Lora - Release The onePain 320mp3

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Lora - Release The Pain『全国首发!绝对美女哟,超赞钢琴铺垫And鼓声+女声』
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Powered byRelease The Pain-Lora-单曲-酷我音乐-好音质用酷我
Release The Pain
The day is slowly fading out
As I remember how we were
Your touch would make me just run back to you
But how could this be when your heart's no more free
The place got empty without you being around
I don't need this perfumed candles on the ground
The sound of the silence running through my mind
Is tearing me down I'm so empty inside
Hey turn around and tell me
How could you surrender our love
Look into my eyes and make me
Release the pain
Hey only you can save me
Cause I can't stand this tears anymore
Anything you say will make me
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
I guess you'll try to explain yourself
For all the trouble that you've caused
But I'm so tired to be lied again and again
I hope this time you won't try to denie
The place got empty without you being around
I don't need this pictures lying on the ground
The sound of the silence running through my mind
Is tearing me down I'm so empty inside
Hey turn around and tell me
How could you surrender our love
Look into my eyes and make me
Release the pain
Hey only you can save me
Cause I can't stand this tears anymore
Anything you say will make me
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
The day is slowly fading out
As I see you walk away
You promissed you'll stay forever in my arms mmm
And now it's over
Hey turn around and tell me
How could you surrender our love
Look into my eyes and make me
Release the pain
Hey only you can save me
Cause I can't stand this tears anymore
Anything you say will make me
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
Release the pain
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如有喜欢音乐的可以一起分享
虽然我推荐的音乐不多,但是这些都是我喜欢的
希望你们也会喜欢
知名度 +138
恭喜入选4月精选集
发帖收益,回帖人越多收益越高
不用一分钟 前奏就不错 喜欢
知名度 +10
嗨罗&&不错呢
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节奏很赞很赞!!!喜欢!
你真是个跟屁虫 哈哈 开个玩笑 ~ 歌曲不错噢
很好听。。
好听 我喜欢
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Semtech LoRa(R) 新进展
Semtech LoRa& Wireless RF Technology Featured in New South Pacific Region IoT Network
LoRa Alliance& Members KotahiNet and Loriot deploy LoRaWAN& network in the Cook Islands
Camarillo, California -&October 20, 2016
&(Nasdaq:SMTC), a leading supplier of analog and mixed-signal semiconductors, today announced its&&is featured in a new low power, wide area network (LPWAN) designed to deliver the benefits of the Internet of Things (IoT) to the remote destination of the Cook Islands. This network is the second deployment in the South Pacific by IoT network and software providers&and&that&. Both networks enable a wide range of smart city, agriculture, metering, environmental, consumer and industrial applications.
&Rolling out a LoRaWAN network in the Cook Islands was a natural fit for us,& said Vikram Kumar, Director of KotahiNet. &We&ve already proven the effectiveness of LoRa technology in New Zealand where our network is being rapidly rolled out, covering over half the population in a matter of months. The coverage includes some very remote rural areas, where LoRa-based sensors and gateways provide excellent coverage while using very low power to ensure sensor batteries last several years without needing to be replaced. The population in the Cook Islands is much smaller than New Zealand, but the people there still have many of the same needs for smart technology. By working with Bluesky Cook Islands and using network operations services from Loriot and LoRa technology from Semtech, we were able to quickly and economically implement a secure, standards-based network that will benefit the people of this region for years to come.&
Cook Island LoRaWAN Network
Working with the country&s sole telecom service provider, Bluesky Cook Islands, KotahiNet has initially deployed the LPWAN in northern Rarotonga, the largest isle in the chain, covering about a quarter of the island. Both companies plan to expand the network to the rest of the island before deploying it to the other islands of the country. This public LoRaWAN-based network provides the Cook Islands with a smart sensing infrastructure, allowing businesses and government organizations to collect and analyze environmental data, and make intelligent decisions about their business operations and scarce island resources. To help people understand the benefits and opportunities this new technology provides, Bluesky is providing free access to the network for people and organizations looking to test or connect a few sensors at a time.
New Zealand LoRaWAN Network
Following the deployment of the LoRaWAN network in New Zealand, KotahiNet is now building products and services that leverage the benefits of the technology. One example is a tank monitor for remotely measuring the level of a liquid or solid in a tank. This simple, versatile sensor uses KotahiNet&s LoRaWAN network to overcome the distance limitations and lack of long battery life typical of existing products. Similar connected products and other smart applications can also be implemented in the Cook Islands.
