EEWORLDEEWORLDEEWORLD

Part Number

Search

DR48A25

Description
Single Output to 30A 510 Vac DIN-Rail Solid-State Relay
CategoryLED optoelectronic/LED    photoelectric   
File Size170KB,4 Pages
ManufacturerTeledyne Technologies Incorporated
Websitehttp://www.teledyne.com/
Download Datasheet Parametric Compare View All

DR48A25 Overview

Single Output to 30A 510 Vac DIN-Rail Solid-State Relay

DR48A25 Parametric

Parameter NameAttribute value
MakerTeledyne Technologies Incorporated
Reach Compliance Codecompli
Is SamacsysN
Other featuresZERO VOLTAGE CROSSING
ConfigurationSINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY
Maximum forward current0.007 A
Maximum insulation voltage4000 V
Number of components1
Maximum on-state current25 A
Maximum operating temperature80 °C
Minimum operating temperature-30 °C
Optoelectronic device typesTRIGGER OUTPUT SSR
Base Number Matches1
NEW Series DR
Single Output to 30A 510 Vac
DIN-Rail Solid-State Relay
Part Number
DR24D25
DR24A25
DR24A25-22
DR48D25-21
DR48D25
DR48R25
DR48A25
DR48A25-22
DR48D30
Description
25A 275 Vac Output
25A 275 Vac Output
25A 275 Vac Output
25A 480 Vac Output
25A 510 Vac Output
25A 510 Vac Output
25A 510 Vac Output
25A 510 Vac Output
30A 510 Vac Output
FEATURES/BENEFITS
• Mounting and dismounting on DIN rail without
any tool or directly mountable on panel
• Zero-cross and random models; thyristors
output
• Large control range
• Green control LED
• Very high immunity
• Low leakage current
• Internal transient suppression
DESCRIPTION
The Series DR single-phase DIN-rail relays are
designed for all types of loads. The relays utilize
optical isolation to protect the control from load
transients. DR relays have an integral heat sink, and
can be mounted and dismounted onto a DIN rail
without any tools. The relays may also be panel
mounted. All relays offer a green control LED and
transient suppression.
APPLICATIONS
• Heating control
• Motor control
• Industrial and process control
APPROVALS
Series DR relays are pending UL recognition.
Part Number Explanation
DR
24
A
25
-22
NOTES
1) Line Voltage (nominal): 24 = 240 Vac; 48 = 480Vac
2) Switch Type: D = Zero-cross turn-on; A = Zero-cross, AC control;
R = Random turn-on
3) Features: 21 = self turn-on suppression; 22 = 24 Vac control
MECHANICAL SPECIFICATION
TYPICAL APPLICATION
400 Vac 50Hz
230 Vac 50Hz
Figure 1 — DR relays; dimensions in inches (mm)
L1
Protection
Protection
L1
SSR
SSR
T1
T1
A2 A1
A2 A1
-
+
Control
– +
Control
Load
CHARGE
Load
Figure 2 — DR relay DC control (left) and DR relay AC
control (right)
© 2003 TELEDYNE RELAYS
(800) 284-7007 • www.teledynerelays.com
DR 1
DR\032003\Q1

DR48A25 Related Products

DR48A25 DR24A25 DR24A25-22 DR24D25 DR48D25-21 DR48R25 DR48D30 DR48A25-22 DR48D25
Description Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay Single Output to 30A 510 Vac DIN-Rail Solid-State Relay
Reach Compliance Code compli compli compli compli compli compliant compli compli compli
Configuration SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY SINGLE WITH BUILT-IN DIODE, VARISTOR AND LED DISPLAY
Maximum forward current 0.007 A 0.007 A 0.02 A 0.01 A 0.01 A 0.01 A 0.01 A 0.02 A 0.01 A
Maximum insulation voltage 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V 4000 V
Number of components 1 1 1 1 1 1 1 1 1
Maximum on-state current 25 A 25 A 25 A 25 A 25 A 25 A 30 A 25 A 25 A
Maximum operating temperature 80 °C 80 °C 80 °C 80 °C 80 °C 80 °C 80 °C 80 °C 80 °C
Minimum operating temperature -30 °C -30 °C -30 °C -30 °C -30 °C -30 °C -30 °C -30 °C -30 °C
Optoelectronic device types TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR TRIGGER OUTPUT SSR
Maker Teledyne Technologies Incorporated - Teledyne Technologies Incorporated Teledyne Technologies Incorporated Teledyne Technologies Incorporated Teledyne Technologies Incorporated - Teledyne Technologies Incorporated Teledyne Technologies Incorporated
Other features ZERO VOLTAGE CROSSING ZERO VOLTAGE CROSSING ZERO VOLTAGE CROSSING ZERO VOLTAGE CROSSING ZERO VOLTAGE CROSSING - ZERO VOLTAGE CROSSING ZERO VOLTAGE CROSSING ZERO VOLTAGE CROSSING
Base Number Matches 1 1 - - - 1 1 1 -
Using MSP430G2121 DIP14 TA to output 2-way PWM pins
I don't know why there is output only on P1.2 and P1.6. CCR1 corresponds to P1.2 output and CCR2 corresponds to P1.6. I now want to map the path controlled by CCR2 to P1.1, but no matter how I change ...
topguntoo Microcontroller MCU
The room temperature is 40 degrees, it's hard to fall asleep, and I'm going to upload an IC paper---written when I was getting started
[i=s]This post was last edited by wugx on 2016-8-19 22:43[/i] The xx and xxxx in this article are not garbled characters, they are just nouns----There is not much process design in the paper, mainly p...
wugx Analog electronics
A C++ system architecture example
Language: C++ Four requirements: A cross-platform dialog program, multi-threaded, threads can communicate, threads can send messages to the main window. Specific platforms include: CE, Linux. If there...
youngboy Embedded System
Design Entry CIS
When I started Allegro, I checked the Cadence Product Choices! Use as default dialog box at the beginning! So the dialog box disappeared! Now I want to show this dialog box again! What should I do? ?...
10082888 Embedded System
How to shrink your Arduino project into a chip
[color=Red][b][size=4]How to shrink your Arduino project into a chip[/size][/b][/color] : https://training.eeworld.com.cn/course/1935[b][size=3]If you have a simple Arduino project that uses only a fe...
chenyy DIY/Open Source Hardware
Design experimental questions
1. Use μA741 to build a clock pulse generator with an output amplitude of about 3.5V. The cycle is about 1 second. 2. Use 74LS194 to form an 8-light running light control circuit, requiring one light ...
LC—11 Analog electronics

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2347  2542  1723  876  582  48  52  35  18  12 
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