HV1616
8-Channel High Voltage Analog Switch
Ordering Information
Package Options
V
PP
+80V
V
NN
-80V
V
SIG
130V P-P
24-pin
Plastic DIP
HV1616P
28-lead Plastic
Chip Carrier
HV1616PJ
Die
HV1616X
Features
s
HVCMOS
®
technology
s
Up to 130V peak to peak switching capability
s
Output On-resistance typically 40 ohms
s
Low parasitic capacitances
s
DC to 10MHz analog signal frequency
s
-45dB typical output off isolation at 5MHz
s
CMOS logic circuitry for low power
and excellent noise immunity
s
On-chip shift register and latch logic circuitry
s
Surface mount package available
General Description
Not recommended for new designs. Please use HV202 instead.
This device is an 8-channel high-voltage integrated circuit (HVIC)
intended for use in applications requiring high voltage switching
controlled by low voltage signals; e.g., ultrasound imaging and
printers. Input data is shifted into an 8-bit shift register which can
then be retained in an 8-bit latch. Using HVCMOS technology, this
HVIC combines high voltage bilateral DMOS switches and low
power CMOS logic to provide efficient control of high voltage
analog signals.
13
13
Absolute Maximum Ratings*
V
DD
Logic power supply voltage
V
PP
- V
NN
supply voltage
V
PP
Positive high voltage supply
V
NN
Negative high voltage supply
Logic input voltages
Analog signal range
Peak analog signal current/channel
Storage temperature
Power dissipation
-0.5V to +18V
174V
-0.5V to +90V
+0.5V to -90V
-0.5V to V
DD
+0.3V
V
NN
to V
PP
1.5A
-65°C to +150°C
1.2W
* Absolute Maximum Ratings are those values beyond which damage to the
device may occur. Functional operation under these conditions is not implied.
Continuous operation of the device at the absolute rating level may affect
device reliability.
13-7
HV1616
Electrical Characteristics
(over operating conditions, V
PP
= +80V, V
NN
= -80V and V
DD
= 15V unless otherwise noted)
DC Characteristics
Characteristics
Switch (ON) Resistance
Switch (ON) Resistance
Switch (ON) Resistance
Switch (ON) Resistance
Switch (ON) Resistance
Matching
Switch Off Leakage
DC Offset Switch Off
DC Offset Switch On
Pole to Pole
Switch Capacitance
Logic Input Capacitance
Pos. HV Supply Current
Neg. HV Supply Current
Pos. HV Supply Current
Neg. HV Supply Current
Pos. HV Supply Current
Neg. HV Supply Current
Switch Output
Peak Current
Logic Supply
Average Current
Logic Supply
Quiescent Current
Data Out Source Current
Data Out Sink Current
I
DD
I
DDQ
I
SOR
I
SINK
0.7
0.7
0.8
0.8
C
SW
C
IN
I
PPQ
I
NNQ
I
PPQ
I
NNQ
I
PPQ
I
NNQ
200
-200
Sym
R
ONS
R
ONS
R
ONS
R
ONS
∆R
ONS
I
SOL
0
°
C
min
max
50
35
55
40
15
50
500
500
10
0.5
100
100
4.5
3.5
50
-50
0.8
-0.8
0.6
-0.6
1.5
4
10
0.9
0.9
6
500
0.7
0.7
200
-200
1.6
-1.6
1.2
-1.2
200
-200
min
+25
°
C
typ
40
