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EL5220CYZ-T7

hot EL5220CYZ-T7

EL5220CYZ-T7

For Reference Only

Part Number EL5220CYZ-T7
Manufacturer Renesas Electronics America
Description IC OPAMP VFB 8MHZ RRO 8MSOP
Datasheet EL5220CYZ-T7 Datasheet
Package 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
In Stock 54000 piece(s)
Unit Price $ 1.876 *
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EL5220CYZ-T7

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EL5220CYZ-T7 Specifications

ManufacturerRenesas Electronics America
CategoryIntegrated Circuits (ICs) - Linear - Amplifiers - Instrumentation, OP Amps, Buffer Amps
Datasheet EL5220CYZ-T7 Datasheet
Package8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
Series-
Amplifier TypeVoltage Feedback
Number of Circuits2
Output TypeRail-to-Rail
Slew Rate10 V/µs
Gain Bandwidth Product8MHz
-3db Bandwidth12MHz
Current - Input Bias2nA
Voltage - Input Offset2mV
Current - Supply500µA
Voltage - Supply, Single/Dual (±)4.5 V ~ 16.5 V, ±2.25 V ~ 8.25 V
Operating Temperature-40°C ~ 85°C
Mounting TypeSurface Mount
Package / Case8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
Supplier Device Package8-MSOP

EL5220CYZ-T7 Datasheet

Page 1

Page 2

FN7186 Rev 8.00 October 15, 2015 EL5120, EL5220, EL5420 12MHz Rail-to-Rail Input-Output Op Amps DATASHEETThe EL5120, EL5220, and EL5420 are low power, high voltage, rail-to-rail input-output amplifiers. The EL5120 contains a single amplifier, the EL5220 contains two amplifiers, and the EL5420 contains four amplifiers. Operating on supplies ranging from 5V to 15V, while consuming only 500µA per amplifier, the EL5120, EL5220, and EL5420 have a bandwidth of 12MHz (-3dB). They also provide common mode input ability beyond the supply rails, as well as rail-to-rail output capability. This enables these amplifiers to offer maximum dynamic range at any supply voltage. The EL5120, EL5220, and EL5420 also feature fast slewing and settling times, as well as a high output drive capability of 30mA (sink and source). These features make these amplifiers ideal for use as voltage reference buffers in Thin Film Transistor Liquid Crystal Displays (TFT-LCD). Other applications include battery power, portable devices, and anywhere low power consumption is important. The EL5420 is available in the space-saving 14 Ld TSSOP package, the industry-standard 14 Ld SOIC package, as well as the 16 Ld QFN package. The EL5220 is available in the 8 Ld MSOP package and the 8Ld DFN package. The EL5120 is available in the 5 Ld TSOT package. All feature a standard operational amplifier pin out. These amplifiers are specified for operation with an ambient and junction temperature range of -40°C to +125°C. Features • 12MHz -3dB Bandwidth • Supply Voltage = 4.5V to 16.5V • Low Supply Current (per Amplifier) = 500µA • High Slew Rate = 10V/µs • Unity-Gain Stable • Beyond the Rails Input Capability • Rail-to-Rail Output Swing • Ultra-Small Package • Pb-Free Available (RoHS Compliant) Applications • TFT-LCD Drive Circuits • Electronics Notebooks • Electronics Games • Touch-Screen Displays • Personal Communication Devices • Personal Digital Assistants (PDA) • Portable Instrumentation • Sampling ADC Amplifiers • Wireless LANs • Office Automation • Active Filters • ADC/DAC BufferFN7186 Rev 8.00 Page 1 of 21 October 15, 2015

