IL711 NVE | Alldatasheet

Document overview

  • Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
  • PDF pages: 20

Technical content

Features

  • High speed: 150 Mbps typical (S-Series)
  • High temperature: −40 °C to +125 °C (T-Series and V -Series
  • 6 kV RMS Reinforced Isolation; 1.2 kV RMS Working Voltage (V-Series)
  • 2.7 to 5.5 volt supply range
  • 100 kV/ μs Common Mode Transient Immunity
  • No carrier or clock for low EMI emissions and susceptibility
  • 1.2 mA/channel typical quiescent current
  • 300 ps typical pulse width distortion (S-Series)
  • 100 ps pulse jitter
  • 2 ns channel-to-channel skew
  • 10 ns typical propagation delay
  • 44000 year barrier life
  • Excellent magnetic immunity
  • IEC 60747-17 (VDE 0884-17):2021-10 certified; UL 1577 recognized
  • 6 kV RMS Reinforced Isolation; 1.2 kV RMS Working Voltage (V-Series)
  • ATEX / IECEx certified for IS-to-IS intrinsically safe applications
  • MSOP, SOIC, PDIP, and True 8 mm creepage packages

Applications

  • Board-to-board communication
  • CANbus
  • Peripheral interfaces
  • Logic level shifting
  • Equipment covered under IEC 61010-1 Edition 3
  • 5 kV RMS rated IEC 60601-1 medical applications

Description

NVE’s IL700 family of high -speed digital isolators are CMOS devices manufactured with NVE’s patented* spintronic Giant Magnetoresistive (GMR) technology. A unique ceramic/polymer composite barrier provides excellent isolation and virtually unlimited barrier life. The IL711S and IL712S are the world’s fastest two- channel isolators, with a 150 Mbps typical data rate for both channels. Standard and S-Grade parts are specified over a temperature range of −40°C to +100°C; “T” and “V” Grade parts have a maximum operating temperature of 125°C. V- Grade versions offer extremely high isolation voltages of 6 kVRMS for wide-body packages and 2.5 kVRMS for MSOPs. The symmetric magnetic coupling barrier provides a typical propagation delay of only 10 ns and a pulse width distortion as low as 300 ps (0.3 ns), achieving the best specifications of any isolator. Minimum transient immunity of 100 kV/µs is unsurpassed. The IL711 has two transmit channels; the IL712 and IL721 have one transmit and one receive channel. The IL721 has channels reversed to better suit certain board layouts. The IL711 and IL712 are available in 8-pin MSOP, SOIC, and PDIP packages. The IL711 and IL721 are also available in NVE’s unique JEDEC- compliant 16 pin package with True 8 mm creepage under IEC 60601.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com Absolute Maximum Ratings Parameters Symbol Min. Typ. Max. Units Test Conditions Storage Temperature TS −55 150 °C Junc tion Temperature TJ − 55 150 °C Ambient Operating Temperature (1) TA − 55 130 °C Supply Voltage VDD 1, V DD 2 −0.5 7 V Input Voltage VI −0.5 VDD + 0.5 V Output Voltage VO −0.5 VDD + 0.5 V Output Current Drive IO 10 mA Lead Solder Temperature 260 °C 10 sec. ESD 2 kV HBM Recommended Operating Conditions Parameters Symbol Min. Typ. Max. Units Test Conditions Ambient Operating Temperature IL711/IL712/IL721/IL711S/IL712S IL711T/IL711V E/IL712T/IL721T/IL721V E TA −40 100 125 Junction Temperature IL711/IL712/IL721/IL711S/IL712S IL711T/IL711V E/IL712T/IL721T/IL721V E TJ −40 110 125 Supply Voltage VDD 1, V DD 2 2. 7 5.5 V Logic High Input Voltage VIH 2.4 VDD V Logic Low Input Voltage VIL 0 0.8 V Input Signal Rise and Fal l Times tIR , t IF 1 μs

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com Safety and Approvals IEC 60747-17 (VDE 0884-17):2021-10: “VE” versions (Reinforced Isolation; VDE File N umber 5016933-4880-0002)

