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TLR342FJ-E2 Datasheet(PDF) 7 Page - Rohm |
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TLR342FJ-E2 Datasheet(HTML) 7 Page - Rohm |
7 / 55 page Datasheet www.rohm.com TSZ02201-0RAR0G200720-1-2 ©2014 ROHM Co., Ltd. All rights reserved. 7/51 03.Feb.2016 Rev.004 TSZ22111・15・001 TLR341G TLR342xxx TLR344xxx Electrical Characteristics – continued ○ TLR342xxx (Unless otherwise specified VDD=+5V, VSS=0V) Parameter Symbol Temperature Range Limit Unit Conditions Min Typ Max Input Offset Voltage (Note 25,26) VIO 25°C - 0.3 4 mV - Full Range - - 4.5 Input Offset Voltage Drift (Note 25,26) ΔVIO/ΔT Full Range - 1.9 - μV/°C - Input Bias Current (Note 25) IB 25°C - 1 200 pA - Input Offset Current (Note 25) IIO 25°C - 1 200 pA - Supply Current (Note 26) IDD 25°C - 150 300 μA - Full Range - - 400 Common-mode Rejection Ratio CMRR 25°C 75 90 - dB VICM=0V to 3.9V Power Supply Rejection Ratio PSRR 25°C 75 95 - dB VDD=1.8V to 5.0V Input Common-mode Voltage Range VICM 25°C 0 - 4.0 V CMRR ≥70 dB Large Signal Voltage Gain Av 25°C 80 110 - dB RL=10kΩ, VRL=2.5V 75 105 - RL=2kΩ, VRL=2.5V Maximum Output Voltage(High) VOH 25°C VDD-0.06 VDD-0.03 - V RL=2kΩ, VRL=2.5V VDD-0.02 VDD-0.01 - RL=10kΩ, VRL=2.5V Maximum Output Voltage(Low) VOL 25°C - 0.04 0.06 V RL=2kΩ, VRL=2.5V - 0.02 0.03 RL=10kΩ, VRL=2.5V Output Source Current (Note 27) ISOURCE 25°C 60 100 - mA VOUT=0V, Short Current Output Sink Current (Note 27) ISINK 25°C 80 120 - mA VOUT=5V, Short Current Slew Rate SR 25°C - 1.2 - V/μs RL=10kΩ, V+IN=2VP-P Gain Bandwidth GBW 25°C - 2.3 - MHz CL=200pF, RL=100kΩ Unity Gain Frequency fT 25°C - 1.3 - MHz CL=200pF, RL=100kΩ Phase Margin θM 25°C - 55 - deg CL=20pF, RL=100kΩ Gain Margin GM 25°C - 7 - dB CL=20pF, RL=100kΩ Input Referred Noise Voltage VN 25°C - 33 - Hz nV/ f=1kHz Total Harmonic Distortion + Noise THD+N 25°C - 0.012 - % V+IN=1VP-P, f=1kHz RL=600Ω, AV=0dB, DIN-AUDIO Channel Separation CS 25°C - 110 - dB AV=40dB, VOUT=1Vrms (Note 25) Absolute value (Note 26) Full Range: TA=-40°C to +85°C (Note 27) Consider the power dissipation of the IC under high temperature environment when selecting the output current value. There may be a case where the output current value is reduced due to the rise in IC temperature caused by the heat generated inside the IC. |
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