Page 3

EL5120, EL5220, EL5420Ordering Information PART NUMBER (Note 3) PART MARKING TEMP. RANGE (°C) PACKAGE PKG. DWG. # EL5120IWT-T7 (Notes 1, 4) (No longer available or supported) K -40 to +125 5 Ld TSOT Tape and Reel MDP0049 EL5220ILZ-T13 (Notes 1, 2, 4) (No longer available or supported) 20Z -40 to +125 8 Ld DFN Tape and Reel (Pb-Free) L8.2x3 EL5220CYZ (Note 2) BBAAA -40 to +125 8 Ld MSOP (Pb-Free) MDP0043 EL5220CYZ-T7 (Notes 1, 2) BBAAA -40 to +125 8 Ld MSOP Tape and Reel (Pb-Free) MDP0043 EL5220CYZ-T13 (Notes 1, 2) BBAAA -40 to +125 8 Ld MSOP Tape and Reel (Pb-Free) MDP0043 EL5420CLZ (Note 2) (No longer available or supported) 5420CLZ -40 to +125 16 Ld QFN (Pb-Free) MDP0046 EL5420CSZ (Note 2) 5420CSZ -40 to +125 14 Ld SOIC (Pb-Free) MDP0027 EL5420CSZ-T7 (Notes 1, 2) 5420CSZ -40 to +125 14 Ld SOIC Tape and Reel (Pb-Free) MDP0027 EL5420CSZ-T13 (Notes 1, 2) 5420CSZ -40 to +125 14 Ld SOIC Tape and Reel (Pb-Free) MDP0027 EL5420CR (Note 4) (No longer available or supported) 5420CR -40 to +125 14 Ld TSSOP MDP0044 EL5420CRZ (Note 2) 5420CRZ -40 to +125 14 Ld TSSOP (Pb-Free) M14.173 EL5420CRZ-T7 (Notes 1, 2) 5420CRZ -40 to +125 14 Ld TSSOP Tape and Reel (Pb-Free) M14.173 EL5420CRZ-T13 (Notes 1, 2) 5420CRZ -40 to +125 14 Ld TSSOP Tape and Reel (Pb-Free) M14.173 NOTES: 1. Please refer to TB347 for details on reel specifications. 2. These Intersil Pb-free plastic packaged products employ special Pb-free material sets, molding compounds/die attach materials, and 100% matte tin plate plus anneal (e3 termination finish, which is RoHS compliant and compatible with both SnPb and Pb-free soldering operations). Intersil Pb-free products are MSL classified at Pb-free peak reflow temperatures that meet or exceed the Pb-free requirements of IPC/JEDEC J STD-020. 3. For Moisture Sensitivity Level (MSL), please see device information page for EL5120, EL5220, EL5420. For more information on MSL please see tech brief TB363. 4. Not recommended for new designs. Refer to EL5x20T for possible substitutions.FN7186 Rev 8.00 Page 2 of 21 October 15, 2015

Page 4

EL5120, EL5220, EL5420Pinouts EL5420 (16 LD QFN) TOP VIEW 1 2 3 5 4 1 2 3 4 8 7 6 5 1 2 3 4 12 11 10 9 5 6 7 8 1 6 1 5 1 4 1 3 VINA- VINA+ VS+ VINB+ V IN B - V O U T B V O U T C V IN C - N C V O U TA V O U T D N C VIND- VIND+ VS- VINC+ VS+ VIN-VIN+ VS- VOUT VS+ VOUTB VINB- VINB+VS- VINA+ VINA- VOUTA -+ - + - + THERMAL PAD EL5220 (8 LD MSOP) TOP VIEW EL5120 (5 LD TSOT) TOP VIEW 1 2 3 4 14 13 12 11 5 6 7 10 9 8 - + -+ VOUTD VIND- VIND+ VS- VINC+ VINC- VOUTCVOUTB VINB- VINB+ VS+ VINA+ VINA- VOUTA - + -+ EL5420 (14 LD TSSOP, SOIC) TOP VIEW 2 3 4 1 7 6 5 8VOUTA VINA- VINA+ VS- VS+ VOUTB VINB- VINB+ EL5220 (8 LD DFN) TOP VIEW THERMAL PAD THERMAL PAD CONNECTS TO VS- THERMAL PAD CONNECTS TO VS- NO L ON GE R AV AI LA BL E OR S UP PO RT ED NO L ON GE R AV AI LA BL E OR S UP PO RT ED NO L ON GE R AV AI LA BL E OR S UP PO RT ED FN7186 Rev 8.00 Page 3 of 21 October 15, 2015