  • Working V oltage (V IORM ): 1200 VRMS (1700 VPK ) with 20% Safety Factor; pollution degree 2
  • Isolation voltage (VISO ): 6000 VRMS
  • Surge immunity (V IOSM ): 12.8 kV PK
  • Surge rating: 8000 V
  • Transient overvoltage (V IOTM ): 6000 VPK
  • Each part tested at 2387 VPK for 1 second, 5 pC partial discharge limit
  • Samples tested at 6000 VPK for 60 sec.; then 2122 VPK for 10 sec. with 5 pC partial discharge limit Standard versions (Basic Isolation; VDE File Number 5016933-4880-0001)
  • Isolation voltage (V ISO ): 2500 VRMS
  • Transient overvoltage (V IOTM ): 4000 VPK
  • Surge rating: 4000 V
  • Each part tested at 1590 VPK for 1 second, 5 pC partial discharge limit.
  • Samples tested at 4000 VPK for 60 sec.; then 1358 VPK for 10 sec. with 5 pC partial discharge limit.
  • Working Voltage (V IORM ; pollution degree 2): Package Part No. Suffix Working Voltage MSOP8 -1 800 V RMS Narrow -body SO IC16 -3 700 V RMS Wide -body SOIC16/True 8™ None 600 V RMS PDIP 8 -2 900 V RMS Safety-Limiting Values Symbol Value Units Safety rating ambient temperature TS 180 °C Safety rating power (180 °C) PS 270 mW Supply current safety rating (total of supplies) IS 54 mA UL 1577 (Component Recognition Program File Number E207481)
  • 1 kV-rated standard MSOPs tested at 1200 V RMS (1768 VPK ) for 1 second; each lot sample tested at 1200 VRMS (1768 VPK ) for 1 minute
  • 2.5 kV-rated parts tested at 3000 VRMS (4240 VPK ) for 1 second; each lot sample tested at 2500 VRMS (3530 VPK ) for 1 minute
  • 6 kV-rated VE-version parts tested at 7.2 kV RMS (10.2 kVPK ) for 1 second; each lot sample tested at 6 kV RMS (8485 VPK ) for 1 minute Intrinsically Safe Certification
  • ”VE” versions are ATEX / IEC 60079-0 / 60079-11 cer tified Intrinsically Safe (IS) for use in IS to IS applications.
  • 500 V RMS rating. Soldering Profile Per JEDEC J-STD-020C, MSL 1

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com IL711-1, -2, and -3 Pin Connections

1 VDD1 Supply voltage

2 IN 1 Data i n, channel 1

3 IN 2 Data in, channel 2

4 GND 1 Ground return for V DD1

5 GND 2 Ground return for V DD2

6 OUT 2 Data out, channel 2

7 OUT 1 Data out, channel 1

8 VDD2 Supply voltage

IL711-1, -2, and -3 IL711 Pin Connections

2 GND 1 Ground return for V DD1

(pins 1, 2, 7, and 8 internally connected)

3 VDD1 Supply voltage

4 IN 1 Data in, channel 1

5 IN 2 Data in, channel 2

6 NC No connection

8 GND 1 Ground return for V DD1

(pins 1, 2, 7, a nd 8 internally co nnected)

10 GND 2 Ground return for V DD2

(pins 9, 10, 15, and 16 internally connected)

11 NC No connection

12 OUT 2 Data out, channel 2

13 OUT 1 Data out, channel 1

14 VDD2 Supply voltage

16 GND 2 Ground return for V DD2

(pins 9, 10 , 15, and 16 inter nally conn ected) IL711 IL712-1, -2, and -3 Pin Connections

2 IN 1 Data in, channel 1

3 OUT 2 Data out, channel 2

5 GN D2 Ground return f or V DD2

6 IN 2 Dat a in, channel 2

IL712-1, -2, and -3 IL721-3 Pin Connections

2 OUT 1 Data out, channel 1

3 IN 2 Data in, c hannel 2

7 IN 1 Data in, channel 1

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com (pins 1, 2, 7, and 8 internally connected)

4 OUT 1 Data out, channel 1

(pins 1, 2, 7, and 8 internall y connected) (pins 9, 10, 15, and 16 internally connected)