&The collaboration between KotahiNet and Loriot to implement a public, LoRa-based LPWAN for the Cook Islands and other regions in the South Pacific is an excellent example of how companies in the LoRa Alliance& can work together to deploy IoT solutions in even the most remote places,& said Marc Pegulu, Vice President and General Manager, Wireless and Sensing Product Group at Semtech. &The value of having a standards-based approach to building a LPWAN is that you can quickly set it up anywhere using hardware and software that is secure, interoperable, and works the way you expect, whether you&re in a dense urban area or a distant rural outpost.&
Semtech, KotahiNet and Loriot are members of the&, a group of more than 400 companies committed to driving and enhancing the LoRaWAN specification to ensure interoperability and scalability of LPWANs and IoT applications. Through its work with member companies and IoT industry groups, the LoRa Alliance is making LoRaWAN the standard for LPWANs focused on low-power, long-range IoT applications. To date, there are LoRaWAN public and private networks in more than 50 countries worldwide.
Key Features of LoRa RF Technology:
About Kotahinet
KotahiNet focuses on real-time data from the physical world. It provides a purpose-built public wireless network across New Zealand based on the LoRaWAN specifications. The company also provides connected products and services operating on its network. For more information, visit www.kotahi.net.
About Loriot
LORIOT is a Swiss start-up in the field of Internet of Things. Its core product today is software for secure, scalable, distributed, resilient operation of LoRaWAN networks and end-to-end applications. For more information, visit www.loriot.io.
About Semtech
Semtech Corporation is a leading supplier of analog and mixed-signal semiconductors for high-end consumer, enterprise computing, communications, and industrial equipment. Products are designed to benefit the engineering community as well as the global community. The Company is dedicated to reducing the impact it, and its products, have on the environment. Internal green programs seek to reduce waste through material and manufacturing control, use of green technology and designing for resource reduction. Publicly traded since 1967, Semtech is listed on the Nasdaq Global Select Market under the symbol SMTC. For more information, visit www.semtech.com..
Forward-Looking and Cautionary Statements
All statements contained herein that are not statements of historical fact, including statements that use the words &designed to,& &will,& &plan to,& &looking to,& or other similar words or expressions, that describe Semtech Corporation&s or its management&s future plans, objectives or goals are &forward-looking statements& and are made pursuant to the Safe-Harbor provisions of the Private Securities Litigation Reform Act of 1995, as amended. Such forward-looking statements involve known and unknown risks, uncertainties and other factors that could cause the actual results of Semtech Corporation to be materially different from the historical results and/or from any future results or outcomes expressed or implied by such forward-looking statements. Such factors are further addressed in Semtech Corporation&s annual and quarterly reports, and in other documents or reports, filed with the Securities and Exchange Commission (www.sec.gov) including, without limitation, information under the captions &Management's Discussion and Analysis of Financial Condition and Results of Operations& and &Risk Factors&. Semtech Corporation assumes no obligation to update any forward-looking statements in order to reflect events or circumstances that may arise after the date of this release, except as required by law.
Semtech, the Semtech logo, LoRa and LoRaWAN are registered trademarks or service marks, or trademarks or service marks, of Semtech Corporation and/or its affiliates. Third-party trademarks or service marks mentioned herein are the property of their respective owners.
注解:随着物联网的推广LoRa,被大家体积的次数越来越频繁,那么Lora是个什么鬼? 下面的文章取自中国通信网,对LoRa技术的阐述比较详细:
LoRa与NB-IoT是最有发展前景的两个低功耗广域网通信技术。不过两者之间到底有什么区别和不同?谁又将更胜一筹占领LPWAN制高点?
物联网的快速发展对无线通信技术提出了更高的要求,专为低带宽、低功耗、远距离、大量连接的物联网应用而设计的LPWAN(low-power Wide-Area Network,低功耗广域网)也快速兴起。NB-IoT与LoRa是其中的典型代表,也是最有发展前景的两个低功耗广域网通信技术。
这两种LPWAN技术都有覆盖广、连接多、速率低、成本低、功耗少等特点,都适合低功耗物联网应用,都在积极扩建自己的生态系统。可是,
这两者之间到底有什么区别和不同?
有什么重叠或不同的应用范围?
两者之间是你死我活的互相替代关系
还是你有我无的互补关系?
