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FEATURES

APPLICATIONS

DESCRIPTION

Dual/Quad 1.5MHz, Rail-to-Rail, CMOS Amplifi ers The L TC®6084/L TC6085 are dual/quad, low cost, low offset, rail-to-rail input/output, unity-gain stable CMOS operational amplifi ers that feature 1pA of input bias current. A 1.5MHz gain bandwidth, and 0.5V/μs slew rate, along with the wide supply range and a low 0.75mV offset, make the L TC6084/L TC6085 useful in an extensive variety of ap- plications from data acquisition to medical equipment and consumer electronics. The 110μA supply current and the shutdown mode are ideal for signal processing applications which demand performance with minimal power . The L TC6084/L TC6085 have an output stage which swings within 5mV of either supply rail to maximize signal dynamic range in low supply applications. The input common mode range includes the entire supply voltage. These op amps are specifi ed on power supply voltages of 2.5V and 5V from –40°C to 125°C. The dual amplifi er L TC6084 is available in 8-lead MSOP and 10-lead DFN packages. The quad amplifi er L TC6085 is available in 16-lead SSOP and DFN packages. Shock Sensor Amplifi er n Low Offset Voltage: 750μV Maximum n Low Offset Drift: 5μV/°C Maximum n Low Input Bias Current: 1pA (Typical at 25 °C) 40pA (≤85 °C) n Rail-to-Rail Inputs and Outputs n 2.5V to 5.5V Operation Voltage n Gain Bandwidth Product: 1.5MHz n CMRR: 70dB Minimum n PSRR: 94dB Minimum n Supply Current: 110μA per Amplifi er n Shutdown Current: 1.1μA per Amplifi er n Available in 8-Lead MSOP and 10-Lead DFN n Portable Test Equipment n Medical Equipment n Consumer Electronics n Data Acquisition L, L T , L TC and L TM are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners. Input Bias Current vs Common Mode Voltage COMMON MODE VOL TAGE (V) INPUT BIAS CURRENT (pA)

60845 TA01b

0.1 0.01 VS = 5V TA = 125°C TA = 85°CTA = 85°C TA = 25°C

60845 TA01

0.22μF 470pF 20M 20M 200k 100k 2k * 100k *SHOCK SENSOR MURATA ERIE PKGS-OOMX1 www.murata.com L TC6084 VOUT = 120mV/g 7Hz TO 5kHz

– to V+ Operating Temperature Range (Note 3) (Note 1) OUTA –INA +INA V V OUTB –INB +INB TOP VIEW MS8 PACKAGE 8-LEAD PLASTIC MSOP A B TJMAX = 150°C, θJA = 200°C/W TOP VIEW DD PACKAGE 10-LEAD (3mm × 3mm) PLASTIC DFN 1 V+ OUTB –INB +INB SHDNB OUTA –INA +INA SHDNA A B TJMAX = 150°C, θJA = 43°C/W EXPOSED PAD (PIN 11) IS V–, MUST BE SOLDERED TO PCB GN PACKAGE 16-LEAD PLASTIC SSOP NARROW TOP VIEW OUTA –INA +INA V +INB –INB OUTB NC OUTD –IND +IND V +INC –INC OUTC NC A BC D TJMAX = 150°C, θJA = 110°C/W OUTD –IND +IND V +INC –INC OUTC NC OUTA –INA +INA V +INB –INB OUTB NC TOP VIEW DHC PACKAGE 16-LEAD (5mm × 3mm) PLASTIC DFN A BC D TJMAX = 150°C, θJA = 43°C/W EXPOSED PAD (PIN 17) IS V–, MUST BE SOLDERED TO PCB PIN CONFIGURATION LEAD FREE FINISH TAPE AND REEL PART MARKING * PACKAGE DESCRIPTION SPECIFIED TEMPERATURE RANGE L TC6084CMS8#PBF L TC6084CMS8#TRPBF L TDNG 8-Lead Plastic MSOP 0°C to 70°C L TC6084HMS8#PBF L TC6084HMS8#TRPBF L TDNG 8-Lead Plastic MSOP –40°C to 125°C L TC6084CDD#PBF L TC6084CDD#TRPBF LDNH 10-Lead (3mm × 3mm) Plastic DFN 0°C to 70°C L TC6084HDD#PBF L TC6084HDD#TRPBF LDNH 10-Lead (3mm × 3mm) Plastic DFN –40°C to 125°C Specifi ed Temperature Range (Note 4) Lead Temperature (Soldering, 10 sec) ORDER INFORMATION