Page 5

EL5120, EL5220, EL5420IMPORTANT NOTE: All parameters having Min/Max specifications are guaranteed. Typ values are for information purposes only. Unless otherwise noted, all tests are at the specified temperature and are pulsed tests, therefore: TJ = TC = TA Absolute Maximum Ratings (TA = +25°C) Thermal Information Supply Voltage between VS+ and VS- . . . . . . . . . . . . . . . . . . . .+18V Input Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . VS- - 0.5V, VS +0.5V Maximum Continuous Output Current . . . . . . . . . . . . . . . . . . . 30mA Thermal Resistance (Typical) JA (°C/W) 5 Ld TSOT (Note 5) . . . . . . . . . . . . . . . . . . . . . . . . . 214 8 Ld DFN (Note 6) . . . . . . . . . . . . . . . . . . . . . . . . . . 55 8 Ld MSOP (Note 5). . . . . . . . . . . . . . . . . . . . . . . . . 115 16 Ld QFN (Note 6) . . . . . . . . . . . . . . . . . . . . . . . . . 44 14 Ld SOIC (Note 5) . . . . . . . . . . . . . . . . . . . . . . . . 82 14 Ld TSSOP (Note 5) . . . . . . . . . . . . . . . . . . . . . . . 93 Storage Temperature . . . . . . . . . . . . . . . . . . . . . . . . -65°C to +150°C Operating Junction Temperature Range . . . . . . . . . . -40°C to +125° Power Dissipation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . See Curves Pb-Free Reflow Profile. . . . . . . . . . . . . . . . . . . . . . . . .see link below http://www.intersil.com/pbfree/Pb-FreeReflow.asp CAUTION: Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to such conditions may adversely impact product reliability and result in failures not covered by warranty. NOTES: 5. JA is measured with the component mounted on a high effective thermal conductivity test board in free air. See Tech Brief TB379 for details. 6. JA is measured in free air with the component mounted on a high effective thermal conductivity test board with “direct attach” features. See Tech Brief TB379. Electrical Specifications VS+ = +5V, VS- = -5V, RL = 10k and CL = 10pF to 0V, TA = +25°C, unless otherwise specified. PARAMETER DESCRIPTION CONDITIONS MIN TYP MAX UNIT INPUT CHARACTERISTICS VOS Input Offset Voltage VCM = 0V 2 12 mV TCVOS Average Offset Voltage Drift (Note 7) 5 µV/°C IB Input Bias Current VCM = 0V 2 50 nA RIN Input Impedance 1 G CIN Input Capacitance 1.35 pF CMIR Common-Mode Input Range -5.5 +5.5 V CMRR Common-Mode Rejection Ratio for VIN from -5.5V to +5.5V 50 70 dB AVOL Open Loop Gain -4.5V VOUT 4.5V 75 95 dB OUTPUT CHARACTERISTICS VOL Output Swing Low IL = -5mA -4.92 -4.85 V VOH Output Swing High IL = 5mA 4.85 4.92 V ISC Short Circuit Current ±120 mA IOUT Output Current ±30 mA POWER SUPPLY PERFORMANCE PSRR Power Supply Rejection Ratio VS is moved from ±2.25V to ±7.75V 60 80 dB IS Supply Current (Per Amplifier) No load 500 750 µA DYNAMIC PERFORMANCE SR Slew Rate (Note 8) -4.0V VOUT 4.0V, 20% to 80% 10 V/µs tS Settling to +0.1% (AV = +1) (AV = +1), VO = 2V step 500 ns BW -3dB Bandwidth RL = 10k, CL = 10pF 12 MHz GBWP Gain-Bandwidth Product RL = 10k, CL = 10pF 8 MHz PM Phase Margin RL = 10k, CL = 10pF 50 ° CS Channel Separation f = 5MHz (EL5220 and EL5420 only) 75 dB NOTES: 7. Measured over operating temperature range. 8. Slew rate is measured on rising and falling edges.FN7186 Rev 8.00 Page 4 of 21 October 15, 2015

