VO4256H Vishay, VO4256H Datasheet

OPTOCPLR PHOTOTRC 600V 2MA 6DIP

VO4256H

Manufacturer Part Number
VO4256H
Description
OPTOCPLR PHOTOTRC 600V 2MA 6DIP
Manufacturer
Vishay
Datasheets

Specifications of VO4256H

Isolation Voltage
5300 Vrms
Voltage - Isolation
5300Vrms
Number Of Channels
1
Voltage - Off State
600V
Output Type
AC, Triac, Standard
Current - Gate Trigger (igt) (max)
2mA
Current - Dc Forward (if)
60mA
Current - Output / Channel
300mA
Mounting Type
Through Hole
Package / Case
6-DIP (0.300", 7.62mm)
Configuration
1
Maximum Continuous Output Current
300 mA
Maximum Input Current
60 mA
Maximum Operating Temperature
+ 100 C
Maximum Power Dissipation
600 mW
Maximum Reverse Diode Voltage
6 V
Minimum Operating Temperature
- 55 C
Typical Input Voltage
1.2 V
Zero-crossing Circuit
No
Output Device
Triac
Peak Output Voltage (vdrm)
600 V
Maximum Input Voltage
1.4 V
Maximum Output Voltage
420 VAC
Minimum Trigger Current
2 mA (Max)
No. Of Channels
1
Optocoupler Output Type
Phototriac
Input Current
10mA
Output Voltage
600V
Opto Case Style
DIP
No. Of Pins
6
Input Current Max
10mA
Forward Voltage
1.2V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Hold (ih)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
VO4256H
Manufacturer:
Vishay Semiconductors
Quantity:
1 965
Company:
Part Number:
VO4256H-X006
Quantity:
70 000
Company:
Part Number:
VO4256H-X007T
Quantity:
70 000
DESCRIPTION
The VO4254/VO4256 phototriac consists of a GaAs IRLED
optically coupled to a photosensitive non-zero crossing
TRIAC packaged in a DIP-6 package.
High input sensitivity is achieved by using an emitter follower
phototransistor and a cascaded SCR predriver resulting in
an LED trigger current of 1.6 mA for bin D, 2 mA for bin H,
and 3 mA for bin M.
The new non zero phototriac family use a proprietary dV/dt
clamp resulting in a static dV/dt of greater than 5 kV/µs.
The VO4254/VO4256 phototriac isolates low-voltage logic
from 120, 240, and 380 VAC lines to control resistive,
inductive, or capacitive loads including motors, solenoids,
high current thyristors or TRIAC and relays.
Note
For additional information on the available options refer to option information.
Document Number: 84798
Rev. 1.4, 16-May-08
ORDER INFORMATION
PART
VO4254D
VO4254D-X006
VO4254D-X007
VO4254H
VO4254H-X006
VO4254H-X007
VO4254M
VO4254M-X006
VO4254M-X007
VO4256D
VO4256D-X006
VO4256D-X007
VO4256H
VO4256H-X006
VO4256H-X007
VO4256M
VO4256M-X006
VO4256M-X007
i179035
NC
A
C
Optocoupler, Phototriac Output,
For technical questions, contact: optocoupler.answers@vishay.com
1
2
3
High dV/dt, Low Input Current
4
6
5
MT2
MT1
NC
FEATURES
• High static dV/dt 5 kV/µs
• High input sensitivity I
• 400 and 600 V blocking voltage
• 300 mA on-state current
• Isolation test voltage 5300 V
APPLICATIONS
• Solid-state relays
• Industrial controls
• Office equipment
• Consumer appliances
AGENCY APPROVALS
• UL1577, file no. E52744 system code H or J, double
• CUL - file no. E52744, equivalent to CSA bulletin 5A
• DIN EN 60747-5-5 available with option 1
protection
400 V V
600 V V
400 V V
400 V V
600 V V
600 V V
400 V V
600 V V
600 V V
400 V V
400 V V
400 V V
600 V V
600 V V
400 V V
400 V V
600 V V
600 V V
DRM
DRM
DRM
DRM
DRM
DRM
DRM
DRM
, I
, I
DRM
DRM
DRM
DRM
DRM
DRM
DRM
, I
DRM
, I
, I
DRM
, I
DRM
ft
ft
REMARKS
Vishay Semiconductors
ft
ft
ft
ft
FT
, I
= 1.6 mA, DIP-6 400 mil
= 1.6 mA, DIP-6 400 mil
, I
, I
, l
= 2 mA, DIP-6 400 mil
, I
= 3 mA, DIP-6 400 mil
, I
= 2 mA, DIP-6 400 mil
, I
= 3 mA, DIP-6 400 mil
, I
, I
, I
, I
, I
ft
ft
ft
ft
= 1.6, 2, and 3 mA
ft
ft
ft
ft
= 1.6 mA, SMD-6
= 1.6 mA, SMD-6
ft
ft
ft
ft
= 1.6 mA, DIP-6
= 1.6 mA, DIP-6
= 2 mA, SMD-6
= 3 mA, SMD-6
= 2 mA, SMD-6
= 3 mA, SMD-6
= 2 mA, DIP-6
= 3 mA, DIP-6
= 2 mA, DIP-6
= 3 mA, DIP-6
VO4254/VO4256
RMS
www.vishay.com
953

