EEWORLDEEWORLDEEWORLD

Part Number

Search

PFE380D25

Description
TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX
CategoryLED optoelectronic/LED   
File Size30KB,2 Pages
ManufacturerETC
Download Datasheet Parametric Compare View All

PFE380D25 Online Shopping

Suppliers Part Number Price MOQ In stock  
PFE380D25 - - View Buy Now

PFE380D25 Overview

TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX

PFE380D25 Parametric

Parameter NameAttribute value
Maximum operating temperature80 Cel
Minimum operating temperature-30 Cel
Number of functions1
Processing package descriptionROHS COMPLIANT, PLASTIC PACKAGE-4
stateDISCONTINUED
Optoelectronic device typeTRIGGER OUTPUT
Maximum insulation voltage4000 V
Maximum output current25000 A
Series PF, PowerFin
• U
ltra
High Steady State
Current Rating
• Low Leakage (Off- State )
• SCR Output
• AC
or
DC Control
• Crydom's Patented Design
TM
Up to 25Amp • 120/240, 380, 480 Vac • AC Output
Crydom's PowerFin series delivers the
highest ratings of any single in-line pack-
age (SIP). The integral heat sink design
can operate at 25 amps RMS in forced air
at 85˚ûC case temp. With natural convec-
tion in free air, it rates 10 amps RMS at
25û˚C ambient.
TM
Built-in advantages include Surface Mount
Technology
and
SCR
output.
Manufactured in Crydom's ISO 9001
Certified facility for optimum product
performance and reliability.
MODEL NUMBERS
AC CONTROL
(120Vac)
(24Vac)
DC CONTROL
PF240A25
PFE240A25
PF240D25
PFE240D25
PF380D25
PFE380D25
PF480D25
PFE480D25
(5Vdc)
(24Vdc)
OUTPUT SPECIFICATIONS
Operating Voltage (47-63 Hz) [Vrms]
Load Current Range [Arms]
Transient Overvoltage [Vpk]
Max. Surge Current, (16.6ms) [Apk]
Max. On-State Voltage Drop @ Rated Current [Vpk]
Maximum I
2
t for Fusing, (8.3 msec.) [A
2
sec]
Max. Off-State Leakage Current @ Rated Voltage [mArms]
Min. Off-State dv/dt @ Max. Rated Voltage [V/µsec]
Max. Turn-On Time
Max. Turn-Off Time
Power Factor (Min.) with Max. Load
12-280
48-530
Forced Air.06-25
Convection Air .06-10
48-660
600
250
1.6
260
0.1
500
1200
250
1.6
260
0.1
500
1200
250
1.6
260
0.1
500
1/2 Cycle (DC Control), 10.0 msec (AC Control)
1/2 Cycle (DC Control), 40.0 msec (AC Control)
0.5
0.5
0.5
INPUT SPECIFICATIONS
Nominal Voltage
MODEL NUMBERS
PF240D25
Control Voltage Range
Max. Turn-On Voltage
Min. Turn-Off Voltage
Nominal Input Impedance
Typical Input Current @ Nominal Voltage
DC CONTROL
5Vdc
5Vdc
PF380D25
PF480D25
AC CONTROL
24Vdc
PFE240D25
PFE380D25
PFE480D25
15-32 Vdc
15.0 Vdc
1.0 Vdc
1500 Ohm
15 mAdc
120Vac
24Vac
PF240A25
PFE240A25
3-15 Vdc
3.0 Vdc
1.0 Vdc
300 Ohm
15 mAdc
4-15 Vdc
4.0 Vdc
1.0 Vdc
240 Ohm
15 mAdc
90-140 Vrms
90.0 Vrms
10.0 Vrms
14.1k Ohm
10 mArms
18-36 Vrms
18.0 Vrms
2.0 Vrms
4.2k Ohm
5 mArms
GENERAL NOTES
© 2002 CRYDOM CORP, Specifications subject to change without notice.
All parameters at 25˚C unless otherwise specified.
Off-State dv/dt test method per EIA/NARM standard RS-443, paragraph 13.11.1
Heatsink temperature 85ûC Maximum.
Turn-On Time for Random Turn-On versions 0.1msec (DC Control Models).
For recommended applications and more information contact:
USA: Sales Support
(877) 502-5500
Tech Support
(877) 702-7700
FAX
(619) 710-8540
Crydom Corp, 2320 Paseo de las Americas, Ste. 201, San Diego, CA 92154
Email:
sales@crydom.com
WEB SITE:
http://www.crydom.com
UK:
+44 (0)1202 365070 •
FAX
+44 (0)1202 365090 Crydom International Ltd., 7 Cobham
Road, Ferndown Industrial Estate, Ferndown, Dorset BH21 7PE,
Email:
intsales@crydom.com.
GERMANY:
+49 (0)180 3000 506
FastFax Document No. 115
SERIES PF
Rev. 041902
PAGE 1 OF 2

