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OPA355-Q1 Datasheet, PDF (4/18 Pages) Texas Instruments – 200-MHz CMOS Operational Amplifier With Shutdown
OPA355-Q1
SLOS868B – DECEMBER 2013 – REVISED JUNE 2014
www.ti.com
7.3 Thermal Information
THERMAL METRIC(1)
DBV
6 PINS
UNIT
RθJA
RθJC(top)
RθJB
ψJT
ψJB
RθJC(bot)
Junction-to-ambient thermal resistance
Junction-to-case (top) thermal resistance
Junction-to-board thermal resistance
Junction-to-top characterization parameter
Junction-to-board characterization parameter
Junction-to-case (bottom) thermal resistance
187.3
126.5
32.6
24.1
32.1
N/A
°C/W
(1) For more information about traditional and new thermal metrics, see the IC Package Thermal Metrics application report, SPRA953.
7.4 Electrical Characteristics
VS = 2.7 V to 5.5 V single supply. At TA = 25°C, RF = 604 Ω, RL = 150Ω, and connected to VS / 2, unless otherwise noted.
PARAMETER
TEST CONDITIONS
TA = 25°C
MIN
TYP
MAX
TA = –40°C to 125°C
MIN TYP MAX
UNIT
OFFSET VOLTAGE
VOS
DVOS/dT
PSRR
Input offset voltage
Input offset voltage versus temperature
Input offset voltage versus power supply
INPUT BIAS CURRENT
VS = 5 V
VS = 2.7 to 5.5 V, VCM = VS / 2 – 0.15 V
±2
±9
±80
±350
±15 mV
±7
µV/°C
µV/V
IB
IOS
NOISE
Input bias current
Input offset current
3
±50
pA
±1
±50
pA
en
Input noise voltage density
in
Current noise density
INPUT VOLTAGE RANGE
ƒ = 1 MHz
ƒ = 1 MHz
5.8
nV/√Hz
50
fA/√Hz
VCM
Common-mode voltage range
(V–) – 0.1
(V+) – 1.5
V
CMRR
Common-mode rejection ratio
VS = 5.5 V, –0.1 V < VCM < 4 V
66
80
66
dB
INPUT IMPEDANCE
Differential
1013 || 1.5
Ω || pF
Common-mode
1013 || 1.5
Ω || pF
OPEN-LOOP GAIN
Open-loop gain
FREQUENCY RESPONSE
VS = 5 V, 0.3 V < VO < 4.7 V
84
92
80
dB
ƒ–3dB
GBW
ƒ0.1dB
SR
Small-signal bandwidth
Gain-bandwidth product
Bandwidth for 0.1-db gain flatness
Slew rate
Rise and fall time
Settling time
0.1%
0.01%
Overload recovery time
Harmonic distortion
Second harmonic
Third harmonic
Differential gain error
Differential phase error
G = 1, VO = 100 mVp-p, RF = 0 Ω
G = 2, VO = 100 mVp-p, RL = 50 Ω
G = 2, VO = 100 mVp-p, RL = 150 Ω
G = 2, VO = 100 mVp-p, RL = 1 kΩ
G = 10, RL = 1 kΩ
G = 2, VO = 100 mVp-p, RF = 560 Ω
VS = 5 V, G = 2, 4-V output step
G = 2, VO = 200 mVp-p, 10% to 90%
G = 2, VO = 2 Vp-p, 10% to 90%
VS = 5 V, G = 2, 2-V output step
VS = 5 V, G = 2, 2-V output step
VI × G = VS
G = 2, ƒ = 1 MHz, VO = 2 Vp-p, RL = 200 Ω
G = 2, ƒ = 1 MHz, VO = 2 Vp-p, RL = 200 Ω
NTSC, RL = 150 Ω
NTSC, RL = 150 Ω
450
100
170
200
200
75
300 / –360
2.4
8
30
120
8
–81
–93
0.02%
0.05
MHz
MHz
MHz
MHz
MHz
MHz
V/µs
ns
ns
ns
ns
ns
dBc
dBc
degrees
(°)
4
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