The l denotes the specifi cations which apply over the full operating temperature range, otherwise specifi cations are at TA = 25°C. Test conditions are V+ = 2.5V , V– = 0V , VCM = 0.5V unless otherwise noted. ORDER INFORMATION C SUFFIX H SUFFIX SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS VOS Offset Voltage (Note 5) L TC6084MS8, L TC6085GN L TC6084DD, L TC6085DHC L TC6084MS8, L TC6085GN L TC6084DD, L TC6085DHC l l 300 300 750 1100 900 1350 300 300 750 1100 1100 1600 μV μV μV μV ΔV OS/ΔT Input Offset Voltage Drift (Note 6) l 25 25 μV/°C IB Input Bias Current (Notes 5, 7) Guaranteed by 5V Test l 750 pA pA I OS Input Offset Current (Notes 5, 7) Guaranteed by 5V Test l 0.5 0.5 150 pA pA e n Input Noise Voltage Density f = 1kHz f = 10kHz nV/√Hz nV/√Hz Input Noise Voltage 0.1Hz to 10Hz 3 3 μV P-P in Input Noise Current Density (Note 8) 0.56 0.56 fA/√Hz Input Common Mode Range l V– V+ V– V+ V CIN Input Capacitance Differential Mode Common Mode f = 100kHz pF pF CMRR Common Mode Rejection Ratio 0 ≤ V CM ≤ 2.5V l 80 64 80 dB dB PSRR Power Supply Rejection Ratio V S = 2.5V to 5.5V l 115 94 115 dB dB V OUT Output Voltage, High, (Referred to V No Load I SOURCE = 1mA ISOURCE = 5mA l l l 0.5 220 460 0.5 220 100 mV mV mV Output Voltage, Low, (Referred to V No Load I SINK = 1mA ISINK = 5mA l l l 0.5 200 460 0.5 200 100 mV mV mV A VOL Large-Signal Voltage Gain R LOAD = 10k, 0.4V ≤ VOUT ≤ 2.1V l 400 200 2000 400 150

2000 V/mV

ELECTRICAL CHARACTERISTICS

LEAD FREE FINISH TAPE AND REEL PART MARKING * PACKAGE DESCRIPTION SPECIFIED TEMPERATURE RANGE L TC6085CGN#PBF L TC6085CGN#TRPBF 6085 16-Lead Plastic SSOP 0°C to 70°C L TC6085HGN#PBF L TC6085HGN#TRPBF 6085 16-Lead Plastic SSOP –40°C to 125°C L TC6085CDHC#PBF L TC6085CDHC#TRPBF 6085 16-Lead (5mm × 3mm) Plastic DFN 0°C to 70°C L TC6085HDHC#PBF L TC6085HDHC#TRPBF 6085 16-Lead (5mm × 3mm) Plastic DFN –40°C to 125°C Consult L TC Marketing for parts specifi ed with wider operating temperature ranges. *The temperature grade is identifi ed by a label on the shipping container . Consult L TC Marketing for information on non-standard lead based fi nish parts. For more information on lead free part marking, go to: http://www.linear .com/leadfree/ For more information on tape and reel specifi cations, go to: http://www.linear .com/tapeandreel/