PFE380D25 Related Products

PFE380D25 PF240A25 PF240D25 PFE240A25 PFE240D25 PFE480D25 PF480D25 PF380D25
Description TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX TRIGGER OUTPUT SOLID STATE RELAY, 4000 V ISOLATION-MAX
Maximum operating temperature 80 Cel 80 Cel 80 Cel 80 Cel 80 Cel 80 Cel 80 Cel 80 Cel
Minimum operating temperature -30 Cel -30 Cel -30 Cel -30 Cel -30 Cel -30 Cel -30 Cel -30 Cel
Number of functions 1 1 1 1 1 1 1 1
Processing package description ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4 ROHS COMPLIANT, PLASTIC PACKAGE-4
state DISCONTINUED DISCONTINUED DISCONTINUED DISCONTINUED DISCONTINUED DISCONTINUED DISCONTINUED DISCONTINUED
Optoelectronic device type TRIGGER OUTPUT TRIGGER OUTPUT TRIGGER OUTPUT TRIGGER OUTPUT TRIGGER OUTPUT TRIGGER OUTPUT TRIGGER OUTPUT TRIGGER OUTPUT
Maximum insulation voltage 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V
Maximum output current 25000 A 25000 A 25000 A 25000 A 25000 A 25000 A 25000 A 25000 A
Lead-free - Yes Yes Yes Yes Yes Yes Yes
EU RoHS regulations - Yes Yes Yes Yes Yes Yes Yes
terminal coating - TIN TIN TIN TIN TIN TIN TIN
The development of inverters
I saw a post in the local IC topic column, "Introduction to the Leader of Domestic Inverters", which described the overview of the top ten inverters in China. Forum friends expressed their own opinion...
Andy_Luo Industrial Control Electronics
I really don’t dare to use the HAL library!
STM32F429 is powerful and can also bring an LCD, which makes me very happy. However, when developing F4, I accidentally used the HAL library and felt that its function calls were complicated and very ...
dontium stm32/stm8
STM8 tim1PWM controllable problem?
In the application, this situation is needed:using TIM1 to generate a 20K PWM wave, and requiring to control the flipping of the PWM level through interrupt feedback during the PWM cycle. Is there a w...
rainfeng stm32/stm8
Infrared Transmitting and Receiving System Based on AT89C52 Single Chip Microcomputer
I would like to ask if any expert has made an infrared transmitting and receiving system based on AT89C52 microcontroller to realize point-to-point receiving and transmitting functions. Can you provid...
123456ZJ Embedded System
[Four techniques to teach you how to use a digital multimeter efficiently]
[align=center][Four techniques to teach you how to use a digital multimeter efficiently] [/align][align=left][b]01[/b]class[b]1[/b][b]. Determine whether a circuit or device is energized [/b][/align][...
18538579903 Analog electronics
eVC 4.0 Issues
(1) The problem description of the Find Source dialog box is as follows: I wrote a WinCE program. When debugging, the Find Source dialog box appears: Please enter the path for ONEXIT.C. There are thre...
hehua Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 623  893  2535  451  1609  13  18  52  10  33 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号