Low Input Current Logic Gate
Optocouplers
Technical Data
HCPL-2200
HCPL-2219
Features
• 2.5 kV/
µ
s Minimum Common
Mode Rejection (CMR) at
V
CM
= 400 V (HCPL-2219)
• Compatible with LSTTL,
TTL, and CMOS Logic
• Wide V
CC
Range (4.5 to 20 V)
• 2.5 Mbd Guaranteed over
Temperature
• Low Input Current (1.6 mA)
• Three State Output (No
Pullup Resistor Required)
• Guaranteed Performance
from 0
°
C to 85
°
C
• Hysteresis
• Safety Approval
UL Recognized -3750 V rms
for 1 minute
CSA Approved
IEC/EN/DIN EN 60747-5-2
Approved with
V
IORM
= 630 V
peak
(HCPL-2219 Option 060
Only)
• MIL-PRF-38534 Hermetic
Version Available (HCPL-
5200/1)
• Microprocessor System
Interfaces
• Ground Loop Elimination
• Pulse Transformer
Replacement
• Isolated Buss Driver
• High Speed Line Receiver
Description
The HCPL-2200/2219 are
optically coupled logic gates that
combine a GaAsP LED and an
integrated high gain photo
detector. The detector has a three
state output stage and has a
detector threshold with hysteresis.
The three state output eliminates
the need for a pullup resistor and
allows for direct drive of data
busses. The hysteresis provides
differential mode noise immunity
and eliminates the potential for
output signal chatter.
A superior internal shield on the
HCPL-2219 guarantees common
mode transient immunity of
2.5 kV/µs at a common mode
voltage of 400 volts.
Functional Diagram
NC 1
ANODE 2
CATHODE 3
NC 4
8 V
CC
7 V
O
6 V
E
5 GND
TRUTH TABLE
(POSITIVE LOGIC)
ENABLE
OUTPUT
LED
H
ON
Z
H
OFF
Z
L
ON
H
L
OFF
L
SHIELD
Applications
• Isolation of High Speed
Logic Systems
• Computer-Peripheral
Interfaces
A 0.1
µ
F bypass capacitor must be connected between pins 5 and 8.
CAUTION: It is advised that normal static precautions be taken in handling and assembly of this
component to prevent damage and/or degradation which may be induced by ESD.
2
The Electrical and Switching
Characteristics of the HCPL-
2200/2219 are guaranteed over
the temperature range of 0°C to
85°C and a V
CC
range of 4.5 volts
to 20 volts. Low I
F
and wide V
CC
range allow compatibility with
TTL, LSTTL, and CMOS logic and
result in lower power consump-
tion compared to other high
speed optocouplers. Logic signals
are transmitted with a typical
propagation delay of 160 nsec.
The HCPL-2200/2219 are useful
for isolating high speed logic
interfaces, buffering of input and
output lines, and implementing
isolated line receivers in high
noise environments.
Selection Guide
Minimum CMR
dV/dt
(V/
µ
s)
1,000
V
CM
(V)
50
Input On-
Current
(mA)
1.6
8-Pin DIP (300 Mil)
Single
Dual
Channel
Channel
Package
Package
HCPL-2200
[1]
HCPL-2201
HCPL-2202
HCPL-2231
HCPL-2219
[1]
HCPL-2211
HCPL-2212
HCPL-2232
Small-Outline Widebody
SO-8
(400 Mil)
Hermetic
Single
Single
Single and Dual
Channel
Channel
Channel
Package
Package
Packages
HCPL-0201
HCNW2201
2,500
5,000
[2]
400
300
[2]
1.8
1.6
1.6
1.8
2.0
HCPL-0211
HCNW2211
1,000
50
HCPL-52XX
HCPL-62XX
Notes:
1. HCPL-2200/2219 devices include output enable/disable functionality.
2. Minimum CMR of 10 kV/µs with V
CM
= 1000 V can be achieved with input current, I
F
, of 5 mA.
