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THS6002 Datasheet(PDF) 5 Page - Texas Instruments

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Part No. THS6002
Description  DUAL DIFFERENTIAL LINE DRIVERS AND RECEIVERS
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Maker  TI [Texas Instruments]
Homepage  http://www.ti.com
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THS6002 Datasheet(HTML) 5 Page - Texas Instruments

 
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THS6002
DUAL DIFFERENTIAL LINE DRIVERS AND RECEIVERS
SLOS202D– JANUARY 1998– REVISED JULY 1999
5
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
DRIVER
electrical characteristics, VCC = ±15 V, RL = 25 Ω, RF = 1 kΩ, TA = 25°C (unless otherwise noted)
(continued)
PARAMETER
TEST CONDITIONS†
MIN
TYP
MAX
UNIT
VCC = ± 5V
TA = 25°C
–68
–74
dB
PSRR
Power supply rejection ratio
VCC = ± 5 V
TA = full range
–65
dB
PSRR
Power su
ly rejection ratio
VCC = ± 15 V
TA = 25°C
–64
–72
dB
VCC = ± 15 V
TA = full range
–62
dB
CI
Differential input capacitance
1.4
pF
RI
Input resistance
300
k
RO
Output resistance
Open loop
13
VCC = ± 5V
TA = 25°C
8.5
10
ICC
Quiescent current
VCC = ± 5 V
TA = full range
12
mA
ICC
Quiescent current
VCC = ± 15 V
TA = 25°C
11.5
13
mA
VCC = ± 15 V
TA = full range
15
† Full range is 0
°C to 70°C for the THS6002C and –40°C to 85°C for the THS6002I.
operating characteristics, VCC = ±15 V, RL = 25 Ω, RF = 1 kΩ, TA = 25°C (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
SR
Differential slew rate
VO = 20 V(PP),
G = 2
1000
V/
µs
ts
Settling time to 0.1%
0 V to 10 V Step,
G = 2
70
ns
THD
Total harmonic distortion
VO(PP) = 20 V,RF = 4 kΩ,
G = 5,
f = 1 MHz
–62
dBc
Vn
Input voltage noise
VCC = ± 5 V or ± 15 V,
f = 10 kHz,
G = 2,
Single-ended
1.7
nV/
√Hz
I
Input noise current
Positive (IN+)
VCC = ± 5 V or ± 15 V,
f = 10 kHz,
11.5
pA/
√Hz
In
Input noise current
Negative (IN–)
CC
,
G = 2
,
16
pA/
√Hz
VI = 200 mV, G = 1,
VCC = ± 5 V
90
110
MHz
I
,,
RF = 680 Ω
VCC = ± 15 V
110
140
MHz
Small-signal bandwidth (–3 dB)
VI = 200 mV, G = 2,
RF = 620 Ω
VCC = ± 15 V
120
MHz
BW
Small-signal bandwidth (–3 dB)
VI = 200 mV, G = 1,
RF = 820 Ω,RL = 100 Ω
VCC = ± 15 V
315
MHz
VI = 200 mV, G = 2,
RF = 560 Ω,RL = 100 Ω
VCC = ± 15 V
265
MHz
Bandwidth for 0 1 dB flatness
VI = 200 mV, G = 1,
VCC = ± 5 V
30
MHz
Bandwidth for 0.1 dB flatness
I
,,
RF = 680 Ω
VCC = ± 15 V
40
MHz
Full power bandwidth (see Note 3)
VO = 20 V(PP)
16
MHz
AD
Differential gain error
G = 2,
NTSC,
VCC = ± 5 V
0.04%
AD
Differential gain error
,,
RL = 150 Ω,
40 IRE
VCC = ± 15 V
0.05%
φD
Differential phase error
G = 2,
NTSC,
VCC = ± 5 V
0.07
°
φD
Differential phase error
RL = 150 Ω,
40 IRE
VCC = ± 15 V
0.08
°
NOTE 3: Full power bandwidth = slew rate/2
πVpeak


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