The l denotes the specifi cations which apply over the full operating temperature range, otherwise specifi cations are at TA = 25°C. Test conditions are V+ = 2.5V , V– = 0V , VCM = 0.5V unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS ISC Output Short-Circuit Current Source and Sink l 7.7 12.5 7.7 4.5 12.5 mA mA SR Slew Rate A V = 1 0.5 0.5 V/μs GBW Gain Bandwidth Product (fTEST = 10kHz) RLOAD = 50k, VCM = 1.25V l 0.9 0.7 1.5 0.9 0.6

1.5 MHz

Φ0 Phase Margin R L = 10k, CL = 150pF , AV = 1 45 45 Deg tS Settling Time 0.1% V STEP = 1V , AV = 1 6 6 μs IS Supply Current (Per Amplifi er) No Load l 110 130 140 110 130 145 μA μA Shutdown Current (Per Amplifi er) VS Supply Voltage Range Guaranteed by the PSRR Test l 2.5 5.5 2.5 5.5 V Channel Separation f S = 10kHz –120 –120 dB Shutdown Logic SHDNx High SHDNx Low 1.8 0.5 1.8 0.5 V V tON Turn On Time V SHDNx = 0.5V to 1.8V 7 7 μs tOFF Turn Off Time V SHDNx = 1.8V to 0.5V 1 1 μs Leakage of SHDN Pin V SHDNx = 0V l 0.2 0.3 0.2 0.5 μA The l denotes the specifi cations which apply over the full operating temperature range, otherwise specifi cations are at TA = 25°C. Test conditions are V+ = 5V , V– = 0V , VCM = 0.5V unless otherwise noted. C SUFFIX H SUFFIX SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS VOS Offset Voltage (Note 5) L TC6084MS8, L TC6085GN L TC6084DD, L TC6085DHC L TC6084MS8, L TC6085GN L TC6084DD, L TC6085DHC l l 300 300 750 1100 900 1350 300 300 750 1100 1100 1600 μV μV μV μV ΔV OS/ΔT Input Offset Voltage Drift (Note 6) l 25 25 μV/°C IB Input Bias Current (Notes 5, 7) l 750 pA pA IOS Input Offset Current (Notes 5, 7) l 0.5 0.5 150 pA pA en Input Noise Voltage Density f = 1kHz f = 10kHz nV/√Hz nV/√Hz Input Noise Voltage 0.1Hz to 10Hz 3 3 μV P-P in Input Noise Current Density (Note 8) 0.56 0.56 fA/√ Hz Input Common Mode Range l V– V+ V– V+ V CIN Input Capacitance Differential Mode Common Mode f = 100kHz pF pF

The l denotes the specifi cations which apply over the full operating temperature range, otherwise specifi cations are at TA = 25°C. Test conditions are V+ = 5V , V– = 0V , VCM = 0.5V unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS CMRR Common Mode Rejection Ratio 0 ≤ VCM ≤ 5V l 84 70 84 dB dB PSRR Power Supply Rejection Ratio VS = 2.5V to 5.5V l 115 94 115 dB dB VOUT Output Voltage, High, (Referred to V+) No Load ISOURCE = 1mA ISOURCE = 5mA l l l 0.5 220 460 0.5 220 100 mV mV mV Output Voltage, Low, (Referred to V No Load ISINK = 1mA ISINK = 5mA l l l 0.5 200 460 0.5 200 100 mV mV mV A VOL Large-Signal Voltage Gain R LOAD = 10k, 0.5V ≤ VOUT ≤ 4.5V l 1000 400 5000 1000 300