这也是《智慧产品圈》(微信号:pieeco)试图弄清楚的问题,接下来我们将会陆续推出广域物联网通信技术专题文章,介绍LoRa和NB-IoT和两种技术、各自生态以及对两者进行对比。
LoRa:易于建设和部署的低功耗广域物联技术
LoRa的诞生比NB-IoT要早些,2013年8月,Semtech公司向业界发布了一种新型的基于1GHz以下的超长距低功耗数据传输技术(Long Range,简称LoRa)的芯片。其接受灵敏度达到了惊人的-148dbm,与业界其他先进水平的sub-GHz芯片相比,最高的接收灵敏度改善了20db以上,这确保了网络连接可靠性。
它使用线性调频扩频调制技术,即保持了像FSK(频移键控)调制相同的低功耗特性,又明显地增加了通信距离,同时提高了网络效率并消除了干扰,即不同扩频序列的终端即使使用相同的频率同时发送也不会相互干扰,因此在此基础上研发的集中器/网关(Concentrator/Gateway)能够并行接收并处理多个节点的数据,大大扩展了系统容量。
图1:LoRa技术特点
线性扩频已在军事和空间通信领域使用了数十年,因为其可以实现长通信距离和干扰的鲁棒性,而LoRa是第一个用于商业用途的低成本实现。随着LoRa的引入,嵌入式无线通信领域的局面发生了彻底的改变。这一技术改变了以往关于传输距离与功耗的折衷考虑方式,提供一种简单的能实现远距离、长电池寿命、大容量、低成本的通讯系统。
&LoRa主要在全球免费频段运行(即非授权频段),包括433、868、915 MHz等。LoRa网络主要由终端(内置LoRa模块)、网关(或称基站)、服务器和云四部分组成,应用数据可双向传输。如图2所示。
图2:LoRa网络架构
LoRa的优势主要体现在以下几个方面:
1---大大的改善了接收的灵敏度,降低了功耗
高达157db的链路预算使其通信距离可达15公里(与环境有关)。其接收电流仅10mA,睡眠电流200nA,这大大延迟了电池的使用寿命。
2---基于该技术的网关/集中器支持多信道多数据速率的并行处理,系统容量大。
如图2所示,网关是节点与IP网络之间的桥梁(通过2G/3G/4G或者Ethernet)。每个网关每天可以处理500万次各节点之间的通信(假设每次发送10Bytes,网络占用率10%)。如果把网关安装在现有移动通信基站的位置,发射功率20dBm(100mW),那么在建筑密集的城市环境可以覆盖2公里左右,而在密度较低的郊区,覆盖范围可达10公里。
3---基于终端和集中器/网关的系统可以支持测距和定位。
LoRa对距离的测量是基于信号的空中传输时间而非传统的RSSI(Received Signal Sterngth Ind-ication),而定位则基于多点(网关)对一点(节点)的空中传输时间差的测量。其定位精度可达5m(假设10km的范围)。
这些关键特征使得 LoRa技术非常适用于要求功耗低、距离远、大量连接以及定位跟踪等的物联网应用,如智能抄表、智能停车、车辆追踪、宠物跟踪、智慧农业、智慧工业、智慧城市、智慧社区等等应用和领域。
表:LoRa关键特性和优势
157db链路预算
距离>15km
最小的基础设施成本
易于建设和部署
使用网关/集中器扩展系统容量
电池寿命&10年
延长电池寿命
接收电流10mA,休眠电流&200nA
免牌照的频段
基础设施成本低
节点/终端成本低
应用:国外如火如荼,国内略显冷清
一种通讯技术要实现大规模商业化,除技术本身要有特定的优势外,还需要背后阵营强力支持,其中产业联盟就是一股强大的推动力量,LoRa也不例外。
2015年3月LoRa联盟宣布成立,这是一个开放的、非盈利性组织,其目的在于将LoRa推向全球,实现LoRa技术的商用。该联盟由Semtech牵头,发起成员还有法国Actility,中国AUGTEK和荷兰皇家电信KPN等企业,到目前为止,联盟成员数量达330多家,其中不乏IBM、思科、法国Orange等重量级厂商。
LoRa的产业链中(包括终端硬件产商、芯片产商、模块网关产商、软件厂商、系统集成商、网络运营商)的每一环均有大量的企业,构成了LoRa的完整生态系统,促使了LoRa的快速发展与生态繁盛。
图3:LoRa产业链中的厂家
目前LoRa网络已经在世界多地进行试点或部署。据LoRa联盟年初的数据是有9个国家开始建网,56个国家开始进行试点;截至目前最新公布的数据,已经有17个国家公开宣布建网计划,120多个城市地区有正在运行的LoRa网络,如美国、法国、德国、澳大利亚、印度等等国家,荷兰、瑞士、韩国等更是部署或计划部署覆盖全国的LoRa网络。
图4:法国电信运营商Bouygues部署连接百万设备量的LoRa网络
LoRa技术在国外发展如火如荼。不过就国内来看,LoRa的应用似乎并不多,目前可看到的公开应用是国内AUGTEK公司在京杭大运河开展的LoRa网络建设,据悉目前已经完成江苏段的全线覆盖。
(周先生)
www.finetooling.com
广州市科学城南翔支路1号A-413>> sx1276-LoRa.h
sx1276-LoRa.h ( 文件浏览 )
* THE FOLLOWING FIRMWARE IS PROVIDED: (1) &AS IS& WITH NO WARRANTY; AND
* (2)TO ENABLE ACCESS TO CODING INFORMATION TO GUIDE AND FACILITATE CUSTOMER.