Ordering Information
Specify Part Number followed by Option Number (if desired).
Example:
HCPL-2219#XXXX
060 = IEC/EN/DIN EN 60747-5-2 V
IORM
= 630 Vpeak Option*
300 = Gull Wing Surface Mount Option
500 = Tape and Reel Packaging Option
XXXE = Lead Free Option
Option data sheets available. Contact your Agilent sales representative or authorized distributor for information.
*For HCPL-2219 only.
Remarks: The notation “#” is used for existing products, while (new) products launched since 15th July 2001 and lead free option will use “–”
Schematic
I
F
+
V
F
–
2
I
CC
8
I
O
7
I
E
6
SHIELD
5
V
CC
V
O
V
E
GND
3
3
Package Outline Drawings
8-Pin DIP Package
9.65 ± 0.25
(0.380 ± 0.010)
TYPE NUMBER
8
7
6
5
7.62 ± 0.25
(0.300 ± 0.010)
6.35 ± 0.25
(0.250 ± 0.010)
OPTION CODE*
DATE CODE
A XXXXZ
YYWW RU
1
1.19 (0.047) MAX.
2
3
4
UL
RECOGNITION
1.78 (0.070) MAX.
+ 0.076
0.254 - 0.051
+ 0.003)
(0.010 - 0.002)
5° TYP.
3.56 ± 0.13
(0.140 ± 0.005)
4.70 (0.185) MAX.
0.51 (0.020) MIN.
2.92 (0.115) MIN.
DIMENSIONS IN MILLIMETERS AND (INCHES).
*MARKING CODE LETTER FOR OPTION NUMBERS.
"V" = OPTION 060
OPTION NUMBERS 300 AND 500 NOT MARKED.
NOTE: FLOATING LEAD PROTRUSION IS 0.25 mm (10 mils) MAX.
1.080 ± 0.320
(0.043 ± 0.013)
0.65 (0.025) MAX.
2.54 ± 0.25
(0.100 ± 0.010)
8-Pin DIP Package with Gull Wing Surface Mount Option 300
LAND PATTERN RECOMMENDATION
9.65 ± 0.25
(0.380 ± 0.010)
8
7
6
5
1.016 (0.040)
6.350 ± 0.25
(0.250 ± 0.010)
10.9 (0.430)
1
2
3
4
1.27 (0.050)
2.0 (0.080)
1.19
(0.047)
MAX.
1.780
(0.070)
MAX.
9.65 ± 0.25
(0.380 ± 0.010)
7.62 ± 0.25
(0.300 ± 0.010)
+ 0.076
0.254 - 0.051
+ 0.003)
(0.010 - 0.002)
3.56 ± 0.13
(0.140 ± 0.005)
1.080 ± 0.320
(0.043 ± 0.013)
0.635 ± 0.130
2.54
(0.025 ± 0.005)
(0.100)
BSC
DIMENSIONS IN MILLIMETERS (INCHES).
LEAD COPLANARITY = 0.10 mm (0.004 INCHES).
0.635 ± 0.25
(0.025 ± 0.010)
12° NOM.
NOTE: FLOATING LEAD PROTRUSION IS 0.25 mm (10 mils) MAX.
4
Solder Reflow Thermal Profile
300
PREHEATING RATE 3°C + 1°C/–0.5°C/SEC.
REFLOW HEATING RATE 2.5°C ± 0.5°C/SEC.
PEAK
TEMP.
245°C
PEAK
TEMP.
240°C
PEAK
TEMP.
230°C
2.5°C ± 0.5°C/SEC.
160°C
150°C
140°C
3°C + 1°C/–0.5°C
30
SEC.
30
SEC.
SOLDERING
TIME
200°C
Regulatory Information
The HCPL-2200/2219 have been
approved by the following
organizations:
UL
Recognized under UL 1577,
Component Recognition
Program, File E55361.
