High Speed, Video Difference Amplifier AD830
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1 High Speed, Video Difference Amplifier AD83 FEATURES Differential Amplification Wide Common-Mode Voltage Range: V, 12 V Differential Voltage Range: 2 V High CMRR: 6 4 MHz Built-In Differential Clipping Level: 2.3 V Fast Dynamic Performance 85 MHz Unity Gain Bandwidth 35 ns Settling Time to.1% 36 V/ s Slew Rate Symmetrical Dynamic Response Excellent Video Specifications Differential Gain Error:.6% Differential Phase Error:.8 15 MHz (.1 db) Bandwidth Flexible Operation High Output Drive of 5 ma Min Specified with Both 5 V and 15 V Supplies Low Distortion: THD = 72 4 MHz Excellent DC Performance: 3 mv Max Input Offset Voltage APPLICATIONS Differential Line Receiver High Speed Level Shifter High Speed In-Amp Differential to Single-Ended Conversion Resistorless Summation and Subtraction High Speed A/D Driver GENERAL DESCRIPTION The AD83 is a wideband, differencing amplifier designed for use at video frequencies but also useful in many other applications. It accurately amplifies a fully differential signal at the CONNECTION DIAGRAM 8-Lead Plastic PDIP (N), CERDIP (Q) and SOIC (RN) Packages X1 X2 Y1 Y G M G M AD83 C A = 1 NC = NO CONNECT input and produces an output voltage referred to a user-chosen level. The undesired common-mode signal is rejected, even at high frequencies. High impedance inputs ease interfacing to finite source impedances and thus preserve the excellent common-mode rejection. In many respects, it offers significant improvements over discrete difference amplifier approaches, in particular in high frequency common-mode rejection. The wide common-mode and differential voltage range of the AD83 make it particularly useful and flexible in level shifting applications, but at lower power dissipation than discrete solutions. Low distortion is preserved over the many possible differential and common-mode voltages at the input and output. Good gain flatness and excellent differential gain of.6% and phase of.8 make the AD83 suitable for many video system applications. Furthermore, the AD83 is suited for generalpurpose signal processing from dc to 1 MHz V P OUT NC V N V S = 5V R L = C L = 33pF CMRR db V S = 5V V S = 15V GAIN db C L = 4.7pF C L = 15pF 3 1k 1k 1k 1M 1M FREQUENCY Hz Figure 1. Common-Mode Rejection Ratio vs. Frequency 21 1k 1k 1M 1M 1M 1G FREQUENCY Hz Figure 2. Closed-Loop Gain vs. Frequency, Gain = +1 Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Trademarks and registered trademarks are the property of their respective companies. 23 Analog Devices, Inc. All rights reserved.
2 AD83 SPECIFICATIONS (V S = 15 V, R LOAD = 15, C LOAD = 5 pf, T A = 25 C, unless otherwise noted.) AD83J/AD83A AD83S 1 Parameter Conditions Min Typ Max Min Typ Max Unit DYNAMIC CHARACTERISTICS 3 db Small Signal Bandwidth Gain = +1, V OUT = 1 mv rms MHz.1 db Gain Flatness Frequency Gain = +1, V OUT = 1 mv rms MHz Differential Gain Error V to.7 V, Frequency = 4.5 MHz % Differential Phase Error V to.7 V, Frequency = 4.5 MHz Degrees Slew Rate 2 V Step, R L = 5 Ω V/µs 4 V Step, R L = 5 Ω V/µs 3 db Large Signal Bandwidth Gain = +1, V OUT = 1 V rms MHz Settling Time, Gain = +1 V OUT = 2 V Step, to.1% ns V OUT = 4 V Step, to.1% ns Harmonic Distortion 2 V p-p, Frequency = 1 MHz dbc 2 V p-p, Frequency = 4 MHz dbc Input Voltage Noise Frequency = 1 khz nv/ Hz Input Current Noise pa/ Hz DC PERFORMANCE Offset Voltage Gain = +1 ± 1.5 ± 3 ± 1.5 ± 3 mv Gain = +1, T T ± 5 ± 7 mv Open-Loop Gain DC db Gain Error R L = 1 kω, G = ± 1 ±.1 ±.6 ±.1 ±.6 % Peak Nonlinearity, R L = 1 kω, 