13 IN 1 Data in, channel 1

(pins 9, 10, 15, and 16 int ernally connected) IL721

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com

3.3 Volt Electrical Specifications (T min to T max unless otherwise stated)

Parameters Symbol Min. Typ. Max. Units Test Conditions Input Quiescent Supply Current IL711 IDD1 8 10 μA IL7 12/IL721 1.2 1.75 mA Output Quiescent Supply Current IL711 IDD2 2.4 3.5 mA IL712/IL721 1.2 1.75 mA Logic Input Current II −10 10 μA Logic High Output Voltage VOH VDD – 0.1 VDD V IO = −20 μA, V I = V IH 0.8 x VDD 0.9 x V DD IO = −4 mA, VI = V IH Logic Low Output Voltage V OL 0 0.1 V IO = 20 μA, V I = V IL 0.5 0.8 IO = 4 mA, V I = V IL Switching Specifications (V DD = 3.3 V ) Maximum Data Rate IL711/IL712/IL721 IL711S/IL712S IL711T/IL712T /IL721T 100 130 10 0 110 140 110 Mbps Mbps Mbps C L = 15 pF CL = 15 pF CL = 15 pF Pulse Width (7) PW 10 7.5 ns 50% Points, V O Propagation Delay Input to Output (High to Low) tPHL 12 18 ns C L = 15 pF Propagation Delay Input to Output (Low to High) tPLH 12 18 ns C L = 15 pF Pulse Width Distortion (2) IL711/IL712/IL721 IL711S/IL712S IL711T/IL712T /IL721T PWD ns ns ns C L = 15 pF CL = 15 pF CL = 15 pF Propagation Delay Skew (3) tPSK 4 6 ns CL = 15 pF Output Rise Time (10% – 90%) tR 2 4 ns CL = 15 pF Output Fall Time (1 0%– 90%) tF 2 4 ns CL = 15 pF Common Mode Transient Immunity (Output Logic High or Logic Low) (4) |CM H|,|CM L| 100 150 kV/µs Per IEC 60747 Channel -to -Channel Skew tCSK 2 3 ns CL = 15 pF Dynamic Power Consumption (6) In put side 14 0 240 μA/Mbps/ch Ou tput side 20 40 Magnetic Field Immunity (8) (V DD2 = 3.3 V, 2.7 V < VDD1 < 5.5 V) Power Frequency Magnetic Immunity HPF 1500 A/m 50Hz/60Hz Pulse Magnetic Field Immunity HPM 2000 A/m tp = 8 µs Damped Oscillatory Magnetic Field HOSC 2000 A/m 0.1 Hz – 1MHz Cross -axis Immunity Multip lier (9) KX 2.5 Timing Diagram Legend tPLH Propagation Delay, Low to High tPHL Propagation Delay, High to Low tPW Minimum Pulse Width tR Rise Time tF Fall Time

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com

5 Volt Electrical Specifications (T min to T max unless otherwise stated)

Parameters Symbol Min. Typ. Max. Units Test Conditions Input Quiescent Supply Current IL711 IDD1 10 15 μA IL712/IL721 1.8 2.5 mA Output Quiescent Supply Current IL711 IDD2 3.6 5 mA IL712/IL721 1.8 2.5 mA Logic Input Current II −10 10 μA Logic High Output Voltage VOH VDD − 0.1 VDD V IO = −20 μA, V I = V IH 0.8 x V DD 0.9 x V DD IO = −4 mA, V I = V IH Logic Low Output Voltage V OL 0 0.1 V IO = 20 μA, V I = V IL 0.5 0.8 IO = 4 mA, V I = V IL Switching Specifications (V DD = 5 V ) Maximum Data Rate IL711/IL712/IL721 IL711S/IL712S IL711T/IL712T /IL721T 100 130 100 110 150 110 Mbps Mbps Mbps C L = 15 pF CL = 15 pF CL = 15 pF Pulse Width (7) PW 10 7.5 ns 50% Points, V O Propagation Delay Input to Output (High to Low) tPHL 10 15 ns C L = 15 pF Propagation Delay Input to Output (Low to High) tPLH 10 15 ns C L = 15 pF Pulse Width Distortion (2) IL711/IL712/IL721 IL711S/IL712S IL711T/IL712T /IL721T PWD 0.3 ns ns ns C L = 15 pF CL = 15 pF CL = 15 pF Pulse Jitter (10) tJ 100 ps CL = 15 pF Propagation Delay Skew (3) tPSK 4 6 ns CL = 15 pF Output Rise Time (10% – 90%) tR 1 3 ns CL = 15 pF Output Fall Time (10% – 90%) tF 1 3 ns CL = 15 pF Common Mode Transient Immunity (Output Log ic High or Logic Low) (4) |CM H|,|CM L| 100 150 kV/µs Per IEC 60747 Channel to Channel Skew tCSK 2 3 ns CL = 15 pF Dynamic Power Consumption (6) 200 340 μA/Mbps per channel Magnetic Field Immunity (8) (V DD2 = 5 V, 2.7 V < VDD1 < 5.5 V) Power Frequency Magnetic Immunity HPF 3500 A/m 50Hz/60Hz Pulse Magnetic Field Immunity HPM 4500 A/m tp = 8 µs Damped Oscillatory Magnetic Field HOSC 4500 A/m 0.1Hz – 1MHz Cross -axis Immunity Multiplier (9) KX 2.5

