP1
VDROP1 ’
VDROP1 ”
RREJ1
IO1 = 200mA, IO7, IO8 = 0A
IO1 = 200mA, IO7 = 200mA, IO8 = 100mA
VO1 ≥ 3.13V, Ito1 = IO1+IO7+IO8
7.5V < VCC < 16V, IO1 = 200mA *2
1mA < IO1 < 200mA *2
IO1 = 200mA *2
IO1 = 100mA *2
IO1+IO7+IO8 = 500mA
f = 120Hz, IO1 = 200mA *2
3.13
3.13
500
40
3.3
3.3
30
70
1.0
0.7
2.5
50
3.47
3.47
90
150
1.5
1.05
3.75
V
V
mA
mV
mV
V
V
V
dB
CD Output ; CTRL2 = ? H ?
Output voltage VO2 IO2 = 1000mA 7.6 8.0 8.4 V
*1 : The VDD 3.3V output also supplies the output currents of SW 3.3V and ACC 3.3V. Therefore, the current supply capability of the VDD 3.3V output and its
other electrical characteristics are affected by the output statuses of SW 3.3V and ACC 3.3V.
*2 : SW 3.3V and ACC 3.3V are not subject to a load.
Continued on next page.
No.A1901-2/14
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