Showing posts with label indian semiconductor industry. Show all posts
Showing posts with label indian semiconductor industry. Show all posts

Monday, August 24, 2009

Busy period ahead for Indian semicon, solar!

Yes, looks like it!

First, on August 31, the India Semiconductor Association and the UK-TI would be signing an MoU. The next day, September 1, there is a presentation by Ministry of New and Renewable Energy and key officials on the government of India’s policies to the industry!

Next, on September 4, the DIT Secretary, R. Chandrasekhar, and the Additional Secretary, will be interacting with semiconductor companies in Bangalore.

Further on, September 16 is the day when the Union Minister for New and Renewable Energy, Dr Farooq Abdullah, will be interacting with a small group of industry leaders at a solar PV conclave in Hyderabad!

That’s quite a lot, within a span of 15-odd days! Must say, this augurs well for the Indian semicon and solar/photovoltaics industry.

Interestingly, a lot of the big events are focusing on solar. So, my hunch is that the Indian solar industry may have some serious announcements to make in the coming weeks. Should that happen, I hope to bring those to you, time permitting.

P.S.: I am tempted to add -- Google permitting! It's been a tough week, where my main blog has disappeared, and well, the solar/PV, telecom and semiconductor blogs were first blocked and released -- these following a similar experience with my electronics blog. Now, Google has blocked the blog on electronic components. Hope the order will get restored soon!

Friday, April 10, 2009

Opportunities in India's solar/PV landscape: SEMI India

Solar/photovoltaics (PV) holds tremendous potential and promise for India, a fact not hidden from anyone. To further highlight its importance, SEMI India unveiled its first paper on Solar PV in India yesterday afternoon.

More action from Indian government needed
The meet called for more action from the government of India, a more closer industry-government collaboration, as well as the need for financial institutions to pay more attention to the solar/PV segment in India.

The photo here shows from left to right: Dr. Madhusudan V. Atre, President, Applied Materials India; Dr. J. Gururaja, Renewable Energy Action Forum & Executive President, SEMI India; K. Subramanya, CEO, Tata BP Solar; and Sathya Prasad, president, SEMI India.

Touching on the rationale for this SEMI paper on solar/PV's landscape in India, Dr. J. Gururaja, Renewable Energy Action Forum and Executive President, SEMI India, said it was meant to project the solar/PV industry's perspective: where we are and what needs to be done! This is a first account report and will be followed by many other such reports.

He said: "Solar in general, and PV in particular, can address the challenges that we face today. Solar/PV has a special attraction. It converts solar to electricity without involving any moving parts."

He added that although the industry has been looking at the potential, the markets have not been expanding as expected. "We need to see what can be done and achieved. This report is a stock-taking exercise," he pointed out.

Case for solar/PV in India
Sathya Prasad, president of SEMI India, touched upon the case for PV in India. These include:
* The existing power deficit situation in many parts of the country.
* India's brisk economic growth implies rising energy needs.
* Overdependence on coal for electricity generation -- limited coal reserves and CO2 emissions.
* Overdependence on oil and natural gas imports -- it accounts for 7 percent of GDP and consequent energy security concerns.

According to him, India is abundantly endowed with solar radiation. So far, so good!

Key PV opportunities for India
According to SEMI's paper, the key PV opportunities for India lie in off-grid applications and grid-connected PV. The off-grid applications include:
* Basic lighting and electrification of rural homes.
* Irrigation pump sets.
* Power back-up for cellular base station towers -- approximately, there will be 2.9 lakh base station towers by the end of 2009.
* Urban applications -- such as street lighting, etc.

The opportunities in grid-connected PV exist in:
* The current grid connected PV generation capacity is very small.
* Existing power deficit and huge projected future need.
* The cost point of PV has been declining continuously with technology improvements and scale.

Benefits of PV in India
The benefits of PV in India extend well beyond addressing energy needs. For instance, renewable energy technologies create more jobs than any fossil fuel based technologies. It also creates jobs across the value chain -- from R&D to manufacturing, installation and maintenance. Sathya Prasad highlighted MNRE's point that about 100,000 jobs could be created out of PV.

PV also has the capability of transforming lives. About 450 million Indians today manage with kerosene/other fuels for very basic lighting despite its significant health and safety risks. In this context, special mention needs to be made of the Aryavarta Grameen Bank's home electrification program.