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com Insulation Specifications Parameter Symbol Min. Typ. Max. Units Test Conditions Creepage Distance (external) MSOP8 3.01 mm SOIC8 4.03 mm PDIP8 6.8 mm True 8™ 0.3" SOIC16 8.03 8.3 mm Per IEC 60601 Total Barrier Thickness (internal) 0.012 0.016 mm Leakage Current (5) 0.2 μA 240 V RMS , 60 Hz Barrier Resistance (5) R IO >10 14 Ω 500 V Barrier Capacitance (5) CIO 2 pF f = 1 MHz Comparative Tracking Index CTI ≥600 VRMS Per IEC 60112 High Voltage Endurance (Maximum Barrier Voltage for Indefinite Life) AC DC VIO 1000 15 00 VRMS VDC At maximum operating temperature Surge Immunity (“VE” Versions) VIOSM 12.8 kV PK Per IEC 61000 -4-5 Barrier Life 44000 Years 100°C, 1000 V RMS , 60% CL activation energy Thermal Characteristics Parameter Symbol Min. Typ. Max. Units Test Conditio ns Junction–Ambient Thermal Resistance MSOP8 0.15" SOIC8 0.3" SOIC16 PDIP8 θ JA 184 134 114 °C/W Double-sided PCB in free air Junction–Case (Top) Thermal Resistance MSOP8 0.15" SOIC8 0.3" SOIC16 PDIP8 θ JC Junction–Ambient Thermal Resistance 0.3" SOIC θ JA 46 2s2p PCB in free air per JESD51 Junction–Case (Top) Thermal Resistance θ JC 9 Power Dissipation MSOP8 0.15" SOIC8 0.3" SOIC16 PDIP8 PD 500 675 1500 800 mW Notes (apply to both 3.3 V and 5 V specifications): 1. Absolute maximum ambient operating temperature means the device will not be damaged if operated under these conditions. It does not guarantee performance. 2. PWD is defined as |t PHL − t PLH |. %PWD is equal to PWD divided by pulse width. 3. tPSK is the magnitude of the worst-case difference in tPHL and/or t PLH between devices at 25°C. 4. CM H and CM L are the maximum common mode voltage slew rates that can be applied with the outputs remaining stable and within VOL and VOH specifications. 5. Device is considered a two terminal device: pins 1– 4 shorted and pins 5–8 shorted. 6. Dynamic power consumption is calculated per channel and is supplied by the channel’s input side power supply. 7. Minimum pulse width is the minimum value at which specified PWD is guaranteed. 8. The relevant test and measurement methods are given in the Electromagnetic Compatibility section on p. 9. 9. External magnetic field immunity is improved by this factor if the field direction is “end-to-end” rather than to “pin-to-pin” (see diagram on p. 9). 10. 64k-bit pseudo-random binary signal (PRBS) NRZ bit pattern with no more than five consecutive 1s or 0s; 800 ps transition time.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com