Page 6

EL5120, EL5220, EL5420Electrical Specifications VS+ = +5V, VS- = 0V, RL = 10k and CL = 10pF to 2.5V, TA = +25°C, unless otherwise specified. PARAMETER DESCRIPTION CONDITIONS MIN TYP MAX UNIT INPUT CHARACTERISTICS VOS Input Offset Voltage VCM = 2.5V 2 10 mV TCVOS Average Offset Voltage Drift (Note 9) 5 µV/°C IB Input Bias Current VCM = 2.5V 2 50 nA RIN Input Impedance 1 G CIN Input Capacitance 1.35 pF CMIR Common-Mode Input Range -0.5 +5.5 V CMRR Common-Mode Rejection Ratio for VIN from -0.5V to +5.5V 45 66 dB AVOL Open Loop Gain 0.5V VOUT 4.5V 75 95 dB OUTPUT CHARACTERISTICS VOL Output Swing Low IL = -5mA 80 150 mV VOH Output Swing High IL = +5mA 4.85 4.92 V ISC Short Circuit Current ±120 mA IOUT Output Current ±30 mA POWER SUPPLY PERFORMANCE PSRR Power Supply Rejection Ratio VS is moved from 4.5V to 15.5V 60 80 dB IS Supply Current (Per Amplifier) No load 500 750 µA DYNAMIC PERFORMANCE SR Slew Rate (Note 10) 1V VOUT 4V, 20% to 80% 10 V/µs tS Settling to +0.1% (AV = +1) (AV = +1), VO = 2V step 500 ns BW -3dB Bandwidth RL = 10k, CL = 10pF 12 MHz GBWP Gain-Bandwidth Product RL = 10k, CL = 10pF 8 MHz PM Phase Margin RL = 10k, CL = 10pF 50 ° CS Channel Separation f = 5MHz (EL5220 and EL5420 only) 75 dB NOTES: 9. Measured over operating temperature range. 10. Slew rate is measured on rising and falling edges.FN7186 Rev 8.00 Page 5 of 21 October 15, 2015

Page 7

EL5120, EL5220, EL5420Electrical Specifications VS+ = +15V, VS- = 0V, RL = 10k and CL = 10pF to 7.5V, TA = +25°C, unless otherwise specified. PARAMETER DESCRIPTION CONDITIONS MIN TYP MAX UNIT INPUT CHARACTERISTICS VOS Input Offset Voltage VCM = 7.5V 2 14 mV TCVOS Average Offset Voltage Drift (Note 11) 5 µV/°C IB Input Bias Current VCM = 7.5V 2 50 nA RIN Input Impedance 1 G CIN Input Capacitance 1.35 pF CMIR Common-Mode Input Range -0.5 +15.5 V CMRR Common-Mode Rejection Ratio for VIN from -0.5V to +15.5V 53 72 dB AVOL Open Loop Gain 0.5V VOUT 14.5V 75 95 dB OUTPUT CHARACTERISTICS VOL Output Swing Low IL = -5mA 80 150 mV VOH Output Swing High IL = +5mA 14.85 14.92 V ISC Short Circuit Current ±120 mA IOUT Output Current ±30 mA POWER SUPPLY PERFORMANCE PSRR Power Supply Rejection Ratio VS is moved from 4.5V to 15.5V 60 80 dB IS Supply Current (Per Amplifier) No load 500 750 µA DYNAMIC PERFORMANCE SR Slew Rate (Note 12) 1V VOUT 14V, 20% to 80% 10 V/µs tS Settling to +0.1% (AV = +1) (AV = +1), VO = 2V step 500 ns BW -3dB Bandwidth RL = 10k, CL = 10pF 12 MHz GBWP Gain-Bandwidth Product RL = 10k, CL = 10pF 8 MHz PM Phase Margin RL = 10k, CL = 10pF 50 ° CS Channel Separation f = 5MHz (EL5220 and EL5420 only) 75 dB NOTES: 11. Measured over operating temperature range 12. Slew rate is measured on rising and falling edgesFN7186 Rev 8.00 Page 6 of 21 October 15, 2015

