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LMH6583_14 Datasheet, PDF (4/24 Pages) Texas Instruments – LMH6583 16x8 550 MHz Analog Crosspoint Switch, Gain of 2
LMH6583
SNOSAP5E – APRIL 2006 – REVISED MARCH 2013
www.ti.com
±3.3V Electrical Characteristics (1) (continued)
Unless otherwise specified, typical conditions are: TA = 25°C, AV = +2, VS = ±3.3V, RL = 100Ω; Boldface limits apply at the
temperature extremes.
Symbol
Parameter
Conditions
Min (2)
Typ (3)
Max (2)
Units
VO
Output Voltage Range
RL = ∞ (7)
+2.1
±2.2
V
-2.05
PSRR
Power Supply Rejection Ratio
45
dB
ICC
Positive Supply Current
IEE
Negative Supply Current
Tri State Supply Current
RL = ∞
RL = ∞
RST Pin > 2.0V
98
120
mA
92
115
mA
17
25
mA
Miscellaneous Performance
RIN
CIN
RO
RO
CMVR
Input Resistance
Non-Inverting
Input Capacitance
Non-Inverting
Output Resistance Enabled
Closed Loop, Enabled
Output Resistance Disabled
Disabled
Input Common Mode Voltage Range
100
kΩ
1
pF
300
mΩ
1100
1300
1450
Ω
±1.3
V
IO
Output Current
Digital Control
Sourcing, VO = 0 V
±50
mA
VIH
Input Voltage High
VIL
Input Voltage Low
VOH
Output Voltage High
VOL
Output Voltage Low
TS
Setup Time
TH
Hold Time
2.0
V
0.8
V
>2.2
V
<0.4
V
7
ns
7
ns
(7) This parameter is ensured by design and/or characterization and is not tested in production.
±5V Electrical Characteristics (1)
Unless otherwise specified, typical conditions are: TA = 25°C, AV = +2, VS = ±5V, RL = 100Ω; Boldface limits apply at the
temperature extremes.
Symbol
Parameter
Conditions
Min (2)
Typ (3)
Max (2)
Units
Frequency Domain Performance
SSBW
LSBW
−3 dB Bandwidth
GF
0.1 dB Gain Flatness
DG
Differential Gain
DP
Differential Phase
Time Domain Response
VOUT = 0.5 VPP
VOUT = 2 VPP, RL = 1 kΩ
VOUT = 2 VPP, RL = 150Ω
VOUT = 2 VPP, RL = 150Ω
RL = 150Ω, 3.58 MHz/ 4.43 MHz
RL = 150Ω, 3.58 MHz/ 4.43 MHz
475
550
MHz
450
100
MHz
0.04
%
0.04
deg
tr
Rise Time
tf
Fall Time
OS
Overshoot
SR
Slew Rate
ts
Settling Time
2V Step, 10% to 90%
2V Step, 10% to 90%
2V Step
6 VPP, 40% to 60% (4)
2V Step, VOUT Within 0.5%
1.4
1.3
2
1800
7
ns
ns
%
V/µs
ns
(1) Electrical Table values apply only for factory testing conditions at the temperature indicated. No ensurance of parametric performance is
indicated in the electrical tables under conditions different than those tested.
(2) Room Temperature limits are 100% production tested at 25°C. Device self heating results in TJ ≥ TA, however, test time is insufficient for
TJto reach steady state conditions. Limits over the operating temperature range are ensured through correlation using Statistical Quality
Control (SQC) methods.
(3) Typical values represent the most likely parametric norm as determined at the time of characterization. Actual typical values may vary
over time and will also depend on the application and configuration. The typical values are not tested and are not ensured on shipped
production material.
(4) Slew Rate is the average of the rising and falling edges.
4
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