Related parts for VO4256H

VO4256H Summary of contents

Page 1

... VO4254H-X006 VO4254H-X007 VO4254M VO4254M-X006 VO4254M-X007 VO4256D VO4256D-X006 VO4256D-X007 VO4256H VO4256H-X006 VO4256H-X007 VO4256M VO4256M-X006 VO4256M-X007 Note For additional information on the available options refer to option information. Document Number: 84798 For technical questions, contact: optocoupler.answers@vishay.com Rev. 1.4, 16-May-08 FEATURES • High static dV/dt 5 kV/µs ...

Page 2

... Temperature (°C) 19623 Fig Recommended Operating Condition www.vishay.com For technical questions, contact: optocoupler.answers@vishay.com 954 Optocoupler, Phototriac Output, High dV/dt, Low Input Current TEST CONDITION PART VO4254D/H/M VO4256D/H max. ≤ dip soldering ≥ 0.5 mm from case bottom 60 80 100 ...

Page 3

... The thermal model is represented in the thermal network below. Each resistance value given in this model can be used to calculate the temperatures at each node for a given operating condition. The thermal resistance from board to ambient will be dependent on the type of PCB, layout and thickness of copper traces. For a detailed explanation of the thermal model, please reference Vishay's thermal characteristics of optocouplers application note. ...

Page 4

... F 19660 Fig Diode Forward Voltage vs. Forward Current www.vishay.com For technical questions, contact: optocoupler.answers@vishay.com 956 Optocoupler, Phototriac Output, High dV/dt, Low Input Current TEST CONDITION PART VO4254D VO4254H VO4254M VO4256D VO4256H VO4256M MHz TEST CONDITION 10.0 100.0 SYMBOL MIN. TYP. MAX ...

Page 5

... Voltage (V) 19684 Fig Output Off Current (Leakage) vs. Voltage Document Number: 84798 For technical questions, contact: optocoupler.answers@vishay.com Rev. 1.4, 16-May-08 Optocoupler, Phototriac Output, High dV/dt, Low Input Current I at 630 V DRM 60 80 100 19666 Fig Normalized Trigger Input Current vs. Temperature ...

Page 6

... Optio n 6 0.407 (10.36) 0.391 (9.96) 0.307 (7.8) 0.291 (7.4) 0.014 (0.35) 0.010 (0.25) 0.400 (10.16) 0.430 (10.92) www.vishay.com For technical questions, contact: optocoupler.answers@vishay.com 958 Optocoupler, Phototriac Output, High dV/dt, Low Input Current Pin one 0.048 (1.22) ...

Page 7

... The Montreal Protocol (1987) and its London Amendments (1990) intend to severely restrict the use of ODSs and forbid their use within the next ten years. Various national and international initiatives are pressing for an earlier ban on these substances. Vishay Semiconductor GmbH has been able to use its policy of continuous improvements to eliminate the use of ODSs listed in the following documents. ...

Page 8

... Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any information provided herein to the maximum extent permitted by law. The product specifications do not expand or otherwise modify Vishay’ ...

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