5000 V/mV

l 7.7 12.5 7.7 4.5 12.5 mA mA SR Slew Rate A V = 1 0.5 0.5 V/μs GBW Gain Bandwidth Product (fTEST = 10kHz) RLOAD = 50k, VCM = 2.5V l 0.9 0.7 1.5 0.9 0.6 Φ0 Phase Margin R L = 10k, CL = 150pF , AV = 1 45 45 Deg tS Settling Time 0.1% V STEP = 1V , AV = 1 5 5 μs IS Supply Current (Per Amplifi er) No Load l 110 130 140 110 130 145 μA μA Shutdown Current (Per Amplifi er) Shutdown, VSHDNx ≤ 1.2V l 1.1 1.8 1.1 2 μA VS Supply Voltage Range Guaranteed by the PSRR Test l 2.5 5.5 2.5 5.5 V Channel Separation f S = 10kHz –120 –120 dB Shutdown Logic SHDNx High SHDNx Low 3.5 1.2 3.5 1.2 V V tON Turn On Time V SHDNx = 1.2V to 3.5V 7 7 μs tOFF Turn Off Time V SHDNx = 3.5V to 1.2V 1 1 μs Leakage of SHDN Pin V SHDNx = 0V l 0.5 0.9 0.5 1.2 μA Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: A heat sink may be required to keep the junction temperature below the absolute maximum. This depends on the power supply voltage and the total output current. Note 3: The L TC6084C/L TC6085C are guaranteed functional over the operating temperature range of –40°C to 85°C. The L TC6084H/L TC6085H are guaranteed functional over the operating temperature range of –40°C to 125°C. Note 4: The L TC6084C/L TC6085C are guaranteed to meet specifi ed performance from 0°C to 70°C. The L TC6084C/L TC6085C are designed, characterized and expected to meet specifi ed performance from –40°C to 85°C but are not tested or QA sampled at these temperatures. The L TC6084H/L TC6085H are guaranteed to meet specifi ed performance from –40°C to 125°C. Note 5: ESD (Electrostatic Discharge) sensitive device. ESD protection devices are used extensively internal to the L TC6084/L TC6085; however , high electrostatic discharge can damage or degrade the device. Use proper ESD handling precautions. Note 6: This parameter is not 100% tested. Note 7: This specifi cation is limited by high speed automated test capability. See Typical Performance Characteristic curves for actual performance. Note 8: Current noise is calculated from i n = √2qIB, where q = 1.6 • 10–19 coulombs.

TYPICAL PERFORMANCE CHARACTERISTICS VOS Distribution V OS vs VCM VOS Drift Distribution Input Bias vs Temperature Input Bias Current vs Common Mode Voltage Input Noise Voltage vs Frequency 0.1Hz to 10Hz Output Voltage Noise Input Noise Current vs Frequency Output Saturation Voltage vs Load Current (Output High) VOS (mV) PERCENTAGE OF UNITS (%) –0.4 0.4–0.8 0 0.8

60845 G01

1–0.6 0.2 –0.2 0.6 L TC6084 MS8 VS = 5V VCM = 0.5V TA = 25°C

100 UNITS

VCM (V) VOS (mV) 1.0 0.8 0.4 0.0 –0.4 –0.8 0.6 0.2 –0.2 –0.6 –1.0

60845 G02

VS = 5V TA = 25°C REPRESENTATIVE PARTS DISTRIBUTION (μV/°C) PERCENT OF UNITS (%)

60845 G03

4.502 13 4 L TC6084 MS8 VS = 5V VCM = 2.5V TA = –40°C TO 125°C

78 UNITS

TEMPERATURE (°C) INPUT BIAS CURRENT (pA)

60845 G04

VS = 5V VCM = 2.5V COMMON MODE VOL TAGE (V) INPUT BIAS CURRENT (pA)

60845 G05

0.1 0.01 VS = 5V TA = 125°C TA = 85°CTA = 85°C TA = 25°C FREQUENCY (Hz) INPUT NOISE VOL TAGE (nV/√Hz)

60845 G06

VS = 5V VCM = 2.5V TA = 25°C TIME (1s/DIV) INPUT NOISE VOL TAGE (2μV/DIV)

60845 G07

VS = 5V VCM = 2.5V FREQUENCY (Hz) NOISE CURRENT (fA/√Hz)

60845 G08

LOAD CURRENT (mA) OUTPUT HIGH SATURATION VOL TAGE (V)

