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CC1125RHBT

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CC1125RHBT
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Texas Instruments

Ultra-high performance Sub-1 GHz wireless transceiver for narrowband systems 32-VQFN -40 to 85

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¥56.7306
市场总库存:
15,947
生命周期状态: Active
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(20)
CC1125EM 420/470MHz Reference Design
CC1125EM-420-470-RD: The CC1125 420/470MHz EM reference design contains schematics and layout files for the CC1125EM 420/470MHz evaluation module. The reference design demonstrates good techniques for CC1125 decoupling and RF layout. For optimum RF performance, these parts should be copied accurately. This is a 4-layer reference design with a discrete balun and an SMA antenna connector designed for a single ended 50 ohm antenna. The RF section has been designed for operation in 420 to 470MHz frequency band.
CC112XSKY65313EM-RD CC112x SKY65313 EM 30 dBm 915 MHz Reference Design | TI.com
CC112XSKY65313EM-RD: The CC112x SKY65313 915 MHz EM Reference Design contains schematics and layout files for the CC112x SKY65313 Evaluation Module. CC112x denotes that CC1120, CC1121 and CC1125 can be used in this reference design. This design demonstrates good techniques for CC112x decoupling and RF layout. For optimum RF performance, the design should be copied accurately. This is a 4-layer reference design with the option to connect to the SMA antenna connector designed for a single ended 50 ohm antenna, or connection to the integrated PCB helical antenna. The RF section has been designed for operation in the 902 MHz (US) frequency band with 1W (30 dBm) output power.
CC112XSKY65367EM-RD CC112x SKY65367 EM 30 dBm 169 MHz Reference Design | TI.com
CC112XSKY65367EM-RD: The CC112x SKY63367 169 MHz EM Reference Design contains schematics and layout files for the CC112x SKY63367 Evaluation Module. CC112x denotes that CC1120, CC1121 and CC1125 can be used in this reference design. This design demonstrates good techniques for CC112x decoupling and RF layout. For optimum RF performance, the design should be copied accurately. This is a 4-layer reference design with the option to connect to the SMA antenna connector designed for a single ended 50 ohm antenna, or connection to a helical wire antenna from Pulse (W3100). The RF section has been designed for operation in the 169 MHz ISM frequency band with 1W (30 dBm) output power.
CC1125EM 169MHz Reference Design
CC1125EM-169-RD: The CC1125 169MHz EM reference design contains schematics and layout files for the CC1125EM 169MHz evaluation module. The reference design demonstrates good techniques for CC1125 decoupling and RF layout. For optimum RF performance, these parts should be copied accurately. This is a 4-layer reference design with a discrete balun and an SMA antenna connector designed for a single ended 50 ohm antenna. The RF section has been designed for operation in the 169.4 to 169.6 MHz frequency band.
CC1125EM-CAT1-868RD CC1125EM 868MHz ETSI Cat 1 Reference Design | TI.com
CC1125EM-CAT1-868RD: The CC1125EM 868MHz ETSI Cat 1 reference design contains schematics and layout files for the CC1125EM 868MHz ETSI Cat 1 evaluation module. The reference design demonstrates good techniques for CC1125 decoupling and RF layout. For optimum RF performance, these parts should be copied accurately. This is a 4-layer reference design with a discrete balun and an SMA antenna connector designed for a single ended 50 ohm antenna. The RF section has been designed for operation in the 869.2-869.25 MHz frequency band and targets to meet compliance with ETSI Cat 1.
CC1125EM 868MHz ETSI Cat 1 Reference Design
CC1125EM-CAT1-868RD: The CC1125EM 868MHz ETSI Cat 1 reference design contains schematics and layout files for the CC1125EM 868MHz ETSI Cat 1 evaluation module. The reference design demonstrates good techniques for CC1125 decoupling and RF layout. For optimum RF performance, these parts should be copied accurately. This is a 4-layer reference design with a discrete balun and an SMA antenna connector designed for a single ended 50 ohm antenna. The RF section has been designed for operation in the 869.2-869.25 MHz frequency band and targets to meet compliance with ETSI Cat 1.
Sub-1GHz Wireless Long Range Reference Design with CC1120 (868 to 915 MHz)
TIDC-CC1120-LRM-868-915MHZ: Narrowband is an industry standard way to get long range RF communication with higher immunity to interference versus wide band solutions. Use this reference design to test out the longest range solution from TI for your Internet of Things (IoT) applications. The tool for 868 to 915 MHz uses the CC1120DK, where the crystal on the evaluation module is replaced by a TCXO, together with a SW solution optimized for narrowband long range communication.
Sub-1GHz Wireless Long Range Reference Design with CC1120 (420 to 470 MHz)
TIDC-CC1120-LRM-420-470MHZ: Narrowband is an industry standard way to get long range RF communication with higher immunity to interference versus wide band solutions. Use this reference design to test out the longest range solution from TI for your Internet of Things (IoT) applications. The tool for 420 to 470 MHz uses the CC1120DK, where the crystal on the evaluation module is replaced by a TCXO, together with a SW solution optimized for narrowband long range communication.
ETSI Cat 1 RF Layout Reference Design
CC1125EM-868-RD: This reference design for the CC1125 shows how to successfully do the RF layout and filtering to meet the ETSI Category 1 requirements in the 868 MHz frequency band.
CC112x SKY65367 EM 30 dBm 169 MHz Reference Design