* CONSEQUENTLY, SEMTECH SHALL NOT BE HELD LIABLE FOR ANY DIRECT, INDIRECT OR
* CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE CONTENT
* OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING INFORMATION
* CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.
* Copyright (C) SEMTECH S.A.
sx1276-LoRa.h
SX1276 RF chip driver mode LoRa
* \version
May 6 2013
Gregory Cristian
* Last modified by Miguel Luis on Jun 19 2013
#ifndef __SX1276_LORA_H__
#define __SX1276_LORA_H__
* SX1276 LoRa General parameters definition
typedef struct sLoRaSettings
uint32_t RFF
uint8_t SignalBw;
// LORA [0: 7.8 kHz, 1: 10.4 kHz, 2: 15.6 kHz, 3: 20.8 kHz, 4: 31.2 kHz,
// 5: 41.6 kHz, 6: 62.5 kHz, 7: 125 kHz, 8: 250 kHz, 9: 500 kHz, other: Reserved]
uint8_t SpreadingF
// LORA [6: 64, 7: 128, 8: 256, 9: 512, 10: 48, 12: 4096
uint8_t ErrorC
// LORA [1: 4/5, 2: 4/6, 3: 4/7, 4: 4/8]
bool CrcOn;
// [0: OFF, 1: ON]
bool ImplicitHeaderOn;
// [0: OFF, 1: ON]
bool RxSingleOn;
// [0: Continuous, 1 Single]
bool FreqHopOn;
// [0: OFF, 1: ON]
uint8_t HopP
// Hops every frequency hopping period symbols
uint32_t TxPacketT
uint32_t RxPacketT
uint8_t PayloadL
* RF packet definition
#define RF_BUFFER_SIZE_MAX
#define RF_BUFFER_SIZE
* RF state machine
typedef enum
RFLR_STATE_IDLE,
RFLR_STATE_RX_INIT,
RFLR_STATE_RX_RUNNING,
RFLR_STATE_RX_DONE,
RFLR_STATE_RX_TIMEOUT,
RFLR_STATE_TX_INIT,
RFLR_STATE_TX_RUNNING,
RFLR_STATE_TX_DONE,
RFLR_STATE_TX_TIMEOUT,
RFLR_STATE_CAD_INIT,
RFLR_STATE_CAD_RUNNING,
* SX1276 definitions
#define XTAL_FREQ
#define FREQ_STEP
* SX1276 Internal registers Address
#define REG_LR_FIFO
// Common settings
#define REG_LR_OPMODE
#define REG_LR_BANDSETTING
#define REG_LR_FRFMSB
#define REG_LR_FRFMID
#define REG_LR_FRFLSB
// Tx settings
#define REG_LR_PACONFIG
#define REG_LR_PARAMP
#define REG_LR_OCP
// Rx settings
#define REG_LR_LNA
// LoRa registers
#define REG_LR_FIFOADDRPTR
#define REG_LR_FIFOTXBASEADDR
#define REG_LR_FIFORXBASEADDR
#define REG_LR_FIFORXCURRENTADDR
#define REG_LR_IRQFLAGSMASK
#define REG_LR_IRQFLAGS
#define REG_LR_NBRXBYTES
#define REG_LR_RXHEADERCNTVALUEMSB
#define REG_LR_RXHEADERCNTVALUELSB
#define REG_LR_RXPACKETCNTVALUEMSB
#define REG_LR_RXPACKETCNTVALUELSB
#define REG_LR_MODEMSTAT
#define REG_LR_PKTSNRVALUE
#define REG_LR_PKTRSSIVALUE
#define REG_LR_RSSIVALUE
#define REG_LR_HOPCHANNEL
#define REG_LR_MODEMCONFIG1
#define REG_LR_MODEMCONFIG2
#define REG_LR_SYMBTIMEOUTLSB
#define REG_LR_PREAMBLEMSB
#define REG_LR_PREAMBLELSB