60845 G09

5.0 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 0.5 0.0 0.1 10 100 1 VS = 5V VCM = 2.5V SOURCE SINK TA = –55°C TA = 25°C TA = 125°C

TYPICAL PERFORMANCE CHARACTERISTICS Supply Current vs Supply Voltage Supply Current vs Temperature Open-Loop Gain vs Frequency CMRR vs Frequency Output Impedance vs Frequency Disabled Output Impedance vs Frequency TOTAL SUPPL Y VOL TAGE (V) SUPPL Y CURRENT (μA) 140 100 120

60845 G10

VCM = 0.5V TA = 25°C TEMPERATURE (°C) –55 SUPPL Y CURRENT (μA) 140 120 100 130 110 –10 50–40 20 110

60845 G11

125–25 35 56 5 8 0 9 5 PER AMPLIFIER VCM = 0.5V VS = 5V VS = 2.5V FREQUENCY (Hz) GAIN (dB) PHASE (DEG)

60845 G12

–20 –10 –30 –40 100 –20 –40 1k 1M 10M 100k10k CL = 5pF RL = 10k VCM = VS/2 TA = 25°C PHASE GAIN VS = 5V VS = 2.5V FREQUENCY (Hz) CMRR (dB)

60845 G13

–10 1k 1M 10M 100k10k VS = 5V VCM = 2.5V RL = 1k TA = 25°C PSRR vs Frequency FREQUENCY (Hz) PSRR (dB)

60845 G14

–10 100 1k 1M 10M 100k10k VS = 5V VCM = 2.5V TA = 25°C FREQUENCY (Hz) OUTPUT IMPEDANCE (Ω)

60845 G15

0.1 0.01 0.001 100 1k 1M 10M 100M 100k10k VS = 5V VCM = 2.5V TA = 25°C AV = 10 AV = 1 AV = 2 FREQUENCY (Hz) OUTPUT IMPEDANCE (kΩ)

60845 G16

0.1 100 1k 1M 10M 100k10k VS = 5V VCM = 1V AV = 1 TA = 25°C Capacitive Load Handling CAPACITIVE LOAD (pF) OVERSHOOT (%)

60845 G17

VS = 5V VCM = 2.5V AV = 1 RS = 50Ω+ – RS CL RS = 10Ω

TYPICAL PERFORMANCE CHARACTERISTICS Capacitive Load Handling Channel Separation vs Frequency Total Harmonic Distortion and Noise vs Frequency Total Harmonic Distortion and Noise vs Frequency Total Harmonic Distortion and Noise vs Output Voltage Total Harmonic Distortion and Noise vs Load Resistance CAPACITIVE LOAD (pF) OVERSHOOT (%)

60845 G18

VS = 5V VCM = 2.5V AV = –1 RS = 10Ω RS = 50Ω – RS CL FREQUENCY (MHz) CHANNEL SEPARATION (dB)

60845 G19

–90 –105 –100 –130 –125 –120 –115 –110 –95 –135 0.001 1 10 0.10.01 VS = 5V VCM = 2.5V TA = 25°C FREQUENCY (kHz) THD AND NOISE (%)

60845 G20

0.1 0.01 0.001 0.01 10 100 10.1 VS = 3V VCM = 1.5V RL = 10k AV = 2, VIN = 1VP-P AV = –2, VIN = 1VP-P AV = 1, VIN = 1VP-P AV = 1, VIN = 2VP-P FREQUENCY (kHz) THD AND NOISE (%)

60845 G21

0.1 0.01 0.001 0.0001 0.01 10 100 10.1 VS = 5V VCM = 2.5V RL = 10k AV = 2, VIN = 1VP-P AV = –2, VIN = 1VP-P AV = 1, VIN = 1VP-PAV = 1, VIN = 2VP-P OUTPUT VOL TAGE (VP-P) THD AND NOISE (%)