25
45
25
max
50
35
55
40
15
50
500
500
10
+70
°
C
min
max
60
45
65
50
15
150
500
500
10
Units
ohms
ohms
ohms
ohms
%
µA
mV
mV
pF
pF
µA
µA
mA
mA
mA
mA
A
mA
µA
mA
mA
V
OUT
= V
DD
- 0.7V
V
OUT
= 0.7V
1 SW ON, I
SW
= 5mA,
V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
1 SW ON, I
SW
= 5mA
V
SIG
≤
0.1% Duty Cycle,
f = 10KHz
f
CLK
= 3MHz
ALL SWs OFF
Test Conditions
I
SW
= 5mA, V
SIG
= 0V
I
SW
= 200mA, V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
I
SW
= 5mA, V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
I
SW
= 200mA, V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
I
SW
= 5mA, V
SIG
= 0V
V
SIG
= V
PP
-10V thru 10KΩ
with 8 SWs in parallel
R
L
= 100KΩ
R
L
= 100KΩ
DC Bias = 40V
f = 1MHz
AC Characteristics
Characteristics
Set Up Time Before LE Rises
Time Width of LE
Clock Delay Time to Data Out
Turn On Time
Turn Off Time
Off Isolation
Max Clock Freq
Set Up Time Data to Clock
Hold Time Data from Clock
Switch Crosstalk
Sym
t
SD
t
WLE
t
DO
t
ON
t
OFF
KO
f
CLK
t
SU
t
h
K
CR
13-8
0
35
-45
5.0
10
-35
0
°
C
min
max
min
260
300
250
2.5
5.0
-45
3.0
330
5.0
10
5.0
10
+25
°
C
typ
max
+70
°
C
min
max
Units
ns
ns
ns
µs
µs
dB
MHz
ns
ns
dB
Signal Freq. = 5MHz
R
L
=10KΩ
R
L
=10KΩ
Signal Freq. = 5MHz
50% Duty Cycle
f
DATA
= f
CLK
/2
Test Conditions
HV1616
Operating Conditions
Symbol
V
DD
V
PP
V
NN
V
IH
V
IL
V
SIG
T
A
Parameter
Logic power supply voltage
Positive high voltage supply
Negative high voltage supply
High level input voltage
Low-level input voltage
Analog signal voltage peak to peak
Operating free air-temperature
Value
+10.0V to +15.5V
+50V to +80V
-50V to -80V
V
DD
-2V to V
DD
0 to 2.0V
V
NN
+15V to V
PP
-15V
0° to 70°C
Notes:
1. Power up/down sequence is arbitrary except GND must be powered-up first and powered-down last.
2. V
SIG
must be V
NN
≤
V
SIG
≤V
PP
or floating during power up/down transition.
Test Circuits
V
PP
-15V
I
SOL
V
PP
-15V
V
IN
= 10 V
P-P
@5MHz
V
OUT
50Ω
NC
R
L
V
OUT
10KΩ
V
NN
+15V
50Ω
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
K
CR
= 20Log
V
OUT
V
IN
Switch OFF Leakage
Crosstalk
T
ON
/T
OFF
13
V
IN
= 10 V
P-P
@5MHz
V
OUT
V
OUT
R
L
100KΩ
R
L
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
K
O
= 20Log
V
OUT
V
IN
OFF Isolation
DC Offset ON/OFF
13-9
HV1616
Electrical Characteristics
(over operating conditions, V
PP
= +80V, V
NN
= -80V and V
DD
= 15V unless otherwise noted)
DC Characteristics
Characteristics
Switch (ON) Resistance
Switch (ON) Resistance
Switch (ON) Resistance
Switch (ON) Resistance
Switch (ON) Resistance
Matching
Switch Off Leakage
DC Offset Switch Off
DC Offset Switch On
Pole to Pole
Switch Capacitance
Logic Input Capacitance
Pos. HV Supply Current
Neg. HV Supply Current
Pos. HV Supply Current
Neg. HV Supply Current
