Showing posts with label id-1 uicc. Show all posts
Showing posts with label id-1 uicc. Show all posts

Friday, December 06, 2019

eSIM - Observing Possible Outcomes Part 1

Back in 2012 I wrote about the introduction of a new form factor for SIM Cards (4FF). The outline and a potted history of SIM Card form factors were illustrated and in a separate post the first ETSI standard defining this new form factor (4FF) - (R1) and (R2).

Seven years down the line in (2019) ARM Limited produced a useful graphics of where eSIM is placed in the evolutionary chain of form factors - (R3).



eSIM has already established a presence in the digital tech marketplace. SIMalliance published SIM Market Insights in June 2019 giving the following stats '2018 Shipment Volumes (SIM Units)'. Here again it is easier to show the graphics than simply record word-for-word the stats - (R4).


Recorded in in Arm's presentation are more stats 4.4 billion cellular devices by 2025 – Source: Machina 2017; $1.8 trillion operator revenue opportunity for LPWAN by 2026 – Source: GSMA 2017 to support the vision of eSIMs integration into future devices and market size - (R3).

There are, of course, numerous market reports predicting how eSIM will fair in the marketplace; this blog post is giving a potted history just to bring the discussion up to speed.

Specifications and standards for eSIM/eUICC are available from 3GPP, GSMA and SIMalliance. These will be discussed in another Part to this blog discussion. For now, what is required to know is how eSIM will actual operate in practice. The SIMalliance produced a helpful graphic (R4) showing eSIM profile (a package), delivered to a physical product (eUICC), when deployed in the field. So let us look at that first.
For the download (update) system architecture to work requires both network and device to operate and function according to the Remote SIM Provisioning Service (RSP) Architecture'. This has been designed into the RSP Architecture. The following graphics helpfully illustrate two important element: the network side and the device side (eUICC) - (R5).


Once the eUICC has been deployed in the field [it], when inserted into a compatible smartphone, will be able to download one or more mobile operator profiles and then subscribed services. An eSIM user can then switch between operator profiles or download profiles and services on the fly - time, place and location, and so on. This enables the eSIM/eUICC to excel in connectivity. This approach to connectivity is exciting and yet remarkable, for logically the SIM Card issued previously was issued and controlled by the subscriber's mobile operator. eSIM/eUICC in essence removes sovereignty which was jealously guarded by each operator prior to the intro of this technology handover. That is even to the extent where virtual mobile operators (VMOs) only functioned based upon piggy-backing off primary operators' core network but issued their own SIM Cards.

It should be understood that the envisaged usage for eSIM focussed on M2M, so candidates would be industry devices, automobiles, metering and so on. But the concept of eSIM has recently engaged operators and handset manufacturers to look at how 5G can help with profiling and service downloads. Recently, GSMA ran seminars with hands-on training for eSIM profiling and services download, which apparently was very successful.

Moreover, Samsung, Google and Apple have devices with eSIM capability.Android framework provides standard APIs for accessing eSIM and managing subscription profiles on the eSIM (Android 9). Importantly, Devices running Android 10 or higher can support devices with multiple eSIMs. So these factors alone are investigative elements for cyber security oversight, pentesters and forensic examiners to be aware.

In Part 2 the discussion will refine and define observations that have been generally stated in this post; examine more closely eSIM and eUICC aspects and then more in Parts 3 and 4 looking at potential implications for cyber security, law enforcement, forensic examiners and ICT specialists.

REFERENCES
(R1) SIM Card new 4FF form factor size - https://trewmte.blogspot.com/2012/06/sim-card-new-4ff-form-factor-size.html
(R2) ETSI release details of new 4FF UICC  - https://trewmte.blogspot.com/2012/06/etsi-release-details-of-new-4ff-uicc.html
(R3) The Challenges Deploying IoT eSIM M2M enabling Secure Communications Scaled for 1 trillion devices. Jean-Philippe Betoin Marketing Director, Secure Identity Confidential © 2019 Arm Limited.
(R4) SIMs, eSIMs and Secure Elements: Providing a roadmap to dynamic security and flexible control for connected devices. Remy Cricco Chair of the Board, SIMalliance ETSI Security Week June 2019.
(R5) GSMA SGP.21 - RSP Architecture, V2.2, 1 Sep 2017

Friday, June 22, 2012

iPhone changing to 19-pin port?

iPhone changing to 19-pin port?

