SV7330SE-16QP-TR2 [SAVITECH]
8KV ESD, Low Ron, Ultra-Wide Bandwidth, Low Power, Quad SPDT Video Switch;型号: | SV7330SE-16QP-TR2 |
厂家: | SAVITECH |
描述: | 8KV ESD, Low Ron, Ultra-Wide Bandwidth, Low Power, Quad SPDT Video Switch 光电二极管 |
文件: | 总20页 (文件大小:750K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
SV7330SE
SV7330SE
8KV ESD, Low Ron, Ultra-Wide Bandwidth, Low Power,
Quad SPDT Video Switch
v0.97a
SAVITECH Corporation
www.savitech-ic.com
1
Savitech
SV7330SE
SV7330SE
8KV ESD, Low Ron, Ultra-Wide Bandwidth, Low Power,
Quad SPDT Video Switch
Features
Pin connection
Seamless Bidirectional Data Switching
Roboust ESD protection: HBM 8KV
Low Turn-On Resistance: 4.5Ω (VCC=5V)
Wide Bandwidth: -3dB BW = 550MHz
High Off Isolation: –60dB
Extreme Low Power Consumption: 0.4uA
Single Vcc Supply: +1.8V ~ +5V
Vcc Supply Accuracy: +/-10%
Control Input Pins are compatible with TTL and
5V/3.3V CMOS
SV7330SE
1
2
3
4
5
6
7
8
16
15
14
13
12
11
10
9
Vcc
EN
S1D
IN
S1A
S2A
DA
Pb-free & Green Package: QSOP-16, SOP-16,
TSSOP-16
S2D
DD
S1B
Description
S1c
S2c
Dc
S2B
DB
The SV7330SE is a high quality, low power, high-
speed analog video switch. It features wide
bandwidth, low turn-on resistance and low crosstalk
that make it ideal for seamless composite and RGB
SD and HD video switching applications
GND
It can also function as a 4-bit 1-of-2 MUX/DEMUX
for other high-speed data switching applications. A
single switch-enable (EN) input is used to enable or
disable the switch. When EN is set at logic ‘L’, the
D-port is connected to the S-port that shows low-
Ron between D-port and S-port that enables the
switch. When EN is set at logic ‘H’, the high-
impedance state exists between the D and S ports
that disable the switch. The select (IN) pin controls
the input data path of the MUX/DEMUX. The device
spec at high off- isolation, so it will maintain isolation
during power down.
QSOP-16/SOP-16/TSSOP-16
Pin Description
PIN
DESCRIPTION
Analog video I/Os
Analog video
S1,S2
D
IN Select input
IN
It is powered by a single +1.8 to +5V rail typically
and consumes extremely low power.
Switch-enable input
EN
Function Table
INPUTS
INPUT/OUTPUT
FUNCTION
D
S1
S2
Z
EN
L
L
IN
L
H
X
D port = S1 port
D port = S2 port
Disconnected
H
Ordering Information
Ordering Code
Operation Range
-40°C ~ +85°C
-40°C ~ +85°C
-40°C ~ +85°C
Package
QSOP-16L
SOP-16
Packing
SV7330SE-16QP-TR2
SV7330SE-16SP-TR2
Tape & Reel, 2500pcs
Tape & Reel, 2500pcs
Tape & Reel, 3000pcs
SV7330SE-16TP-TR3
Note:
TSSOP-16
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2
Savitech
SV7330SE
Function Diagram
Absolute maximum ratings
Parameter
Value
Unit
VCC to GND, Supply Voltage,
Input Voltage
7
V
GND - 0.3 to (VCC) +0.3
V
°C
Storage Temperature Range
Continuous current through VDD or GND
ESD Susceptibility: HBM
ESD Susceptibility: MM
-65 to +150
100
mA
V
>8000
400
V
Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a
stress rating only; functional operation of the device at these or any other conditions above those indicated in the
operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended
periods may affect
device reliability.
CAUTION
This integrated circuit can be damaged by ESD if you don’t pay attention to ESD protection. SAVITECH recommends
that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and
installation procedures can cause damage.
ESD damage can range from subtle performance degradation to complete device failure. Precision integrated
circuits
small parametric changes could cause the device not to meet its
may be more susceptible to damage because very
published specifications.
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3
Savitech
SV7330SE
Electrical characteristics
(VCC = +4.5V, GND = 0V, TA = +25°C unless otherwise noted.)
