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HP 3500 series Specifications page 56

3500 switch series
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QuickSpecs
Accessory Product Details
HP X242 SFP+ SFP+ 7 m
Direct Attach Cable
(J9285B)
HP X242 SFP+ to SFP+ 10m
Direct Attach Copper
Cable (J9286B)
Services
Connectivity
Physical characteristics
Environment
Electrical characteristics Notes
Notes
Services
Connectivity
Physical characteristics
Environment
Electrical characteristics Maximum power rating
DA - 13282 North America — Version 20 — January 17, 2014
Refer to the HP website at
www.hp.com/networking/services
the service-level descriptions and product numbers. For details about services
and response times in your area, please contact your local HP sales office.
Length
Weight
Operating temperature
Operating relative
humidity
Nonoperating/Storage
temperature
Nonoperating/Storage
relative humidity
Altitude
Electrical Properties
• Cable Characteristic Impedance: 100 ohms
• Crosstalk between pairs: 2% max
• Time delay: 1.31 nsec/ft
Physical Properties
• Cable Diameter: 0.180"
• Minimum Cable Bend Radius: 1.0"
Refer to the HP website at
www.hp.com/networking/services
the service-level descriptions and product numbers. For details about services
and response times in your area, please contact your local HP sales office.
Length
Dimensions
Weight
Operating temperature
Operating relative
humidity
Nonoperating/Storage
temperature
Nonoperating/Storage
relative humidity
Altitude
Notes
HP 3500 and 3500 yl Switch Series
22.97 ft. (7 m)
1.02 lb., Fully loaded the cable with an SFP+
transceiver at each end of the cable
32ºF to 158ºF (0ºC to 70ºC)
5% to 95%, noncondensing
14ºF to 185ºF (-10ºC to 85ºC)
5% to 95%, noncondensing
up to 10,000 ft. (3 km)
0.04 watts maximum per transceiver end
32.82 ft. (10 m)
12(d) x 15(w) x 3(h) in. (30.48 x 38.1 x 7.62 cm)
0.99 lb. (0.45 kg), Fully loaded the cable with an
SFP+ transceiver at each end of the cable
23°F to 185°F (-5°C to 85°C)
5% to 95%, noncondensing
14°F to 185°F (-10°C to 85°C)
5% to 95%, noncondensing
up to 10,000 ft. (3 km)
1.2 W
Maximum power rating and maximum heat
dissipation are the worst-case theoretical
maximum numbers provided for planning the
for details on
for details on
Page 56

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