NI UES-3880
Hardware Installation Guide
First Edition, Sept 2007
P/N: 1802003080110
Panel Layout
Front Panel View
2
1. Grounding screw
5
6
7
2. Terminal block for power inputs
PWR1/PWR2 and relay output
3. Heat dissipation orifices
4. DIP switches
11
8
5. Power input PWR1 LED
6. Power input PWR2 LED
7. Fault LED
9
8. 10/100BaseT(X) Port
9. TP port’s 100 Mbps LED
10. TP port’s 10 Mbps LED
11. Model Name
10
Top Panel View
1
12. Screw holes for wall mounting kit
13. DIN-rail Kit
V2+
PWR2
V2-
FAULT
2
V1+
PWR1
V1-
V1 V2 INPUTS: 24 VDC
3
PORT ALARM
4
Rear Panel View
1
2
12
13
12
— 2 —
Mounting Dimensions (unit = mm)
21.00 30.00
54.00
9.50
Side View
135.00
(unit = mm)
105.00
15.10
13.10
13.90
13.90
18.20
25.40
9.75
3.50
+
+
+
6
26
+
6.00
3.50
6.00
+
+
+
+
+
+
10
10
5
+
+
30.50
18
7.75
7.75
13
13
135.00
+
+
+
+
+
+
+
+
+
+
+
+
Front View
Rear View
Panel Mount Kit
— 3 —
DIN-rail Mounting
The aluminum DIN-rail attachment plate should already be fixed to the back
panel of the switch when you take it out of the box. If you need to reattach the
DIN-rail attachment plate, make sure the stiff metal spring is situated towards
the top, as shown in the figures below.
STEP 1:
STEP 2:
Insert the top of the DIN-rail into the
slot just below the stiff metal spring.
The DIN-rail attachment unit will
snap into place as shown below.
metal
metal
spring
spring
DIN-Rail
DIN-Rail
To remove the switch from the DIN-rail, simply reverse Steps 1 and 2 above.
Wall Mounting (optional)
For some applications, you will find it convenient to mount the NI UES-3880
on the wall, as illustrated below.
STEP 1:
Remove the aluminum
top
DIN-rail attachment plate
from the NI UES-3880’s rear
panel, and then attach the
wall mount plates, as shown
in the diagram below.
plate
⇒
bottom
plate
STEP 2:
6.0 mm
Mounting the NI UES-3880 on the wall requires 4 screws.
Use the switch, with wall mount plates attached, as a guide
to mark the correct locations of the 4 screws. The heads of
the screws should be less than 6.0 mm in diameter, and the
shafts should be less than 3.5 mm in diameter, as shown in
the figure at the right.
3.5 mm
NOTE Before tightening the screws into the wall, make sure the screw head
and shank size are suitable by inserting the screw into one of the
keyhole-shaped apertures of the Wall Mounting Plates.
Do not screw the screws in all the way—leave about 2 mm to allow room for
sliding the wall mount panel between the wall and the screws.
— 4 —
STEP 3:
Once the screws are fixed in the
wall, insert the four screw heads
through the large parts of the
keyhole-shaped apertures, and then
slide the NI UES-3880
⇒
downwards, as indicated. Tighten
the four screws for added stability.
Wiring Requirements
WARNING
Do not disconnect modules or wires unless the power supply has
been switched off or the area is known to be non-hazardous. The
devices may only be connected to the supply voltage shown on
the type plate.
The devices are designed for operation with a Safety Extra-Low
Voltage. Thus, they may only be connected to the supply voltage
connections and to the signal contact with the Safety Extra-Low
Voltages (SELV) in compliance with IEC950/ EN60950/
VDE0805.
WARNING
Substitution of components may impair suitability for Class I,
Division 2, and Zone 2. These devices must be supplied by an
SELV source as defined in Low Voltage Directive 73/23/EEC
and 93/68/EEC.