1 V X +1 V % FS Gain = V X +1.5 V % FS 2 V X +2 V % FS Input Bias Current V IN = V, 25 C to T µa V IN = V, T µa Input Offset Current V IN = V, T T µa INPUT CHARACTERISTICS Differential Voltage Range V CM = ± 2. ± 2. V Differential Clipping Level 2 Pins 1 and 2 Inputs Only ± 2.1 ± 2.3 ± 2.1 ± 2.3 V Common-Mode Voltage Range V DM = ± 1 V V CMRR DC, Pins 1, 2, ± 1 V db DC, Pins 1, 2, ± 1 V, T T db Frequency = 4 MHz db Input Resistance kω Input Capacitance 2 2 pf OUTPUT CHARACTERISTICS Output Voltage Swing R L 1 kω ± , 13.8 ± , 13.8 V R L 1 kω, ± 16.5 V S ± , 14.7 ± , 14.7 V Short-Circuit Current Short to Ground ± 8 ± 8 ma Output Current R L = 15 Ω ±5 ± 5 ma POWER SUPPLIES Operating Range ± 4 ± 16.5 ± 4 ± 16.5 V Quiescent Current T T ma + PSRR (to V P ) DC, G = db PSRR (to V N ) DC, G = db PSRR DC, G = +1, ± 5 to ± 15 V S db PSRR DC, G = +1, ± 5 to ± 15 V S, T T db 1 See Standard Military Drawing MPA for specifications. 2 Clipping level function on X channel only. Specifications subject to change without notice. 2
3 SPECIFICATIONS (V S = 5 V, R LOAD = 15, C LOAD = 5 pf, T A = +25 C, unless otherwise noted.) AD83 AD83J/AD83A AD83S 1 Parameter Conditions Min Typ Max Min Typ Max Unit DYNAMIC CHARACTERISTICS 3 db Small Signal Bandwidth Gain = +1, V OUT = 1 mv rms MHz.1 db Gain Flatness Frequency Gain = +1, V OUT = 1 mv rms MHz Differential Gain Error V to.7 V, Frequency = 4.5 MHz, Gain = % Differential Phase Error V to.7 V, Frequency = 4.5 MHz, Gain = Degrees Slew Rate, Gain = +1 2 V Step, R L = 5 Ω V/µs 4 V Step, R L = 5 Ω V/µs 3 db Large Signal Bandwidth Gain = +1, V OUT = 1 V rms MHz Settling Time V OUT = 2 V Step, to.1% ns V OUT = 4 V Step, to.1% ns Harmonic Distortion 2 V p-p, Frequency = 1 MHz dbc 2 V p-p, Frequency = 4 MHz dbc Input Voltage Noise Frequency = 1 khz nv/ Hz Input Current Noise pa/ Hz DC PERFORMANCE Offset Voltage Gain = +1 ± 1.5 ± 3 ± 1.5 ± 3 mv Gain = +1, T T ± 4 ± 5 mv Open-Loop Gain DC db Unity Gain Accuracy R L = 1 kω ±.1 ±.6 ±.1 ±.6 % Peak Nonlinearity, R L = 1 kω 1 V X +1 V % FS 1.5 V X +1.5 V % FS 2 V X +2 V % FS Input Bias Current V IN = V, 25 C to T µa V IN = V, T µa Input Offset Current V IN = V, T T µa INPUT CHARACTERISTICS Differential Voltage Range V CM = ± 2. ± 2. V Differential Clipping Level 2 Pins 1 and 2 Inputs Only ± 2. ± 2.2 ± 2. ± 2.2 V Common-Mode Voltage Range V DM = ± 1 V V CMRR DC, Pins 1, 2, +4 V to 2 V db DC, Pins 1, 2, +4 V to 2 V, T T db Frequency = 4 MHz db Input Resistance kω Input Capacitance 2 2 pf OUTPUT CHARACTERISTICS Output Voltage Swing R L 15 Ω ±3.2 ± 3.5 ± 3.2 ± 3.5 V R L 15 Ω, ± 4 V S ± , +2.7 ± , +2.7 V Short-Circuit Current Short to Ground 55, +7 55, +7 ma Output Current ± 4 ± 4 ma POWER SUPPLIES Operating Range ± 4 ± 16.5 ± 4 ± 16.5 V Quiescent Current T T ma + PSRR (to V P ) DC, G = +1, Offset db PSRR (to V N ) DC, G = +1, Offset db PSRR (Dual-Supply) DC, G = +1, ± 5 to ± 15 V S db PSRR (Dual-Supply) DC, G = +1, ± 5 to ± 15 V S, T T db 1 See Standard Military Drawing MPA for specifications. 2 Clipping level function on X channel only. Specifications subject to change without notice. 3