Page 8

EL5120, EL5220, EL5420Typical Performance Curves FIGURE 1. EL5420 INPUT OFFSET VOLTAGE DISTRIBUTION FIGURE 2. EL5420 INPUT OFFSET VOLTAGE DRIFT FIGURE 3. INPUT OFFSET VOLTAGE vs TEMPERATURE FIGURE 4. INPUT BIAS CURRENT vs TEMPERATURE FIGURE 5. OUTPUT HIGH VOLTAGE vs TEMPERATURE FIGURE 6. OUTPUT LOW VOLTAGE vs TEMPERATURE 400 1200 Q U A N T IT Y ( A M P L IF IE R S ) INPUT OFFSET VOLTAGE (mV) 0 -1 2 1800 1600 800 200 1400 1000 600 -1 0 -8 -6 -4 -2 -0 2 4 6 8 10 12 VS = ±5V TA = +25°C TYPICAL PRODUCTION DISTRIBUTION INPUT OFFSET VOLTAGE DRIFT, TCVOS (µV/°C) 1 3 5 7 9 11 1 3 1 5 1 7 1 9 2 1 10 50 Q U A N T IT Y ( A M P L IF IE R S ) 0 70 30 60 40 20 VS = ±5V TYPICAL PRODUCTION DISTRIBUTION 0 150 0 5 IN P U T O F F S E T V O LT A G E ( m V ) TEMPERATURE (°C) -5 50-50 100 10 VS = ±5V 0.0 IN P U T B IA S C U R R E N T ( n A ) TEMPERATURE (°C) -2.0 2.0 0 15050-50 100 VS = ±5V 4.94 4.95 O U T P U T H IG H V O LT A G E ( V ) 4.93 4.97 0 150 TEMPERATURE (°C) 50-50 100 4.96 VS = ±5V IOUT = 5mA -4.95 -4.93 O U T P U T L O W V O LT A G E ( V ) -4.97 -4.91 0 150 TEMPERATURE (°C) 50-50 100 -4.92 -4.94 -4.96 VS = ±5V IOUT = -5mAFN7186 Rev 8.00 Page 7 of 21 October 15, 2015

Page 9

EL5120, EL5220, EL5420FIGURE 7. OPEN LOOP GAIN vs TEMPERATURE FIGURE 8. SLEW RATE vs TEMPERATURE FIGURE 9. EL5420 SUPPLY CURRENT PER AMPLIFIER vs TEMPERATURE FIGURE 10. EL5420 SUPPLY CURRENT PER AMPLIFIER vs SUPPLY VOLTAGE FIGURE 11. OPEN LOOP GAIN AND PHASE vs FREQUENCY FIGURE 12. FREQUENCY RESPONSE FOR VARIOUS RL Typical Performance Curves (Continued) 80 90 O P E N L O O P G A IN ( d B ) 100 0 150 TEMPERATURE (°C) 50-50 100 VS = ±5V RL = 10k 0 150 10.30 10.35 S L E W R A T E ( V /µ s ) TEMPERATURE (°C) 10.25 50-50 100 10.40 VS = ±5V 0.5 0.55 S U P P LY C U R R E N T ( m A ) 0.45 0 150 TEMPERATURE (°C) 50-50 100 VS = ±5V 5 20 400 600 S U P P LY C U R R E N T ( µ A ) SUPPLY VOLTAGE (V) 300 100 700 500 15 TA = +25°C 10 10k 100M 50 200 FREQUENCY (Hz) -50 G A IN ( d B ) P H A S E ( °) 20 -130 -230 100 1k 100k 1M 10M 150 0 100 -30 -80 -180VS = ±5V, TA = +25°C RL = 10k to GND CL = 12pF to GND PHASE GAIN 1M 100M -5 0 M A G N IT U D E ( N O R M A L IZ E D ) (d B ) FREQUENCY (Hz) -15 10M100k 5 -10 CL = 10pF AV = 1 VS = ±5V 10k 1k 560 150FN7186 Rev 8.00 Page 8 of 21 October 15, 2015