WARNING
This unit is a built-in type. When the unit is installed in another
piece of equipment, the equipment enclosing the unit must
comply with fire enclosure regulation IEC 60950/EN60950 (or
similar regulation).
WARNING
Safety First!
Be sure to disconnect the power cord before installing and/or
wiring your Switch.
Calculate the maximum possible current in each power wire and
common wire. Observe all electrical codes dictating the
maximum current allowable for each wire size.
If the current goes above the maximum ratings, the wiring could
overheat, causing serious damage to your equipment.
— 5 —
You should also pay attention to the following items:
y
Use separate paths to route wiring for power and devices. If power wiring
and device wiring paths must cross, make sure the wires are perpendicular
at the intersection point.
y
y
NOTE: Do not run signal or communications wiring and power wiring in
the same wire conduit. To avoid interference, wires with different signal
characteristics should be routed separately.
You can use the type of signal transmitted through a wire to determine
which wires should be kept separate. The rule of thumb is that wiring that
shares similar electrical characteristics can be bundled together.
Keep input wiring and output wiring separated.
y
y
It is strongly advised that you label wiring to all devices in the system when
necessary.
Grounding the Switch
Grounding and wire routing help limit the effects of noise due to
electromagnetic interference (EMI). Run the ground connection from the
ground screw to the grounding surface prior to connecting devices.
ATTENTION
This product is intended to be mounted to a well-grounded
mounting surface, such as a metal panel.
Wiring the Alarm Contact
The Alarm Contact consists of the two middle contacts of the terminal block on
the NI UES-3880’s top panel. You may refer to the next section for detailed
instructions on how to connect the wires to the terminal block connector, and
how to attach the terminal block connector to the terminal block receptor. In
this section, we explain the meaning of the two contacts used to connect the
Alarm Contact.
FAULT: The two middle contacts of the
6-contact terminal block connector are used to
FAULT
detect both power faults and port faults. The two
Top View
wires attached to the Fault contacts form an open
circuit when:
1. The NI UES-3880 has lost power from one of
the DC power inputs.
FAULT
OR
Front View
2. One of the ports for which the corresponding
PORT ALARM DIP Switch is set to ON is
not properly connected.
If neither of these two conditions is satisfied, the
Fault circuit will be closed.
Wiring the Redundant Power Inputs
The top two contacts and the bottom two contacts of the 6-contact terminal
block connector on the NI UES-3880’s top panel are used for the NI
UES-3880’s two DC inputs. Top and front views of one of the terminal block
connectors are shown here.
— 6 —
STEP 1: Insert the negative/positive DC wires
into the V-/V+ terminals.
Top View
STEP 2: To keep the DC wires from pulling
loose, use a small flat-blade screwdriver to
tighten the wire-clamp screws on the front of the
terminal block connector.
Front View
STEP 3: Insert the plastic terminal block
connector prongs into the terminal block
receptor, which is located on the NI UES-3880’s
top panel.
ATTENTION
Before connecting the NI UES-3880 to the DC power inputs,
make sure the DC power source voltage is stable.
10/100BaseT(X) Ethernet Port Connection
The 10/100BaseT(X) ports located on the NI UES-3880’s front panel are used
to connect to Ethernet-enabled devices.
Below we show pinouts for both MDI (NIC-type) ports and MDI-X
(HUB/Switch-type) ports, and also show cable wiring diagrams for
straight-through and cross-over Ethernet cables.
