EEWORLDEEWORLDEEWORLD

Part Number

Search

ZUP20-10/LU

Description
bench top power supplies 200w 0V-20v 0A-10a
CategoryPower/power management   
File Size584KB,2 Pages
ManufacturerTDK Corporation
Websitehttp://www.tdk.com
Environmental Compliance
Download Datasheet Parametric View All

ZUP20-10/LU Overview

bench top power supplies 200w 0V-20v 0A-10a

ZUP20-10/LU Parametric

Parameter NameAttribute value
ManufactureTDK-Lambd
Product CategoryBench Top Power Supplies
RoHSYes
Input Voltage85 VAC to 265 VAC
Number of Outputs1
Output Voltage-Channel 10 V to 20 V
Output Current-Channel 10 A to 10 A
ZUP Series
Zero up programmable power supplies
Features
u
Constant Voltage / Constant Current
u
Last Setting Memory
u
Digital Meters
u
Built-in RS232 & RS485 Interface w/ GPIB optional
u
Bench or Rack Mount
u
Embedded Microprocessor Controller
u
Voltage up to 120V, Current up to 132A
Key Market Segments & Applications
Specifications
Model
Load Regulation
Line Regulation
Recovery Time (1)
Temperature Coefficient
Temperature Drift(2)
Up programming response time
Down prog. resp. time (CV)
Down prog. resp. time (CV)
Load Regulation
Line Regulation
Temperature Coefficient
Temperature Drift(2)
Prog Voltage resolution
Prog Voltage accuracy
Prog Current resolution
Prog Current accuracy
Overvoltage Shutdown
Thermal Protection
Display - Voltage
Display - Current
Display - Status
Remote On/Off
Output Good
Voltage & Current Programming
Remote Sense
Communication Interface
Series & Parallel Operation
AC Input Voltage range
Inrush Current (100/200VAC)(3)
Hold Up Time (Typ) at 100VAC
Power Factor Correction
Temperature Range
Humidity (non condensing)
Cooling
Withstand Voltage
Isolation Resistance
Vibration & Shock (non-op.)
Safety Agency Approvals
Conducted & Radiated EMI
Warranty
-
-
ms
-
-
ms
ms
ms
-
-
-
-
-
mV
-
-
V
-
-
-
-
-
-
-
-
-
-
VAC
A
ms
-
-
-
-
-
-
-
-
-
yrs
ZUP20
ZUP36
ZUP60
ZUP80
ZUP120
2mV + 0.005% over 0 - 100% load change
1mV + 0.005% over 85 - 132 or 170 - 265VAC line change
1ms
0.5ms
0.2ms
30ppm/°C following 30 minute warm up
0.01% + 2mV change in output
50 - 60ms
80ms
120ms
50ms (70ms ZUP60-14)
250ms
350ms
400ms
500ms
750ms
600ms
800ms
0.01% + 5mA on 200W and 400W models, 0.07% + 10mA on 800W models
0.01% + 2mA on 200W and 400W models, 0.01% + 5mA on 800W models
100ppm/°C from rated current after 30 minute warm up time
0.02% + 5mA, 200W and 400W models, 0.05% + 10mA 800W models
Better than 0.028% of rated voltage
.02%+5mV .02%+8mV .02%+12mV .02%+20mV .02%+35mV .02%+50mV .02%+70mV
Better than 0.03% of rated voltage
0.4% + 40mA
0 - 7.5
0 - 13
0 - 24
0 - 40
0 - 66
0 - 88
0 - 132
Over temperature protected
3 digits (6, 20, 36, 60, 80V models), 3.5 digits (10, 120V models). Accuracy 0.2% ± 2 digits
3 digits, (3.5 digits 132A model). Accuracy 0.5% ± 3 digits
CV / CC, Alarm, Foldback, Local/Remote, On/Off
TTL signal or dry contact relay
Open Collector
By either Voltage (0-4V) or Resistance (0-4k)
Up to 0.5V compensation per output cable
RS232 & RS485 standard, IEEE488 optional
Series: Up to two units; Parallel: Up to five units in master-slave configuration
85-265VAC (47-63Hz)
15/30A, 200W models, 15A, 400W models, 30A, 800W models
20
Complies with EN61000-3 Class A (0.99 typ)
Operating: 0 - 50°C; Storage: -20 to +70°C
Operating: 30 - 90% RH, Storage 10 - 95%RH
Internal fan
Input to Ground 2kVAC, Input to Output 3kVAC, Output to Ground 500VAC for 1 min.
>100M at 25°C & 70%RH
Vibration:10-55Hz(1 min.) 2G constant X, Y, Z, when correctly mounted; Shock: <20G
UL3111-1, EN61010-1, CE Mark
EN55022-B conducted, A radiated, FCC Class B conducted, A radiated, VCCI-2 conducted, -1 radiated
Three Years
(2) Over 8 hour period following 30 minute warm up time
ZUP6
ZUP10
Notes: (1) Recovery to within +/-50mV after load change of 50-100%
(3) 25°C ambient (cold start)
1-800-526-2324 • www.us.tdk-lambda.com/lp/
152
Disclaimer: us.tdk-lambda.com/lp/legal.htm
Introduction to FPGA Design Methodology
[i=s]This post was last edited by Struggle Road on 2015-11-30 15:26[/i] [color=rgb(62, 62, 62)][align=left]FPGA is a programmable chip, so the design method of FPGA includes two parts: hardware design...
奋斗之路 FPGA/CPLD
Some basic operation problems of 28027
Question 1: How many breakpoints can be set when debugging a program? When I was debugging a program, I found that if the number of breakpoints set was greater than 2, the program would report an erro...
e87a235 Microcontroller MCU
Why does each file generate such an alarm after I compile it with 340A?
Why does each file generate such a warning after I compile it with 340A?Warning[Pe001]: last line of file ends without a newline...
lingqiang0123 Microcontroller MCU
Power MOSFET Tutorial - Reprint
As we all know, due to the insulated gate, power MOSFET devices require very little drive power and have excellent switching speed, with the characteristics of "ideal switch". Its main disadvantages a...
trevor Power technology
[Obtaining the initial rotor position of a permanent magnet synchronous motor starting with a rotary encoder]
[i=s]This post was last edited by jonny0811 on 2015-11-23 16:06[/i] I am here to bother you again today. When the permanent magnet synchronous motor is started, how is the rotor position detected? If ...
jonny0811 Integrated technical exchanges
[Posting Notes] 2022 Digi-Key Innovation Design Competition
The shortlisted guys, when you post unboxing posts or share the DIY process,1. "Post Topic Category" Please select [Experience Sharing] The title should be: [Creative name] + shared content Example: [...
EEWORLD社区 DigiKey Technology Zone

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2524  2  377  1325  2877  51  1  8  27  58 
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