Coupled Isolator. JANTX4N24A Datasheet

JANTX4N24A Isolator. Datasheet pdf. Equivalent

JANTX4N24A Datasheet
Recommendation JANTX4N24A Datasheet
Part JANTX4N24A
Description Hi-Reliability Optically Coupled Isolator
Feature JANTX4N24A; .
Manufacture TT
Datasheet
Download JANTX4N24A Datasheet




TT JANTX4N24A
Hi-Reliability Optically Coupled Isolator
JAN / JANTX / JANTXV 4N22, 4N23, 4N24 [A]
Features:
 TO-78 hermetically sealed package
 High current transfer ratio
 1 kV electrical isolation
 Base contact provided for conventional transistor biasing
 JAN, JANTX and JANTXV devices processed to MIL-PRF-19500
 Patent No. 4124860
Description:
Each isolator in this series consists of an infrared emitting diode and a NPN silicon phototransistor, which are mounted in
a hermetically sealed TO-78 package. Devices are designed for military and/or harsh environments. The suffix letter
A” denotes the collector is electrically isolated from the case.
The JAN / JANTX / JANTXV 4N22, 4N22A, 4N23, 4N23A, 4N24, and 4N24A devices are processed to MIL-PRF-
19500/486.
This series of 4N products are JEDEC registered, DSCC qualified.
Please contact your local representative or OPTEK for more information.
Applications:
 High-voltage isolation between input and output
 Electrical isolation in dirty environments
 Industrial equipment
 Medical equipment
 Office
Pin #
3
2
1
Function
Collector
Base
Emitter
Pin #
5
6
7
Function
Anode
Open
Cathode
This product is built, tested and shipped from the USA
OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible.
OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006
Phone: (972) 323-2200 or (800) 341-4747
FAX: (972) 323-2396 sensors@optekinc.com www.optekinc.com
Issue F 02/2014
Page 1 of 4



TT JANTX4N24A
Hi-Reliability Optically Coupled Isolator
JAN / JANTX / JANTXV 4N22, 4N23, 4N24 [A]
Absolute Maximum Ratings (TA = 25° C unless otherwise noted)
Storage Temperature Range
Operating Temperature Range
Input-to-Output Isolation Voltage
Lead Soldering Temperature [1/16 inch (1.6 mm) from case for 5 seconds with soldering iron]
Input Diode
Forward DC Current (65° C or below)
Reverse Voltage
Peak Forward Current (1 µs pulse width, 300 pps)
Power Dissipation
Output Sensor:
Continuous Collector Current
Collector-Emitter Voltage
Collector-Base Voltage
Emitter-Base Voltage
Power Dissipation
Notes:
1. Measured with input leads shorted together and output leads shorted together.
2. RMA flux is recommended. Duration can be extended to 10 seconds maximum when flow soldering.
3. Derate linearly 1.0 mW/° C above 65° C.
4. Derate linearly 3.0 mW/° C above 25° C.
-65° C to +150° C
-55° C to +125° C
± 1.00 kVDC(1)
260° C(2)
40 mA
2V
1A
60 mW(3)
50 mA
40 V
45 V
4V
300 mW(4)
Part
Number
Ordering Information
Isolation
IF (mA)
Voltage (kV) Typ / Max
VCE
(Volts)
Max
Processing
MIL-PRF-
195000
JAN4N22 or JAN4N22A
JANTX4N22 or JANTX4N22A
JANTXV4N22 or JANTXV4N22A
JAN4N23 or JAN4N23A
JANTX4N23 or JANTX4N23A
1
10 / 40
40
486
JANTXV4N23 or JANTXV4N23A
JAN4N24 or JAN4N24A
JANTX4N24 or JANTX4N24A
JANTXV4N24 or JANTXV4N24A
This product is built, tested and shipped from the USA
OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible.
Issue F 02/2014
Page 2 of 4
OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006
Phone: (972) 323-2200 or (800) 341-4747
FAX: (972) 323-2396 sensors@optekinc.com www.optekinc.com



