Avigilon AC-ACMEC-KIT16 User manual

Installation Guide
Avigilon™ 16-Door ACM™ Embedded Controller Kit
AC-ACMEC-KIT16

©2015,Avigilon Corporation. Portions © 2003 - 2014 HID Global Corporation. All rights reserved. AVIGILON, the
AVIGILON logo, ACCESS CONTROL MANAGER and ACM are trademarks of Avigilon Corporation. HID, VertX,
V100, V200 and V300 are registered trademarks of HIDGlobal Corporation. Other product names mentioned
herein may be the trademarks of their respective owners. The absence of the symbols ™ and ® in proximity to
each trademark in this product or its packaging is not a disclaimer of ownership of the related
trademark.20151022
Unless stated explicitly and in writing, no license is granted with respect to any copyright, industrial design,
trademark, patent or other intellectual property rights of Avigilon Corporation or its licensors.
This document has been compiled and published covering the latest product descriptions and specifications.
The contents of this document and the specifications of the products discussed herein are subject to change
without notice. Neither Avigilon Corporation nor any of its affiliated companies guarantees the completeness or
accuracy of the information contained in this document and is not responsible for your use of, or reliance on, the
information. Avigilon Corporation shall not be responsible for any damages (including consequential damages)
caused by reliance on the information presented herein.
Avigilon Corporation
http://www.avigilon.com
220-0457B
Revision: 1 - EN
20151022
2

Regulatory
Prior to installation, it is necessary to find a suitable site indoors (this product should always be installed indoors).
It is assumed that the installer has required certifications and required permits. The Installer must follow electrical
standards and AHJ requirements.
All National and local Electrical codes apply.
lThis equipment is intended to be powered from a limited power source output of a previously certified
power supply.
lChanges or modifications not expressly approved by the party responsible for compliance could void the
user’s authority to operate the equipment.
Class A Digital Devices
FCC Compliance Statement: This equipment has been tested and found to comply with the limits for a Class A
digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection
against harmful interference when the equipment is operated in a commercial environment. This equipment
generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the
instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a
residential area is likely to cause harmful interference in which case the user will be required to correct the
interference at his own expense.
Canada Class A
CE Mark – Europe (EU)
C-Tick – Australia and New Zealand
VCCI – Japan
NCC — Taiwan
SRRC— China
IDA — Singapore
KCC — Korea
UL Recognized Component (UL294 and UL1076)
RoHS compliant
3

Table of Contents
Introduction 5
Package Contents 5
Installation 6
Mounting the Control Panel Case 7
Power Supply Board Overview 9
Setup the FPO250 Power Supply Board 10
Setup the FPO75 Power Supply Board 12
Setup the D8P Power Supply Boards 13
Setup the C8 Power Supply Boards 14
Install the ACM Embedded Controller and V100 Subpanels 16
Configure and Wire Data 18
Configure and Wire Power 21
Power On 25
Accessing ACM Embedded Controller Application for the First Time 26
By Virtual Port 26
By Host Name 26
Checklists 27
Tools Checklist 27
Equipment Checklist 27
4

Introduction
The Access Control Manager (ACM) Embedded Controller from Avigilon is an all-in-one security management
application and controller.
The ACM Embedded Controller is a controller embedded with the ACM Embedded Controller application to
provide a flexible and scalable platform for an economic and high performance access control system.
The controller uses a standard TCP/IP network to connect to a browser interface which links to the ACM
Embedded Controller application. The application allows you to effectively control access at each entry point.
Package Contents
The package contents for the 16-Door ACM Embedded Controller are:
lOne AC-LSP-16DR-HID-LCK LifeSafety Power eight door HID dual voltage integrated power system
(shipped in a separate box)
lOne Avigilon AC-HID-ACMEC V1000 ACM Embedded Controller
lEight AC-HID-VERTX-V100 reader interface modules
l16 AC-HID-READ-ICLASS-SE-R10-AVG card readers
l100 AC-HID-CARD-ICLASS-SE-3000-AVG contactless smart card, 2k bit with two application areas
5Introduction

Installation
Before you install the ACM Embedded Controller, read through this entire document.
Refer to the checklist at the end of this document and gather the required information before proceeding with
these instructions.
CAUTION — The controllers and interface panels are sensitive to Electrostatic Discharges (ESD). Observe
precautions while handling the circuit board assembly by using proper grounding straps and handling
precautions at all times.
Installation 6

Mounting the Control Panel Case
Follow the steps below to mount the control panel case.
1. At the installation site, remove the control panel case from the LifeSafety Power FlexPower box.
2. Find two studs in the wall where the enclosure should be installed.
NOTE: In a finished setup, the enclosure and contents together weighs 22.2kg (49lb).
3. Mount the plywood board onto the wall at the desired location.
NOTE: It is highly recommended that the plywood board is mounted to two studs. If no studs are
available, use appropriate drywall anchors that can support the enclosure.
4. Remove one of the two high voltage knockouts.
5. Attach an appropriate cable gland to the 7/8” diameter high voltage opening.
6. Mount the enclosure to plywood using six wood screws.
High voltage knockouts
Low voltage knockouts
Screwholes
7Mounting the Control Panel Case

