ADMap-11  > RS1-22R0-J1

suppliers of RS1-22R0-J1 and PDF data of RS1-22R0-J1

Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
RS1-22R0-J1 CYNTEC        4500 
    EVER SUCCESS INC.LIMITED
  • Contact:Jenny
  • Tel:86-755-83005767
  • Fax:
  • Email: zcxyic@yahoo.cn
RS1-22R0-J1 CYNTEC      New&Original  4500 

RS1-22R0-J1 Datasheet

Logic Supply Voltage Range Vcc Operating 4.5 5.0 5.5 V
Reference Voltage Range VREF Operating 0.5 2.5 V
UVLO Enable Threshold Vcc=Oi 5V 3.35 3.70 4.05 V
UVLO Hysteresis 0.30 0.45 0.60 V
Logic Supply Current ICC(ON) 42 50 mA
ICC(OFF) Do = Di = D2 = 0.8 V 12 16 mA
Logic Input Voltage VIN(1) 2.0 V
VIN(O) 0.8 V
Logic Input Current IIN(1) VIN=2.0 V <1.0 20
IIN(O) VIN=0.8 V <-2.0 -200
Mixed-Decay Comparator VPFD Slow Current-Decay Mode 3.5 V
Trip Points Mixed Current-Decay Mode 1.1 3.1 V
Fast Current-Decay Mode 0.8 V
Mixed-Decay Comparator Input Offset Voltage VIO(PFD) 0 ±20 mV
Mixed-Decay Comparator Hysteresis q:VIO(PFD) 5.0 25 55 mV
Reference Input Current IREF VREF = 0 V t0 2.5 V +5.0
Reference Divider Ratio VREFNS at trip, Do = Di = D2 = 2 V 3.0
Digital-to-Analog Converter 1.0 V < VREF " 2.5 V +3.0 %
Accuracy* 0.5 V < VREF " 1.0 V +4.0 %
Current-Sense Comparator Input Offset Voltage* VlO(s) VREF=0 V ±5.0 mV
Step Reference Current Ratio SRCR Do = Di = D2 = 0.8 V Do = 2 V, Di = D2 = 0.8 V Do = 0.8 V, Di = 2 V, D2 = 0.8 V Do = Di = 2 V, D2 = 0.8 V Do = Di = 0.8 V, D2 = 2 V Do = 2 V, Di = 0.8 V, D2 = 2 V Do = 0.8 V, Di = D2 = 2 V Do = Di = D2 = 2 V 0 - 19.5 - 38.2 - 55.5 - 70.7 - 83.1 - 92.4 - 100 - % % % % % % % %


RS1-22R0-J1 Price
1-3.5 4 hours, Minimum 100% 4-10 1 hour, Minimum 135% 1-10 3 sec., Min.; 1 hour Max. 200% 1-10 0.4 sec., Min.; 4 sec., Max. INTERRUPTING RATING: 10,000 amperes at 125 VAC, 0.7-0.8 power factor
RS1-22R0-J1 on stock

lTYPE VDSS RDS(on) ID
lSTB9NB60 600 V < 0.8 l 9A


1 Prior to the onset of overvoltage clamping. For voltages above this value, safe operation is limited by the overvoltage clamping energy. 2 A higher Ti is allowed as an overload condition but at the threshold Tj00) the over temperature trip operates to protect the switch. 3 The minimum supply voltage required for correct operation of the overload protection circuits. 4 The device is able to self-protect against a short circuit load providing the drain-source supply voltage does not exceed VDDP(P) maximum For further information. refer to OVERLOAD PROTECTION CHARACTERISTICS.