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CS3750 参数 Datasheet PDF下载

CS3750图片预览
型号: CS3750
PDF下载: 下载PDF文件 查看货源
内容描述: 百毫安双H桥空芯仪表驱动器 [100mA Dual H-Bridge Air-Core Gauge Driver]
分类和应用: 驱动器仪表
文件页数/大小: 4 页 / 141 K
品牌: CHERRY [ CHERRY SEMICONDUCTOR CORPORATION ]
 浏览型号CS3750的Datasheet PDF文件第1页浏览型号CS3750的Datasheet PDF文件第3页浏览型号CS3750的Datasheet PDF文件第4页  
CS3750
Electrical Characteristics: 7.5V <= V
CC
<=15V; -40¡C ² T
A
² +85¡C unless otherwise specified.
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
s
Output Stage
V
OUT
Saturation Voltage
(Low Side)
V
OUT
Offset Voltage
V
OUT
Saturation High Side
Low Side
V
OUT
Differential
Matching Voltage
Supply Current
s
Input Stage
V
IN
LOW
HIGH
Hysteresis
I
IN
LOW
HIGH
Output Slew Rate
with respect to input
Output Turn on Delay
with respect to input
Output Turn off Delay
with respect to input
s
Direction
V
DIR
LOW
HIGH
Hysteresis
I
DIR
LOW
HIGH
Output Slew Rate
with respect to DIR
Output Fall Time
with respect to DIR
Output Turn on Delay
with respect to DIR
Output Turn off Delay
with respect to DIR
s
Protection Functions
I
OUT
Current Limit
(High Side Only)
Over Voltage Threshold
Hysteresis
Thermal Shutdown
Hysteresis
V
IN
=5V; V
DIR
decreasing
V
IN
=5V; V
DIR
increasing
V
IN
=5V
V
IN
=0V; V
DIR
=0.8V
V
IN
=0V; V
DIR
=3.5V
V
IN
=5V; f
DIR
=250Hz; C=0µF
V
IN
=0V; V
DIR
=0V; C=0µF
V
IN
=5V; R
LOAD
=150�½
V
DIR
=250Hz; C=0µF, note 1
V
IN
=5V; R
LOAD
=150�½
V
DIR
=250Hz; C=0µF, note 2
1
2.5
6
9
µs
µs
0.8
1.9
2.0
100
40
0.4
1.5
0.2
3.5
100
100
V
V
mV
µA
µA
V/µs
µs
V
IN
decreasing; V
DIR
=0V
V
IN
increasing; V
DIR
=0V
V
DIR
=0V
V
IN
=0.8V; V
DIR
=0V
V
IN
=3.5V
V
IN
=250Hz; R
LOAD
=150�½
V
IN
=250Hz; R
LOAD
=150�½, note 1
V
IN
=250Hz; R
LOAD
=150�½, note 2
0.8
1.9
2.0
100
20
0.4
0.2
1.5
2.4
3.5
100
100.0
0.8
6
9
V
V
mV
µA
µA
V/us
µs
µs
I
OUT
=100mA; V
IN
=0V
I
OUT
=1mA; V
IN
=0V
V
C
=5V; I
OUT
=-30mA
V
IN
=5V;I
OUT
=-100mA
V
IN
=0V;I
OUT
=-1mA
V
C
=5V, I
OUT
=-100mA
V
IN
=V
DIR
=0;
VS-2
0.25
0.01
15
VS-1.5
0.02
0.50
0.10
50
VS
0.10
100
45
V
V
mV
V
V
mV
mA
23
0.2
2.0
V
IN
=5V
V
IN
=5V
100
17.0
225
21.5
0.5
160
20
26.0
mA
V
V
¡C
¡C
Note 1: Time required for output signal to rise to 90% of its amplitude after input signal switches.
Note 2: Time required for output signal to decrease to 10% of its amplitude after input signal switches.
2