7. Setup the high voltage junction box (or equivalent), as required. Attach an appropriate cable gland to the
junction box and feed the five AC wires through (two white, two black, one ground).
2
3
1
KEY: 1 is a sample high voltage junction box, while 2 and 3 are sample cable glands.
CAUTION — Do not connect to the main power supply yet.
8. Remove knockout(s) for low voltage input/output wires, as necessary.
9. Attach an appropriate cable gland to each 1 3/8” diameter low voltage opening.
Mounting the Control Panel Case 8

Power Supply Board Overview
Shown below is an overview of the power supply board.
FPO250
D8P
D8P
C8
C8
FPO75
9Power Supply Board Overview

Setup the FPO250 Power Supply Board
Follow the steps below to setup the FPO250 power supply board:
1. Either:
lFor 120V input, leave JP1 intact.
lFor 230V input, cut JP1.
CAUTION:Failure to cut this jumper when using the FPO with a 230VAC input will result in damage
to the system and will void the warranty.
2. Ensure DC output switch is set to 24V (as shown below).
Setup the FPO250 Power Supply Board 10

3. Connect the inputs on the FAI (Fire Alarm Input) to the building’s fire alarm system, as required. See the
FPO Quick Start Manual (page 3 – FAI Input Usage) for more detail. Further information is available at:
http://lifesafetypower.com/docs/im_fpo.pdf.
4. Either:
lIf a backup battery is used – move the jumper to position 1, as shown below.
lIf no backup battery used – move the jumper to position 2.
NOTE: If using battery backup then a separate enclosure is required for the batteries due to space
limitations in this enclosure.
11 Setup the FPO250 Power Supply Board

Setup the FPO75 Power Supply Board
Follow the steps below to setup the FPO75 power supply board:
1. Either:
lFor 120V input, leave JP1 intact.
lFor 230V input, cut JP1.
CAUTION — Failure to cut this jumper when using the FPO with a 230VAC input will result in
damage to the system and will void the warranty.
2. Ensure the DC output jumper is set to 12V (as circled below).
CAUTION:Failure to set the FPO75’s DC output jumper to 12V will likely result in damage to the
system and will void the warranty.
Setup the FPO75 Power Supply Board 12

3. Either:
lIf a backup battery is used – move the jumper to position 1, as shown below.
lIf no backup battery used – move the jumper to position 2.
NOTE: If using battery backup then a separate enclosure is required for the batteries due to space
limitations in this enclosure.
Setup the D8P Power Supply Boards
On both D8P boards, set all output voltage selection jumpers (JP1 to 8) to provide 12VDC.
See the D8 Quick Start Manual or D8/D8P Installation Manual for more detail (available at
http://www.lifesafetypower.com/docs/im_d8.pdf).
CAUTION — Failure to set the JP1 to 8 jumpers may cause damage to components.
13 Setup the D8P Power Supply Boards

Setup the C8 Power Supply Boards
Set the jumpers properly for your installation on both C8 boards as outlined below:
Jumpers Position
Red - 1A to 8A (Zone FAI enabled)
Either:
1. FAI enabled
2. FAI disabled
Blue - 1B to 8B (Input Invert)
Either:
1. Fail Safe (NC contact input)
2. Fail Secure (NO contact input)
Black - 1C to 8C (Wet Output Selection)
Either:
1. Relay Contact Output
2. Voltage Output
Yellow - 1D to 8D (Voltage Bus Selection)
Either:
1. B1 Bus
2. B2 Bus
Setup the C8 Power Supply Boards 14

Jumpers Position
Black - 1E to 8E (Dry Output Selection)
Either:
1. Relay Contact Output
2. Voltage Output
White - 1F to 8F (Output Invert)
Either:
1. NO - voltage when input is activated
2. NC - voltage when input is deactivated
See the C4/C8 Quick Start Manual or C4/C4P C8/C8P Installation Manual for more detail (available at
http://www.lifesafetypower.com/docs/im_c4c8.pdf).
15 Setup the C8 Power Supply Boards

Install the ACM Embedded Controller and V100
Subpanels
Shown below is an overview of the positioning of the ACM Embedded Controller and V100 subpanels.
ACM
Embedded
Controller
V100
V100
V100 V100
V100 V100
V100 V100
FPO250
FPO75
D8P
C8 C8
D8P
Install the ACM Embedded Controller and V100 subpanels as shown below:
1. Unbox the Avigilon ACM Embedded Controller and V100 subpanels.
2. Locate 12 screws and 24 Hex nuts from the accessory bag in the FlexPower box.
3. Verify battery jumper (Batt) on the ACM Embedded Controller has been set to ON position.
CAUTION — This is a non-PoE device. Do not connect J1 (Ethernet port) to a PoE-capable port. This
applies to both direct PoE Power Sourcing Equipment (Endspan PSE) and PoE injector (Midspan PoE)
equipment. Not all PSE's correctly detect non-PoE capable devices, and such PSE's may not function as
expected when connected to non-PoE equipment.
Install the ACM Embedded Controller and V100 Subpanels 16