Application Information

An equivalent circuit is shown below: Data In Data Out Isolation Barrier Field Figure 4. IL711 / IL712 / IL721 equivalent circuit (each channel). of the resistors creates a bridge voltage which drives an output comparator to construct an isolated version of the input signal. does not rely on energy transfer, so power is low and EMI emissions are minimal. magnetic fields, further enhancing immunity to external magnetic fields.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorpora tion iso-apps@nve.com 80 ns Electrostatic Discharge Sensitivity This product has been tested for electrostatic sensitivity to the limits stated in the specifications. However, NVE recommends that all integrated circuits be handled with appropriate care to avoid damage. Damage caused by inappropriate handling or storage could range from performance degradation to complete failure. Electromagnetic Compatibility IsoLoop Isolators have the lowest EMC footprint of any isolation technology. IsoLoop Isolators’ Wheatstone bridge co nfiguration and differential magnetic field signaling ensure excellent EMC performance against all relevant standards. These isolators are fully compliant with IEC 61000-6-1 and IEC 61000-6-2 standards for immunity, and IEC 61000-6-3, IEC 61000-6-4, CISPR, and FCC Class A standards for emissions. Immunity to external magnetic fields is even higher if the field direction is “end-to-end” rather than to “pin-to-pi n” as shown in the diagram below: Cross-axis Field Direction Dynamic Power Consumption IsoLoop Isolators achieve their low power consumption from the way they transmit data across the isolation barrier. By detecting the edge transitions of the input logic signal and converting these to narrow current pulses, a magnetic field is created around the GMR Wheatstone bridge. Depending on the direction of the magnetic field, the bridge causes the output comparator to switch following the input logic signal. Since the current pulses are narrow, about 2.5 ns, the power consumption is independent of mark-to-space ratio and solely dependent on frequency. This has obvious advantages over optocouplers, which have power consumption heavily dependent on mark-to-space ratio. Power Supply Decoupling Both power supplies should be decoupled with 0.1 µF typical (0.047 µF minimum) capacitors as close as possible to the V DD pins. Ground planes for both GND 1 and GND 2 are highly recommended for data rates above 10 Mbps. Maintaining Creepage Creepage distances are often critical in isolated circuits. In addition to meeting JEDEC standards, NVE isolator packages have unique creepage specifications. Standard pad libraries often extend under the package, compromising creepage and clearance. Similarly, ground planes, if used, should be spaced to avoid compromising clearance. Package drawings and recommended pad layouts are included in this datasheet. Signal Status on Start-up and Shut Down To minimize power dissipation, input signals are differentiated and then latched on the output side of the isolation barrier to reconstruct the signal. This could result in an ambiguous output state depending on power up, shutdown and power loss sequencing. Unless the circuit connected to the isolator performs its own power- on reset (POR), a start-up initialization circuit should be considered. Initialization consists of toggling the input either high then low, or low then high. In CAN applications, the IL712 or IL721 should be used with CAN transceivers with Dominant Timeout functions for seamless POR. Most CAN transceivers have Dominant Timeout options. Examples include NXP’s TJA 1050 and TJA 1040 transceivers. Data Transmission Rates The reliability of a transmission system is directly related to the accuracy and quality of the transmitted digital information. For a digital system, those parameters which determine the limits of the data transmission are pulse width distortion and propagation delay skew. Propagation delay is the time taken for the signal to travel through the device. This is usually different when sending a low-to-high than when sending a high-to-low signal. This difference, or error, is called pulse width distortion (PWD) and is usually in nanoseconds. It may also be expressed as a percentage: PWD% = Maximum Pulse Width Distortion (ns) x 100% Signal Pulse Width (ns) For example, with data rates of 12.5 Mbps: PWD% = 3 ns x 100% = 3.75% This figure is almost three times better than any available optocoupler with the same temperature range, and two times better than any optocoupler regardless of published temperature range. IsoLoop isolators exceed the 10% maximum PWD recommended by PROFIBUS, and will run to nearly 35 Mb within the 10% limit. Propagation delay skew is the signal propagation difference between two or more channels. This becomes significant in clocked systems because it is undesirable for the clock pulse to arrive before the data has settled. Propagation delay skew is especially critical in high data rate parallel systems for establishing and maintaining accuracy and repeatability. Worst-case channel-to-channel skew in an IL700 Isolator is just 3 ns— ten times better than any optocoupler. IL700 Isolators have a maximum propagation delay skew of 6 ns— five times better than any optocoupler.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com Package Drawings 8-pin MSOP (-1 suffix) 0.114 (2.90) 0.114 (2.90) 0.016 (0.40) 0.005 (0.13) 0.009 (0.23) 0.027 (0.70) 0.010 (0.25) 0.002 (0.05) 0.043 (1.10) 0.032 (0.80) 0.006 (0.15) 0.016 (0.40) 0.189 (4.80) 0.197 (5.00) 0.122 (3.10) 0.122 (3.10) Dimensions in inches (mm); scale = approx. 5X 0.024 (0.60) 0.028 (0.70) NOTE: Pin spacing is a BASIC dimension; tolerances do not accumulate 8-pin SOIC Package (-3 suffix) 0.188 (4.77) 0.197 (5.00) 0.012 (0.3) NOTE: Pin spacing is a BASIC dimension; tolerances do not accumulate 0.054 (1.37) 0.072 (1.83) 0.228 (5.8) 0.244 (6.2) 0.150 (3.8) 0.157 (4.0) 0.052 (1.32) 0.062 (1.57) 0.013 (0.3) 0.020 (0.5) 0.007 (0.2) 0.013 (0.3) 0.016 (0.4) 0.050 (1.3) NOM Dimensions in inches (mm); scale = approx. 5X 8-pin PDIP (-2 suffix) 0.28 (7.1) 0.33 (8.4) 0.30 (7.6) 0.38 (9.7) 0.008 (0.2) 0.015 (0.4) Dimensions in inches (mm); scale = approx. 2.5X 0.345 (8.76) 0.40 (10.2) 0.27 (6.9) 0.24 (6.1) 0.055 (1.40) 0.065 (1.65) 0.030 (0.76) 0.045 (1.14) 0.014 (0.36) 0.045 (1.14) 0.070 (1.78) 0.09 (2.3) 0.11 (2.8) 0.015 (0.38) 0.040 (1.02) 0.13 (3.30) 0.17 (4.32) 0.023 (0.58) NOTE: Pin spacing is a BASIC dimension; tolerances do not accumulate

