BSL Equipment
Home / RF & Microwave Test Equipment / Rohde & Schwarz AMIQ04 I/Q Modulation Generator

Rohde & Schwarz AMIQ04 I/Q Modulation Generator

Rohde & Schwarz · Model: AMIQ04 Made to order
Rohde & Schwarz AMIQ04 I/Q Modulation Generator
Request a quote

Rohde & Schwarz AMIQ04 is a dual-channel I/Q modulation generator with 100 MHz sample rate, 14-bit resolution, 16M sample memory, and advanced channel alignment.

Model AMIQ04
Manufacturer Rohde & Schwarz
Category RF & Microwave Test Equipment
Availability Made to order

Overview

The Rohde & Schwarz AMIQ04 is a dual-channel modulation generator engineered for use as an I/Q source in complex communication systems. It can be programmed with WinIQSIM software or controlled from an SMIQ series signal generator. Each channel stores up to 16,000,000 samples, enabling long signal sequences at high symbol rates with clock frequencies up to 100 Msamples/s and 14-bit amplitude resolution.

Key Features

  • 14-bit amplitude resolution with 78 dB ACP dynamic range
  • 100 MHz sample rate
  • 16,000,000 samples per channel memory depth
  • Automatic amplitude and offset alignment with fine skew adjustment
  • Integrated hard disk and floppy drive
  • BER measurement capability (with option B1)
  • Support for broadband digital communication signals (WCDMA, HiperLAN2, IEEE 802.11a)
  • Multi-carrier and CDMA signal generation

Applications

  • I/Q source for vector signal generators in communication testing
  • Generation of complex digital modulation signals (WCDMA, QPSK, 8PSK, EDGE)
  • Multi-carrier signal generation (HIPERLAN/2, OFDM)
  • CDMA and TDMA signal simulation and testing
Amplitude Resolution 14-bit
Sample Rate 100 MHz
Memory per Channel 16,000,000 samples
ACP Dynamic Range 78 dB (typical, 3GPP FDD)
Number of Channels 2
Storage Integrated hard disk and floppy drive
Supported Standards WCDMA, HiperLAN2, IEEE 802.11a, OFDM
Rohde & Schwarz AMIQ04 I/Q Modulation Generator

Request a quote

Rohde & Schwarz AMIQ04 I/Q Modulation Generator

Response within 24 hours
No obligation
Direct communication

By submitting this form, you agree to the processing of your personal data in accordance with our privacy policy.