ICPL2533SMT&R [ISOCOM]
Logic IC Output Optocoupler, 2-Element, 2500V Isolation, 0.25MBps;型号: | ICPL2533SMT&R |
厂家: | ISOCOM COMPONENTS |
描述: | Logic IC Output Optocoupler, 2-Element, 2500V Isolation, 0.25MBps 输出元件 光电 |
文件: | 总4页 (文件大小:63K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
ICPL2533
HIGH SPEED DUAL CHANNEL
OPTICALLY COUPLED ISOLATOR
PHOTOTRANSISTOR OUTPUT
Dimensions in mm
APPROVALS
2.54
l
UL recognised, File No. E91231
1
2
3
4
8
7
6
6.9
6.3
DESCRIPTION
These dual channel diode-transistor optocouplers
use a light emitting diode and an integrated photon
detector to provide 2500Volts RMS electrical isolation
between input and output. Seperate connection for
the photodiode bias and output transistor collector
improve the speed up to a hundred times that of a
conventional photo-transistor coupler by reducing
the base-collector capacitance.
5
*
1.3
* ICPL2531 NOISE SHIELD
9.7
9.1
7.62
4.0
3.6
0.5
15°
Max
FEATURES
l
0.3
High speed - 250k b/s NRZ
High Common Mode Transient
3.3
0.5
l
1.3
Immunity 1000V/µs
l
l
l
l
TTL Compatible
Open Collector Outputs
ABSOLUTE MAXIMUM RATINGS
(25°C unless otherwise specified)
2500V RMS Withstand Test Voltage,1 Min
Options :-
10mm lead spread - add G after part no.
Surface mount - add SM after part no.
Tape&reel - add SMT&R after part no.
All electrical parameters 100% tested
Custom electrical selections available
Storage Temperature
Operating Temperature
-55°C to + 125°C
-55°C to + 100°C
Lead Soldering Temperature
(1/16 inch (1.6mm) from case for 10 secs) 260°C
l
l
INPUT DIODE
APPLICATIONS
l
l
l
l
Line receivers
Average Forward Current
Peak Forward Current
( 50% duty cycle, 1ms pulse width )
Peak Transient Current
(equal to or less than 1µs P.W., 300 pps)
Reverse Voltage
25mA ( 1 )
50mA ( 2 )
Pulse transformer replacement
Wide bandwidth analog coupling
Output interface to CMOS-LSTTL-TTL
1.0A
5V
Power Dissipation
45mW( 3 )
OPTION SM
SURFACEMOUNT
OPTION G
DETECTOR
7.62
Average Output Current
Peak Output Current
Supply Voltage
Output Voltage
Power Dissipation
8mA
16mA
-0.5 to +30V
-0.5 to +20V
35mW( 4 )
1.2
0.6
1.4
0.9
0.3
10.2
9.5
10.16
ISOCOM INC
1024 S.GreenvilleAve,Suite240,
Allen, TX75002 USA
Tel:(214)495-0755 Fax:(214)495-0901
e-mail info@isocom.com
ISOCOM COMPONENTS LTD
Unit 25B, Park View Road West,
Park View Industrial Estate, Brenda Road
Hartlepool, Cleveland, TS25 1YD
Tel: (01429) 863609 Fax :(01429) 863581
http://www.isocom.com
7/12/00
DB91038-AAS/A3
ELECTRICAL CHARACTERISTICS ( TA= 0°C to 70°C Unless otherwise noted )
PARAMETER
SYM DEVICE MIN TYP* MAX UNITS
TEST CONDITION
15
12
11
9
21
19
14
12
%
%
%
%
IF = 8mA, VO = 0.5V,
VCC = 4.5V, TA= 25°C
IF = 16mA, V = 0.5V,
VCC = 4.5V, TOA= 25°C
Current Transfer Ratio
(note 5,6 )
CTR
IF = 8mA, VO = 0.5V,
VCC = 4.5V
IF = 16mA, VO = 0.5V,
VCC = 4.5V
0.2
0.2
0.5
0.5
V
V
IF = 8mA, I =0.7mA,
VCC = 4.5V O
IF = 16mA, IO=1.1mA,
Logic Low Output Voltage
(note 5 )
VOL
VCC = 4.5V
0.02 500 nA
IF1= I =0mA,T = 25°C,
VO1 =F2VO2 = VCCA = 5.5V
Logic High Output Current
(note 5 )
IOH
50
µA
µA
IF1 = I = 0mA,
VO1 = FV2 O2 = VCC = 15V
40
IF1= I =8mA,VCC=5.5V,
VO1 =FV2 O2 = open
Logic Low Supply Current
Logic High Supply Current
ICCL
80
µA
µA
IF1= IF2=16mA,V =5.5V,
VO1 = VO2 = openCC
ICCH
0.05
4
IF1= IF2= 0mA,VCC=5.5V,
VO1 = VO2 = open
1.5
1.5
1.7
1.7
V
V
IF = 8mA, TA= 25°C
IF = 16mA, TA= 25°C
Input Forward Voltage
(note 5 )
VF
Temperature Coefficient
of Forward Voltage
(note 5 )
∆VF
∆TA
-1.6
-1.6
mV/°C
mV/°C
IF = 8mA
IF = 16mA
Input Reverse Voltage (note 5 ) VR
5
V
IR = 10µA,TA= 25°C
Input Capacitance (note 5 )
CIN
VISO
60
pF
f = 1MHz, VF = 0
Input-output Isolation Voltage
(note 7)
2500 5000
1012
VRMS
R.H.equal to or less than
50%, t = 1min. TA= 25°C
