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OPA699IDG4 Datasheet(PDF) 4 Page - Texas Instruments |
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OPA699IDG4 Datasheet(HTML) 4 Page - Texas Instruments |
4 / 31 page OPA699 4 SBOS261D www.ti.com OPA699ID 0 °C to –40 °C to MIN/ TEST PARAMETER CONDITIONS +25 °C +25 °C(1) 70 °C(2) +85 °C(2) UNITS MAX LEVEL(3) OUTPUT VOLTAGE LIMITERS Pins 5 and 8 Output Voltage Limited Range ±3.8 typ C Default Limit Voltage, Upper Limiter Pins Open +3.5 +3.3 +3.2 +3.1 V min A Lower –3.5 –3.3 –3.2 –3.1 V max A Minimum Limiter Separation (VH – VL) 400 400 400 400 mV min B Maximum Limit Voltage — ±4.3 ±4.3 ±4.3 V max B Limiter Input Bias Current Magnitude(6) VO = 0 Maximum 50 60 62 64 µAmax A Minimum 50 40 38 36 µAmin A Average Drift — 30 35 nA/ °Cmax B Limiter Input Impedance 3.4 || 1 M Ω || pF typ C Limiter Feedthrough(7) f = 5MHz –60 dB typ C DC Performance in Limit Mode VIN = ±0.7V Limiter Offset Voltage (VO – VH) or (VO – VL) ±10 ±30 ±35 ±40 mV max A Op Amp Input Bias Current Shift(4) Linear ↔ Limited Operation 3 µA typ C AC Performance in Limit Mode Limiter Small-Signal Bandwidth VIN = ±0.7V, VO < 0.02VPP 600 MHz typ C Limiter Slew Rate(8) 125 V/ µs typ C Limited Step Response Overshoot VIN = 0V to ±0.7V Step 250 mV typ C Recovery Time VIN = ±0.7V to 0V Step 1 1.9 2 2.1 ns max B Linearity Guardband(9) f = 5MHz, VO = 2VPP 30 mV typ C THERMAL CHARACTERISTICS Temperature Range Specification, I –40 to +85 °C typ C Thermal Resistance Junction-to-Ambient DSO-8 125 °C/W typ C NOTES: (1) Junction temperature = ambient temperature for low temperature limit and +25 °C Test Level A specifications. Junction temperature = ambient temperature +23 °C at high temperature limit Test Level A specifications. (2) Junction temperature = ambient at low temperature limit; junction temperature = ambient +1 °C at high temperature limit for over-temperature tested specifications. (3) Test Levels: (A) 100% tested at +25 °C. Over temperature limits by characterization and simulation. (B) Limits set by characterization and simulation. (C) Typical value for information only. (4) Current is considered positive out-of-node. (5) CMIR tested as < 3dB degradation from minimum CMRR at specified limits. (6) IVH (VH bias current) is positive, and IVL (VL bias current) is negative, under these conditions. See Note 3 and Figures 1 and 12. (7) Limiter feedthrough is the ratio of the output magnitude to the sinewave added to VH (or VL) when VIN = 0. (8) VH slew rate conditions are: VIN = +0.7V, G = +6, VL = –2V, VH = step between 2V and 0V. VL slew rate conditions are similar. (9) Linearity Guardband is defined for an output sinusoid (f = 1MHz, VO = 2VPP) centered between the limiter levels (VH and VL). It is the difference between the limiter level and the peak output voltage where SFDR decreases by 3dB (see Figure 8). ELECTRICAL CHARACTERISTICS: VS = ±5V (Cont.) Boldface limits are tested at +25 °C. G = +6, RF = 750Ω, RL = 500Ω, VH = –VL = 2V, (Figure 1 for AC performance only), unless otherwise noted. TYP MIN/MAX OVER TEMPERATURE |
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