Challenges for PV in India
Evidently, a bunch of opportunities are awaiting India in the solar/PV space. However, several challenges need to be overcome as well. These would be:
* Need for closer industry-government co-operation.
* Need for standards.
* Need for collaborative, goals driven R&D.
* Training and human resources development
* Need for financing infrastructure and models.

So, what are the recommendations of this paper on solar/PV landscape in India, and further call to action? These are:
* Need to evolve a common government-industry vision to make India a world leader in PV.
* Develop financing infrastructure and models that will motivate large-scale PV adoption and investments.
* Expand development of PV in off-grid applications.
* Accelerate grid-connected PV generation on a large scale.

Call for low carbon growth strategy
"Low carbon growth path is universal now. To make that happen, there needs to be a political will," advised K. Subramanya, CEO, Tata BP Solar, and chairman SEMI India PV Advisory Committee, while presenting his perspective on the solar/PV industry in India.

There has been little action on part of the government of India. "This needs to be implemented on the ground. We need policy and lifestyle innovation," he added. Subramanya cautioned that, "Too much of analysis will result in paralysis." According to him, separate budgets are required for a low carbon growth strategy. "Solar has tremendous potential. Even its learning curve is brilliant," Subramanya noted.

He added that if the European Union (EU) can make a low carbon journey so smoothly, then why not India? For instance, in Karnataka state alone, the demand is said to be 6700MW and a 10-11 percent peak shortage. We have 20-odd lakh Bhagya Jyoti and Kutir Jyoti units, and around 7,870-odd street lights. If a majority of these can be replaced by solar, it could lead to tremendous savings! This could be at least 57MW for a state like Karnataka. Apparently, all of this would require an investment of Rs. 52 crores and a payback time of two years.

"Why can't we develop a low-carbon growth path for every state in India? Imagine, what it can do for the other states," Subramanya highlighted. "If the power sector does not do well, it will hit the country's GDP!" Quite rightly so!!

Subramanya cited another example of solar water heaters in Karnataka. There are 32 lakh homes, of which about 5 lakh homes have solar water heaters. If more houses were to adopt these, it would result in a saving of 4,000MW of electricity! The Tata BP Solar CEO also called upon financial institutions to have a closer look at solar. Even the tariffs structure for solar/PV in India is not favorable enough.

He also touched upon US President Barack Obama's energy plan and the actions taken, since his comin to power, and drew a parallel with India's national action plan, which includes a solar mssion. This was released last June, but hardly any action has happened on the ground. So, there needs be changes on this front as well.

Four key aspects for solar/PV in India
Dr. Madhusudan V. Atre, president, Applied Materials India and vice chairman SEMI India PV Advisory Committee, highlighted four major aspects while presenting his perspective on the solar/PV industry. These are:
* See the advantage SEMI India brings to India. It can help bring costs down, due to the involvement of the PV Group.
* A point Dr. Atre had highlighted to me about a year back -- that solar/PV is a great way to trigger manufacturing in India. He said that the solar/PV ecosystem will be a very important step in setting up a semiconductor manufacturing ecosystem in the country.
* What wireless did to telecom -- perhaps, solar/PV has a similar aim! It can get rid of transmission lines and actually take power to the people!
* The Indian government-academia-industry would need to work hand-in-hand.

Friday, March 13, 2009

Time for Indian semicon to step up! Yes or No?

I was really happy to see a comment on my blog post: What India now offers to the global semicon industry, left by Tom Morrow, author of the SEMISpice blog, and Vice President of Global Expositions and Marketing, SEMI. Thanks for visiting and commenting, Tom.

You said: Your description of India's Special Incentives Package Schemes for setting up and operating semiconductor fabrication as a "debacle" is off the mark. Is it really wise for the country to join an already crowded semiconductor manufacturing ecosystem when it can apply its scarce resources to join 30-50 year boom in solar, something the country desperately needs for both domestic and export development?"

"The move to solar is the right one. India had nine manufacturers of solar cells and about twice as many module makers. Most of these proposals have been in response to the Government’s announcement of a Special Incentives Package Scheme under the 2007 Semiconductor Policy.