MDI Port Pinouts
MDI-X Port Pinouts
8-pin RJ45
Pin
1
Signal
Tx+
Pin
1
Signal
Rx+
Rx-
1
8
2
Tx-
2
3
Rx+
Rx-
3
Tx+
6
6
Tx-
RJ45 (8-pin) to RJ45 (8-pin) Straight-Through Cable Wiring
Straight-Through Cable
Switch Port
NIC Port
RJ45 Plug Pin 1
Cable Wiring
RJ45
Connector
RJ45
Connector
Tx+
Tx-
Rx+
Rx-
3
6
1
2
3
6
1
2
Rx+
Rx-
Tx+
Tx-
— 7 —
RJ45 (8-pin) to RJ45 (8-pin) Cross-Over Cable Wiring
Cross-Over Cable
Switch Port
(NIC Port)
Switch Port
(NIC Port)
RJ45 Plug Pin 1
RJ45
RJ45
Connector
Cable Wiring
Connector
(Rx+) Tx+
(Rx-) Tx-
(Tx+) Rx+
(Tx-) Rx-
3
6
1
2
1
2
3
6
Rx+ (Tx+)
Rx- (Tx-)
Tx+ (Rx+)
Tx- (Rx-)
Redundant Power Inputs
Both power inputs can be connected simultaneously to live DC power sources.
If one power source fails, the other live source acts as a backup, and
automatically supplies all of the NI UES-3880’s power needs.
Alarm Contact
The NI UES-3880 has one Alarm Contact located on the top panel. For detailed
instructions on how to connect the Alarm Contact power wires to the two
middle contacts of the 6-contact terminal block connector, see the Wiring the
Alarm Contact section. A typical scenario would be to connect the Fault circuit
to a warning light located in the control room. The light can be set up to switch
on when a fault is detected.
The Alarm Contact has two terminals that form a Fault circuit for connecting to
an alarm system. The two wires attached to the Fault contacts form an open
circuit when (1) the NI UES-3880 has lost power from one of the DC power
inputs, or (2) one of the ports for which the corresponding PORT ALARM DIP
Switch is set to ON is not properly connected.
If neither of these two conditions occurs, the Fault circuit will be closed.
DIP Switch Settings
ON
DIP
1
2
3
4
5
6
7
8
ON: Enables the corresponding PORT Alarm. If the port’s link fails, the relay
will form an open circuit and the fault LED will light up.
Off: Disables the corresponding PORT Alarm. The relay will form a closed
circuit and the Fault LED will never light up.
— 8 —
LED Indicators
The front panel of the NI Switch contains several LED indicators. The function
of each LED is described in the table below.
LED
Color
State
Description
Power is being supplied to power input
PWR1
On
AMBER
PWR1
Power is not being supplied to power
input PWR1
Off
On
Off
On
Power is being supplied to power input
PWR2
AMBER
RED
PWR2
Power is not being supplied to power
input PWR2
When the corresponding PORT alarm is
enabled, and the port’s link is inactive.
When the corresponding PORT alarm is
enabled and the port’s link is active, or
when the corresponding PORT alarm is
disabled.
FAULT
Off
On
TP port’s 10 Mbps link is active
GREEN
GREEN
10M
Blinking Data is being transmitted at 10 Mbps
Off
On
TP Port’s 10 Mbps link is inactive
TP port’s 100 Mbps link is active
100M
Blinking Data is being transmitted at 100 Mbps
Off TP Port’s 100 Mbps link is inactive
Auto MDI/MDI-X Connection
The Auto MDI/MDI-X function allows users to connect the NI UES-3880’s
10/100BaseTX ports to any kind of Ethernet device, without needing to pay
attention to the type of Ethernet cable being used for the connection. This
means that you can use either a straight-through cable or cross-over cable to
connect the NI UES-3880 to Ethernet devices.
Dual Speed Functionality and
Switching
The NI UES-3880’s 10/100 Mbps switched RJ45 port auto-negotiates with the
connected device for the fastest data transmission rate supported by both
devices. The NI UES-3880 is a plug-and-play devices, so that software
configuration is not required at installation, or during maintenance. The
half/full duplex mode for the switched RJ45 ports is user dependent and
changes (by auto-negotiation) to full or half duplex, depending on which
transmission speed is supported by the attached device.