60845 G22

0.1 0.01 0.001 0.0001 RL = 10k VCM = VS/2 AV = 1 VS = 3V AT 20kHz VS = 3V AT 1kHz VS = 5V AT 20kHz VS = 5V AT 1kHz LOAD RESISTANCE TO GROUND (kΩ) THD AND NOISE (%)

60845 G23

0.1 0.01 0.001 0.0001 0.1 10 100 1 AV = 1 VCM = VS/2 AT 1kHz VS = 3V , VIN = 1VP-P VS = 5V , VIN = 2VP-P Small Signal Response Small Signal Response Large Signal Response 2μs/DIV

60845 G24VS = 5V

AV = 1 RL = ∞ 100mV/DIV 2μs/DIV

60845 G25VS = 5V

AV = 1 RL = ∞ CL = 220pF 100mV/DIV 20μs/DIV

60845 G26VS = 5V

AV = 1 RL = ∞ 1V/DIV

TYPICAL PERFORMANCE CHARACTERISTICS OUT : Amplifi er Output. –IN: Inverting Input. +IN: Noninverting Input. V+: Positive Supply. V–: Negative Supply. SHDNA: Shutdown Pin of Amplifi er A, active low and only available with the L TC6084DD. An internal current source pulls the pin to V + when fl oating. SHDNB: Shutdown Pin of Amplifi er B, active low and only available with the L TC6084DD. An internal current source pulls the pin to V + when fl oating. NC: Not Internally Connected. Exposed Pad: Connected to V–. Large Signal Response Large Signal Response Large Signal Response 20μs/DIV

60845 G27VS = 5V

AV = –1 RL = 1k 1V/DIV 20μs/DIV

60845 G28VS = 5V

AV = 1 RL = ∞ 1V/DIV 20μs/DIV

60845 G29VS = 5V

AV = –1 RL = 1k 1V/DIV PIN FUNCTIONS

1.3 and 0.9V below the positive supply. a guard ring around the inputs. shows the inverting gain confi guration. loads, in other words when no DC load current is present. current is typically 12.5mA. Figure 1. Sample Layout. Unity-Gain Confi guration. Using Guard Figure 2. Sample Layout. Inverting Gain Confi guration. Using

60845 F01

60845 F02

Figure 3. Inverting Amplifi er with Muxed Output

60845 F03

ance, and each amplifi er draws less than 1μA current. applications as shown in Figure 3. supply, unlimited current will fl ow through these diodes. no damage to the device will occur . shown in the Typical Performance Characteristics. the noise voltage is dominated by the resistors. expression in = √2qIB, where q = 1.6 • 10 –19 coulombs. the source resistance. Noise current rises with frequency. Typical Performance Characteristics section.

Gain Selectable Amplifi er

60845 TA02

A VOUT SEL = 5V , GAIN = 25 SEL = 0V , GAIN = 5 A, B: L TC6084 in DFN10 FAIRCHILD NC7SZ04 OR EQUIVALENT B 4.02k SHDNA 10k 10k VIN 24.3k SHDNB SEL Simplifi ed Schematic of the Amplifi er TYPICAL APPLICATIONS R1 R2 – + OUT 60845 SS – + OUTPUT CONTROL VBIAS M1 M2 –IN +IN M11M10 1μA SHDN BIAS GENERATION NOTE: SHDN IS ONL Y AVAILABLE IN THE DFN PACKAGE

10-Lead Plastic DFN (3mm × 3mm) (Reference L TC DWG # 05-08-1699) PACKAGE DESCRIPTION 3.00 ±0.10 (4 SIDES) NOTE: 1. DRAWING TO BE MADE A JEDEC PACKAGE OUTLINE M0-229 VARIATION OF (WEED-2). CHECK THE LTC WEBSITE DATA SHEET FOR CURRENT STATUS OF VARIATION ASSIGNMENT 2. DRAWING NOT TO SCALE 3. ALL DIMENSIONS ARE IN MILLIMETERS 4. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED 0.15mm ON ANY SIDE 5. EXPOSED PAD SHALL BE SOLDER PLATED 6. SHADED AREA IS ONLY A REFERENCE FOR PIN 1 LOCATION ON THE TOP AND BOTTOM OF PACKAGE 0.38 ± 0.10 BOTTOM VIEW—EXPOSED PAD 1.65 ± 0.10 (2 SIDES) 0.75 ±0.05 R = 0.115 TYP 2.38 ±0.10 (2 SIDES) 106 PIN 1 TOP MARK (SEE NOTE 6)