"About 70 percent of India’s solar cell and PV module production has been exported. This is likely to change in the near future as government policy provides the push for PV deployment and following the recent release of guidelines for grid connected solar generation. Several states in India, including Andhra Pradesh, Gujarat, Karnataka, Punjab, Rajasthan and West Bengal have also announced their own solar policies, plans and incentive packages in recent months.

"ISA and SEMI has recognized the great opportunities in solar and have taken supportive leadership positions. While both organizations would love to see a domestic semi fab industry emerge in India, given the overcapcity in the industry today, the transition to solar has been swift, thoughtful, and right on the mark."

First up, Tom, I did not formulate SIPS or the Indian semicon policy! I too thought India would soon build a wafer IC fab! Several delegations have visited India, in the past, with companies hoping to work with these so-called wafer IC fabs in India. I am merely a small time blogger, offering my opinions. And I love my country, no less than any other Indian!

Perhaps, you should see some of the press these 'so-called fabs' received! All the talk of a wafer IC fab only died down with SemIndia late last year!

If folks read my posts carefully, I've discussed how India has been doing fine before the semicon policy and post the policy, fab or no fab! Some knowledgeable experts have even said that fabless India shines brightly! It has shone before, and continues to do so!

Neither do I have anything against solar and the solar industry! It is a great way to trigger off manufacturing in India. Did I say otherwise?

I work closely with ISA, in fact, was present, when ISA was born, back in October 2004, and also know Sathya Prasad at SEMI India quite well. It's a great initiative that's going on in solar in this country. So, yes, the move to solar is a very correct one!

Still on wafer IC fabs, one expert even goes on to say that India could look at skipping the current node of technology and make an entry into the one that will be prevalent after few years.

However, my focus is essentially on semiconductor manufacturing! As many industry experts never fail to say at conferences, India needs to move up the semicon value chain! We need more semicon product start-ups!! And, that's not happening fast enough!

Perhaps, we can just discard all of these ideas and go on being a leading player in design services (which, we already are), a much easier option.

I would still go with what Malcolm Penn of Future Horizons' says, that India needs to re-think its semiconductor strategy! It cannot survive on chip design alone!

Even the recently held ISA Vision Summit had a session: Indian design influence: Ideas to volume! Speakers discussed how India should seize opportunities, especially in this downturn, and that, it is time for the Indian semiconductor industry to step up, put the right innovations in place and grow.

I am very interested in hosting an event in India on this topic -- Time for India to step up: Put right innovations in place and grow! However, as I said, I am merely a small time blogger, trying to make a living. I hope I can find some support to host such an event at least once in India.

I am simply delighted that my post has drawn the interest of such a senior person at SEMI. Thank you, sir!

Friday, December 26, 2008

Why solar/PV is good for India? An ISA perspective!

Recently, the India Semiconductor Association (ISA) held an educative briefing session on the potential of the solar PV market in India, which was conducted by Rajiv Jain, Director, Government Relations, ISA.

This meeting was held well before iSuppli issued a warning that there could be global solar sunburn in 2009! I am sincerely hoping that most of the points mentioned by ISA's Jain still hold good in the coming year, and that India really does well and takes off in solar photovoltaics.

The ISA's vision: To help make India an attractive global destination for PV manufacturing and a world leader in solar energy.

Starting with the basics of photovoltaics, he said that it is a package of solar cells used to convert energy from sun to electricity. In simpler words, photons from sunlight knock electrons into higher state of energy, thus creating electricity. The electricity can be used to power equipment or recharge a battery. A typical PV system mainly consists of a PV module, battery, inverter, controller and junction box.

Focusing on the technological landscape, he touched upon the two key technologies for solar: crystalline and thin film.

Crystalline silicon is said to be the most mature Si wafer technology, with the largest market share. Though, high on cost, it has a typical efficieny of 14-18 percent. Crystalline silicon is said to suitable for rooftop applications.

Thin film is nothing but thin layers of photosensitive materials on glass. It is currently on high growth due to silicon shortage, and very low on cost due to low material consumption. The efficiency is about 6.5-8 percent.

A third technology, nanotechnology, is the future technology for cost reduction. It is more in the R&D space as of now.

Present scenario for solar
So what's the present scenario? In 2007, of $71 billion invested in new renewable energy (RE) capacity globally, 30 percent was in solar PV. It is the fastest growing area in the energy sector, with a CAGR of 47 percent over the last five years.

