SBOS483I July 2009 – May 2015 OPA2333-HT
PRODUCTION DATA.
MIN | MAX | UNIT | ||
---|---|---|---|---|
Supply voltage | 7 | V | ||
Signal input terminals, voltage(2) | –0.3 | (V+) + 0.3 | V | |
Output short circuit(3) | Continuous | |||
Operating temperature | JD, HKJ, HKQ packages | –55 | 210 | °C |
D package | –55 | 175 | ||
Junction temperature | JD, HKJ, HKQ packages | 210 | °C | |
D package | 175 | |||
Storage temperature, Tstg | –65 | 210 | °C |
VALUE | UNIT | |||
---|---|---|---|---|
V(ESD) | Electrostatic discharge | Human body model (HBM), per ANSI/ESDA/JEDEC JS-001(1) | ±4000 | V |
Charged-device model (CDM), per JEDEC specification JESD22-C101(2) | ±1000 |
MIN | NOM | MAX | UNIT | ||
---|---|---|---|---|---|
Supply voltage, VS = (V+) – (V–) | 1.8 (±0.9) | 5 (±2.5) | 5.5 (±2.75) | V | |
Operating temperature | JD, HKJ, HKQ packages | –55 | 210 | °C | |
D package | –55 | 175 |
THERMAL METRIC(1) | OPA2333-HT | UNIT | |||||
---|---|---|---|---|---|---|---|
JD (CDIP SB) |
HKJ (CFP) |
HKQ (CFP) |
D (SOIC) |
||||
8 PINS | 8 PINS | 8 PINS | 8 PINS | ||||
RθJA | Junction-to-ambient thermal resistance(2) | High-K board(3), no airflow | — | — | — | 117.5 | °C/W |
No airflow | — | — | — | — | |||
RθJC(top) | Junction-to-case (top) thermal resistance | 53.8 | 57.7 | 62.0 | °C/W | ||
to ceramic side of case | — | — | 15.2 | — | |||
to top of case lid (metal side of case) | — | — | — | — | |||
RθJB | Junction-to-board thermal resistance | High-K board without underfill | 76.0 | 61.0 | 151.6 | 57.7 | °C/W |
ψJT | Junction-to-top characterization parameter | — | — | — | 19.4 | °C/W | |
ψJB | Junction-to-board characterization parameter | — | — | — | 57.2 | °C/W | |
RθJC(bot) | Junction-to-case (bottom) thermal resistance | 26.7 | 15.2 | 56.9 | — | °C/W |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | ||
---|---|---|---|---|---|---|---|
OFFSET VOLTAGE | |||||||
VOS | Input offset voltage | VS = 5 V | TA = 25°C | 2 | 10 | μV | |
TA = –55°C to 125°C | 22 | ||||||
TA = –55°C to 175°C(1) | 26 | ||||||
TA = –55°C to 210°C(2) | 26 | μV | |||||
dVOS/dT | Input Offset Voltage Temperature Drift | VS = 5 V | TA = –55°C to 125°C | 0.02 | μV/°C | ||
TA = –55°C to 175°C(1) | 0.05 | ||||||
TA = –55°C to 210°C(2) | 0.05 | ||||||
PSRR | Input Offset Voltage vs Power Supply | VS = 1.8 V to 5.5 V | TA = –55°C to 125°C | 1 | 6 | μV/V | |
TA = –55°C to 175°C(1) | 1.2 | 8 | |||||
TA = –55°C to 210°C(2) | 1.7 | 11 | |||||
INPUT BIAS CURRENT | |||||||
IB | Input bias current | TA = 25°C | ±70 | ±200 | pA | ||
TA = –55°C to 125°C | ±150 | ||||||