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
DC CHARACTERISTICS
VCC =4.5V, Vin=0V, ID=26mA
VCC =4.5V, Vin=2V, ID =26mA
VCC =4.5V, Vin=4.5V, ID =26mA
VCC =5.0V
6.5
9.0
19
Ω
Ω
On-Resistance
RON
Ω
Input High Voltage
Input Low Voltage
Input High Current
Input Low Current
VIH
VIL
IIH
VDD * 0.6 2.34 VDD * 0.4
V
VCC =5.0V
2.33
±1
0.5
2.5
2.5
V
VCC = 5.5V, VIN and VEN= VCC
VCC = 5.5V, VIN and VEN= 0V
µA
µA
µA
V
IIL
±1
Analog Output Leakage
Current
VCC = 5.5V, VS1 or VS2=
0.3V/1.2V, VD= 1.2V/0.3V
±1
IO
Clamp Diode Voltage
DYNAMIC CHARACTERISTICS
Turn-On Time
VIK
IIN= -1.8mA
-0.78
TON
22
ns
ns
RL= 75Ω, CL= 20pF
Turn-Off Time
TOFF
4.8
Sync in 1080i 60Hz schema, DC
couple
-60.8
-59.0
-66.0
dB
dB
dB
Off Isolation
OISO
2T pulse in 1080i 60Hz schema,
DC couple
Channel- to Channel Crosstalk
–3dB Bandwidth
f = 10MHz
f = 1MHz
X
TALK
BW
CIN
DG
550
4
MHz
pF
Input/Enable Capacitance
Differential Gain
VCC=5.0V, 5 Step Modulation
Pattern in PAL schema
0.64
0.15
% p-p
% deg.
VCC=5.0V, 5 Step Modulation
Pattern in PAL schema
Differential Phase
DP
POWER REQUIREMENTS
Power Supply Current
ICC
VCC = 5.5V, VIN = 0V or VCC
VCC = 5.5V, VIN = 3.4V
0.4
3
µA
Supply Current per Input @
TTL HIGH
∆ICC
2.5
mA
Specifications are subject to change without notice.
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4
Savitech
SV7330SE
PARAMETER
DESCRIPTION
RON
IO
Resistance between source and drain with switch in the ON state
Output leakage current measured at S1, S2, and D with the switch OFF
Digital voltage at the IN pin that selects between S1 and S2 analog inputs
VIN
VI
Voltage applied to the D or S1, S2 pins when D or S1, S2 is the switch input
A Clamp Diode Voltage Drop
VIK
CIN
Capacitance at the digital inputs
COFF
CON
VIH
Capacitance at analog I/O (S1, S2, D) with switch OFF
Capacitance at analog I/O (S1, S2, D) with switch ON
Minimum input voltage for logic HIGH
VIL
Minimum input voltage for logic LOW
IIH (IL)
TON
TOFF
BW
Input current of the digital input
Propagation delay measured between 50% of the digital input to 90% of the
analog output when switch is turned ON.
Propagation delay measured between 50% of the digital input to 90% of the
analog output when switch is turned OFF.
response of the switch in the ON state measured at 3dB down
Magnitude variation between analog input and output pins when the switch
is ON and the dc offset of composite-video signal varies at the analog input
pin. In the PAL standard, the frequency of the video signal is 4.43MHz.
DG
Phase variation between analog input and output pins when the switch is
ON and the dc offset of composite-video signal varies at the analog input
pin. In the PAL standard, the frequency of the video signal is 4.43MHz.
DP
Off isolation is the resistance (measured in 100IRE 2T 1080i pulse) between
the input and output with the switch off (NO)
OISO
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5
Savitech
SV7330SE
Typical Performance Characteristics
DC ELECTRICAL CHARACTERISTICS
Quiescent Power Supply Current (ICC
)
Quiescent current: S0=S1=EA=EB=VSS
Quiescent current: S0=S1=EA=EB=VCC
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Savitech
SV7330SE
Clamp Diode Voltage (VIK)
Control Input Leakage (IIH and IIL) for S0, S1, EA and EB
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7
Savitech
SV7330SE
IO Input Leakage (IO) for IAn, IBn, YA and YB
EA=EB=VCC
Switch ON Resistance (RON
)
Ron=Ion ; VCC=4.5V
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8
Savitech
SV7330SE
Input Logic Level (VIH, VIL)
VIH / VIL under VCC=5.0V
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9
Savitech
SV7330SE
AC ELECTRICAL CHARACTERISTICS
Turn ON/ Turn OFF Timing (TON, TOFF
)
Bandwidth (-3dB Bandwidth, BW)
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10
Savitech
SV7330SE
Differential Gain/ Phase (DG, DP)
Video Off-Isolation (OISO): Sync Feed Through
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11
Savitech
SV7330SE
Video Off-Isolation (OISO): 2T Pulse Feed Through
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12
Savitech
SV7330SE
Parameter Measurement Information
Power Supply Current (ICC)
*FVMI = Force Voltage Measure Current mode.
