Instruction Manual for POTTER models including: PAD100-MIM Micro Input Module, PAD100-MIM, Micro Input Module, Input Module, Module

Denise Wilson

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Installation Manual: PAD100-MIM Micro Input Module

NOTICE TO THE INSTALLER
This manual provides an overview and the installation instructions for the PAD100-MIM module. This module is only compatible with addressable fire systems that utilize the PAD Addressable Protocol.
All terminals are power limited and should be wired in accordance with the requirements of NFPA 70 (NEC) and NFPA 72 (National Fire Alarm Code). Failure to follow the wiring diagrams in the following pages will cause the system to not operate as intended. For further information, refer to the control panel installation instructions.
The module shall only be installed with listed control panels. Refer to the control panel installation manual for proper system operation.

1. Description
The PAD100-MIM is used to monitor the status of an initiating device(s) that contain a normally open set of dry contacts. The module is enclosed in a plastic case to protect against inadvertent shorts and ground faults. The case can be mounted using a single screw. Generally the PAD100-MIM is used to monitor pull stations and other devices where the module is installed in an electrical box or enclosure behind the device being monitored.
The PAD100-MIM includes one red LED to indicate the module's status. In normal condition, the LED flashes when the device is being polled by the control panel. When an input is activated, the LED will flash at a fast rate. If the LED blink has been disabled via the programming software in a normal condition the LED of the device will be off. All other conditions remain the same.

2. Setting the Address

All PAD protocol detectors and modules require an address prior to connection to the panel's SLC loop. Each PAD device's address (i.e., detector and/or module) is set by changing the dip switches located on the device. PAD device addresses are comprised of a seven (7) position dip switch used to program each device with an address ranging from 1­127.

Figure 1. PAD Device Dip Switch Addresses Table (Addresses 1­127)

1 2 4 8 16 32 64

1 2 4 8 16 32 64

1 2 4 8 16 32 64

1 2 4 8 16 32 64

1 2 4 8 16 32 64

1

27

53

78

103

2

28

54

79

104

3

29

55

80

105

4

30

56

81

106

5

31

57

82

107

6

32

58

83

108

7

33

59

84

109

8

34

60

85

110

9

35

61

86

111

10

36

62

87

112

11

37

63

88

113

12

38

64

89

114

13

39

65

90

115

14

40

66

91

116

15

41

67

92

117

16

42

68

93

118

17

43

69

94

119

18

44

70

95

120

19

45

71

96

121

20

46

72

97

122

21

47

73

98

123

22

48

74

99

124

23

49

75

100

125

24 25 26
1 2 4 8 16 32 64

50 51 52
1 2 4 8 16 32 64

76

101

126

77

102

127

1 2 4 8 16 32 64

1 2 4 8 16 32 64

1 2 4 8 16 32 64

Note: Each "gray" box indicates that the dip switch is "On," and each "white" box indicates "Off."

The examples shown below illustrate a PAD device's dip switch settings: the 1st example shows a device not addressed where all dip switch settings are in the default "Off" position, the 2nd illustrates an addressed PAD device via the dip switch settings.
Figure 2. Examples of PAD Device Showing Default Dip Switch Setting (Unaddressed) & Addressed PAD Device

1 2 4 8 16 32 64
All dip switches are
On shown in the "Off" Off position.

1 2 4 8 16 32 64 On Off

Example shows this PAD device's address = 42. Dip switches #2, 8 & 32 are in the "On" position.

Potter Electric Signal Company, LLC

·

St. Louis, MO

·

Phone: (800) 325-3936

Document 5406302-A 02/16
firealarmresources.com

·

www.pottersignal.com

PAGE 1 OF 2

INSTALLATION MANUAL: PAD100-MIM MICRO INPUT MODULE

Before connecting a device to the SLC loop, take the following precautions to prevent potential damage to the SLC or device.
· Power to the SLC is removed. · Field wiring on module is correctly installed. · Field wiring has no open or short circuits.
3. Technical Specifications

Operating Voltage Max SLC Standby Current Max SLC Alarm Current IDC Input Circuit Max Wiring Resistance of IDC Max Wiring Capacitance of IDC Max IDC Voltage Max IDC Current EOL Resistor Operating Temperature Range
Operating Humidity Range Max no. of Module Per Loop Dimensions Mounting Options Shipping Weight

24.0V 200  A 200  A Class B 100  1F 2.05 VDC 120  A 5.1K 
32 to 120 F (0 to 49 C)
0 to 93% (non-condensing) 127 units 1.75" L x 1.36" W x 43" D 2-1/2" deep single-gang box 0.3 lbs

4. Wiring Diagram
Below is an wiring diagram showing how to wire a PAD100-MIM module to the panel. Figure 3. Example of Wiring a PAD100-MIM

Notes:
· SLC wiring style supports the Class A, Class B and Class X. · IDC wiring style is Class B. · SLC loop wiring (SLC+, SLC-) and initiating device wiring (IN)
are power limited.
· Wiring for terminals SLC+, SLC- are supervised. · Wiring for terminals (IN) are supervised. · This addressable module does not support 2-wire detectors. · All wiring is between #12 (max.) and #22 (min.). · Wire Preparation ­ Strip all wires 1/4 inch from their edges as
shown here:

FROM FACP OR PREVIOUS DEVICE AND TO NEXT DEVICE

TO NORMALLY OPEN MONITORED DEVICE 5.1K OHM REQUIRED Part #3005013

1/4 inch
­ Stripping too much insulation may cause a ground fault. ­ Stripping too little may cause a poor connection and
subsequently an open circuit.

These instructions do not purport to cover all the details or variations in the equipment described, nor provide for every possible contingency to be met in connection with installation, operation and maintenance.
Specifications subject to change without prior notification. For Technical Assistance contact Potter Electric Signal Company at 866-956-1211. Actual performance is based on proper application of the product by a qualified professional. Should further information be desired or should particular problems arise, which are not covered sufficiently for the purchaser's purpose, the matter should be referred to a distributor in your region.

Potter Electric Signal Company, LLC

·

St. Louis, MO

·

Phone: (800) 325-3936

Document 5406302-A 02/16
firealarmresources.com

·

www.pottersignal.com

PAGE 2 OF 2



References

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