Grid-connected solar PV has been high growth market segment in 2007 (50 percent increase). Also, 86 percent of the PV installations are largely in four countries, with Germany at 47 percent being the outright leader.

Market drivers are said to be attractive feed-in tariffs, national PV market development and acceptance, RE obligations through solar PV, access to cheaper mode of finance, manufacturing incentives as well as strong R&D.

Why solar for India
I have addressed this in an earlier blog post. Here's what Jain had to say, and it is mostly in line with the earlier discussions.

First, India has among the highest solar irradiance globally. It also has the best quality reserves of silica in Orissa and Andhra Pradesh. India has also established itself low cost producer and assembler of solar PV cells and modules.

The major challenges include attaining scale and integration for cost reduction, and, R&D for development of the industry.

Solar insolation in India
To start with, the daily average solar energy incident varies from 4-7kWh per m2. Next, we have multiple sites with solar irradiation >2000 hours per year. In contrast, Germany has 900-1,200 hours per year. Further, most parts of India have 300-300 sunny days in a year translating into a potential of 600GW. Also, potential in some states like Rajasthan is 35-40 MW per m2.

It is well known that the Indian semiconductor policy of 2007 has triggered off the now well publicized efforts in solar initiatives. The government of India has received 16 applications with investments envisaged at app Rs. 1,55,000 crores.

The investments in solar PV manufacturing exceed Rs 1,25,000 crores. Generation based incentives (GBI) are going to be key.

Potential market segments in India
There are quite a few, actually. In rural electrification, the government of India's target is to achieve 'Electricity for all by 2012'. About 18,000 remote villages will likely be electrified through RE. About ~25 percent of the remote villages, i.e., 4,500 villages, form a very viable market.

Next comes telecom back-up power! PV is a cost effective alternative to diesel generators (DG) for back up power for shorter duration, as DG based systems suffer from several disadvantages.

Another key market could be grid connected solar PV based generation. Current tariffs do not provide attractive IRR to developers. Decreasing system prices are however, likely to improve the economics.

Finally, roof based BIPV is said to be an alternative to reduce the cost of power procured by commercial buildings.

ISA's recommendations
The ISA has also made salient recommendations via its report on the industry. These include areas such as manufacturing: with an aim to encourage companies investing in 'Scale and integration', provision of capital subsidy to larger number of units, availability of funds at a cheaper rate, and an emphasis on R&D.

Also, the ISA has recommended that GBI be given for a tenure of 20 years, with the present period being 10 years. Further, it has suggested an accelerated depreciation along with the GBI scheme, and the availability of GBI for an unlimited capacity for a period of five years. The ISA has recommended an enactment of the RE Law requiring utilities to progressively increase power purchase from RE.

On its part, the ISA has been working with the government of India and various state governments as well. It has a sound rapport with concerned ministries - MNRE, DIT and NMCC.

The ISA has also assisted in the technical evaluation of solar PV proposals received in Fab City, Hyderabad. It has also drafted a semiconductor policy for the government of Karnataka, which should be out early next year, hopefully. The ISA is also working with several other state governments to promote the industry in their states.

The second ISA Solar PV Conclave is scheduled for November 2009 at Hyderabad.

Very good intentions, all of these! Now, for the Indian industry and the government to deliver, and walk hand in hand!!

Thursday, October 9, 2008

Solar, semi rocking in India; global semi recovery in 2010?

Wow! What a start for October! We have had a whole new range of activities going on! Fist, late September, the India Semiconductor Association organized a solar/PV conclave in New Delhi, where plans were laid out for India's roadmap in the solar/PV field. the ISA-NMCC (National Manufacturing Competitiveness Council) report on the Indian solar PV market was also released at the conclave.

According to Poornima Shenoy, president, ISA, the year 2015 could be important for this industry. She said, "Around this time, the product cost of the Indian solar PV industry is likely to match the semi grid parity (peak power) globally, and also to match the grid parity within India."

Next, AMD joined hands with Advanced Technology Investment Co. (ATIC) of Abu Dhabi to create "The Foundry Company", a leading-edge foundry production outfit. It will also join the IBM joint development alliance for silicon-on-insulator (SOI) and bulk silicon through 22nm generation. It will be very interesting to see how AMD now takes on Intel!

Messe Munchen put out a white paper on "How China, India and Eastern Europe are changing the global electronics market." This is not surprising at all! You can download the report by clicking on the link here, and I must say, the report is really engaging!