Off-State Leakage Current (IO)
CH0 as Vcom
Source
CH1 as FVMI
Measurement
NI PXI-4130 SMU
CH1-Hi
CH1-Lo CH0 GND
VDD
S1
D
DC5V
S2
IN
ENB
GND
Off-State Leakage Current
*FVMI = Force Voltage Measure Current mode.
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13
Savitech
SV7330SE
On-State Leakage Current (IO)
*FVMI = Force Voltage Measure Current mode.
Clamp Diode Voltage (VIK)
CH0 off
CH1 as FIMV
NI PXI-4130 SMU
Measurement
CH1-Hi
CH1-Lo CH0 GND
VDD
S1
S2
D
DC5V
IN
ENB
GND
Clamp Diode Voltage (VIK)
*FVMI = Force Voltage Measure Current mode.
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Savitech
SV7330SE
Rail to Rail Turn ON/Turn-OFF Timing (TON, TOFF
)
RL = 75Ω, CL=20pF include test jig and instrument parasitic capacitance.
Analog output swing was VSS to VCC
.
Bandwidth (BW)
HP8753A + HP85046A
Network Analyzer
PORT1
PORT2
VDD
S1
S2
D
DC5V
RL
IN
ENB
GND
Bandwidth (0dBm)
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15
Savitech
SV7330SE
Differential Gain/ Phase (DG, DP)
DC couple TV CVBS video signal input and output.
Test 5-step modulation composite TV signal in PAL format, burst frequency = 4.4336MHz.
DC Couple Sync/ Pulse Feed-Through (Off-Isolation, OISO
)
Tektronix
VDD
DPO7104
S1
S2
D
Tektronix
DC5V
TG700
AWVG7
75Ω
IN
ENB
GND
75Ω
DC Couple Sync Feed Through
Test 2T pulse and sync with component Y channel signal in HDTV 1080i 60Hz format.
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16
Savitech
SV7330SE
QSOP-16 MECHANICAL DATA
Dimension in MM
Dimension in Inch
Symbol
Min.
1.35
0.10
Nom.
1.63
0.15
Max.
1.75
0.25
1.50
0.30
0.25
Min.
0.053
0.004
Nom.
0.064
0.006
Max.
0.069
0.010
0.059
0.012
0.010
A
A1
A2
b
0.20
0.18
0.008
0.007
c
e
0.650 BASIC
4.90
0.025 BASEC
0.193
D
4.80
5.79
3.81
0.41
0.25
5.00
6.20
3.99
1.27
0.50
0.189
0.228
0.150
0.016
0.010
0.197
0.244
0.157
0.050
0.020
E
5.99
0.236
E1
L
3.961
0.154
0.635
0.025
h
L1
ZD
R1
R
0.254 BASIC
0.229 REF
0.010 BASIC
0.009 REF
Note:
0.20
0.20
0*
0.33
8*
0.008
0.008
0*
0.013
8*
1. Dimension 0 does not include mold protrusions or
gate burrs
2. Mold protrusions and gate burrs shall not exceed
0.006 inch per side.
Θ
Θ1
Θ2
JEDEC
0*
0*
5*
10*
15*
5*
10*
15*
MO-137 (AB)
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17
Savitech
SV7330SE
SOP-16 MECHANICAL DATA
Dimension in MM
Dimension in Inch
Symbol
Min.
Nom.
1.60
Max.
Min.
Nom.
0.063
Max.
A
1.35
0.10
1.75
0.25
0.053
0.004
0.069
0.010
A1
A2
1.45
0.057
B
0.33
0.19
9.80
3.80
0.51
0.25
0.013
0.007
0.386
0.150
0.020
0.010
0.394
0.157
C
D
10.00
4.00
E1
3.90
1.27
6.00
e
E
5.80
0.40
3.20
1.27
0.10
8〫
0.228
0.016
0.244
0.050
0.004
8〫
L
y
Θ
0〫
0〫
|L1-L1’|
L1
0.12
0.005
1.04REF
0.041REF
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Savitech
SV7330SE
TSSOP-16 MECHANICAL DATA
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19
Savitech
SV7330SE
I
Information furnished is believed to be accurate and reliable. However, SAVITECH assumes no responsibility for the consequences of use of
such information nor for any infringement of patents or other rights of third parties that may result from its use. No license is granted by
implication or otherwise under any patent or patent rights of SAVITECH. Specifications mentioned in this publication are subject to change
without notice. This publication supersedes and replaces all information previously supplied. SAVITECH products are not authorized for use
as critical components in life support devices or systems without express written approval of SAVITECH.
The SAVITECH logo is a registered trademark of Savitech Corporation.
All other names are the property of their respective owners
© 2011 Savitech Corporation - All Rights Reserved
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20
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