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com True 8™ (8 mm creepage) 16 -pin SOIC Package (no suffix) 0.049 (1.24) 0.051 (1.30) 0.017 (0.43)* 0.022 (0.56) 0.292 (7.42)* 0.299 (7.59) 0.007 (0.18)* 0.010 (0.25) 0.260 (6.60)* 0.280 (7.11) 0.033 (0.85)* 0.043 (1.10) 0.007 (0.2) 0.013 (0.3) Pin 1 identified by either an indent or a marked dot 0.08 (2.0) 0.10 (2.5) 0.397 (10.08) 0.413 (10.49) 0.394 (10.00) 0.419 (10.64) 0.092 (2.34) 0.105 (2.67) 0.004 (0.1) 0.012 (0.3) 0.016 (0.4) 0.050 (1.3) NOTE: Pin spacing is a BASIC dimension; tolerances do not accumulate 0.013 (0.3) 0.020 (0.5) Dimensions in inches (mm); scale = approx. 5X *Specified for True 8™ package to guarantee 8 mm creepage per IEC 60601.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com Recommended Pad Layouts 8-pin MSOP Pa d Layout 0.025 (0.65) 0.227 (5.77) 0.017 (0.43)

8 PLCS

0.120 (3.05) Dimensions in inches (mm); scale = approx. 5X 8-pin SOIC Pad Layo ut 0.275 (6.99) 0.050 (1.27) 0.020 (0.51) Dimensions in inches (mm); scale = approx. 5X 0.160 (4.05) True 8™ 16 -pin SOIC Pad Layout 0.050 (1.27) 0.449 (11.40) 0.020 (0.51)

16 PLCS

0.317 (8.05) Dimensions in inches (mm); scale = approx. 5X

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com

Ordering Information

Blank = Tube TR7 = 7'' Tape and Reel TR13 = 13'' Tape and Reel Package Blank = 80/20 Tin/Lead Plating E = RoHS Compliant Package Type -1 = MSOP -2 = PDIP -3 = 0.15'' 8-pin SOIC Blank = True 8 (8mm creepage) Grade Blank = Standard S = High Speed (150 Mbps) T = High Temperature (125˚C) V = High Isolation V oltage (6 kV True 8; 2.5 kV MSOP) Base Part Number 711 = 2 Transmit Channels 712 = 1 Transmit Channel