Switching, Filtering, and Forwarding
Each time a packet arrives at one of the switched ports, a decision is made to
either filter or forward the packet. Packets with source and destination
addresses belonging to the same port segment will be filtered, constraining
those packets to one port, and relieving the rest of the network from the need to
process them. A packet with destination address on another port segment will
be forwarded to the appropriate port, and will not be sent to the other ports
— 9 —
where it is not needed. Packets that are used in maintaining the operation of the
network (such as the occasional multi-cast packet) are forwarded to all ports.
The NI UES-3880 operates in the store-and-forward switching mode, which
eliminates bad packets and enables peak performance to be achieved when
there is heavy traffic on the network.
Switching and Address Learning
The NI UES-3880 has an address table that can hold up to 1K node addresses,
which makes it suitable for use with large networks. The address tables are
self-learning, so that as nodes are added or removed, or moved from one
segment to another, the NI UES-3880 automatically keeps up with new node
locations. An address-aging algorithm causes the least-used addresses to be
deleted in favor of newer, more frequently used addresses. To reset the address
buffer, power down the unit and then power it back up.
Auto-Negotiation and Speed Sensing
The NI UES-3880 is a RJ45 Ethernet ports independently support
auto-negotiation for speeds in the 10BaseT and 100BaseTX modes, with
operation according to the IEEE 802.3u standard. This means that some nodes
could be operating at 10 Mbps, while at the same time, other nodes are
operating at 100 Mbps.
Auto-negotiation takes place when an RJ45 cable connection is made, and then
each time a LINK is enabled. The NI UES-3880 advertises its capability for
using either 10 Mbps or 100 Mbps transmission speeds, with the device at the
other end of the cable expected to similarly advertise. Depending on what type
of device is connected, this will result in agreement to operate at a speed of
either 10 Mbps or 100 Mbps.
If the NI UES-3880 RJ45 Ethernet port is connected to a non-negotiating
device, it will default to 10 Mbps speed and half-duplex mode, as required by
the IEEE 802.3u standard.
— 10 —
Specifications
Technology
Standards
Forward and Filtering
Rate
IEEE802.3, 802.3u, 802.3x
148810 pps
Packet Buffer Memory 256 KB
Store and Forward, with IEEE802.3x full duplex,
Processing Type
back pressure flow control
1K uni-cast addresses
Less than 5 μs
Address Table Size
Latency
Interface
10/100BaseT(X) auto negotiation speed, F/H duplex
mode, and auto MDI/MDI-X connection
Power, Fault, 10M, 100M
RJ45 Ports
LED Indicators
DIP Switch
Port break alarm mask
One relay output with current carrying capacity of
1A @ 24 VDC
Alarm Contact
Power
Input Voltage
12 to 48 VDC, redundant inputs
Input Current @ 24VDC 0.25 A
Connection
Overload Current
Protection
Removable “6-pin” Terminal Block
1.1 A
Reverse Polarity
Protection
Present
Mechanical
Casing
Dimensions
IP30 protection, metal case
53.6 × 135 × 105 mm (W × H × D)
0.63 kg
Weight
Installation
Environmental
DIN-rail, Wall Mounting
Operating Temperature -40 to 75ºC (-40 to 167ºF)
Storage Temperature
Ambient Relative
Humidity
-40 to 85ºC (-40 to 185ºF)
5 to 95% (non-condensing)
Regulatory Approvals
UL60950-1, CSA C22.2 No. 60950-1, EN60950-1,
TUV
Safety
Hazardous Location
EMI
UL/cUL Class I, Division 2, Groups A, B, C, and D
FCC Part 15, CISPR (EN55022) class A
EN61000-4-2 (ESD), Level 3
EN61000-4-3 (RS), Level 3
EMS
EN61000-4-4 (EFT), Level 3
EN61000-4-5 (Surge), Level 3
EN61000-4-6 (CS), Level 3
Operating Shock
15g, half-sine, 11 ms pulse
Operating Vibration
10 Hz to 150 Hz, 1 grms
— 11 —
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— 12 —
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— 13 —
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