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IDTVS330DCG8 Datasheet(PDF) 5 Page - Integrated Device Technology

Part # IDTVS330DCG8
Description  LOW ON-RESISTANCE WIDEBAND/VIDEO QUAD 2-CH
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Manufacturer  IDT [Integrated Device Technology]
Direct Link  http://www.idt.com
Logo IDT - Integrated Device Technology

IDTVS330DCG8 Datasheet(HTML) 5 Page - Integrated Device Technology

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IDTVS330
LOW ON-RESISTANCE WIDEBAND/VIDEO QUAD 2-CH
COMMERCIAL TEMPERATURE RANGE
LOW ON-RESISTANCE WIDEBAND/VIDEO QUAD 2-CH
5
IDTVS330
7012/6
CONFIDENTIAL
Dynamic Electrical Characteristics Over Operating Range
Following Conditions Apply Unless Otherwise Specified:
TA = 0°C to +70°C, VCC = 3.3V ± 5%.
Power Supply Characteristics
Symbol
Parameter
Conditions
Min.
Typ.
Max.
Unit
tON
Turn On Time
RL = 75Ω, CL = 20pF
2.5
5
ns
tOFF
Turn Off Time
RL = 75Ω, CL = 20pF
1.1
5
BW
1
-3dB Bandwidth
RL = 150Ω
570
MHz
XTALK
Crosstalk
RIN = 10Ω, RL = 150Ω, 10MHz
– 58
dB
DG
Differential Gain
RL = 150Ω, f = 3.58MHz
0.64
%
DP
Differential Phase
RL = 150Ω, f = 3.58MHz
0.27
Deg.
CIN
1
Input/Enable Capacitance
VIN = 0V, f = 1MHz
——
6
pF
COFF
1
Capacitance, Switch Off
6
CON
1
Capacitance, Switch On
8
OIRR
Off Isolation
RL = 150Ω, 10MHz
– 38
dB
1. This parameter is determined by device characterization but is not production tested.
Symbol
Parameter
Conditions1
Min. Typ.2 Max.
Unit
ICC
Quiescent Power
Supply Current
VCC = Max., IN = GND or VCC
—0.1
3
µA
∆I
CC
Power Supply Current
per Input @ TTL HIGH
VCC = Max., IN = 3.4V
3
——
2.5
mA
ICCD
4
Supply Current per
Input per MHz
VCC = Max., S1, S2 and D Pins Open, EN = GND
Control Input Toggling, 50%Duty Cycle
0.25 mA/MHz
1. For Max. or Min. conditions, use appropriate value specified under Electrical Characteristics for the applicable device.
2. Typical values are at VCC = 5.0V, +25°C ambient.
3. Per TTL driven input (VIN = 3.4V, control inputs only); S1, S2, and D pins do not contribute to ICC.
4. This current applies to the control inputs only and represent the current required to switch internal capacitance at the spec-
ified frequency. The S1, S2, and D I/O pins generate no significant AC or DC currents as they transition. This parameter
is not tested, but is guaranteed by design.


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