1 Receive Channel

721 = 1 Transmit Channel (reverse pinout) Product Family IL = Isolators

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com Available Parts Available Parts Transmit Channels Receive Channels Mbps Maximum Temperature Isolation Voltage (RMS) Package RoHS IL711 -1E 2 0 110 100°C 1 kV MSOP -8 Y IL711 -2 2 0 110 100°C 2.5 kV PDIP -8 N IL711 -2E 2 0 110 100°C 2.5 kV PDIP -8 Y IL711 -3 2 0 110 100°C 2.5 kV SOIC -8 N IL711 -3E 2 0 110 100°C 2.5 kV SOIC -8 Y IL711S -1E 2 0 150 100°C 1 kV MSOP -8 Y IL711S -3E 2 0 150 100°C 2.5 kV SOIC -8 Y IL711T -1E 2 0 110 125°C 1 kV MSOP -8 Y IL711T V-1E 2 0 110 125°C 2.5 kV MSOP -8 Y IL711T -2 2 0 110 125°C 2.5 kV PDIP -8 N IL711T -2E 2 0 110 125°C 2.5 kV PDIP -8 Y IL711T -3 2 0 110 125°C 2.5 kV SOIC -8 N IL711T -3E 2 0 110 125°C 2.5 kV SOIC -8 Y IL711V -1E 2 0 110 100°C 2.5 kV MSOP -8 Y IL 711VE 2 0 110 125°C 6 kV True8 Y IL712 -1E 1 1 110 100°C 1 kV MSOP -8 Y IL712 -2 1 1 110 100°C 2.5 kV PDIP -8 N IL712 -2E 1 1 110 100°C 2.5 kV PDIP -8 Y IL712 -3 1 1 110 100°C 2.5 kV SOIC -8 N IL712 -3E 1 1 110 100°C 2.5 kV SO IC -8 Y IL712S -1E 1 1 150 100°C 1 kV MSOP -8 Y IL712S -3E 1 1 150 100°C 2.5 kV SOIC -8 Y IL712T -1E 1 1 110 125 °C 1 kV MSOP -8 Y IL712T V-1E 1 1 110 125 °C 2.5 kV MSOP -8 Y IL712T -2 1 1 110 125 °C 2.5 kV PDIP N IL712T -2E 1 1 110 125 °C 2.5 kV PDIP Y IL712T -3 1 1 110 125 °C 2.5 kV SOIC -8 N IL71 2T -3E 1 1 110 125 °C 2.5 kV SOIC -8 Y IL7 12V -1E 1 1 110 100°C 2.5 kV MSOP Y IL721 -3E 1 1 110 105°C 2.5 kV SOIC -8 Y IL721E 1 1 110 100°C 2.5 kV True8 Y IL721T -3E 1 1 110 125°C 2.5 kV SOIC -8 Y IL721VE 1 1 110 125°C 6 kV True8 Y All MSOP and SOIC part types are available on tape and reel.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com ISB-DS-001-IL711/12-AO August 2022 Changes

  • Upgraded to IEC 60747-17 (VDE 0884-17):2021-10 (p. 3).
  • Increased Working Voltage ratings based on latest VDE testing (p. 3).
  • Added ATEX and IECEx certification for IS-to-IS intrinsically safe applications (p. 3).
  • Replaced “Valid Part Numbers” with table on p. 17. ISB-DS-001-IL711/12-AN Changes
  • Upgraded CMTI specifications.
  • Added ATEX / IEC 60079 Intrinsic Safety pending (p. 3). ISB-DS-001-IL711/12-AM Changes
  • Extended minimum operating power supplies to 2.7 volts.
  • Explicitly listed part types for max. operating temperatures.
  • Changed PDIP8 creepage specifications from 7.04 mm to 6.8 mm.
  • Updated EMC standards.
  • Deleted minimum magnetic field immunity specifications (not 100% tested).
  • Revised thermal resistance specifications.
  • Added Typical Performance Graphs.
  • More detailed description of operation. ISB-DS-001-IL711/12-AL Changes
  • Added IL711TV-1E and IL712TV-1E 125°C, 2.5 kV isolation MSOP configurations.
  • Eliminated non-RoHS MSOPs. ISB-DS-001-IL711/12-AK Change
  • Updated SOIC8 package outline drawing. ISB-DS-001-IL711/12-AJ Change
  • • •• Updated VDE Reinforced Isolation file number and de scription. ISB-DS-001-IL711/12-AI Changes
  • Updated VDE certification standard to VDE V 0884-10 .
  • Upgraded “VE” Version Surge Immunity specification to 12.8 kV.
  • Upgraded “VE” Version VDE 0884-10 rating to reinfor ced insulation. ISB-DS-001-IL711/12-AH Changes
  • Increased V-Series isolation voltage to 6 kVrms.
  • Increased typ. Total Barrier Thickness specification to 0.016 mm.
  • Increased CTI min. specification to ≥600 V RMS . ISB-DS-001-IL711/12-AG Changes
  • Added V-Series high isolation voltage versions (5 kV True 8 and 2.5 kV MSOP).
  • More detailed “Available Parts” table. ISB-DS-001-IL711/12-AF Changes
  • Added product illustrations to first page.
  • Revised and added details to thermal characteristic specifications (p. 2).
  • Added VDE 0884 Safety-Limiting Values (p. 3).

