Product Information

TRC103

TRC103 electronic component of Murata

Datasheet
RF Transceiver Transceiver 868-960 MHz, Multi-chnl FSK

Manufacturer: Murata
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
N/A

Obsolete
Availability Price Quantity
0 - WHS 1

MOQ : 3000
Multiples : 1

Stock Image

TRC103
Murata

3000 : USD 4.7502
3000 : USD 4.7502
3000 : USD 4.7502
3000 : USD 4.7502
3000 : USD 4.7502
3000 : USD 4.7502
N/A

Obsolete
0 - WHS 2

MOQ : 1
Multiples : 1

Stock Image

TRC103
Murata

1 : USD 4.9688
10 : USD 4.4698
25 : USD 4.054
100 : USD 3.6452
250 : USD 3.3125
500 : USD 2.9166
1000 : USD 2.6877
6000 : USD 2.5069
N/A

Obsolete
     
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Frequency Range
Type
Operating Supply Voltage
Maximum Operating Temperature
Package / Case
Packaging
Minimum Operating Temperature
Supply Voltage - Min
Supply Voltage - Max
Operating Frequency
Brand
Mounting Style
Factory Pack Quantity :
Cnhts
Hts Code
Mxhts
Product Type
Subcategory
Taric
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TRC103 Product Overview 863-960 MHz TRC103 is a single chip, multi-channel, low power UHF transceiver. It is RF Transceiver designed for low cost, high volume, two-way short range wireless applica- tions in the 863-870, 902-928 and 950-960 MHz frequency bands. The TRC103 is FCC & ETSI certifiable. All critical RF and base-band functions are integrated in the TRC103, minimizing external component count and sim- plifying and speeding design-ins. A microcontroller, RF SAW filter, 12.8 MHz crystal and a few passive components are all that is needed to create a com- plete, robust radio function. The TRC103 incorporates a set of low-power states to reduce overall current consumption and extend battery life. The small size and low power consumption of the TRC103 make it ideal for a wide variety of short range radio applications. The TRC103 complies with Directive 2002/95/EC (RoHS). Pb Key Features Modulation: FSK or OOK with frequency hop- Integrated RSSI ping and DTS spread spectrum capability Integrated crystal oscillator Frequency ranges: 863-870, 902-928 and Host processor interrupt pins 950-960 MHz Programmable data rate High sensitivity: -112 dBm in circuit External wake-up event inputs High data rate: up to 200 kb/s Integrated packet CRC error detection Low receiver current: 3.3 mA typical Integrated DC-balanced data scrambling Low sleep current: 0.1 A typical Integrated Manchester encoding/decoding Up to +11 dBm in-circuit transmit power Interrupt signal mapping function Operating supply voltage: 2.1 to 3.6 V Support for multiple channels Programmable preamble Four power-saving modes Programmable packet start pattern Low external component count Integrated RF, PLL, IF and base-band circuitry Small 32-pin QFN plastic package Integrated data & clock recovery Standard 13 inch reel, 3K pieces Programmable RF output power Applications PLL lock output Transmit/receive FIFO size programmable up Active RFID tags to 64 bytes Automated meter reading Continuous, Buffered and Packet data modes Home & industrial automation Packet address recognition Security systems Packet handling features: Two-way remote keyless entry Fixed or variable packet length Automobile immobilizers Packet filtering Sports performance monitoring Packet formatting Wireless toys Standard SPI interface Medical equipment TTL/CMOS compatible I/O pins Low power two-way telemetry systems Programmable clock output frequency Wireless mesh sensor networks Low cost 12.8 MHz crystal reference Wireless modules www.RFM.com E-mail: info rfm.com Technical support +1.800.704.6079 Page 1 of 65 2009-2010 by RF Monolithics, Inc. TRC103 - 11/29/12 Table of Contents 1.0 Pin Configuration ..................................................................................................................................... 4 1.1 Pin Description .................................................................................................................................. 4 2.0 Functional Description ............................................................................................................................. 5 2.1 RF Port .............................................................................................................................................. 7 2.2 Transmitter ........................................................................................................................................ 7 2.3 Receiver ............................................................................................................................................ 8 2.4 Crystal Oscillator ............................................................................................................................... 9 2.5 Frequency Synthesizer ................................................................................................................... 10 2.6 PLL Loop Filter ................................................................................................................................ 10 3.0 Operating Modes ................................................................................................................................... 11 3.1 Receiving in Continuous Mode ....................................................................................................... 12 3.2 Continuous Mode Data and Clock Recovery .................................................................................. 13 3.3 Continuous Mode Start Pattern Recognition .................................................................................. 