APLVD400 Red Lion Controls, APLVD400 Datasheet - Page 2

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APLVD400

Manufacturer Part Number
APLVD400
Description
APOLLO DC VOLT DPM 115V
Manufacturer
Red Lion Controls
Series
Apollor
Type
Voltmeterr
Datasheets

Specifications of APLVD400

Rohs Compliant
NA
Measuring Range
0 ~ 300V
Display Style
Red Characters, Black Background
Display Type
LED
Display Face Size
3.80" L x 1.95" W (96.5 x 49.5mm)
Display Digits
3.5
Display Digits - Height
0.560" (14.22mm)
Backlight
Without
Mounting Type
Panel Mount
Termination
Terminal Block
Voltage - Supply
115VAC
Accuracy
±0.1% %
Connection Type
Terminal Block
Cut Out, Panel
3.62×1.77 "
Digit Height
0.56
Dimensions
4.2"L×3.8"W×1.95"H
Display Digit Height
0.56 "
Display Resolution
0.1 V
Function
Voltage
Material, Casing
Plastic
Number Of Digits
3-1/2
Primary Type
Electronic
Range, Measurement
±1.999 to ±300 VDC
Voltage, Supply
115 VAC
Lead Free Status / Rohs Status
RoHS Compliant part
Other names
Q3058554
8. MAX. SHUNT CURRENTS (ON CURRENT METERS):
9. TEMPERATURE COEFFICIENTS:
10. ENVIRONMENTAL CONDITIONS:
11. RESPONSE TIME TO STEP CHANGE INPUT: 1 sec. nominal
12. READING RATE: 2.5 readings/sec., nominal
13. NORMAL MODE REJECTION: 50 dB 50/60 Hz (D.C. units only)
14. COMMON MODE REJECTION: 110 dB D.C. or 50/60 Hz (D.C. units
15. COMMON MODE VOLTAGE (COMM. TO EARTH): 350 volt peak
16. CERTIFICATIONS AND COMPLIANCES:
17. CONSTRUCTION: Metal die-cast front bezel with black, high impact
18. WEIGHT: 1.2 lbs. (0.54 Kg)
EMC INSTALLATION GUIDELINES
ElectroMagnetic Interference (EMI), proper installation and wiring methods
must be followed to ensure compatibility in each application. The type of the
electrical noise, source or coupling method into the unit may be different for
various installations. Cable length, routing and shield termination are very
important and can mean the difference between a successful or a troublesome
installation. Listed below are some EMC guidelines for successful installation in
an industrial environment.
1. The unit should be mounted in a metal enclosure, that is properly connected
199.9 µA through 19.99 mA: 10 x max. range current
199.9 mA: 1 amp
1.999 amp: 3 amps
Caution: In circuits where fault currents can exceed the maximum shunt
Operating Temperature : 0° to 60°C
Storage Temperature : -40° to 80°C
Operating and Storage Humidity: 85% max. relative humidity (non-
Altitude: Up to 2000 meters
only)
SAFETY
ELECTROMAGNETIC COMPATIBILITY:
Notes:
1. Self-recoverable loss of performance during EMI disturbance at 10 V/m:
2. Self-recoverable loss of performance during EMI disturbance at 10 V/rms:
Refer to the EMC Installation Guidelines section of this bulletin for
plastic insert case. This unit is rated for NEMA 4/IP65 indoor use when
properly installed (panel gasket and mounting clips included). Installation
Category II, Pollution Degree 2.
Although this unit is designed with a high degree of immunity to
to protective earth.
Immunity to EN 50082-2
Electrostatic discharge
Electromagnetic RF fields
Fast transients (burst)
RF conducted interference
Power frequency magnetic fields
Simulation of cordless telephone
Emissions to EN 50081-2
RF interference
current, a fast-blow fuse should be installed in series with the input signal.
Otherwise, a slow blow 10 amp fuse is recommended that will allow for
start-up over current situations, while still protecting the instrument.
condensing) from 0°C to 50°C.
IEC 61010-1, EN 61010-1: Safety requirements for electrical equipment
IP65 Enclosure rating (Face only), IEC 529
Type 4 Enclosure rating (Face only), UL50
For operation without loss of performance:
For operation without loss of performance:
additional information.
for measurement, control, and laboratory use, Part 1.
Process signal may deviate during EMI disturbances.
Unit is mounted in a grounded metal enclosure (Buckeye SM7013-0 or
I/O and power cables are routed in metal conduit connected to earth
Process signal may deviate during EMI disturbances.
Install power line filter, RLC#LFIL0000 or equivalent
equivalent)
ground.
D.C.: ±100 PPM/°C
A.C.: ±200 PPM/°C