On the same lines, Gartner came up with its analysis that China is dominating the global semiconductor scene, and that both India and Vietnam are gaining! India's growing might in semicon is well documented! Also, last month, I had mentioned how the lack of a fab or the exit of a top professional from an Indian semicon firm would not hamper India's growing fortunes in this industry!

The trials and tribulations of the global semiconductor industry were already touched upon by Derek Lidow of iSuppli. Analysts such as Malcolm Penn of Future Horizons and those at Gartner have been saying similar things, more or less. Penn advises that this is the time to stop chasing fashion and get back to basics. He adds, "The good news being the industry basics are mercifully as good as they get back."

Gartner only expects a recovery for semiconductors sometime in 2010! According to Gartner, a collapse in memory spending, combined with a weak economy, is driving a major contraction in semiconductor capital equipment spending in 2008. The slowdown is likely to continue into 2009 before the industry recovers in 2010.

SEMI now has a presence in India. Sathya Prasad, formerly of Cadence, has been appointed as president of SEMI India with immediate effect. This is a further indication of India's growing leadership in the semicon space. I will be getting into a discussion with Sathya Prasad sometime later.

Of course, we have the usual stuff like companies selling off or retiring 200mm fabs. Examples are NXP, Hynix, Renesas, etc. Also, DRAM prices continue to be weak and suppliers could likely face a credit crunch.

Interesting mix of happenings, isn't it! While India rocks in solar and semicon, we are still speculating on a recovery for the global semiconductor industry. About time India took the lead in making that happen!

Finally, I was busy with Durga Puja, and hence, didn't blog in a while. Will try my best and make up for my absence. I would like to take this opportunity to wish SHUBHO BIJOYA to all of my Bengali and non-Bengali friends.

Tuesday, August 19, 2008

Japan semicon firms seek close ties with India

The India Semiconductor Association (ISA) recently organized the India-Fukuoka (Japan) IT, Embedded Software and Semiconductor Business Workshop 2008. A host of companies and institues from Fukuoka, Japan participated in the workshop seeking partnerships, alliances, and business in the semiconductor space in India.

My first impression was that all of the Japanese firms present at the workshop are quite interested in the Indian semiconductor market, and especially in the embedded space. Besides, some of them may look at investments, should the opportunity arise. Some of the participants are also looking at the direction fabs are taking in India, besides the solar/PV market.

The participating companies and institutes at the workshop were:

1. Daichi Institution Industry Co. Ltd
2. DISCO (Dai Ichi Seitosho Co. Ltd) Corp.
3. Fukuoka University
4. Fukuoka Industry, Science & Technology Foundation
5. Inoueki Co. Ltd
6. Invest Japan
7. JETRO (Japan External Trade Organization)
8. Kyushu Economic Research Center
9. CLAIR (The Japan Council of Local Authorities for International Relations), Singapore

Masane Saito, Chief, JETRO, said that the total trade between India and Japan was worth $9.9 billion during 2007, a 25 percent growth. India's strengths included knowledge-based services, high-quality talent, etc. He added that Japan required a lot of embedded systems engineers, perhaps, hinting at Indian engineers and the opportunity that lies ahead of them.

Todd Takaki, Director, Inoueki, clearly highlighted that his company was looking at the manufacturing segment in India. A semiconductor trading company, it delivers chemicals to IC fabs, among others. He added that companies from Japan needed to see the inroads being made in India, both frontend and backend. While Inoueki is also looking at making investments in the country, Takaki stressed the need to have a developed market.

Akihiro Kawaguchi, International Science Technology Co-ordinator, Fukuoka Industry, Science & Technology (IST) Foundation, highlighted the Fukuoka Cluster for advanced system LSI design and development. He also touched upon the Silicon Sea Belt Fukuoka Project, which streches from China, covering South Korea, Japan, Taiwan, Hong Kong, Singapore, Malaysia, right up to Bangalore, India. This belt has the potential of the world's largest semiconductor market (60 percent), emerging car industry market, ever-developing wireless market, and the world's largest population of engineers.

The Fukuoka IST is also part of the Knowledge Cluster Initiative, a national program carried out by Japan's Ministry of Education, Culture, Sports, Science and Technology (MEXT), in co-operation with the local governments.