14 3.4 RSSI ................................................................................................................................................ 14 3.5 Receiving in Buffered Data Mode ................................................................................................... 15 3.6 Transmitting in Continuous or Buffered Data Modes ...................................................................... 17 3.7 IRQ0 and IRQ1 Mapping................................................................................................................. 17 3.8 Buffered Clock Output ..................................................................................................................... 19 3.9 Packet Data Modes ......................................................................................................................... 19 3.9.1 Fixed Length Packet Mode .................................................................................................... 19 3.9.2 Variable Length Packet Mode ............................................................................................... 20 3.9.3 Extended Variable Length Packet Mode ............................................................................... 20 3.9.4 Packet Payload Processing in Transmit and Receive ........................................................... 22 3.9.5 Packet Filtering ...................................................................................................................... 23 3.9.6 Cyclic Redundancy Check ..................................................................................................... 23 3.9.7 Manchester Encoding ............................................................................................................ 24 3.9.8 DC-Balanced Scrambling ...................................................................................................... 24 3.10 SPI Configuration Interface ........................................................................................................... 25 3.11 SPI Data FIFO Interface ............................................................................................................... 27 4.0 Configuration Register Memory Map ..................................................................................................... 28 4.1 Main Configuration Registers (MCFG) ............................................................................................ 29 4.2 Interrupt Configuration Registers (IRQCFG)................................................................................... 32 4.3 Receiver Configuration Registers (RXCFG) ................................................................................... 34 4.4 Start Pattern Configuration Registers (SYNCFG) ........................................................................... 37 4.5 Transmitter Configuration Registers (TXCFG)................................................................................ 37 4.6 Oscillator Configuration Register (OSCFG) .................................................................................... 38 4.7 Packet Handler Configuration Registers (PKTCFG) ....................................................................... 38 4.8 Page Configuration Register (PGCFG) ........................................................................................... 39 5.0 Electrical Characteristics ....................................................................................................................... 40 5.1 DC Electrical Characteristics .......................................................................................................... 40 5.2 AC Electrical Characteristics ........................................................................................................... 41 6.0 TRC103 Design-in Steps ....................................................................................................................... 43 6.1 Determining Frequency Specific Hardware Component Values .................................................... 43 6.1.1 SAW Filters and Related Component Values ....................................................................... 43 6.1.2 Voltage Controlled Oscillator Component Values ................................................................. 43 6.2 Determining Configuration Values for FSK Modulation .................................................................. 44 6.2.1 Bit Rate Related FSK Configuration Values .......................................................................... 44 6.2.2 Determining Transmitter Power Configuration Values .......................................................... 46 www.RFM.com E-mail: info rfm.com Technical support +1.800.704.6079 Page 2 of 65 2009-2010 by RF Monolithics, Inc. TRC103 - 11/29/12

Tariff Desc

8542.39.23 No ..Linear/analogue and peripheral integrated circuits, timers, voltage regulators, A/D and D/A converters, telecommunication and modem integrated circuits, other than board level products Free

Electronic integrated circuits- Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
IPDiA
MU2
MUP
MUR
MURATA
Murata - TOKO
Murata / IPDiA
Murata Electronics
Murata Electronics N
Murata Electronics North America
MURATA MANUFACTURING
Murata Manufacturing Co.
Murata Power Solutio
Murata Power Solutions
Murata Power Solutions Inc
Murata Power Solutions Inc.
Toko
TOKO AMERICA
Toko America Inc.
TOKO, Inc.
TOKYO PARTS INDUSTRIAL
Tokyo Parts Industrial Group

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