RX1100

Features: • Ideal for 303.825 MHz, 3 V Data Receivers• High-Sensitivity Passive Design with No RF Oscillation• Baseband Data Rate of 2400 b/s• Simple to Apply with External Parts Count• Rugged, Surface-Mount Package with 130 mm2 FootprintSpecifications Rating ...

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SeekIC No. : 004480535 Detail

RX1100: Features: • Ideal for 303.825 MHz, 3 V Data Receivers• High-Sensitivity Passive Design with No RF Oscillation• Baseband Data Rate of 2400 b/s• Simple to Apply with External P...

floor Price/Ceiling Price

Part Number:
RX1100
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/12/26

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Product Details

Description



Features:

• Ideal for 303.825 MHz, 3 V Data Receivers
• High-Sensitivity Passive Design with No RF Oscillation
• Baseband Data Rate of 2400 b/s
• Simple to Apply with External Parts Count
• Rugged, Surface-Mount Package with 130 mm2 Footprint



Specifications

Rating
Value
Units
Incident RF Power
+10
dBm
Power Supply Voltage (VCC to Ground) (Observe ESD Precautions)
-0.3 to +4.0
VDC
ESD (100 pF, 1.5 kW) Terminals 2, 3, or 7 to Ground
All Other Terminals to Ground
±2000
V
±300
Case Temperature1
-40 to +100
°C



Description

This amplifier-sequenced hybrid (ASH) receiver of RX1100 is based on several leading-edge technologies that allow outstanding performance in a small and simple-to-apply module. Two surface-accoustic-wave (SAW) devices are employed. Front-end filtering by a low-loss coupled-resonator SAW filter provides excellent selectivity. Typical sensitivity better than -100 dBm is achieved with no RF oscillating or regenerative circuits. This results in virtually no RF spurious emissions. A low-loss SAW delay line provides the time delay necessary to sequence the two RF amplifiers. Time sequencing of the RF gain eliminates the need for frequency conversion prior to AM detection. This receiver RX1100 is designed to operate from 3 V lithium battery with typically1.1 mA current. For system design flexibility, the baseband output is accessible, and the comparator threshold can be changed externally between two settings. Typical applications include unlicensed wireless remote-controls, security and data-link devices operating in the USA under FCC part 15, in Australia, in Japan, and in Korea.




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