CC112XSKY65367EM-RD: The CC112x SKY63367 169 MHz EM Reference Design contains schematics and layout files for the CC112x SKY63367 Evaluation Module. CC112x denotes that CC1120, CC1121 and CC1125 can be used in this reference design. This design demonstrates good techniques for CC112x decoupling and RF layout. For optimum RF performance, the design should be copied accurately. This is a 4-layer reference design with the option to connect to the SMA antenna connector designed for a single ended 50 ohm antenna, or connection to a helical wire antenna from Pulse (W3100). The RF section has been designed for operation in the 169 MHz ISM frequency band with 1W (30 dBm) output power.
CC1125EM 868/915MHz Reference Design
CC1125EM-868-915-RD: This RF Layout Reference Design demonstrates good decoupling and layout techniques for a low power RF device operating in the 868 MHz and 915 MHz frequency bands.
CC1125EM-169-RD CC1125EM 169MHz Reference Design | TI.com
CC1125EM-169-RD: The CC1125 169MHz EM reference design contains schematics and layout files for the CC1125EM 169MHz evaluation module. The reference design demonstrates good techniques for CC1125 decoupling and RF layout. For optimum RF performance, these parts should be copied accurately. This is a 4-layer reference design with a discrete balun and an SMA antenna connector designed for a single ended 50 ohm antenna. The RF section has been designed for operation in the 169.4 to 169.6 MHz frequency band.
TIDC-DSSS868WMBUS-DC Battery-powered Data Collector for wM-Bus T-/C-mode & DSSS-coded Data Packets @ 868.95MHz Ref Design | TI.com
TIDC-DSSS868WMBUS-DC: The TIDC-DSSS868WMBUS-DC TI Design is a solution that enables Data Collectors with optimized firmware for receiving wireless M-Bus (wM-Bus) packets in frequent transmission (T-) and compact (C-) modes at 868.95MHz. For improved range a customized Direct Sequence Spread Spectrum (DSSS)-coded packet reception is also supported. This reference design can be adapted for wM-Bus and DSSS-enabled Data Collectors and mobile readers at 169 MHz and 433 MHz bands.
CC112x SKY65313 EM 30 dBm 915 MHz Reference Design
CC112XSKY65313EM-RD: The CC112x SKY65313 915 MHz EM Reference Design contains schematics and layout files for the CC112x SKY65313 Evaluation Module. CC112x denotes that CC1120, CC1121 and CC1125 can be used in this reference design. This design demonstrates good techniques for CC112x decoupling and RF layout. For optimum RF performance, the design should be copied accurately. This is a 4-layer reference design with the option to connect to the SMA antenna connector designed for a single ended 50 ohm antenna, or connection to the integrated PCB helical antenna. The RF section has been designed for operation in the 902 MHz (US) frequency band with 1W (30 dBm) output power.
CC1125EM-868-RD ETSI Cat 1 RF Layout Reference Design | TI.com
CC1125EM-868-RD: This reference design for the CC1125 shows how to successfully do the RF layout and filtering to meet the ETSI Category 1 requirements in the 868 MHz frequency band.
TIDC-CC1120-LRM-868-915MHZ Sub-1GHz Wireless Long Range Reference Design with CC1120 (868 to 915 MHz) | TI.com
TIDC-CC1120-LRM-868-915MHZ: Narrowband is an industry standard way to get long range RF communication with higher immunity to interference versus wide band solutions. Use this reference design to test out the longest range solution from TI for your Internet of Things (IoT) applications. The tool for 868 to 915 MHz uses the CC1120DK, where the crystal on the evaluation module is replaced by a TCXO, together with a SW solution optimized for narrowband long range communication.
TIDC-CC1120-LRM-420-470MHZ Sub-1GHz Wireless Long Range Reference Design with CC1120 (420 to 470 MHz) | TI.com
TIDC-CC1120-LRM-420-470MHZ: Narrowband is an industry standard way to get long range RF communication with higher immunity to interference versus wide band solutions. Use this reference design to test out the longest range solution from TI for your Internet of Things (IoT) applications. The tool for 420 to 470 MHz uses the CC1120DK, where the crystal on the evaluation module is replaced by a TCXO, together with a SW solution optimized for narrowband long range communication.
CC1125EM-868-915-RD CC1125EM 868/915MHz Reference Design | TI.com
CC1125EM-868-915-RD: This RF Layout Reference Design demonstrates good decoupling and layout techniques for a low power RF device operating in the 868 MHz and 915 MHz frequency bands.
CC1125EM-420-470-RD CC1125EM 420/470MHz Reference Design | TI.com
CC1125EM-420-470-RD: The CC1125 420/470MHz EM reference design contains schematics and layout files for the CC1125EM 420/470MHz evaluation module. The reference design demonstrates good techniques for CC1125 decoupling and RF layout. For optimum RF performance, these parts should be copied accurately. This is a 4-layer reference design with a discrete balun and an SMA antenna connector designed for a single ended 50 ohm antenna. The RF section has been designed for operation in 420 to 470MHz frequency band.
Battery-powered Data Collector for wM-Bus T-/C-mode & DSSS-coded Data Packets @ 868.95MHz Ref Design
TIDC-DSSS868WMBUS-DC: The TIDC-DSSS868WMBUS-DC TI Design is a solution that enables Data Collectors with optimized firmware for receiving wireless M-Bus (wM-Bus) packets in frequent transmission (T-) and compact (C-) modes at 868.95MHz. For improved range a customized Direct Sequence Spread Spectrum (DSSS)-coded packet reception is also supported. This reference design can be adapted for wM-Bus and DSSS-enabled Data Collectors and mobile readers at 169 MHz and 433 MHz bands.
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