HP HCPL-2200-500, HCPL-2200-300, HCPL-2200-060, HCPL-2219-060 Datasheet

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Low Input Current Logic Gate Optocouplers
Technical Data
HCPL-2200 HCPL-2219
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.
Features
Mode Rejection (CMR) at VCM = 400 V (HCPL-2219)
• Compatible with LSTTL, TTL, and CMOS Logic
• Wide VCC 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 -2500 V rms
for 1 minute CSA Approved VDE 0884 Approved with
V
IORM
= 630 V peak (HCPL-2219 Option 060 Only)
• MIL-STD-1772 Version Available (HCPL-5200/1)
Applications
• Isolation of High Speed Logic Systems
• Computer-Peripheral Interfaces
• Microprocessor System Interfaces
Functional Diagram
• 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.
A 0.1 µF bypass capacitor must be connected between pins 5 and 8.
7
1
2
3
4
5
6
8
NC
ANODE
CATHODE
NC
GND
V
CC
V
O
SHIELD
TRUTH TABLE
(POSITIVE LOGIC)
LED
ON
OFF
ON
OFF
ENABLE
 H H L L
V
E
OUTPUT
 Z Z H L
5965-3596E
H
1-121
I
F
SHIELD
V
F
V
CC
V
O
GND
I
CC
I
O
+
2
3
8
5
V
E
7
6
I
E
The Electrical and Switching Characteristics of the HCPL­2200/2219 are guaranteed over the temperature range of 0°C to 85°C and a VCC range of 4.5 volts to 20 volts. Low IF and wide V
CC
range allow compatibility with
TTL, LSTTL, and CMOS logic and result in lower power consump­tion compared to other high speed optocouplers. Logic signals are transmitted with a typical propagation delay of 160 nsec.
Selection Guide
Small-Outline Widebody
Minimum CMR 8-Pin DIP (300 Mil) SO-8 (400 Mil) Hermetic
Input On- Single Dual Single Single Single and Dual
dV/dt V
CM
Current Channel Channel Channel Channel Channel
(V/µs) (V) (mA) Package Package Package Package Packages
1,000 50 1.6 HCPL-2200
[1]
HCPL-0201 HCNW2201 HCPL-2201 HCPL-2202
1.8 HCPL-2231
2,500 400 1.6 HCPL-2219
[1]
5,000
[2]
300
[2]
1.6 HCPL-2211 HCPL-0211 HCNW2211 HCPL-2212
1.8 HCPL-2232
1,000 50 2.0 HCPL-52XX
HCPL-62XX
Notes:
1. HCPL-2200/2219 devices include output enable/disable functionality.
2. Minimum CMR of 10 kV/µs with VCM = 1000 V can be achieved with input current, IF, of 5 mA.
Ordering Information
Specify Part Number followed by Option Number (if desired).
Example:
HCPL-2219#XXX
060 = VDE 0884 V
IORM
= 630 Vpeak Option* 300 = Gull Wing Surface Mount Option 500 = Tape and Reel Packaging Option
Option data sheets available. Contact your Hewlett-Packard sales representative or authorized distributor for information.
*For HCPL-2219 only.
Schematic
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.
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1.080 ± 0.320
(0.043 ± 0.013)
2.54 ± 0.25
(0.100 ± 0.010)
0.51 (0.020) MIN.
0.65 (0.025) MAX.
4.70 (0.185) MAX.
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.
5° TYP.
0.254
+ 0.076
- 0.051
(0.010
+ 0.003)
- 0.002)
7.62 ± 0.25
(0.300 ± 0.010)
6.35 ± 0.25
(0.250 ± 0.010)
9.65 ± 0.25
(0.380 ± 0.010)
1.78 (0.070) MAX.
1.19 (0.047) MAX.
HP XXXXZ
YYWW
DATE CODE
5678
4321
OPTION CODE*
UL RECOGNITION
UR
TYPE NUMBER
Package Outline Drawings
8-Pin DIP Package
8-Pin DIP Package with Gull Wing Surface Mount Option 300
0.635 ± 0.25
(0.025 ± 0.010)
12° NOM.
9.65 ± 0.25
(0.380 ± 0.010)
0.635 ± 0.130
(0.025 ± 0.005)
7.62 ± 0.25
(0.300 ± 0.010)
5
6
7
8
4
3
2
1
9.65 ± 0.25
(0.380 ± 0.010)
6.350 ± 0.25
(0.250 ± 0.010)
1.016 (0.040)
1.194 (0.047)
1.194 (0.047)
1.778 (0.070)
9.398 (0.370)
9.906 (0.390)
4.826
(0.190)
TYP.
0.381 (0.015)
0.635 (0.025)
PAD LOCATION (FOR REFERENCE ONLY)
1.080 ± 0.320
(0.043 ± 0.013)
4.19
(0.165)
MAX.
1.780
(0.070)
MAX.
1.19
(0.047)
MAX.
2.54
(0.100)
BSC DIMENSIONS IN MILLIMETERS (INCHES). LEAD COPLANARITY = 0.10 mm (0.004 INCHES).
0.254
+ 0.076
- 0.051
(0.010
+ 0.003)
- 0.002)
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Note: Use of nonchlorine activated fluxes is highly recommended.
Maximum Solder Reflow Thermal Profile
240
T = 115°C, 0.3°C/SEC
0
T = 100°C, 1.5°C/SEC
T = 145°C, 1°C/SEC
TIME – MINUTES
TEMPERATURE – °C
220 200 180 160 140 120 100
80 60
40
20
0
260
123456789101112
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.
VDE
Approved according to VDE 0884/06.92. (HCPL-2219 Option 060 Only)
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.
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