0.200 REF

0.00 – 0.05 (DD) DFN 1103 0.25 ± 0.05 2.38 ±0.05 (2 SIDES) RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS 1.65 ±0.05 (2 SIDES)2.15 ±0.05 0.50 BSC 0.675 ±0.05 3.50 ±0.05 PACKAGE OUTLINE 0.25 ± 0.05

0.50 BSC

16-Lead Plastic DFN (5mm × 3mm) (Reference L TC DWG # 05-08-1706) 3.00 ±0.10 (2 SIDES) 5.00 ±0.10 (2 SIDES) NOTE: 1. DRAWING PROPOSED TO BE MADE VARIATION OF VERSION (WJED-1) IN JEDEC PACKAGE OUTLINE MO-229 2. DRAWING NOT TO SCALE 3. ALL DIMENSIONS ARE IN MILLIMETERS 4. DIMENSIONS OF EXPOSED PAD ON BOTTOM OF PACKAGE DO NOT INCLUDE MOLD FLASH. MOLD FLASH, IF PRESENT, SHALL NOT EXCEED 0.15mm ON ANY SIDE 5. EXPOSED PAD SHALL BE SOLDER PLATED 6. SHADED AREA IS ONLY A REFERENCE FOR PIN 1 LOCATION ON THE TOP AND BOTTOM OF PACKAGE 0.40 ± 0.10 BOTTOM VIEW—EXPOSED PAD 1.65 ± 0.10 (2 SIDES) 0.75 ±0.05 R = 0.115 TYP R = 0.20 TYP 4.40 ±0.10 (2 SIDES) 169 PIN 1 TOP MARK (SEE NOTE 6) 0.00 – 0.05 (DHC16) DFN 1103 0.25 ± 0.05 PIN 1 NOTCH 4.40 ±0.05 (2 SIDES) RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS 1.65 ±0.05 (2 SIDES)2.20 ±0.05 0.65 ±0.05 3.50 ±0.05 PACKAGE OUTLINE 0.25 ± 0.05

