Texas Instruments THS7360 Evaluation Module THS7360EVM THS7360EVM Datenbogen

Produktcode
THS7360EVM
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SLOS674 – JUNE 2010
www.ti.com
ELECTRICAL CHARACTERISTICS: V
S+
= +5 V (continued)
At T
A
= +25°C, R
L
= 150
Ω
to GND, Filter mode, and dc-coupled input/output, unless otherwise noted.
THS7360
TEST
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNITS
LEVEL
(1)
AC PERFORMANCE (SF CHANNELS, FULL/TRUE-HD FILTER)
Passband bandwidth
–1 dB; V
O
= 0.2 V
PP
and 2 V
PP
53
61
72
MHz
B
Small- and large-signal bandwidth
–3 dB; V
O
= 0.2 V
PP
and 2 V
PP
64
70
83
MHz
B
With respect to 500 kHz
(4)
, f = 54 MHz
–0.8
0.4
1.2
dB
A
Attenuation
With respect to 500 kHz
(4)
, f = 148 MHz
30
36
dB
A
Group delay
f = 100 kHz
11
ns
C
Group delay variation
f = 54 MHz with respect to 100 kHz
4
ns
C
Channel-to-channel delay
0.3
ns
C
Total harmonic distortion
f = 20 MHz, V
O
= 1.4 V
PP
–54
dB
C
100 kHz to 60 MHz, non-weighted
53
dB
C
Signal-to-noise ratio
Unified weighting
64
dB
C
Gain
All channels
4.37
4.50
4.63
V/V
A
Output impedance
f = 60 MHz
1.5
Ω
C
Return loss
f = 60 MHz
40
dB
C
f = 50 MHz, SF to SD channels, input referred
–30
dB
C
Crosstalk
f = 50 MHz, SD to SF channels, input referred
–50
dB
C
f = 50 MHz, SF to SF channels, input referred
–30
dB
C
AC PERFORMANCE (SF CHANNELS, BYPASS)
Passband bandwidth
–1 dB; V
O
= 0.2 V
PP
140
180
MHz
B
Small-signal bandwidth
–3 dB; V
O
= 0.2 V
PP
200
290
MHz
B
Slew rate
V
O
= 2 V
PP
650
850
V/µs
B
Group delay
f = 100 kHz
3
ns
C
Channel-to-channel delay
0.3
ns
C
Total harmonic distortion
f = 20 MHz, V
O
= 1.4 V
PP
–72
dB
C
100 kHz to 100 MHz, non-weighted
56
dB
C
Signal-to-noise ratio
Unified weighting
66
dB
C
Gain
All channels
4.37
4.50
4.63
V/V
B
f = 100 MHz
3
Ω
C
Output impedance
Disabled
12 || 3
k
Ω
|| pF
C
Return loss
f = 100 MHz
34
dB
C
f = 50 MHz, SF to SD channels, input referred
–30
dB
C
Crosstalk
f = 50 MHz, SD to SF channels, input referred
–48
dB
C
f = 50 MHz, SF to SF channels, input referred
–30
dB
C
(4)
3.3-V supply filter specifications are ensured by 100% testing at 5-V supply along with design and characterization.
10
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