p122U
p122U is 150Kbps Dual-Channel Digital Isolators manufactured by 2Pai Semi.
- Part of the p120U comparator family.
- Part of the p120U comparator family.
FEATURES
Ultra low power consumption (150Kbps):
0.55m A/Channel
High data rate:
π12x Axx: 600Mbps π12x Exx: 200Mbps π12x Mxx: 10Mbps
π12x Uxx: 150kbps
High mon-mode transient immunity: 150 k V/µs typical
High robustness to radiated and conducted noise
Isolation voltages:
π12xx3x: AC 3000Vrms
π12xx6x: AC 6000Vrms
High ESD rating:
ESDA/JEDEC JS-001-2017
Human body model (HBM) ±8k V, all pins
Safety and regulatory approvals (Pending):
UL certificate number: E494497
3000Vrms/6000Vrms for 1 minute per UL 1577
CSA ponent Acceptance Notice 5A
VDE certificate number: 40047929
DIN V VDE V 0884-10 (VDE V 0884-10):2006-12
VIORM = 707V peak/1200V peak CQC certification per GB4943.1-2011
3 V to 5.5 V level translation
Wide temperature range: -40°C to 125°C
8/16-lead, Ro HS-pliant, (W)SOIC package
APPLICATIONS
General-purpose multichannel isolation
Industrial field bus isolation
GENERAL DESCRIPTION
The π1xxxxx is a 2Pai Semi digital isolators product family that includes over hundreds of digital isolator products. By using maturated standard semiconductor CMOS technology and 2Pai SEMI i Divider technology, these isolation ponents provide outstanding performance characteristics and reliability superior to alternatives such as optocoupler devices and other integrated isolators.
Intelligent voltage divider technology (i Divider technology) is a new generation digital isolator technology invented by 2Pai SEMI. It uses the principle of capacitor voltage divider to transmit voltage signal directly cross the isolator capacitor without signal modulation and demodulation.
The π1xxxxx isolator data channels are independent and are available in a variety of configurations with a withstand voltage rating of 1.5 k V rms to 6.0 k V rms and the data rate from DC up
π120U/π121U/π122U to 600Mbps (see the Ordering Guide). The devices operate with the supply voltage on either side ranging from 3.0 V to 5.5 V, providing patibility with lower voltage systems as well as enabling voltage...