ChipFind - документация

Электронный компонент: VS3345

Скачать:  PDF   ZIP
2001-04-12 Page
1
MDSS-0010-01
www.vaishali.com
Vaishali Semiconductor 747 Camden Avenue, Suite C Campbell CA 95008 Ph. 408.377.6060 Fax 408.377.6063
Applications
=
5V to 3.3V translation in mixed-supply environment
=
Hot-swap interface
=
Logic replacement
=
Bus isolation
General Description
The VS3345 and VS32345 are high-speed TTLcompatible 8-bit bus switches. The VS3345 contains eight high-speed
bus switches, with common active low (/OE) and active high (OE) enables. The low ON resistance of the VS3345
allows inputs to be connected to outputs, without adding propagation delay and without generating additional signal
noise. The VS32345 has 25
resistors in series with the switches to reduce ground-bounce noise and signal reflection.
The VS3345 and VS32345 bus switches switches enable 5V to 3.3V translation when used with a diode in the power
supply line. In addition, the high off-isolation in the `disable' mode makes VS3345 and VS32345 ideal interface
elements for hot-swap applications.

Figure 1. Functional Block Diagram Figure 2. Pin Configuration








VS3345 / VS32345
High Speed CMOS VSwitch
8-Bit Bus Switches with
Active High & Low Enables
Features
=
Enhanced N-FET with no DC path to V
CC
or GND in normal operating signal voltage
range.
=
Low impedance bidirectional data flow:
5
(VS3345) and 25
(VS32345)
=
Near-zero propagation delay
=
Zero added ground bounce or signal noise
=
TTL-compatible control signals
=
Undershoot clamp diodes on all switch and
control pins
=
ESD rating >2000V (Human Body Model)
or >200V (Machine Model)
=
Latch-up current >100mA
=
Available in 150-mil wide QSOP package
(All Pins Top View)
QSOP
GND
V
CC
1
2
3
4
8
5
6
7
9
10
20
19
18
17
16
15
14
13
12
11
OE
A0
A1
A2
A3
A4
A5
A6
A7
/OE
B0
B2
B3
B4
B5
B1
B6
B7
OE
B7
B0
B1
B2
A0
B3
B4
B5
B6
A1
A2
A3
A4
A5
A6
A7
/OE
VS3345/VS32345
2001-04-12 Page
2
MDSS-0010-01
www.vaishali.com
Vaishali Semiconductor 747 Camden Avenue, Suite C Campbell CA 95008 Ph. 408.377.6060 Fax 408.377.6063
Table 1. Pin Description
Name I/O
Description
A
0
- A
7
I/O
Data Input or Output
/OE
I
Active Low Enable Input
OE
I
Active High Enable Input
B
0
B
7
I/O
Data Output or Input


Table 2. Function Table
Input Path
Function
/OE
OE
H X
Hi Impedance
Disable all switches
X L
Hi Impedance
Disable all switches
L H
A
n
<-> B
n
A
n
= B
n
Note: X = Don't care


Table 3. Absolute Maximum Ratings
Supply Voltage to Ground....................................-0.5V to +7.0V
DC Switch Voltage V
S
.........................................-0.5V to +7.0V
DC Input Voltage V
IN
....................................... ...-0.5V to +7.0V
AC Input Voltage (Pulse Width < 20ns)...............................-3.0V
DC Output Sink Current per Switch Pin.............................120 mA
Maximum Power Dissipation.......................................0.5 Watts
Storage Temperature.......................................-65
o
C to +150
o
C
Note: ABSOLUTE MAXIMUM CONTINUOUS RATINGS are those values beyond which damage to the device
may occur. Exposure to these conditions or conditions beyond those indicated may adversely affect
device reliability. Correct functional operation whiled operating in the absolute maximum rated conditions
is not implied.




