Apple kills the iPod Nano and Shuffle. So, what’s next?

Apple kills the iPod Nano and Shuffle. So, what’s next?

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With the announcement in late July that Apple is officially retiring the iPod Nano and the iPod Shuffle (the last of the pre iPhone iPods) we can safely say that “video killed the radio star” or rather, the rise of online/app-based streaming services like Spotify, Pandora, and Apple Music, have essentially wiped out the need for music file downloading on portable devices (and the products that were designed for that sole purpose.) When the iPod debuted in 2001, Steve Jobs promised 1,000 songs in your pocket. Today, through streaming, you can play almost any song in existence, instantaneously and fairly cheaply, without bogging down your smartphone or tablet’s storage. Thus, it’s not surprising that Apple is finally saying goodbye to the standalone MP3 player (although it does pierce a knife right into the heart of my childhood.)

 

With online/app-based streaming swiftly becoming the norm, home A/V and speaker manufacturers are adapting as well by offering products with built-in streaming services like Spotify Connect and Chromecast built-in, allowing music lovers to stream their music wirelessly from their phone or tablet to their speakers. But this shift comes at a price because they are exposing major flaws, not just in their products, but in the wireless protocols their products are built on.

 

Conventional Wi-Fi runs on TCP (Transmission Control Protocol) which was designed in the 1960’s for transferring files down wired Ethernet lines, not streaming real-time, wireless, audio. Unfortunately, most products out today that boast wireless streaming capabilities still use these outdated protocols and therefore, can’t properly support wireless streaming.

 

This has posed a huge problem for manufacturers who want to stay on trend, but are unwilling to invest in new, wireless infrastructures. As we’ve seen with Apple’s retirement of standalone MP3 players, products that support app-based streaming are the future. And yet, manufacturers continue to release products that are fundamentally unable to support the future of wireless home entertainment.

 

So what can be done? Well, Blackfire Research has an answer for that.

 

It’s called the Blackfire Realtime Entertainment Distribution (RED) framework, and it’s the industry’s only wireless and entertainment-centric infrastructure software framework built from the ground up to both overcome the limitations of Wi-Fi and meet the needs of wireless, entertainment-related apps and products. Top global audio brands, such as Harman Kardon, Onkyo, Pioneer, and Integra have already licensed the Blackfire RED framework, and are currently shipping products that leverage its capabilities: reliable multi-room, multi-channel, low latency, wireless audio and video over Wi-Fi. With the Blackfire RED framework in products such as home A/V systems, wireless speakers, smartphones, and TVs, home owners can finally become Smart Home owners – enjoying all of their digital streaming services wirelessly, synchronously and seamlessly throughout the home.

With the original iPod, you could carry 1,000 songs in your pocket. Today, the Spotify song collection alone boasts over 30 million. We’ve been adding more and more music into our pockets, but after all this time, we’re still trying to figure out how best to get it out.

A Clear Path for Voice Control

A Clear Path for Voice Control

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Unless you’ve been living under a rock for the past year, you know that voice controlled Smart Home technology is taking over the tech industry and consumer electronics scene. This past January, the annual Consumer Electronics Show (CES) was chock-full of stainless steel refrigerators and high tech washing machines, all with Amazon’s voice-activated AI software, Alexa, built in. CES 2017 was dubbed by some as “The Year of the Amazon Takeover,” however, Amazon isn’t the only tech giant to venture into the realm of voice-activation: Google launched the Google Home smart speaker in late 2016, exactly two years after the Amazon Echo speaker (featuring Alexa) made its debut. Even later to the party, Microsoft just announced partnerships with HP and Harman Kardon to support Cortana (Microsoft’s version of Siri) in their speakers. Speaking of Siri, Apple just announced a Siri-enabled smart speaker, called HomePod, which will be available this December.

