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Wireless Transceiver ICs

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CMX992Q3
CML Microsystems
75mA GMSK 100MHz 3.6V 1GHz 9.6Kbps PCB,Surface Mount 3V PCBinstall,SMD mount 7mm(length)*7mm(width)
Quantity: 419
Ship Date: 7-12 working days
1+ $13.7488
25+ $13.3016
100+ $11.9705
500+ $11.362
- +
x $13.7488
Ext. Price: $13.74
MOQ: 1
Mult: 1
SPQ: 1
CMX994AQ4
CML Microsystems
80mA 50MHz 3.6V 1.218GHz 19.2Kbps PCB,Surface Mount 116dBm 3V VQFN-40 PCBinstall,SMD mount 6mm(length)*6mm(width)
Quantity: 190
Ship Date: 7-12 working days
1+ $13.9152
25+ $13.4576
100+ $12.1057
500+ $11.492
- +
x $13.9152
Ext. Price: $13.91
MOQ: 1
Mult: 1
SPQ: 1
SCT2400HDA
CML Microsystems
12dBm 12.5mA FSK,OOK 3.6Kbps I²C,I²S,UART,USB 119dBm SMD mount
Quantity: 57
Ship Date: 7-12 working days
1+ $13.9672
25+ $13.5928
100+ $12.4384
500+ $11.4089
1000+ $10.3688
- +
x $13.9672
Ext. Price: $13.96
MOQ: 1
Mult: 1
SPQ: 1
CMX994EQ4
CML Microsystems
80mA 50MHz 3.6V 1.218GHz 19.2Kbps PCB,Surface Mount 116dBm 3V PCBinstall,SMD mount 6mm(length)*6mm(width)
Quantity: 1100
Ship Date: 5-7 working days
23+
10+ $15.5584
100+ $14.8116
500+ $14.3137
1000+ $13.9403
- +
x $15.5584
Ext. Price: $155.58
MOQ: 10
Mult: 1
CMX994EQ4-TR1K
CML Microsystems
80mA 50MHz 1.218GHz 19.2Kbps PCB,Surface Mount 116dBm QFN PCBinstall,SMD mount
Quantity: 4000
Ship Date: 7-12 working days
1000+ $12.532
- +
x $12.532
Ext. Price: $12532.00
MOQ: 1000
Mult: 1000
SPQ: 1
CMX994GQ4
CML Microsystems
80mA 30MHz 3.6V 1.218GHz 19.2Kbps PCB,SMA 66mA 116dBm 3V PCBinstall,SMD mount
Quantity: 0
Ship Date: 7-12 working days
42+ $21.9336
- +
x $21.9336
Ext. Price: $921.21
MOQ: 42
Mult: 42
SPQ: 1

Wireless Transceiver ICs

A wireless transceiver, also known as a transponder or wireless transceiving module, is a device that can both transmit and receive radio frequency (RF) signals. It is a crucial component in wireless communication systems, enabling the exchange of information without the need for physical connections.

Definition:
A wireless transceiver is an electronic device that combines a transmitter and a receiver into a single unit, facilitating bidirectional communication over a wireless link. It operates by modulating an information signal onto a carrier wave for transmission and then demodulating the received signal to recover the original information.

Functions:
1. Transmission: The transmitter part of the transceiver modulates the data signal onto a carrier frequency and amplifies it for transmission over the air.
2. Reception: The receiver part captures the incoming signal, filters out noise, and demodulates the signal to extract the original data.
3. Signal Processing: It may include functions such as error correction, encoding, and decoding to ensure reliable communication.
4. Frequency Management: Some transceivers can switch between different frequencies to avoid interference or to comply with regulatory requirements.

Applications:
1. Wireless Networking: Used in Wi-Fi routers and access points for local area network (LAN) connectivity.
2. Bluetooth Devices: For short-range wireless communication between devices like headphones, speakers, and smartphones.
3. RFID Systems: In radio frequency identification (RFID) tags and readers for tracking and identification.
4. IoT Devices: For communication in the Internet of Things (IoT), where sensors and devices need to transmit data wirelessly.
5. and Defense: In communication, radar systems, and communications.
6. Automotive: For keyless entry systems, tire pressure systems, and vehicle-to-vehicle (V2V) communication.

Selection Criteria:
1. Frequency Band: Choose a transceiver that operates within the required frequency band for the application.
2. Range: Consider the maximum distance over which the transceiver needs to communicate.
3. Data Rate: The speed at which data needs to be transmitted, which affects the choice of modulation scheme and bandwidth.
4. Power Consumption: Important for battery-operated devices to ensure long battery life.
5. Interoperability: Ensure compatibility with existing systems and standards.
6. Size and Form Factor: Depending on the application, the physical dimensions and form factor of the transceiver may be critical.
7. Cost: The budget for the project will influence the choice of transceiver, balancing performance with cost.
8. Regulatory Compliance: Ensure the transceiver meets the necessary certifications and standards for the region in which it will be used.

When selecting a wireless transceiver, it is essential to consider these factors to ensure that the device meets the specific requirements of the application.
Please refer to the product rule book for details.