Dr. Hajime Tomokage, professor, Fukuoka University, touched upon the semiconductor business network via the MAP (microelectronics assembling and packaging) and RTS (reverse trade show) programs.

The Kyushu silicon island has a 6 percent share of the global IC production with over 20 percent raw wafers. SUMCO has four fabs in Kyushu. The silicon island also has 16 fabs, including those of Renesas, Toshiba, Sony, NEC, Yamaha, etc. Overall, it is home to nearly 650 semicon related companies. Kyushu is now looking for Asian customers, and specifically, from India.

Some other features include the national project on SiP (system-in-a-package) and MEMS, which have been place since 2002, as well as the SiPOS (System Integration Platform Organization Standards) platform.

Keiji Honjo, Leader, Product Innovation Sales Group, DISCO Corp., touched about his firm's business. DISCO's activities revolve on: manufacture and sale of precision cutting, grinding and polishing machines; maintenance of precision cutting, grinding and polishing machines; training in the operation and maintenance of precision cutting, grinding and polishing machines; disassembly and recycling of precision cutting, grinding and polishing machines; lease of precision cutting, grinding and polishing machines, and sale of used machines; manufacture and sale of precision diamond abrasive tools; and for-fee processing. It is also seeking business interests in India.

Yutaka Akagawa, Executive Director, Daichi Institution Industry Co. Ltd, said the company is also into 8Gen LCD business. It transfers the glass substrate for the LCDs. The company highlighted Clifter, a device, which carries the wafer cassette, LCD cassette, and so on, vertically, with the holding cleanliness to the clean room on the up-down floor.

Interested Indian companies desirous of tying up with these Japanese companies are welcome to send in their queries.

In my next blog, I will discuss specifically what India brings to the table for the semicon world to go to India, and especially, Japanese companies, since we are on Japan! This is also a request from a friend from the Far East!! I may be a bit inaccurate in my assessment, but I will try my best.

Sunday, June 29, 2008

10-point program for Karnataka semicon policy

A very interesting question was recently thrown at me: what sort of semiconductor policy should Karnataka adopt as a state! I shall attempt to highlight some of the activities the Karnataka government can look at implementing in the semicon/EMS space.

Let us first go back to last September, when the Indian government issued fab guidelines. Besides wafer IC and solar/PV fabs, the Indian government is seeking investments in ecosystem units for LCDs, OLEDs, PDPs, photovoltaics, solar cells, storage devices, advanced micro and nanotech products, etc.

The 'ecosystem units' have been clearly defined as units, other than a fab unit, for manufacture of semiconductors, displays, including LCDs, OLEDs, PDPs, any other emerging displays; storage devices; solar cells; photovoltaics; other advanced micro and nanotechnology products; and assembly and test of all the above products.

For starters, the Karnataka state needs to have a long-term semiconductor policy in place, running 20-25 years or so. This cannot be a short-term plan! It would be prudent to have the top Indian leaders from Indian firms and MNCs, e.g., Ittiam, MindTree, Synopsys, Cadence, TI, Analog Devices, as well as the Indian Institute of Science and some other leading technology institutes, be the part of a core state semiconductor policy team to oversee the implementations. Future state governments would only need to update the status and keep it rolling forward.

Incentives need to be built in as well, including more tax holidays, etc. Whether it needs to be 25-30 percent or higher, is to be debated. Next, the focus of a semicon policy should be aimed at solving some particular local problem, which can go on to solve a much bigger national problem.

All of this should be done with, keeping in view to improving the infrastructure in the state, such as roads, water, electricity, etc. Foreign investors would shy away if infrastructure issues were not tackled first.

In this context, the Karnataka government should first look at having some solar/PV fabs in the state, as well as those in the nanotech space. Next, it would be prudent to pursue a policy of attracting companies in the verification and testing domains. Rather, have companies in the ATMP space, a pointer, which has been coming up in most of the discussions.

As an example, last year, an Israeli company -- Nova Measuring Instruments -- was keen on entering India. Nova develops, produces, and markets advanced monitoring, measurement and process control systems for the semiconductor manufacturing industry. It should be pursued to start assembly and testing of products in the state.

Wafer IC fabs are going to be a tough act to follow. Unless a company can get the requisite funding for a 300mm fab, it is not advisable to follow that path. However, there is room for developing 200mm fabs, or even 150mm and 180mm fabs. These can be used to develop indigenous and simple applications. If such fabs are developed, those companies offering fab-related services can be attracted as well.

