IL610-1E NVE, IL610-1E Datasheet

ISOLATOR PASSIVE INPUT HS 8MSOP

IL610-1E

Manufacturer Part Number
IL610-1E
Description
ISOLATOR PASSIVE INPUT HS 8MSOP
Manufacturer
NVE
Series
IsoLoop®r
Datasheets

Specifications of IL610-1E

Inputs - Side 1/side 2
1/0
Number Of Channels
1
Isolation Rating
2500Vrms
Voltage - Supply
3 V ~ 5.5 V
Data Rate
100Mbps
Propagation Delay
12ns
Output Type
CMOS
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Operating Temperature
-40°C ~ 85°C
No. Of Channels
1
Supply Current
2mA
Supply Voltage Range
3V To 5.5V
Digital Ic Case Style
MSOP
No. Of Pins
8
Operating Temperature Range
-40°C To +85°C
Operating
RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
390-1075-5
Functional Diagrams
OUT
OUT
COIL
IsoLoop
*U.S. Patent number 5,831,426; 6,300,617 and others.
V
IN
IN
IN
IN
IN
IN
IN
IN
IN
OE
1
1
2
1
2
1
2
3
1
2
3
NVE Corporation
IL610
IL611
IL612
IL613
IL614
®
is a registered trademark of NVE Corporation.
V
DD1
11409 Valley View Road, Eden Prairie, MN 55344-3617
Passive-Input Digital Isolators – CMOS Outputs
V
DD2
V
OUT
OUT
OUT
OUT
IN
OUT
OUT
OUT
IN
OUT
OUT
OE
2
1
1
1
2
1
1
2
3
2
3
Phone: (952) 829-9217
• CAN Bus / Device Net
• Differential Line Receiver
• Optocoupler Replacement
• SPI Interface
• RS-485, RS-422, or RS-232
• Digital Fieldbus
• Space-critical multi-channel applications
Features
• Up to 100 Mbps Data Rate
• Single-ended or Differential Input Operation
• Flexible Inputs with Very Wide Input Voltage Range
• Failsafe Output (logic high output for zero coil current)
• Output Enable (IL610)
• 3.3 V or 5 V Operation / Level Translation
• 2500 V
• Low Power Dissipation
• −40°C to 85°C Temperature Range
• 20 kV/µs Transient Immunity
• Low EMC Footprint
• UL1577 and IEC61010-2001 Approved
• 8-Pin MSOP, SOIC, and PDIP Packages
• Bare Die Available (IL610)
Applications
Description
The IL600 Series are passive input digital signal isolators with
CMOS outputs. They have a similar interface but better
performance and higher package density than optocouplers.
The devices are manufactured with NVE’s patented*
IsoLoop
technology for small size, high speed, and low power.
A single resistor sets the maximum input current for voltages
above 0.5 V. A capacitor in parallel with the current-limit
resistor provides improved dynamic performance.
These versatile components simplify inventory requirements
by replacing a variety of optocouplers and functioning over a
wide range of data rates, edge speeds, and power supply
levels. The devices are available in MSOP, SOIC, and PDIP
packages, as well as bare die.
®
RMS
spintronic Giant Magnetoresistive (GMR)
Fax: (952) 829-9189
Isolation (1 minute)
www.IsoLoop.com
IL600 Series
©NVE Corporation
REV. V

Related parts for IL610-1E

IL610-1E Summary of contents

Page 1

... Temperature Range • 20 kV/µs Transient Immunity • Low EMC Footprint • UL1577 and IEC61010-2001 Approved • 8-Pin MSOP, SOIC, and PDIP Packages • Bare Die Available (IL610) Applications • CAN Bus / Device Net • Differential Line Receiver • Optocoupler Replacement • ...

Page 2

... Rated Voltage (1 min.; SOIC & PDIP) Safety and Approvals IEC61010-2001 TUV Certificate Numbers: Classification: Reinforced Insulation Model IL610-2E, IL611-2E, IL612-2E IL613E, IL614E IL610-3E, IL611-3E, IL612-3E, IL613-3E, IL614-3E UL 1577 Component Recognition Program File Number: E207481 Rated 2,500V for 1 minute (SOIC, PDIP) RMS Soldering Profile Per JEDEC J-STD-020C Electrostatic Discharge Sensitivity This product has been tested for electrostatic sensitivity to the limits stated in the specifications ...

Page 3

... IL610 Pin Connections internal connection 2 IN+ Coil connection 3 IN− Coil connection internal connection 5 GND Ground return for OUT Data out Output enable Internally held low with 100 kΩ Supply Voltage DD IL611 Pin Connections Channel 1 coil connection 1 − Channel 1 coil connection ...

Page 4

IL614 Pin Connections 1 V Supply Voltage 1 DD1 Ground return for V DD1 2 GND 1 (internally connected to pin 8) 3 OUT Data out, channel 1 1 Channel 1 data output enable Internally held low with ...

Page 5

... NRZ bit pattern with no more than five consecutive 1s or 0s; 800 ps transition time equal to the magnitude of the worst case difference in t PSK Symbol Min. Typ. Z 85||9 COIL TC R 0.2 COIL I 0.5 1 INH I 5 3.5 INL IL610 IL611 IL612 DD1 IL612 DD2 IL613 IL614 DD1 IL614 DD2 V 4 ...

Page 6

... Failsafe Operation is defined as the guaranteed output state which will be achieved if the DC input current falls between the input levels specified (see Test Circuit 1 for details). Note if Failsafe to Logic Low is required, the DC current supplied to the coil must be at least 8 mA using 3.3 V supplies versus 5 mA for 5 V supplies. Select the value of limit resistor appropriately. Symbol Min. Typ. IL610, I 1.3 DD IL611, I 2.6 DD IL612 ...