Resistance (Input to Output)(note 7) RI-O
Capacitance (Input to Output)(note7) CI-O
II-I
Ω
V = 500V dc
f = 1MHz
pF
µA
45 % Relative Humidity
t = 5s, V = 500V dc
Resistance (Input to Input)(note8)
R
1011
Ω
VI-I = 500V dc
f = 1MHz
Capacitance (Input to Input)(note8) CI-I
*All typicals at TA= 25°C
0.25
pF
7/12/00
DB91038-AAS/A3
SWITCHING SPECIFICATIONS AT TA = 25°C ( VCC = 5V Unless otherwise noted )
PARAMETER
SYM DEVICE
MIN TYP MAX UNITS
TEST CONDITION
0.8
1.5
1.5
2.5
2.5
µs
IF = 8mA,RL= 7.5kΩ
Propagation Delay Time
tPHL
(note 10 )
to Logic Low at Output ( fig 1 )
0.3
µs
IF = 16mA,RL= 4.7kΩ,
(note11 )
1.0
µs
IF = 8mA,RL= 7.5kΩ,
Propagation Delay Time
tPLH
(note 10 )
to Logic High at Output ( fig 1 )
1.1
µs
IF = 16mA,RL= 4.7kΩ,
(note11 )
1000
1000
-1000
-1000
V/µs
V/µs
V/µs
V/µs
IF = 0mA, VCM = 10V
Common Mode Transient
Immunity at Logic High
Level Output ( fig 2 )
RL= 7.5kΩ,(note9,10 P)P
CMH
CML
IF = 0mA, VCM = 10V
RL = 4.7kΩ,(note9,11PP)
IF = 8mA,VCM = 10VPP
RL = 7.5kΩ,(note9,10 )
Common Mode Transient
Immunity at Logic Low
Level Output ( fig 2 )
IF = 16mA,VCM= 10V
RL = 1.9kΩ,(note9,11P)P
NOTES:-
1. Derate linearly above 70oC free air temperature at a rate of 0.8 mA/°C.
2. Derate linearly above 70oC free air temperature at a rate of 1.6 mA/°C.
3. Derate linearly above 70oC free air temperature at a rate of 0.9 mW/°C.
4. Derate linearly above 70oC free air temperature at a rate of 1.0 mW/°C.
5. Each channel.
6. CURRENT TRANSFER RATIO is defined as the ratio of output collector current,IO , to the forward LED
input current, IF times 100%.
7. Device considered a two-terminal device: pins 1,2,3,and 4 shorted together and pins 5,6,7,and 8 shorted
together.
8. Measured between pins 1 and 2 shorted together, and pins 3 and 4 shorted together.
9. Common mode transient immunity in Logic High level is the maximum tolerable (positive) dVcm/dt on
the leading edge of the common mode pulse VCM to assure that the output will remain in a Logic High
state (i.e. V > 2.0V). Common mode transient immunity in Logic Low level is the maximum tolerable
(negative) dOVcm/dt on the trailing edge of the common mode pulse signal, VCM to assure that the output
will remain in Logic Low state (i.e. VO< 0.8V).
10. The 7.5kΩ load represents 1 LSTTL unit load of 0.36mA and a 20kΩ pull-up resistor.
11. The 4.7kΩ load represents 1 LSTTL unit load of 0.36mA and a 8.2kΩ pull-up resistor.
12. The 2500 VRMS / 1minute capability is validated by a factory 3.1k VRMS / 1 second dielectric test.
FIG.1 SWITCHING TEST CIRCUIT
PULSE
GENERATOR
ZO = 50Ω
tr = 5ns
IF
I
F 0
VO
1
8
7
5V
VO
10% Duty Cycle
RL
1/f < 100µs
5V
2
1.3V
1.3V
VOL
3
4
6
5
tPHL
tPLH
IF Monitor
CL = 15pF
100Ω
DB91038-AAS/A3
7/12/00
FIG. 2 TEST CIRCUIT FOR TRANSIENT IMMUNITY AND TYPICAL WAVEFORMS
5V
RL
1
2
8
7
IF
10V
VCM
10%
90%
90%
10%
tr
VO
3
4
6
0V
VO
A
tf
5
5V
B
SWITCH AT A: IF = 0mA
VFF
VCM
VOL
VO
+
-
SWITCH AT B: IF = 16mA
PULSE GEN.
Normalized Current Transfer
Ratio vs. Forward Current
Logic High Output Current vs.
Ambient Temperature
101
1.6
1.5
IF = 0mA
1.4
1.3
1.2
1.1
VO = VCC = 5V
100
10-1
10-2
10-3
1.0
0.9
0.8
0.7
Normalized
to IF = 16mA
V = 0.5V
VO = 5V
TACC= 25°C
1
2
5
10
20
50
-55 -25
0
25
50
75 100
Ambient temperature TA ( °C )
Forward current IF (mA)
Normalized Current Transfer
Ratio vs. Ambient Temperature
Normalized Propagation Delay
vs. Ambient Temperature
1.3
1.2
1.5
1.4
1.3
tPLH
tPHL
1.1
1.2
1.0
0.9
1.1
1.0
Normalized
0.9
0.8
Normalized
to IF = 16mA
V = 0.5V
VO = 5V
0.8
0.7
to I = 16mA
V
F= 5V
RCC= 4.7kΩ
TAL = 25°C
TACC= 25°C
0.7
-55 -25
0
25
50
75 100
-25
0
25
50
70
Ambient temperature TA ( °C )
Ambient temperature TA ( °C )
7/12/00
DB91038-AAS/A3
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