TA = –55°C to 175°C | ±1250 | ||||||
TA = –55°C to 210°C | ±5300 | ||||||
IOS | Input offset current | TA = –55°C to 125°C | ±140 | ±400 | pA | ||
TA = –55°C to 175°C | ±700 | ||||||
TA = –55°C to 210°C | ±10600 | ||||||
NOISE | |||||||
Input Noise Voltage | f = 0.01 Hz to 1 Hz | TA = –55°C to 125°C | 0.3 | μVPP | |||
TA = –55°C to 175°C(1) | 1 | ||||||
TA = –55°C to 210°C(2) | 1 | ||||||
f = 0.1 Hz to 10 Hz | TA = –55°C to 125°C | 1.1 | μVPP | ||||
TA = –55°C to 175°C(1) | 1.5 | ||||||
TA = –55°C to 210°C(2) | 1.5 | ||||||
in | Input Noise Current Density | f = 10 Hz | TA = 25°C | 100 | fA/√Hz | ||
INPUT VOLTAGE RANGE(3) | |||||||
VCM | Common mode voltage range | TA = –55°C to 125°C | (V–) – 0.1 | (V+) + 0.1 | V | ||
TA = –55°C to 175°C | (V–) – 0.25 | (V+) + 0.25 | |||||
TA = –55°C to 210°C | (V–) – 0.25 | (V+) + 0.25 | |||||
CMRR | Common-Mode Rejection Ratio | (V–) – 0.1 V < VCM < (V+) + 0.1 V | TA = –55°C to 125°C | 102 | 130 | dB | |
TA = –55°C to 175°C | 101 | ||||||
TA = –55°C to 210°C | 91 | ||||||
INPUT CAPACITANCE | |||||||
Differential | TA = –55°C to 125°C | 2 | pF | ||||
TA = –55°C to 175°C | 4.25 | ||||||
TA = –55°C to 210°C | 4.25 | ||||||
Common mode | TA = –55°C to 125°C | 4 | pF | ||||
TA = –55°C to 175°C | 12.25 | ||||||
TA = –55°C to 210°C | 12.25 | ||||||
OPEN-LOOP GAIN | |||||||
AOL | Open-loop voltage gain | (V–) + 100 mV < VO < (V+) – 100 mV, RL = 10 kΩ | TA = –55°C to 125°C | 104 | 130 | dB | |
TA = –55°C to 175°C(1) | 93 | 110 | |||||
TA = –55°C to 210°C(2) | 85 | 93 | |||||
FREQUENCY RESPONSE | |||||||
GBW | Gain-bandwidth product | CL = 100 pF | TA = –55°C to 125°C | 350 | kHz | ||
TA = –55°C to 175°C | 350 | ||||||
TA = –55°C to 210°C | 350 | ||||||
SR | Slew rate | G = 1 | TA = –55°C to 125°C | 0.16 | V/μs | ||
TA = –55°C to 175°C | 0.25 | ||||||
TA = –55°C to 210°C | 0.25 | ||||||
OUTPUT | |||||||
Voltage output swing from rail | RL = 10 kΩ | TA = 25°C | 30 | 50 | mV | ||
TA = –55°C to 125°C | 85 | ||||||
TA = –55°C to 175°C(1) | 110 | ||||||
TA = –55°C to 210°C(2) | 150 | ||||||
ISC | Short-circuit current | TA = 25°C | ±5 | mA | |||
Open-loop output impedance(4) | f = 350 kHz, IO = 0 | 2 | kΩ | ||||
POWER SUPPLY | |||||||
VS | Specified voltage range | TA = –55°C to 210°C(2) | 1.8 | 5.5 | V | ||
IQ | Quiescent current per amplifier | IO = 0 | TA = 25°C | 17 | 25 | μA | |
TA = –55°C to 125°C | 30 | ||||||
TA = –55°C to 175°C(1) | 35 | 40 | |||||
TA = –55°C to 210°C(2) | 50 | 80 | |||||
Turnon time | VS = 5 V | TA = 25°C | 100 | μs |
At TA = 25°C, VS = 5 V, and CL = 0 pF (unless otherwise noted).