Page 7

... This allows glitch-free interface with low slew rate signals. To calculate the value of the protection resistor (R1), use Ohm’s law as shown in the examples below. Note that only the magnitude of the voltage across the coil is important; the absolute values limit Test Circuit 2 (Differential) 7 IL600 Series + IL610 GND GND GND and V are arbitrary ...

Page 8

Calculating Limiting Resistor Value Coil Current mA 5 3.5 1.5 Logic State High Low Figure 1. IL600-Series Transfer Function I COIL V INH R1 85 Input Coil V INL Figure 2. Limiting Resistor Calculation Equivalent Circuit Example 1. In this ...

Page 9

... Test Circuit 1). Single-Ended or Differential Input The IL610, IL611, IL613, and channel 1 of the IL614 can be run with single-ended or differential inputs. In differential mode, coil current reverses each cycle. In single-ended mode, a “boost capacitor” placed across the current limit resistor provides pulsed current reversal for correct operation. In the differential mode, current will naturally flow through the coil in both directions without the boost cap, although the cap can still be used if application factors such as increased external field immunity or improved PWD performance mandate ...

Page 10

... Similarly, when using IL600-Series devices, the designer should be aware that it is the voltage magnitude across the coil that creates the current, not just the value of the input voltage. To illustrate this point, consider the single-ended non-inverting and inverting cases. Bridge Output Response ...

Page 11

... IL600 devices are simple to use as long remembered that there must be enough coil current (5 mA) to ensure logic low output, and close to zero current (0 mA) to ensure logic high output boost 1K IL610 Data In GND 1 Non-Inverting Circuit +5 V IL610 C boost Data GND 1 Inverting Circuit Figure 5. Inverting and non-inverting circuits 11 IL600 Series V ...

Page 12

... The shield absorbs surrounding stray flux until it becomes saturated. At saturation the shield is transparent to external applied fields, and the GMR sensor may react to the field. To compensate for this effect, IsoLoop Isolators use Wheatstone Bridge structures that are only sensitive to differential magnetic fields. ...

Page 13

... Isolated RS-485 and RS-422 Receivers Using IL610s IL610s can be used as simple isolated RS-485 or RS-422 receivers, terminating signals at the IL610 for a fraction of the cost of an isolated node. Cabling is greatly simplified by eliminating the need to power the input side of the receiving board. No current-limiting resistor is needed for a single receiver because it will draw less current than the driver maximum ...

Page 14

... Isolated CAN Bus Low pulse width distortion is critical for CAN bus, and IL600 Isolators are specified for just 3 ns typical pulse width distortion. Their fail-safe output (logic high output for zero coil current) ensures proper power-on. The speed of IL600 isolators easily supports the maximum CAN bus transfer speed of 1 Mbps ...

Page 15

V DD1 boost boost + IL614 GND 1 Isolated RS-485 – Fractional Load The unique IL614 three-channel isolator ...

Page 16

... C1 and C2 are 47 nF ceramic Isolated RS-232 Receiver Using IL610 An IL610 can be used as a simple isolated RS-232 receiver. Cabling is greatly simplified by eliminating the need to power the input side of the receiving board. A similar circuit can be used for RS-422/RS-485, LVDS, or other differential networks. The IL610 unique MSOP isolator when board space is critical ...

Page 17

Package Drawings, Dimensions and Specifications 8-pin MSOP 0.114 (2.90) 0.122 (3.10) 0.114 (2.90) 0.189 (4.80) 0.197 (5.00) 0.122 (3.10) 0.010 (0.25) 0.016 (0.40) 8-pin SOIC Package 0.189 (4.8) 0.197 (5.0) 0.228 (5.8) 0.150 (3.8) 0.244 (6.2) 0.157 (4. ...

Page 18

SOIC Package 0.386 (9.8) 0.394 (10.0) Pin 1 identified by either an indent or a marked dot 0.228 (5.8) 0.244 (6.2) 0.3" 16-pin SOIC Package 0.397 (10.1) 0.413 (10.5) Pin 1 identified by either an indent or a ...

Page 19

... Drive Channel, 1 Receive Channel 613 = 3 Drive Channels 614 = 2 Drive Channels, 1 Receive Channel Product Family IL = Isolators 19 IL600 Series IL610 Valid IL612 Valid Part Numbers Part Numbers IL610-1E IL612-2E IL610-2E IL612-3E IL610-3E IL610-5 IL613 Valid Part Numbers IL611 Valid IL613E Part Numbers IL613-3E IL611-1E ...

Page 20

Revision History ISB-DS-001-IL600-V September 2010 ISB-DS-001-IL600-U ISB-DS-001-IL600-T ISB-DS-001-IL600-S ISB-DS-001-IL600-R ISB-DS-001-IL600-Q ISB-DS-001-IL600-P ISB-DS-001-IL600-O ISB-DS-001-IL600-N ISB-DS-001-IL600-M ISB-DS-001-IL600-L ISB-DS-001-IL600-K ISB-DS-001-IL600-J Changes • Additional changes to pin spacing specification on MSOP drawing. Changes • Changed pin spacing specification on MSOP drawing. Changes • Added ...

Page 21

... Corporation for its use, nor for any infringement of patents, nor rights or licenses granted to third parties, which may result from its use. No license is granted by implication, or otherwise, under any patent or patent rights of NVE Corporation. NVE Corporation does not authorize, nor warrant, any NVE Corporation product for use in life support devices or systems or other critical applications, without the express written approval of the President of NVE Corporation ...

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