4 AD83 ABSOLUTE IMUM RATINGS 1 Supply Voltage ±18 V Internal Power Dissipation Observe Derating Curves Output Short-Circuit Duration..... Observe Derating Curves Common-Mode Input Voltage ±V S Differential Input Voltage ±V S Storage Temperature Range (Q) C to +15 C Storage Temperature Range (N) C to +125 C Storage Temperature Range (RN) C to +125 C Operating Temperature Range AD83J C to +7 C AD83A C to +85 C AD83S C to +125 C Lead Temperature Range (Soldering 6 sec) C 1 Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. 2 8-Lead PDIP Package: JA = 9 C/W. 8-Lead SOIC Package: JA = 155 C/W. 8-Lead CERDIP Package: JA = 11 C/W. IMUM POWER DISSIPATION The maximum power that can be safely dissipated by the AD83 is limited by the associated rise in junction temperature. For the plastic packages, the maximum safe junction temperature is 145 C. For the CERDIP, the maximum junction temperature is 175 C. If these maximums are exceeded momentarily, proper circuit operation will be restored as soon as the die temperature is reduced. Leaving the AD83 in the overheated condition for an extended period can result in permanent damage to the device. To ensure proper operation, it is important to observe the recommended derating curves. While the AD83 output is internally short-circuit protected, this may not be sufficient to guarantee that the maximum junction temperature is not exceeded under all conditions. If the output is shorted to a supply rail for an extended period, then the amplifier may be permanently destroyed. ORDERING GUIDE Model Temperature Range Package Description Package Option AD83AN 4 C to +85 C 8-Lead PDIP N-8 AD83JR C to +7 C 8-Lead SOIC RN MPA* 55 C to +125 C 8-Lead CERDIP Q-8 AD83AR 4 C to +85 C 8-Lead SOIC RN-8 AD83AR-REEL 4 C to +85 C 8-Lead SOIC RN-8 AD83AR-REEL7 4 C to +85 C 8-Lead SOIC RN-8 AD83JR-REEL C to 7 C 8-Lead SOIC RN-8 AD83JR-REEL7 C to 7 C 8-Lead SOIC RN-8 *See Standard Military Drawing MPA for specifications. TOTAL POWER DISSIPATION W LEAD SOIC 3 8-LEAD PDIP 5 AMBIENT TEMPERATURE C T J = 145 C Figure 3. Maximum Power Dissipation vs. Temperature, PDIP and SOIC Packages 7 9 TOTAL POWER DISSIPATION W LEAD CERDIP AMBIENT TEMPERATURE C T J = 175 C 1 12 Figure 4. Maximum Power Dissipation vs. Temperature, CERDIP Package 14 CAUTION ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4 V readily accumulate on the human body and test equipment and can discharge without detection. Although the AD83 features proprietary ESD protection circuitry, permanent damage may occur on devices subjected to high energy electrostatic discharges. Therefore, proper ESD precautions are recommended to avoid performance degradation or loss of functionality. 4
5 AD83 OUTLINE DIMENSIONS 8-Lead Plastic Dual-in-Line Package [PDIP] (N-8) Dimensions shown in inches and (millimeters).375 (9.53).365 (9.27).355 (9.2).18 (4.57) (7.49).285 (7.24) (6.98).1 (2.54) BSC.15 (.38).15 (3.81).13 (3.3).11 (2.79).6 (1.52).22 (.56).5 (1.27).18 (.46).45 (1.14).14 (.36).325 (8.26).31 (7.87).3 (7.62).15 (3.81).135 (3.43).12 (3.5).15 (.38).1 (.25).8 (.2) COMPLIANT TO JEDEC STANDARDS MO-95AA CONTROLLING DIMENSIONS ARE IN INCHES; MILLIMETER DIMENSIONS (IN PARENTHESES) ARE ROUNDED-OFF INCH EQUIVALENTS FOR 8-Lead Standard Small Outline Package [SOIC] (R-8) Dimensions shown in millimeters and (inches) 8-Lead Ceramic DIP - Glass Hermetic Seal [CERDIP] (Q-8) Dimensions shown in inches and (millimeters) 5. (.1968) 4.8 (.189).5 (.13).55 (1.4) 4. (.1574) 3.8 (.1497) (.244) 5.8 (.2284) PIN (7.87).22 (5.59).25 (.98).1 (.4) COPLANARITY (.5) BSC 1.75 (.688) 1.35 (.532).51 (.21).33 (.13).25 (.98).19 (.75) 8.5 (.196) (.99) 1.27 (.5).41 (.16) COMPLIANT TO JEDEC STANDARDS MS-12AA CONTROLLING DIMENSIONS ARE IN MILLIMETERS; INCH DIMENSIONS (IN PARENTHESES) ARE ROUNDED-OFF MILLIMETER EQUIVALENTS FOR.2 (5.8).2 (5.8).125 (3.18).23 (.58).14 (.36).1 (2.54) BSC.45 (1.29).6 (1.52).15 (.38).7 (1.78).3 (.76).15 (3.81) (8.13).29 (7.37).15 (.38).8 (.2) CONTROLLING DIMENSIONS ARE IN INCHES; MILLIMETERS DIMENSIONS (IN PARENTHESES) ARE ROUNDED-OFF INCH EQUIVALENTS FOR 15
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