Page 10

EL5120, EL5220, EL5420FIGURE 13. FREQUENCY RESPONSE FOR VARIOUS CL FIGURE 14. CLOSED LOOP OUTPUT IMPEDANCE vs FREQUENCY FIGURE 15. MAXIMUM OUTPUT SWING vs FREQUENCY FIGURE 16. CMRR vs FREQUENCY FIGURE 17. PSRR vs FREQUENCY FIGURE 18. INPUT VOLTAGE NOISE SPECTRAL DENSITY vs FREQUENCY Typical Performance Curves (Continued) 1M 100M FREQUENCY (Hz) 10M100k 0 10 M A G N IT U D E ( N O R M A L IZ E D ) (d B ) -30 20 -20 -10 RL = 10k AV = 1 VS = ±5V 12pF 50pF 100pF 1000pF O U T P U T I M P E D A N C E (  ) FREQUENCY (Hz) 10k 100k 0 40 80 120 200 1M 160 10M AV = 1 VS = ±5V TA = +25°C M A X IM U M O U T P U T S W IN G ( V P -P ) FREQUENCY (Hz) 10k 100k 0 2 4 12 1M 6 10M 8 10 VS = ±5V TA = +25°C AV = 1 RL = 10k CL = 12pF Distortion <1% 100 0 C M R R ( d B ) FREQUENCY (Hz) 80 60 40 20 1M 10M10k 100k1k VS = ±5V TA = +25°C 100 0 P S R R ( d B ) FREQUENCY (Hz) 80 60 40 20 1M 10M10k 100k VS = ±5V TA = +25°C 1k PSRR+ PSRR- 100 100k 100M 10 100 V O LT A G E N O IS E ( n V / H z) FREQUENCY (Hz) 1 10M1k 10k 1M 600FN7186 Rev 8.00 Page 9 of 21 October 15, 2015

EL5220CYZ-T7 Reviews

Average User Rating
5 / 5 (145)
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5 ★
130
4 ★
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Ridg*****ward

November 23, 2019

Better than ever - more stock, better prices, quicker shipments, many choices of payment.

Gust*****Balay

November 18, 2019

Very good connector, easy to realise and with Low price

Marcel*****gopalan

November 17, 2019

Well packed in anti-static bags. Repaired my amp perfectly - thank you!

Samu*****halsa

October 6, 2019

Diodes okay. Shipped quick and received with well - packed

Kall*****huja

August 7, 2019

They worked great. Not much to say - as far as I can tell they adhere to the specs, and did the job I needed them to. Good transistors for higher current situations.

Franc*****odwin

June 27, 2019

Used for a solar project. Working as hoped. I'd buy again.

Ter*****Hurst

April 9, 2019

Resonators were genuine Murata components and arrived in 3 days from Hongkong

Mat***** Dara

April 8, 2019

Great communication with sales. A pleasure to do business with you.

Emil*****iley

April 1, 2019

Item came in time and looks as described.

Popp*****ctor

March 1, 2019

I am very happy with how Heisener do business. Will definitely buy their products in the future as I have confidence in their customer service.

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