#define REG_LR_PAYLOADLENGTH
#define REG_LR_PAYLOADMAXLENGTH
#define REG_LR_HOPPERIOD
#define REG_LR_FIFORXBYTEADDR
#define REG_LR_MODEMCONFIG3
#define REG_LR_FEIMSB
#define REG_LR_FEIMIB
#define REG_LR_FEILSB
#define REG_LR_LORADETECTOPTIMIZE
#define REG_LR_INVERTIQ
#define REG_LR_DETECTIONTHRESHOLD
// end of documented register in datasheet
// I/O settings
#define REG_LR_DIOMAPPING1
#define REG_LR_DIOMAPPING2
// Version
#define REG_LR_VERSION
// Additional settings
#define REG_LR_PLLHOP
#define REG_LR_TCXO
#define REG_LR_PADAC
#define REG_LR_FORMERTEMP
#define REG_LR_BITRATEFRAC
#define REG_LR_AGCREF
#define REG_LR_AGCTHRESH1
#define REG_LR_AGCTHRESH2
#define REG_LR_AGCTHRESH3
* SX1276 LoRa bit control definition
* RegOpMode
#define RFLR_OPMODE_LONGRANGEMODE_MASK
#define RFLR_OPMODE_LONGRANGEMODE_OFF
0x00 // Default
#define RFLR_OPMODE_LONGRANGEMODE_ON
#define RFLR_OPMODE_ACCESSSHAREDREG_MASK
#define RFLR_OPMODE_ACCESSSHAREDREG_ENABLE
#define RFLR_OPMODE_ACCESSSHAREDREG_DISABLE
0x00 // Default
#define RFLR_OPMODE_FREQMODE_ACCESS_MASK
#define RFLR_OPMODE_FREQMODE_ACCESS_LF
0x08 // Default
#define RFLR_OPMODE_FREQMODE_ACCESS_HF
#define RFLR_OPMODE_MASK
#define RFLR_OPMODE_SLEEP
#define RFLR_OPMODE_STANDBY
0x01 // Default
#define RFLR_OPMODE_SYNTHESIZER_TX
#define RFLR_OPMODE_TRANSMITTER
#define RFLR_OPMODE_SYNTHESIZER_RX
#define RFLR_OPMODE_RECEIVER
// LoRa specific modes
#define RFLR_OPMODE_RECEIVER_SINGLE
#define RFLR_OPMODE_CAD
* RegBandSetting
#define RFLR_BANDSETTING_MASK
#define RFLR_BANDSETTING_AUTO
0x00 // Default
#define RFLR_BANDSETTING_DIV_BY_1
#define RFLR_BANDSETTING_DIV_BY_2
#define RFLR_BANDSETTING_DIV_BY_6
* RegFrf (MHz)
#define RFLR_FRFMSB_434_MHZ
0x6C // Default
#define RFLR_FRFMID_434_MHZ
0x80 // Default
#define RFLR_FRFLSB_434_MHZ
0x00 // Default
#define RFLR_FRFMSB_863_MHZ
#define RFLR_FRFMID_863_MHZ
#define RFLR_FRFLSB_863_MHZ
#define RFLR_FRFMSB_864_MHZ
#define RFLR_FRFMID_864_MHZ
#define RFLR_FRFLSB_864_MHZ
#define RFLR_FRFMSB_865_MHZ
#define RFLR_FRFMID_865_MHZ
#define RFLR_FRFLSB_865_MHZ
#define RFLR_FRFMSB_866_MHZ
#define RFLR_FRFMID_866_MHZ
#define RFLR_FRFLSB_866_MHZ
#define RFLR_FRFMSB_867_MHZ
#define RFLR_FRFMID_867_MHZ
#define RFLR_FRFLSB_867_MHZ
#define RFLR_FRFMSB_868_MHZ
#define RFLR_FRFMID_868_MHZ
#define RFLR_FRFLSB_868_MHZ
#define RFLR_FRFMSB_869_MHZ
#define RFLR_FRFMID_869_MHZ
#define RFLR_FRFLSB_869_MHZ
#define RFLR_FRFMSB_870_MHZ
#define RFLR_FRFMID_870_MHZ
#define RFLR_FRFLSB_870_MHZ