CSA
Approved under CSA Component
Acceptance Notice #5, File CA
88324.
IEC/EN/DIN EN 60747-5-2
Approved under:
IEC 60747-5-2:1997 + A1:2002
EN 60747-5-2:2001 + A1:2002
DIN EN 60747-5-2 (VDE 0884
Teil 2):2003-01.
(Option 060 only)
TEMPERATURE (°C)
200
100
PREHEATING TIME
150°C, 90 + 30 SEC.
50 SEC.
TIGHT
TYPICAL
LOOSE
ROOM
TEMPERATURE
0
0
50
100
150
200
250
TIME (SECONDS)
Recommended Pb-Free IR Profile
t
p
T
p
T
L
260 +0/-5 °C
217 °C
RAMP-UP
3 °C/SEC. MAX.
150 - 200 °C
RAMP-DOWN
6 °C/SEC. MAX.
TIME WITHIN 5 °C of ACTUAL
PEAK TEMPERATURE
20-40 SEC.
TEMPERATURE
T
smax
T
smin
t
s
PREHEAT
60 to 180 SEC.
25
t 25 °C to PEAK
TIME
t
L
60 to 150 SEC.
NOTES:
THE TIME FROM 25 °C to PEAK TEMPERATURE = 8 MINUTES MAX.
T
smax
= 200 °C, T
smin
= 150 °C
Insulation and Safety Related Specifications
Parameter
Symbol
Value
Units
Conditions
Min. External Air Gap L(IO1)
7.1
mm
Measured from input terminals to output terminals,
(External Clearance)
shortest distance through air.
Min. External
L(IO2)
7.4
mm
Measured from input terminals to output terminals,
Tracking Path
shortest distance path along body.
(External Creepage)
Minimum Internal
0.08
mm
Through insulation distance, conductor to conductor,
Plastic Gap
usually the direct distance between the photoemitter
(Internal Clearance)
and photodetector inside the optocoupler cavity.
Tracking Resistance
CTI
200
V
DIN IEC 112/VDE 0303 Part 1
(Comparative
Tracking Index)
Isolation Group
IIIa
Material Group (DIN VDE 0110, 1/89, Table 1)
Option 300 - surface mount classification is Class A in accordance with CECC 00802.
5
IEC/EN/DIN EN 60747-5-2 Insulation Related Characteristics (HCPL-2219 OPTION 060 ONLY)
Description
Installation classification per DIN VDE 0110/1.89, Table 1
for rated mains voltage
≤
300 V rms
for rated mains voltage
≤
450 V rms
Climatic Classification
Pollution Degree (DIN VDE 0110/1.89)
Maximum Working Insulation Voltage
Input to Output Test Voltage, Method b*
V
IORM
x 1.875 = V
PR
, 100% Production Test with t
m
= 1 sec,
Partial Discharge < 5 pC
Input to Output Test Voltage, Method a*
V
IORM
x 1.5 = V
PR
, Type and sample test,
t
m
= 60 sec, Partial Discharge < 5 pC
Highest Allowable Overvoltage*
(Transient Overvoltage, t
ini
= 10 sec)
Safety Limiting Values
(Maximum values allowed in the event of a failure,
also see Figure 12, Thermal Derating curve.)
Case Temperature
Input Current
Output Power
Insulation Resistance at T
S
, V
IO
= 500 V
V
IORM
V
PR
Symbol
Characteristic
I-IV
I-III
55/85/21
2
630
1181
V
peak
Units
V
peak
V
PR
945
V
peak
V
IOTM
6000
V
peak
T
S
I
S,INPUT
P
S,OUTPUT
R
S
175
230
600
≥
10
9
°C
mA
mW
Ω
*Refer to the front of the optocoupler section of the current catalog, under Product Safety Regulations section, IEC/EN/DIN EN
60747-5-2, for a detailed description.
Note: Isolation characteristics are guaranteed only within the safety maximum ratings which must be ensured by protective circuits in
application.