TT JANTX4N24A
Hi-Reliability Optically Coupled Isolator
JAN / JANTX / JANTXV 4N22, 4N23, 4N24 [A]
Electrical Characteristics (TA = 25°C unless otherwise noted)
SYMBOL
PARAMETER
MIN TYP MAX UNITS
TEST CONDITIONS
Onput Diode
VF Forward Voltage
IR Reverse Current
Output Phototransistor
V(BR)CEO
V(BR)CBO
V(BR)EBO
Collector-Emitter Breakdown Voltage
Collector-Base Breakdown Voltage
Emitter-Base Breakdown Voltage
IC(OFF) Collector-Emitter Dark Current
ICB(OFF) Collector-Base Dark Current
Coupled
On-State Collector Current
JAN / JANTX / JANTXV 4N22 [A]
IC(ON) JAN / JANTX / JANTXV 4N23 [A]
JAN / JANTX / JANTXV 4N24 [A]
VCE(SAT)
Collector-Emitter Saturation Voltage
JAN / JANTX / JANTXV 4N22 [A]
JAN / JANTX / JANTXV 4N23 [A]
JAN / JANTX / JANTXV 4N24 [A]
HFE DC Current Gain
RIO Resistance (Input-to-Output)
CIO Capacitance (Input-to-Output)
TR, TF Output Rise and Fall Time
0.80 - 1.50
IF = 10.0 mA
1.00 - 1.70 V IF = 10.0 mA, TA = -55° C(1)
0.70 - 1.30
IF = 10.0 mA, TA = +100° C(1)
- - 100 µA VR= 2.0 V
40 - - V IC = 1.0 mA, IB= 0, IF= 0
45 - - V IC = 100 µA, IB= 0, IF= 0
7 - - V IE = 100 µA, IC= 0, IF= 0
-
-
100 nA VCE = 20 V, IB= 0, IF= 0
100 µA VCE = 20 V, IB= 0, IF= 0, TA = 100ºC
- - 100 nA VCB = 20 V, IE= 0, IF= 0
0.15 -
2.50 -
1.00 -
1.00 -
0.20 -
6.00 -
2.50 -
2.50 -
0.40 -
10.0 -
4.00 -
4.00 -
- IF = 2.0 mA , VCE = 5 V, IB = 0
- IF = 10.0 mA , VCE = 5 V, IB = 0
- IF = 10.0 mA , VCE = 5 V, IB = 0, TA = -55° C(1)
- IF = 10.0 mA , VCE = 5 V, IB = 0, TA = 100° C(1)
- IF = 2.0 mA , VCE = 5 V, IB = 0
-
-
mA
IF = 10.0 mA , VCE = 5 V, IB = 0
IF = 10.0 mA , VCE = 5 V, IB = 0, TA = -55° C(1)
- IF = 10.0 mA , VCE = 5 V, IB = 0, TA = 100° C(1)
- IF = 2.0 mA , VCE = 5 V, IB = 0
- IF = 10.0 mA , VCE = 5 V, IB = 0
- IF = 10.0 mA , VCE = 5 V, IB = 0, TA = -55° C(1)
- IF = 10.0 mA , VCE = 5 V, IB = 0, TA = 100° C(1)
-
-
-
-
0.30
0.30
V
IF = 20 mA , IC = 2.5 mA, IB = 0
IF = 20 mA , IC = 5.0 mA, IB = 0
- - 0.30
IF = 20 mA , IC = 10.0 mA, IB = 0
100 - - V VCE = 5.0 V , IC = 10.0 mA, IF = 0 mA
1011
-
-
-
- V10 = ± 1.0 VDC(3)
5 pF VI-O = 0 V, f = 1.0 MHz(3)
- - 20.0 µs VCC = 10.0 V , IF = 10.0 mA, RL = 100
Notes:
1.
2.
3.
Guaranteed but not tested.
Sample tested, LTPD = 10.
Measured with input leads shorted together and output leads shorted together.
This product is built, tested and shipped from the USA
OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible.
OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006
Phone: (972) 323-2200 or (800) 341-4747
FAX: (972) 323-2396 sensors@optekinc.com www.optekinc.com
Issue F 02/2014
Page 3 of 4







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