Current meters
EN 61000-4-2
EN 61000-4-3
EN 61000-4-4
EN 61000-4-6
EN 61000-4-8
ENV 50204
EN 55011
D.C.: ±75 PPM/°C
A.C.: ±150 PPM/°C
Voltmeters
Level 2; 4 Kv contact
Level 3; 8 Kv air
Level 3; 10 V/m
80 MHz - 1 GHz
Level 4; 2 Kv I/O
Level 3; 2 Kv power
Level 3; 10 V/rms
150 KHz - 80 MHz
Level 4; 30 A/m
Level 3; 10 V/m
900 MHz ± 5 MHz
200 Hz, 50% duty cycle
Enclosure class A
Power mains class A
1
2
2
2. Use shielded (screened) cables for all Signal and Control inputs. The shield
3. Never run Signal or Control cables in the same conduit or raceway with AC
4. Signal or Control cables within an enclosure should be routed as far away as
5. In extremely high EMI environments, the use of external EMI suppression
6. Long cable runs are more susceptible to EMI pickup than short cable runs.
WIRING CONNECTIONS
removable terminal block for ease of installation.
Also cabling should conform to appropriate standards of good installation, local
codes and regulations. It is recommended that power supplied to the unit be
protected by a fuse or circuit breaker.
the terminal block shroud. Caution: Terminal block should NOT be removed
with power applied to the unit.
POWER WIRING
located on the left-hand side of the terminal block). For best results, the AC
power should be relatively “Clean” and within the specified ±10% variation
limit. Drawing power from heavily loaded circuits or from circuits that also
power loads that cycle on and off, should be avoided.
SIGNAL WIRING
through 10 or 11. If AC signal current greater than 5 amps is going to be applied,
the appropriate size slow blow fuse should be installed.
DECIMAL POINT SELECTION
the unit for the selection of 1 of 3 decimal points for display.
(screen) pigtail connection should be made as short as possible. The
connection point for the shield depends somewhat upon the application.
Listed below are the recommended methods of connecting the shield, in order
of their effectiveness.
a. Connect the shield only at the panel where the unit is mounted to earth
b. Connect the shield to earth ground at both ends of the cable, usually when
c. Connect the shield to common of the unit and leave the other end of the
power lines, conductors feeding motors, solenoids, SCR controls, and
heaters, etc. The cables should be run in metal conduit that is properly
grounded. This is especially useful in applications where cable runs are long
and portable two-way radios are used in close proximity or if the installation
is near a commercial radio transmitter.
possible from contactors, control relays, transformers, and other noisy
components.
devices, such as ferrite suppression cores, is effective. Install them on Signal
and Control cables as close to the unit as possible. Loop the cable through the
core several times or use multiple cores on each cable for additional protection.
Install line filters on the power input cable to the unit to suppress power line
interference. Install them near the power entry point of the enclosure. The
following EMI suppression devices (or equivalent) are recommended:
Ferrite Suppression Cores for signal and control cables:
Line Filters for input power cables:
Note: Reference manufacturer’s instructions when installing a line filter.
Therefore, keep cable runs as short as possible.
As depicted in the drawing of the Apollo Unit, all connections are made to a
All conductors should meet voltage and current ratings for each terminal.
To remove the block, pull from the back of the block until it slides clear of
Primary AC power is connected to Terminals 1 and 2 (Marked A.C. Power,
Input connections and range configuration jumpers are made on Terminals 3
(For detailed information, see “Inputs and Applications”.)
The Apollo Volt and Current meters have DIP switches located on the side of
ground (protective earth).
the noise source frequency is above 1 MHz.
shield unconnected and insulated from earth ground.
Fair-Rite # 0443167251 (RLC #FCOR0000)
TDK # ZCAT3035-1330A
Steward #28B2029-0A0
Schaffner # FN610-1/07 (RLC #LFIL0000)
Schaffner # FN670-1.8/07
Corcom #1VB3
Corcom #1VR3

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