Information furnished by Linear Technology Corporation is believed to be accurate and reliable. However , no responsibility is assumed for its use. Linear Technology Corporation makes no representa- tion that the interconnection of its circuits as described herein will not infringe on existing patent rights. PACKAGE DESCRIPTION 8-Lead Plastic MSOP (Reference L TC DWG # 05-08-1660) MSOP (MS8) 0307 REV F 0.53 ± 0.152 (.021 ± .006) SEATING PLANE NOTE: 1. DIMENSIONS IN MILLIMETER/(INCH) 2. DRAWING NOT TO SCALE 3. DIMENSION DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS. MOLD FLASH, PROTRUSIONS OR GATE BURRS SHALL NOT EXCEED 0.152mm (.006") PER SIDE 4. DIMENSION DOES NOT INCLUDE INTERLEAD FLASH OR PROTRUSIONS. INTERLEAD FLASH OR PROTRUSIONS SHALL NOT EXCEED 0.152mm (.006") PER SIDE 5. LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING) SHALL BE 0.102mm (.004") MAX 0.18 (.007) 0.254 (.010) 1.10 (.043) MAX 0.22 – 0.38 (.009 – .015) TYP 0.1016 ± 0.0508 (.004 ± .002) 0.86 (.034) REF 0.65 (.0256) BSC 0° – 6° TYP DETAIL “A” DETAIL “A” GAUGE PLANE 12 3 4 4.90 ± 0.152 (.193 ± .006) 8 7 6 5 3.00 ± 0.102 (.118 ± .004) (NOTE 3) 3.00 ± 0.102 (.118 ± .004) (NOTE 4) 0.52 (.0205) REF 5.23 (.206) MIN 3.20 – 3.45 (.126 – .136) 0.889 ± 0.127 (.035 ± .005) RECOMMENDED SOLDER PAD LAYOUT 0.42 ± 0.038 (.0165 ± .0015) TYP 0.65 (.0256) BSC 16-Lead Plastic SSOP (Narrow .150 Inch) (Reference L TC DWG # 05-08-1641) GN16 (SSOP) 0204 12 3 4 5 6 7 8 .229 – .244 (5.817 – 6.198) .150 – .157** (3.810 – 3.988) 16 15 14 13 .189 – .196* (4.801 – 4.978) 12 11 10 9 .016 – .050 (0.406 – 1.270) .015 ± .004 (0.178 – 0.249) .0532 – .0688 (1.35 – 1.75) .008 – .012 (0.203 – 0.305) TYP .004 – .0098 (0.102 – 0.249) .0250 (0.635) BSC .009 (0.229) REF .254 MIN RECOMMENDED SOLDER PAD LAYOUT .150 – .165 .0250 BSC.0165 ±.0015 .045 ±.005 *DIMENSION DOES NOT INCLUDE MOLD FLASH. MOLD FLASH SHALL NOT EXCEED 0.006" (0.152mm) PER SIDE **DIMENSION DOES NOT INCLUDE INTERLEAD FLASH. INTERLEAD FLASH SHALL NOT EXCEED 0.010" (0.254mm) PER SIDE INCHES (MILLIMETERS) NOTE: 1. CONTROLLING DIMENSION: INCHES 2. DIMENSIONS ARE IN 3. DRAWING NOT TO SCALE

Linear Technology Corporation 1630 McCarthy Blvd., Milpitas, CA 95035-7417 (408) 432-1900 ● FAX: (408) 434-0507 ● www.linear .com © LINEAR TECHNOLOGY CORPORATION 2008 LT 0209 REV A • PRINTED IN USA RELATED PARTS TYPICAL APPLICATION PART NUMBER DESCRIPTION COMMENTS L TC6078/L TC6079 Dual/Quad Micropower Precision Rail-to-Rail Op Amps 25μV VOS(MAX), 0.7μV/°C VOS Drift(MAX), 1pA IBIAS(MAX) L TC6081/L TC6082 Dual/Quad Precision Rail-to-Rail Input/Output Amps 70μV VOS(MAX), 0.8μV/°C VOS Drift(MAX), 1pA IBIAS(MAX) L TC6087/L TC6088 Dual/Quad 14MHz Rail-to-Rail Input/Output Amps 750μV VOS(MAX), 5μV/°C VOS Drift(MAX), 1pA IBIAS L TC6240/L TC6241/ L TC6242 Single/Dual/Quad Low Noise Rail-to-Rail Output Op Amps 7nV/√ Hz Noise, 0.2pA IBIAS, 18MHz Gain Bandwidth L TC6244 Dual Low Noise Rail-to-Rail Output Op Amps 8nV/√ Hz Noise, 1pA IBIAS, 50MHz Gain Bandwidth Bipolar Analog Isolation Amplifi er

60845 TA03

VOUT = VIN VCC = 5V , VIN = ±5V RELATIVE TO GNDA VOUT = ±5V , RELATIVE TO GNDB OC1, OC2: AVAGO TECHNOLOGIES HCNR201 www.avagotech.com OC1 –5V +5VVIN VCC OC1 VCC 1/2 L TC6084 10pF OC2 OC2 1/2 L TC6084 10pF GNDA OC2 OC1 GNDB 3pF L TC6240HV 2k BW ≈ 40kHz, EITHER POLARITY LARGE SIGNAL TRANSITION DELAY ≈ 50μs SMALL SIGNAL DEAD ZONE: |V IN| ≤ 10mV