LT6402-6 AC ELECTRICAL CHARACTERISTICS TA = 25°C, VCCA = VCCB = VCCC = 5V,VEEA = VEEB = VEEC = 0V, ⎯ E ⎯ N ⎯ A ⎯ B ⎯ L ⎯ E = 0.8V, +INA shorted to +INB (+IN), –INA shorted to –INB (–IN), VOCM = 2.2V, Input common mode voltage = 2.2V, no RLOADunless otherwise noted.SYMBOLPARAMETERCONDITIONSMINTYPMAXUNITS25MHz Signal Second/Third Harmonic Distortion 2VP-P Differential (+OUTFILTERED, –OUTFILTERED) –84 dBc 2VP-P Differential (+OUT, –OUT) –69 dBc Third-Order IMD 2VP-P Differential Composite (+OUTFILTERED, –88 dBc –OUTFILTERED), f1 = 24.5MHz, f2 = 25.5MHz 2VP-P Differential Composite (+OUT, –OUT), –67 dBc RL = 400Ω, f1 = 24.5MHz, f2 = 25.5MHz OIP325M Output Third-Order Intercept Differential (+OUTFILTERED, –OUTFILTERED), 47 dBm f1 = 24.5MHz, f2 = 25.5MHz (Note 5) NF Noise Figure Measured Using DC954A Demo Board 12.6 dB en25M Input Referred Noise Voltage Density 3.9 nV/√Hz 1dB Compression Point RL = 100Ω (Note 5) 17.2 dBm Note 1: Stresses beyond those listed under Absolute Maximum Ratings Note 4: The LT6402C is guaranteed to meet specifi ed performance from may cause permanent damage to the device. Exposure to any Absolute 0°C to 70°C. It is designed, characterized and expected to meet specifi ed Maximum Rating condition for extended periods may affect device performance from –40°C and 85°C but is not tested or QA sampled reliability and lifetime. at these temperatures. The LT6402I is guaranteed to meet specifi ed Note 2: As long as output current and junction temperature are kept below performance from –40°C to 85°C. the Absolute Maximum Ratings, no damage to the part will occur. Note 5: Since the LT6402-6 is a feedback amplifi er with low output Note 3: The LT6402 is guaranteed functional over the operating impedance, a resistive load is not required when driving an ADC. temperature range of –40°C to 85°C. Therefore, typical output power is very small. In order to compare the LT6402-6 with typical gm amplifi ers that require 50Ω output loading, the LT6402-6 output voltage swing driving an ADC is converted to OIP3 and P1dB as if it were driving a 50Ω load. TYPICAL PERFORMANCE CHARACTERISTICSFrequency Response,Frequency Response vs CLOAD,Frequency Response,RLOAD = 400 Ω RLOAD = 400 Ω RLOAD = 100 Ω 15 30 15 12 10 25 9 UNFILTERED OUTPUTS UNFILTERED 20 6 5 3 FILTERED 15 FILTERED OUTPUTS 0 0 10 –3 –6 –5 5 –9 GAIN (dB) GAIN (dB) GAIN (dB) –10 0 –12 –15 VIN = 100mVP-P –5 –15 –18 UNFILTERED: R V LOAD = 400Ω 0pF IN = 100mVP-P –10 –21 FILTERED: R UNFILTERED: R LOAD = 300Ω 1.6pF LOAD = 100Ω –20 (EXTERNAL) + 100Ω –24 –15 5pF FILTERED: RLOAD = 100Ω (INTERNAL, FILTERED OUTPUTS) 10pF –27 (INTERNAL, FILTERED OUTPUTS) –25 –20 –30 1 10 100 1000 1 10 100 1000 1 10 100 1000 FREQUENCY (MHz) FREQUENCY (MHz) FREQUENCY (MHz) 64026 G01 64026 G02 64026 G03 64026fa 5