#define RFLR_FRFMSB_902_MHZ
#define RFLR_FRFMID_902_MHZ
#define RFLR_FRFLSB_902_MHZ
#define RFLR_FRFMSB_903_MHZ
#define RFLR_FRFMID_903_MHZ
#define RFLR_FRFLSB_903_MHZ
#define RFLR_FRFMSB_904_MHZ
#define RFLR_FRFMID_904_MHZ
#define RFLR_FRFLSB_904_MHZ
#define RFLR_FRFMSB_905_MHZ
#define RFLR_FRFMID_905_MHZ
#define RFLR_FRFLSB_905_MHZ
#define RFLR_FRFMSB_906_MHZ
#define RFLR_FRFMID_906_MHZ
#define RFLR_FRFLSB_906_MHZ
#define RFLR_FRFMSB_907_MHZ
#define RFLR_FRFMID_907_MHZ
#define RFLR_FRFLSB_907_MHZ
#define RFLR_FRFMSB_908_MHZ
#define RFLR_FRFMID_908_MHZ
#define RFLR_FRFLSB_908_MHZ
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13.11 kB 16:24
fifo.lst8.50 kB 09:44
i2c.lst75.73 kB 09:44
ioe.lst21.38 kB 09:44
led.lst6.61 kB 09:44
main.lst19.06 kB 09:44
misc.lst13.79 kB 09:45
radio.lst2.69 kB 09:44
spi.lst9.30 kB 09:44
stm32f4xx_adc.lst107.99 kB 09:45
stm32f4xx_dma.lst74.07 kB 09:45
stm32f4xx_exti.lst19.01 kB 09:45
stm32f4xx_flash.lst104.53 kB 09:45
stm32f4xx_fmc.lst173.25 kB 09:45
stm32f4xx_gpio.lst41.34 kB 09:45
stm32f4xx_i2c.lst90.61 kB 09:45
stm32f4xx_pwr.lst32.06 kB 09:45
stm32f4xx_rcc.lst117.21 kB 09:45
stm32f4xx_rtc.lst215.11 kB 09:45
stm32f4xx_sdio.lst51.42 kB 09:45
stm32f4xx_spi.lst82.15 kB 09:45
stm32f4xx_syscfg.lst11.74 kB 09:45
stm32f4xx_tim.lst260.81 kB 09:45
stm32fxxx_it.lst10.04 kB 09:44
sx1232-Hal.lst153.00 B 09:45
sx1232-Misc.lst155.00 B 09:44
sx1232.lst145.00 B 09:44
sx1272-Fsk.lst153.00 B 09:44
sx1272-FskMisc.lst161.00 B 09:44
sx1272-Hal.lst153.00 B 09:45
sx1272-LoRa.lst155.00 B 09:44
sx1272-LoRaMisc.lst163.00 B 09:44
sx1272.lst145.00 B 09:44
sx1276-Fsk.lst94.63 kB 09:44
sx1276-FskMisc.lst92.59 kB 09:44
sx1276-Hal.lst24.14 kB 09:45
sx1276-LoRa.lst84.53 kB 09:44
sx1276-LoRaMisc.lst79.35 kB 09:44
sx1276.lst29.16 kB 09:44
sx12xxDrivers.map240.07 kB 09:45
sx12xxEiger.lst11.95 kB 09:44
sx1509.lst8.02 kB 09:45
system_stm32f4xx.lst20.83 kB 09:45
uart.lst13.09 kB 09:45
usbd_cdc_core.lst44.00 kB 09:45
usbd_cdc_vcp.lst16.93 kB 09:45
usbd_core.lst45.34 kB 09:45
usbd_desc.lst13.70 kB 09:45
usbd_ioreq.lst13.73 kB 09:45
usbd_req.lst89.53 kB 09:45
usbd_usr.lst5.49 kB 09:45
usb_bsp.lst13.40 kB 09:45
usb_core.lst200.95 kB 09:45
usb_dcd.lst44.21 kB 09:45
usb_dcd_int.lst106.13 kB 09:45
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startup_stm32f10x_xl.s13.08 kB 09:31
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startup_stm32f4xx_keil.s28.82 kB 09:31
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