"an NLJD is correspondingly capable of detecting almost any unshielded electronic device containing semiconductors, whether the electronics are actively powered or not."
Is properly shielding something really that difficult or expensive that people are not shielding their gear? Or is more of nobody gives a damn to be bothered?
Reminds me of how every random electronic item would seemingly pick up audible interference from nearby GSM phones. Nonlinear components would involuntarily modulate the RF signal.
When close enough, and especially when GSM antennas are mis-tuned it's perfectly possible to turn on the ESD protection diodes on low voltage inputs. For 1.8v IOs with weak current driven pull-ups you can trip the TTL threshold hysteresis.
I saw this once in a pre-production cell phone where tact-switch IO inputs were being spuriously activated. Figuring out that part of the UI required pushing physical buttons, suddenly made sense of "why do your batteries only last an hour".
"an NLJD is correspondingly capable of detecting almost any unshielded electronic device containing semiconductors, whether the electronics are actively powered or not."
Is properly shielding something really that difficult or expensive that people are not shielding their gear? Or is more of nobody gives a damn to be bothered?
Reminds me of how every random electronic item would seemingly pick up audible interference from nearby GSM phones. Nonlinear components would involuntarily modulate the RF signal.
When close enough, and especially when GSM antennas are mis-tuned it's perfectly possible to turn on the ESD protection diodes on low voltage inputs. For 1.8v IOs with weak current driven pull-ups you can trip the TTL threshold hysteresis.
I saw this once in a pre-production cell phone where tact-switch IO inputs were being spuriously activated. Figuring out that part of the UI required pushing physical buttons, suddenly made sense of "why do your batteries only last an hour".