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com Datasheet Limitations The information and data provided in datasheets shall define the specification of the product as agreed between NVE and its customer, unless NVE and customer have explicitly agreed otherwise in writing. All specifications are based on NVE test protocols. In no event however, shall an agreement be valid in which the NVE product is deemed to offer functions and qualities beyond those described in the datasheet. Limited Warranty and Liability Information in this document is believed to be accurate and reliable. However, NVE does not give any representations or warranties, expressed or implied, as to the accuracy or completeness of such information and shall have no liability for the consequences of use of such information. In no event shall NVE be liable for any indirect, incidental, punitive, special or consequential damages (including, without limitation, lost profits, lost savings, business interruption, costs related to the removal or replacement of any products or rework charges) whether or not such damages are based on tort (including negligence), warranty, breach of contract or any other legal theory. Right to Make Changes NVE reserves the right to make changes to information published in this document including, without limitation, specifications and product descriptions at any time and without notice. This document supersedes and replaces all information supplied prior to its publication. Use in Life-Critical or Safety-Critical Applications Unless NVE and a customer explicitly agree otherwise in writing, NVE products are not designed, authorized or warranted to be suitable for use in life support, life-critical or safety-critical devices or equipment. NVE accepts no liability for inclusion or use of NVE products in such applications and such inclusion or use is at the customer’s own risk. Should the customer use NVE products for such application whether authorized by NVE or not, the customer shall indemnify and hold NVE harmless against all claims and damages. Applications described in this datasheet are illustrative only. NVE makes no representation or warranty that such applications will be suitable for the specified use without further testing or modification. Customers are responsible for the design and operation of their applications and products using NVE products, and NVE accepts no liability for any assistance with applications or customer product design. It is customer’s sole responsibility to determine whether the NVE product is suitable and fit for the customer’s applications and products planned, as well as for the planned application and use of customer’s third party customers. Customers should provide appropriate design and operating safeguards to minimize the risks associated with their applications and products. NVE does not accept any liability related to any default, damage, costs or problem which is based on any weakness or default in the customer’s applications or products, or the application or use by customer’s third party customers. The customer is responsible for all necessary testing for the customer’s applications and products using NVE products in order to avoid a default of the applications and the products or of the application or use by customer’s third party customers. NVE accepts no liability in this respect. Limiting Values Stress above one or more limiting values (as defined in the Absolute Maximum Ratings System of IEC 60134) will cause permanent damage to the device. Limiting values are stress ratings only and operation of the device at these or any other conditions above those given in the recommended operating conditions of the datasheet is not warranted. Constant or repeated exposure to limiting values will permanently and irreversibly affect the quality and reliability of the device. Terms and Conditions of Sale In case an individual agreement is concluded only the terms and conditions of the respective agreement shall apply. NVE hereby expressly objects to applying the customer’s general terms and conditions with regard to the purchase of NVE products by customer. No Offer to Sell or License Nothing in this document may be interpreted or construed as an offer to sell products that is open for acceptance or the grant, conveyance or implication of any license under any copyrights, patents or other industrial or intellectual property rights. Export Control This document as well as the items described herein may be subject to export control regulations. Export might require a prior authorization from national authorities. Automotive Qualified Products Unless the datasheet expressly states that a specific NVE product is automotive qualified, the product is not suitable for automotive use. It is neither qualified nor tested in accordance with automotive testing or application requirements. NVE accepts no liability for inclusion or use of non-automotive qualified products in automotive equipment or applications. In the event that customer uses the product for design-in and use in automotive applications to automotive specifications and standards, customer (a) shall use the product without NVE’s warranty of the product for such automotive applications, use and specifications, and (b) whenever customer uses the product for automotive applications beyond NVE’s specifications such use shall be solely at customer’s own risk, and (c) customer fully indemnifies NVE for any liability, damages or failed product claims resulting from customer design and use of the product for automotive applications beyond NVE’s standard warranty and NVE’s product specifications.

NVE Corporation 11409 Valley View Road, Eden Prairie, MN 55344-3617 (952) 829-9217 www.nve.com YouTube.com/NveCorporation iso-apps@nve.com An ISO 9001 Certified Company NVE Corporation

11409 Valley View Road

Eden Prairie, MN 55344-3617 USA Telephone: (952) 829-9217 www.nve.com e-mail: iso-info@nve.com ©NVE Corporation All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. ISB-DS-001-IL711/12-AO August 2022