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HV232FG View Datasheet(PDF) - Supertex Inc

Part NameDescriptionManufacturer
HV232FG Low Charge Injection 8-Channel High Voltage Analog Switches with Bleed Resistors Supertex
Supertex Inc Supertex
HV232FG Datasheet PDF : 11 Pages
1 2 3 4 5 6 7 8 9 10
Electrical Characteristics
DC Characteristics (over recommended operating conditions unless otherwise noted)
Characteristics
Sym
0°C
min max
+25°C
min typ* max
+70°C
min max
30
26 38
48
25
22 27
32
Small Signal Switch (ON) RONS
25
Resistance
18
22 27
30
18 24
27
23
20 25
30
22
16 25
27
Small Signal Switch (ON) RONS
20
5.0 20
20
Resistance Matching
Large Signal Switch (ON) RONL
15
Resistance
Output Switch Shunt
RINT
Resistance
20 35 50
Switch Off Leakage
ISOL
Per Switch
DC Offset Switch Off
DC Offset Switch On
Pos. HV Supply Current
IPPQ
Neg. HV Supply Current INNQ
Pos. HV Supply Current
IPPQ
Neg. HV Supply Current INNQ
Switch Output
Peak Current
Output Switch Frequency fSW
5.0
1.0 10
15
300
100 300
300
500
100 500
500
10 50
-10 -50
10 50
-10 -50
3.0
3.0 2.0
2.0
50
6.5
7.0
8.0
IPP Supply Current
IPP
4.0
4.0
5.0
5.5
5.0
5.5
6.5
7.0
8.0
INN Supply Current
INN
4.0
4.0
5.0
5.5
5.0
5.5
Logic Supply
IDD
4.0
Average Current
4.0
4.0
Logic Supply
IDDQ
10
Quiescent Current
10
10
Data Out Source Current ISOR 0.45
0.45 0.70
0.40
Data Out Sink Current
ISINK
0.45
0.45 0.70
0.40
Logic Input Capacitance CIN
10
10
10
*Typical values only for HV232
HV230/232
Units Test Conditions
ISIG = 5mA VPP = 40V,
ISIG = 200mA VNN = -160V
ISIG = 5mA VPP = 100V,
ISIG = 200mA VNN = -100V
ISIG = 5mA VPP = 160V,
ISIG = 200mA VNN = -40V
% ISW = 5mA, VPP = 100V,
VNN = -100V
VSIG = VPP - 10V, ISIG = 1A
KOutput switch to RGND
IRINT = 0.5mA
µA VSIG = VPP - 10V
mV No Load
mV No Load
µA ALL SWs OFF
µA ALL SWs OFF
µA ALL SWs ON, ISW = 5mA
µA ALL SWs ON, ISW = 5mA
A
VSIG duty cycle - 0.1%
KHz Duty Cycle = 50%
VPP = 40V,
VNN = -160V
mA VPP = 100V,
VNN = -100V
50KHz
VPP = 160V,
Output
VNN = -40V
Switching
VPP = 40V,
VNN = -160V
Frequency
with no
load
mA VPP = 100V,
VNN = -100V
VPP = 160V,
VNN = -40V
mA fCLK = 5MHz, VDD = 5.0V
µA
mA VOUT = VDD - 0.7V
mA VOUT = 0.7V
pF
4
NR032505
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