4. Mount the ACM Embedded Controller and the Address 0 and Address 1 V100's as shown below (the
arrows show screws).
ACM
Embedded
Controller
V100
Address 0
V100
Address 1
5. Mount the other V100 subpanels on the pre-installed studs mounted on the door as shown below (the
arrow in the picture below show Hex nuts that will connect to the studs).
V100
V100
Address 7
V100
Address 6
V100
Address 5
V100
Address 4
V100
Address 3
V100
Address 2
6. Using a small slotted screwdriver gently turn the V100 addresses as follows:
lEnsure the V100 mounted directly below the ACM Embedded Controller is at Address 0.
lSet the other V100 on the back plate of the case/enclosure to Address 1.
lSet the other V100's mounted on the door as per the picture in the previous step (Address 2 to 7).
NOTE: Always use stranded wires - the recommended gauges are:
l18 AWG – low voltage power wires.
l22 AWG – data wires.
17 Install the ACM Embedded Controller and V100 Subpanels

Configure and Wire Data
Follow the steps below to configure and wire the ACM Embedded Controller:
1. Set Port 1 terminating jumper (P6 Port 1 TERM Resistor) to IN position.
2. Verify Port 2, 3, 4 terminating jumpers are in the OUT position.
3. Connect the white enclosure tamper wires to Tamper +/- on the ACM Embedded Controller. Polarity
does not matter.
ACM
EMBEDDED
CONTROLLER
4. Using 18 AWG wires (red for + and black for -), wire the 12-24VDC input to +Out1- on the D8P board’s
terminal block.
ACM
Embedded
Controller
Tamper
(Input 5)
+ -+
+
- - -+
AC
Fail
(Input 6)
Batt
Fail
(Input 7)
+12-24VDC
IN
D8P
OUT
8
7
6
5
4
3
2
1
-
-
-
-
-
-
-
-
+
+
+
+
+
+
+
+
5. On the FPO250’s SYSFLT terminal block:
lWire C to Batt Fail + (22AWG).
lWire NO to Batt Fail - (22AWG).
ACM
Embedded
Controller
Tamper
(Input 5)
+ -+
+
- - -+
AC
Fail
(Input 6)
Batt
Fail
(Input 7)
+12-24VDC
IN
FPO250
SYS FLT AC FLT FAI INPUT
C NC NO C NC NO
Configure and Wire Data 18

6. On the FPO250’s ACFLT terminal block:
lWire C to AC Fail + (22AWG).
lWire NO to AC Fail - (22AWG).
ACM
Embedded
Controller
Tamper
(Input 5)
+ -+
+
- - -+
AC
Fail
(Input 6)
Batt
Fail
(Input 7)
+12-24VDC
IN
FPO250
SYS FLT AC FLT FAI INPUT
C NC NO C NC NO
7. On the FPO75’s SYSFLT terminal block:
lWire C to Batt Fail + (22AWG).
lWire NO to Batt Fail - (22AWG).
V100
(Address 0)
Tamper
(Input 5)
+ -+
+
- - -+
AC
Fail
(Input 6)
Batt
Fail
(Input 7)
+12VDC
IN
FPO75
SYS FLT AC FLT FAI INPUT
C NC NO C NC NO
9. On the FPO75’s ACFLT terminal block:
lWire C to AC Fail + (22AWG).
lWire NO to AC Fail - (22AWG).
V100
(Address 0)
Tamper
(Input 5)
+ -+
+
- - -+
AC
Fail
(Input 6)
Batt
Fail
(Input 7)
+12VDC
IN
FPO75
SYS FLT AC FLT FAI INPUT
C NC NO C NC NO
19 Configure and Wire Data

10. Starting from the ACM Embedded Controller's P3\RS-485 Port1 terminal block, connect the A, B, and
Shield connections to the V100 P9\RS-485 subpanel A, B, and Shield connections as shown below
(22 AWG).
A
B
Shield
ACM
EMBEDDED
CONTROLLER
P3
RS-485
Port 1
V100
(Addr 0)
A B Shield
P9
RS-485 In
V100
(Addr 6)
A B Shield
P9
RS-485 In
V100
(Addr 4)
A B Shield
P9
RS-485 In
V100
(Addr 5)
A B Shield
P9
RS-485 In
V100
(Addr 1)
A B Shield
P9
RS-485 In
V100
(Addr 7)
A B Shield
P9
RS-485 In
V100
(Addr 2)
A B Shield
P9
RS-485 In
V100
(Addr 3)
A B Shield
P9
RS-485 In
NOTE: On the V100s make sure to use the RS-485 In; avoid using the RS-485 Out.
Configure and Wire Data 20
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