Eaton Cutler-Hammer SPI9000 User Manual page 17

Inverter unit fi9 – fi14
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September 2006
Table 1-4: Technical Information, continued
Description
Ambient Conditions, continued
Vibration
EN 50178/EN 60068-2-6
Shock
EN 50178, EN 60068-2-27
Cooling Capacity Required
Cooling Air Required
Unit Enclosure Class
EMC (at Default Settings)
Immunity
Safety
Control Connections
Analog input voltage
Analog input current
Digital inputs (6)
Auxiliary voltage
Output reference voltage
Analog output
Digital outputs
Relay outputs
Protections
Overvoltage Protection
Undervoltage Protection
Ground Fault Protection
Motor Phase Supervision
Overcurrent Protection
Unit Overtemperature Protection Yes
Motor Overload Protection
Motor Stall Protection
Motor Underload Protection
Short Circuit Protection of +24V
and +10V Reference Voltages
MN04004002E
Specification
5 – 150 Hz
Displacement amplitude: 1 mm (peak) at 3 – 15.8 Hz
Maximum acceleration amplitude: 1G at 15.8 – 150 Hz
UPS Drop Test (for applicable UPS weights)
Storage and shipping: Maximum 15G, 11 ms (in package)
P
[kW] approx. P
loss
FI9, 677 cfm; FI10, 824 cfm;
FI12, 1648 cfm; FI13, 2472 cfm
IP00
Fulfill all EMC immunity requirements
CE, UL, CUL
EN 61800-5-1 (2003) See unit nameplate for more detailed approvals.
= 200kΩ Ω Ω Ω , (–10V to +10V joystick control)
0 to +10V, R
i
Resolution 0.1%; Accuracy ±1%
0(4) – 20 mA, R
Positive or negative logic; 18 – 30V DC
+24V, ±15%, max. 250 mA
+10V, +3%, max. load 10 mA
0(4) – 20mA; R
Resolution 10 bits; Accuracy ±2%
Open collector output, 50 mA/48V
2 programmable change-over relay outputs
Switching capacity: 24V DC/8A, 250V AC/8A, 125V DC/0.4A
Minimum switching load: 5V/10 mA
500V inverters: 911V DC; 690V inverters: 1200V DC
500V inverters: 333V DC; 690V inverters: 460V DC
In case of ground fault in motor or motor cable, only the inverter is
protected.
Trips if any of the output phases are missing.
Yes
Yes
Yes
Yes
Yes
For more information visit: www.EatonElectrical.com
SPI9000 Inverter Unit FI9 – FI14 User Manual
[kW] x 0,025
mat
= 250Ω Ω Ω Ω differential
i
max. 500Ω Ω Ω Ω
L
1-7

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