Screen Shot 2012-06-20 at 5.13.55 PM
Image courtesy of Tech Crunch

This could be an interesting twist in the marketplace relating to Apple's campaign to continue separating iPhone innovation from other handsets in the marketplace, not only through the use of distinctive design, but distinctive access to the phone. According to Tech Crunch  (the popular online tech gadget news website) they have verified that iPhone is to have changes made to the pin port swapping out the 30-pin port for a 19-pin port - http://techcrunch.com/2012/06/20/confirmed-the-new-iphone-will-have-a-19-pin-mini-connector/?goback=.gde_1794802_member_126527789

Some handset manufacturers have taken the route adopting the miniUSB. See USB research reference materials (below), but other handset manufacturers still retain specialists plugs in order to gain access.

http://en.wikipedia.org/wiki/USB
http://en.wikipedia.org/wiki/Enhanced_mini-USB
http://en.wikipedia.org/wiki/File:Types-usb_new.svg

Tech Crunch's news suggests Apple are not yet ready to take the USB route. I am more intrigued though whether there is any connection between the 19-pin port intro and Apple's adoption of the 4FF-uicc size which they have been successful in gaining agreement and approval for inclusion into the ETSI standard?

4FF-uicc research reference material
http://trewmte.blogspot.co.uk/2012/06/etsi-release-details-of-new-4ff-uicc.html
http://trewmte.blogspot.co.uk/2012/06/sim-card-new-4ff-form-factor-size.html

The implications could be wider for the handset examination market as new standards, and tools ranging from plugs to STKs to newer software upgardes, should be expected from such a development.

Saturday, June 09, 2012

ETSI release details of new 4FF UICC

ETSI release details of new 4FF UICC




Following on from the discussion ( http://www.trewmte.blogspot.co.uk/2012/06/sim-card-new-4ff-form-factor-size.html ) relating to SIM Card icc/uicc sizes, ETSI has now released the updated standard TS.102221 Release 11 that identifies that the new uicc size as '4FF'.

Tuesday, June 05, 2012

SIM Card new 4FF form factor size

On 1st June 2012 ETSI announced a new SIM Card size has been agreed and approved for inclusion in the standard TS.102221 and the new inclusion will be in the updated standard in due course:

http://www.etsi.org/WebSite/NewsandEvents/2012_06_New_SIM_Card_Format.aspx

There are now four physical sizes for SIM Card. In the TS standard the physical card is referred to by its correct technical name an UICC (universal integrated circuit card), the UICC thus cover the transmission technologies of for GSM and 3G. Interestingly, although TS.102221 makes no reference to SIM but USIM, the generic use if the term SIM Card is still applied   

1FF: ID-1 uicc size (the size of a credit card)
2FF: Plug-in uicc (the size of a postage stamp)
3FF: Mini-uicc (the size of a finger-nail)
4FF: XXXX-uicc (12.3mm wide by 8.8mm high, and 0.67mm thick) A titled suggested for this new uicc size is nano-size. It is my suggestion that a fair representation of its size is **eye contact lense size, which might be of useful assistance to a Court or Jury.

Image courtesy of http://en.wikipedia.org/wiki/Contact_lens

* Diameter
The diameter of a contact is the distance across the lens in millimeters. Average eye measurement for diameter yields a size between 12 and 14 millimeters. Diameter is important for proper fit of the lens. If the lens is too small or too big, it can cause irritation or damage to the eye.
Quick reference source: http://www.ehow.com/facts_6163786_average-eye-measurement-contact-lenses_.html

Currently TS10221 displays the characteristics for plug-in uicc and mini-uicc as:



 

 Regarding ID-1 uicc the ETSI TS records:

4.1 ID-1 UICC
The physical characteristics of the ID-1 UICC shall conform to ISO/IEC 7816-1 [9] and ISO/IEC 7816-2 [10].

The terminal shall accept embossed ID-1 UICCs. The embossing shall be in accordance with ISO/IEC 7811-1 [8] and ISO/IEC 7811-3 [i.1]. The contacts of the ID-1 UICC shall be located on the front (embossed face, see ISO/IEC 7810 [7]) of the card.

Discussion Updated 08-06-2012

ETSI release details of new 4FF UICC