 

These “smart” speakers have proven themselves to be cool technology, but, for the most part, were  trading more on novelty value than utility. Until recently, Amazon’s Alexa enabled Dot and Echo speakers excelled at only three things: purchasing items off Amazon; playing music from a long list of streaming services or Internet radio stations; and pranking your roommate by setting it’s alarm for 3:00 am, 3:10 am, 3:20 am, and 3:30 am. A pretty solid list of features, sure, but it’s by no means the “Smart Home of the Future” we were promised.

 

That’s why CES 2017’s “Amazon Takeover” was actually a pretty significant breakthrough for Smart Home enthusiasts. Until recently, Smart Home gadgets such as smart thermostats and security systems were seen as standalone items. What Amazon is attempting to do this year (and succeeding at it, thus far) is to position its Alexa voice-activated speakers as the Smart Home’s “Central Hub,” from which, all of the individual smart devices in your home can connect, and be controlled. (Hence, the influx of gadgets and appliances with Alexa capabilities.)

 

And this isn’t an unwelcomed shift: according to new market data from Parks Associates, 55% of U.S. broadband households want to use their voice to control their Smart Home and entertainment devices. Moreover, they expect products to work together through “their entertainment systems, including automated voice assistant products like the Amazon Echo and Google Home.”

 

Additionally, at their annual “CONNECTIONS: The Premier Connected Home Conference,” Parks Associates announced a comprehensive IoT forecast that predicts 442 million connected consumer devices (entertainment, mobile, health, and smart home) will be sold in the U.S. in 2020. The fastest growing category in IoT, and the top trend of 2017, is, unsurprisingly, speakers with voice control (like the Amazon Alexa and Google Home), with a CAGR of 78.3% in 2015-2020. According to Elizabeth Parks, SVP, Parks Associates: “Parks Associates research shows U.S. consumers will buy more than 2.3 billion connected devices between 2015 and 2020, and they are showing strong preferences for voice as the interface for their devices. Companies in the smart home, entertainment, and connected car ecosystems are pursuing partnerships that can add voice control to a variety of solutions in the connected home.”

 

But developing Alexa or Google Home enabled smart products is only the first step. In order to achieve true, whole home connectivity, these products need to be able to work wirelessly through a reliable platform to communicate with each other. The truth is, Smart Home technology in its current form doesn’t lend itself to whole home, or even multi-room systems. Conventional WiFi uses TCP (Transmission Control Protocol) which was designed in the 1960’s for transferring files down wired Ethernet lines, not connecting Smart Home products or streaming real-time wireless audio (or video) throughout the home. (For more on why your WiFi sucks, read my last blog, titled “Why your WiFi sucks and what you can do about it”).

 

Here’s an interesting tidbit from Rob Conant, CEO, Cirrent: “Wi-Fi is by far the dominant technology for connected products – the vast majority of broadband homes have Wi-Fi. However, historically it has been too complex to get headless products connected to Wi-Fi. Nearly 40% of the negative reviews of smart home products are the result of connectivity and setup issues. Making it easy for end users to connect products is critical to the success of the industry.”

 

But the dream of a whole-home, voice-controlled, Smart Home isn’t impossible: using low-latency and high-accuracy sync, Blackfire has developed a software solution that successfully integrates voice AI into a multi-room system. We call it Blackfire Real-time Entertainment Distribution (RED), the industry’s only wireless streaming software framework built from the ground up to overcome the limitations commonly associated with conventional wireless products, truly enabling a whole-home voice-control system. Blackfire RED delivers high-performance multichannel, multipoint and multi-room 5.1 audio wireless streaming across multiple devices over standard Wi-Fi, so you can tell Alexa or your Google Home in your living room to read out a recipe to you when you are in the kitchen, or to play music from Spotify Connect in the bedroom.

 

As demand for voice-activated smart devices continues to grow and home audio manufacturers develop products to meet the demand, Blackfire will be the key to enhanced performance for today’s consumers and Smart Home dwellers of the future.