Pos. HV Supply Current
Neg. HV Supply Current
Switch Output
Peak Current
Logic Supply
Average Current
Logic Supply
Quiescent Current
Data Out Source Current
Data Out Sink Current
I
DD
I
DDQ
I
SOR
I
SINK
0.7
0.7
0.8
0.8
C
SW
C
IN
I
PPQ
I
NNQ
I
PPQ
I
NNQ
I
PPQ
I
NNQ
200
-200
Sym
R
ONS
R
ONS
R
ONS
R
ONS
∆R
ONS
I
SOL
0
°
C
min
max
50
35
55
40
15
50
500
500
10
0.5
100
100
4.5
3.5
50
-50
0.8
-0.8
0.6
-0.6
1.5
4
10
0.9
0.9
6
500
0.7
0.7
200
-200
1.6
-1.6
1.2
-1.2
200
-200
min
+25
°
C
typ
40
25
45
25
max
50
35
55
40
15
50
500
500
10
+70
°
C
min
max
60
45
65
50
15
150
500
500
10
Units
ohms
ohms
ohms
ohms
%
µA
mV
mV
pF
pF
µA
µA
mA
mA
mA
mA
A
mA
µA
mA
mA
V
OUT
= V
DD
- 0.7V
V
OUT
= 0.7V
1 SW ON, I
SW
= 5mA,
V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
1 SW ON, I
SW
= 5mA
V
SIG
≤
0.1% Duty Cycle,
f = 10KHz
f
CLK
= 3MHz
ALL SWs OFF
Test Conditions
I
SW
= 5mA, V
SIG
= 0V
I
SW
= 200mA, V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
I
SW
= 5mA, V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
I
SW
= 200mA, V
SIG
= 0V
V
PP
= +50V, V
NN
= -50V,
I
SW
= 5mA, V
SIG
= 0V
V
SIG
= V
PP
-10V thru 10KΩ
with 8 SWs in parallel
R
L
= 100KΩ
R
L
= 100KΩ
DC Bias = 40V
f = 1MHz
AC Characteristics
Characteristics
Set Up Time Before LE Rises
Time Width of LE
Clock Delay Time to Data Out
Turn On Time
Turn Off Time
Off Isolation
Max Clock Freq
Set Up Time Data to Clock
Hold Time Data from Clock
Switch Crosstalk
Sym
t
SD
t
WLE
t
DO
t
ON
t
OFF
KO
f
CLK
t
SU
t
h
K
CR
13-10
0
35
-45
5.0
10
-35
0
°
C
min
max
min
260
300
250
2.5
5.0
-45
3.0
330
5.0
10
5.0
10
+25
°
C
typ
max
+70
°
C
min
max
Units
ns
ns
ns
µs
µs
dB
MHz
ns
ns
dB
Signal Freq. = 5MHz
R
L
=10KΩ
R
L
=10KΩ
Signal Freq. = 5MHz
50% Duty Cycle
f
DATA
= f
CLK
/2
Test Conditions
HV1616
Operating Conditions
Symbol
V
DD
V
PP
V
NN
V
IH
V
IL
V
SIG
T
A
Parameter
Logic power supply voltage
Positive high voltage supply
Negative high voltage supply
High level input voltage
Low-level input voltage
Analog signal voltage peak to peak
Operating free air-temperature
Value
+10.0V to +15.5V
+50V to +80V
-50V to -80V
V
DD
-2V to V
DD
0 to 2.0V
V
NN
+15V to V
PP
-15V
0° to 70°C
Notes:
1. Power up/down sequence is arbitrary except GND must be powered-up first and powered-down last.
2. V
SIG
must be V
NN
≤
V
SIG
≤V
PP
or floating during power up/down transition.
Test Circuits
V
PP
-15V
I
SOL
V
PP
-15V
V
IN
= 10 V
P-P
@5MHz
V
OUT
50Ω
NC
R
L
V
OUT
10KΩ
V
NN
+15V
50Ω
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
K
CR
= 20Log
V
OUT
V
IN
Switch OFF Leakage
Crosstalk
T
ON
/T
OFF
13
V
IN
= 10 V
P-P
@5MHz
V
OUT
V
OUT
R
L
100KΩ
R
L
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
+80V
-80V
V
PP
V
NN
V
DD
GND
15V
K
O
= 20Log
V
OUT
V
IN
OFF Isolation
DC Offset ON/OFF
13-11