The Keysight Agilent HP 3708A Noise and Interference Test Set is designed to simulate flat-fade conditions on digital or FM microwave radio receivers by injecting high-accuracy noise into the IF section. It features carrier tracking to maintain a constant carrier-to-noise (C/N) ratio automatically under fading conditions.

Specifications

General

ParameterValue
InterfacesHP-IB
Display7-segment LED display with status indicators

Physical

ParameterValue
Power Supply100 / 120 / 220 / 240 V AC (+11% / -13%), 48 to 66 Hz, 150 VA max
Operating Temperature0 to +55 °C
Dimensions (W×H×D)425 mm × 177 mm × 625 mm
Weight23

Carrier/Interference (C/N and C/I)

ParameterValue
C/N Ratio Measurement Range0 to 40 dB
C/I Ratio Range0 to 40 dB
Auxiliary I Input FunctionProvides a fixed-loss path to the IF output, mixing an interferer with C/N to provide C/(N+I) ratios

Carrier Path Characteristics

ParameterValue
Carrier Path Gain0 ±0.4 dB (typically 0 ±0.1 dB)
Carrier Path Group Delay0.2 ns

Power Measurement

ParameterValue
Power Meter Resolution0.01 dB
Power Meter TypeTRMS IF power meter

Measurement Functions

ParameterValue
Insertion Loss Measurement Range35 dB to -5 dB
Insertion Loss Measurement Accuracy±0.2 dB at 70 or 140 MHz
Noise Bandwidth Measurement RangeFunction of insertion loss and filter bandwidth
Measurement Modes / Unit Entry OptionsC/N_0, Eb/N_0, or C/N (C/N in user-defined bandwidth)
Tracking Mode FunctionAutomatically maintains constant C/N ratio in the presence of receiver carrier level variations
Interference FacilityBroadband, with or without noise injection, to stress the radio deterministically

Carrier & Noise Path

ParameterValue
Carrier Frequency Range10 MHz to 140 MHz
Nominal Impedance75 Ω (standard), 50 Ω (Option 001)
Return Loss> 26 dB (10 to 140 MHz)

Environmental

ParameterValue
Storage Temperature-40 °C to +75 °C

Power

ParameterValue
Power Consumption150 VA maximum

Options

ParameterValue
Option 001 RF Connector and Impedance50 Ω impedance, BNC female connectors

Technology

Analog/Digital IF Noise Injection

Applications

Microwave radio link flat-fade simulation and C/N / C/I characterization