The Indian semicon policy statement speaks about having ecosystem units. It would be advisable to attract smaller companies and look at setting up manufacturing units. As an example, Synopsys's Subhash Bal had once pointed out how RFID can be used in a host of applications. That's not all. Why not pursue companies in the OLEDs/LEDs and PDPs spaces as well, besides those manufacturing LCDs, even if smaller-sized.

Finally, consider attracting and promoting companies in the fabless space, as it looks to be the way ahead for the semiconductor industry.

Here is a 10-point program for the Karnataka government to consider as a likely semiconductor policy.

1. A long-term semiconductor policy running 20-25 years or so.
2. Core team of top Indian leaders from Indian firms and MNCs, as well as technology institutes in Karnataka to oversee policy implementation.
3. Incentives such as government support, including stake in investments, and tax holidays.
4. Strong infrastructure availability and management.
5. Focus on having solar/PV fabs in the state.
6. Consider having 150/180/200mm fabs that tackle local problems via indigenous applications.
7. Develop companies in the assembly testing, verification and packaging (ATMP) space.
8. Attract companies in fields such as RFID, to address local problems and develop local applications.
9. Pursue companies in the PDP, OLED/LED space to set up manufacturing units.
10. Promote and set up more fabless units.

There should be some steps to create specific zones for setting up such units -- for fabs, fabless, ATMP, manufacturing, etc., all spread equally across the state.

On a personal note, I would be keen and willing to work with the Indian/Karnataka government, or the concerned parties, in formulating such a policy, should I am invited. Nothing would give me greater pleasure than seeing India, and Karnataka, shining in the semiconductor space.

Monday, June 23, 2008

Has the Indian silicon wafer fab story gone astray?

The recent news of the Hyderabad Fab City giants -- SemIndia Fab Pvt Ltd and Nano-Tech Silicon India Pvt Ltd -- being served notice by the local state government and to explain the reasons for their delay in setting up the Fab City in Shamshabad on the outskirts of Hyderabad, does not come as a surprise at all!

Setting up of a silicon wafer fab takes up a lot of time and money, and I am not sure how this bit is perceived by many. Also, the rate of return is not exactly immediate! Maybe, it is time for everyone to realize that semiconductor is a very different industry from any other, and there is a need to understand how it really functions! Besides, one needs to keep an eye on the global semiconductor industry and associate movements there with what kind of value would a fab in India bring to the world.

This May, I'd done a reality check on where the global semiconductor is placed. Several folks have contacted me since, pointing out my accuracy. While it is good to be spot on with the assessment of the global (and Indian) semiconductor industry, the assessments should serve as a warning for the global (and Indian) semiconductor industry -- that it is not going to be an easy ride ahead!

On the same note, I had earlier questioned whether this was the right timing for setting up fabs in India. Perhaps, there is a need to examine whether we started on the fab path a bit too late! If we are found to be wrong or hasty in our assessment, let us feel no anguish in accepting that! This is not the first time such a thing will happen in the semiconductor industry, nor will it be the last. Having said that, if a wafer fab or two do start functioning in India later in 2009 or beyond, that would be exemplary!

Let us hope that the Indian silicon wafer fab story does not go astray for the overall benefit of the Indian semiconductor industry. There is a need on part of the Indian semicon planners to integrate clear vision with careful planning.

Yes, several solar fabs are coming up globally, and investments in solar/PV are rising as well in India, but that was along expected lines.

It was also pointed out earlier that investments in photovoltaics (PV) had somewhat eased the pressure on capital equipment makers and spend. In fact, 2007 is now well documented as the year when the PV industry emerged as a key opportunity for the subsystems suppliers and provided a timely boost in sales for those actively addressing this market.

Perhaps, here lies an opportunity for India, and I'm repeating this to the extent of sounding boring!

Further, even though it has been quite a while since the Indian semicon policy was announced, some feel that India should continue to focus on design services and embedded -- its well known strengths, rather than go after something as mature as wafer fabs. We don't have to 'force ourselves to believe' that we are good at product development? We are not!

Yes, like most things, it can change, but that would need great effort on part of all industry stakeholders. The question is: are we ready to bring about that change?