Table 4. Capacitance
T
A
= 25
o
C, f = 1 MHz, V
IN
= 0V, V
OUT
= 0V
QSOP
Pins Typ
Max
Unit
Control Inputs
4
5
pF
VSwitch Channels
(Switch OFF)
5
7
pF
Note: Capacitance is guaranteed, but not production tested. Total capacitance of a path, when the switch is
closed, is the sum of the switch terminal capacitances.
VS3345/VS32345
2001-04-12 Page
3
MDSS-0010-01
www.vaishali.com
Vaishali Semiconductor 747 Camden Avenue, Suite C Campbell CA 95008 Ph. 408.377.6060 Fax 408.377.6063
Table 5. Recommended Operating Conditions
Symbol Parameter Conditions
Min
Typ
Max
Units
V
CC
Power supply voltage
4.5
5.5
V
V
IL
Low level input voltage
-0.5
0.8
V
V
IH
High level input voltage
2.0
5.5
V
T
A
Operating free-air temperature
-40
85
o
C
Table 6. Electrical Characteristics Over Recommended Operating Free-air Temperature Range
Symbol Parameter
Test
Conditions
Min
Typ
(1)
Max Units
Control Input
-1.5
V
IK
Clamp
Voltage
Switch I/O
V
CC
= Min, I
IK
= -18 mA
-1.5
V
V
IN
= V
CC
= 5V, I
OUT
= -5
A
3.7 3.9 4.1
V
OH
Logic High Voltage
Switch I/O
V
CC
= 4.3V, V
IN
= 5V,
I
OUT
= -5
A
3.0 3.3 3.6
V
I
I
Input Leakage
Current
Control Input
V
CC
= Max, V
I
= V
CC
or GND
1
A
Control Input
|
OFF
|
Power OFF Leakage
Current
Switch I/O
V
CC
= 0,
V
I
or V
O
= V
CC
or GND
1
A
|I
OZ
|
OFF State Leakage
Current
Switch I/O
V
CC
= Max, V
I/O
= V
CC
,
/OE = V
CC
or OE = GND
1
A
VS3345 50
mA
I
ODL
Switch I/O Drive
Current (Logic LOW)
V
CC
= Min, V
IN
= 0,
V
OUT
= 0.4V
VS32345
mA
VS3345 -50
mA
I
ODH
Switch I/O Drive
Current (Logic HIGH)
V
CC
= Min, V
IN
= V
CC
,
V
OUT
= 2.4V
VS32345
mA
VS3345
5
7
R
ON
Switch
ON
Resistance
(2)
V
CC
= Min, V
IN
= 0,
I
OUT
= 30mA
VS32345 20
28
40
Notes:
1. Typical values are specified at V
CC
= 5.0V and T
A
= 25
o
C.
2 R
ON
is measured by forcing specified current into the `output' node of the switch with the `input' node of the switch at the the
specified voltage
Table 7. Power Supply Characteristics Over Recommended Operating Free-air Temperature Range
Symbol Parameter
Test
Conditions
(1)
Max
Units
I
CCQ
Quiescent Power Supply Current
V
CC
= Max, /OE, OE = V
CC
or GND, f = 0
1
A
I
CC
Power Supply Current per Input High
(Control Input)
(2)
V
CC
= Max, V
IN
= 3.4V, f = 0
1.5
mA
Q
CCD
Dynamic Power Supply Current
(3)
V
CC
= Max, Switch pins open,
Control Inputs toggling at 50% duty cycle
0.25 mA/MHz
Notes:
1. For conditions shown as Min or Max, use the appropriate values per Recommended Operating Conditions.
2. Per TTL-driven control input. All other control inputs at GND. Switch I/O pins do not contribute to
ICC.
3. This parameter represents the average DC current resulting from the switching of internal nodes of the device at a given
frequency. The switch I/O pins make insignificant contribution to the dynamic power supply current of the device. This parameter
is guaranteed, but not production tested.
VS3345/VS32345
2001-04-12 Page
4
MDSS-0010-01
www.vaishali.com
Vaishali Semiconductor 747 Camden Avenue, Suite C Campbell CA 95008 Ph. 408.377.6060 Fax 408.377.6063
























































VOH
Output Voltage
(V)
3
4
5
Vout
(V)
0
1
2
Vin (V)
4 5
3
2
1
0
VCC = 4.3V
Figure 3. VOLTAGE TRANSLATION
Figure 5. Voltage Translation Application
Figure 4. VOH CHARACTERISTICS
VCC Supply Voltage (V)
2.0
2.5
5.5
5.0
4.5
3.5
3.0
4.0
4.5
4.75 5.25
TA = 85
C
TA = 25
C
TA = - 40
C
10k
1N4148
or equivalent
V
CC
10k
V
CC
= 5V
I/O
VS3345
VS32345
3.3V
DEVICE
5V
DEVICE
I/O
OE
/OE
VS3345/VS32345
2001-04-12 Page
5
MDSS-0010-01
www.vaishali.com
Vaishali Semiconductor 747 Camden Avenue, Suite C Campbell CA 95008 Ph. 408.377.6060 Fax 408.377.6063
Table 8. Switching Characteristics Over Operating Range
T
A
= -40
o
C to +85
o
C, V
CC
= 5.0V + 10
%
C
LOAD
= 50pF, R
LOAD
= 500
unless otherwise stated.
Symbol
Description
(1)
VS3245
Min
(3)
Max
VS32245
Min
(3)
Max
Units
t
PLH
, t
PHL
Data Propagation Delay
(2,3)
through the switch
0.25
1.25
ns
t
PZH
, t
PZL
Switch Turn-on Delay: /OE, OE to A
n
, B
n
0.5
5.6
0.5
6.6
ns
t
PLZ
, t
PHZ
Switch Turn-off Delay: /OE, OE to A
n
, B
n
0.5
4.5
0.5
4.5
ns
Notes:
1. See test circuits and waveforms.
2. This parameter is the calculated theoretical RC time constant of ON-state resistance of the switch and the specified load
capacitance when driven by an ideal voltage source (zero source impedance). This time-constant is on the order of 0.25 ns for
VS3345 and 1.25 ns for VS32345. Since this time-constant is much smaller than rise/fall times of typical driving signals, it adds
very little propagation delay to the system.
3. This parameter is guaranteed, but not production tested.




Figure 6. AC Test Circuit and Switching Waveforms
AC Test Circuit
Load Switch
Position
























TEST S1
t
PLH
, t
PHL
Open
t
PLZ
, t
PZL
Closed
t
PHZ
, t
PZH
Open
Input Conditions

Input voltage = 0 V to 3.0 V
t
r
= t
f
= 2.5ns (10% to 90%)

Pulse
Generator
DUT
V
IN
V
OUT
C
L
500
R
L
S
1
7 V
50
=
Coax to
Oscilloscope
50
450