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Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
PBL40305 ERICSS  SSOP-28  09+  New and in original   8061 



PBL40305 Datasheet

\RTING LINE 0 60 o.o{ MIN +1 30 0.60 0.08 MIN
R0.08 1 i li
eo +4V h l t j
t 0 21 MIN l 70 +0.05 f


PBL40305 Price

MIN TYP MAX
]pLi ICBO VCB=140 V, IE=O 100 nA
iL IEBO VEB=5.0 V, IC=O 100
hFEl VCE=10 V, Ic=l.0 mA 50 180
hFE2 VCE=10 V, Ic=10 mA *** 90 200 400
I VBE VCE=10 VIc=10 mA 650 685 750 mV
]L VCE(s at) Ic=20 mA, IB=2.0 mA *** 0.07 0.6 f7
u VBE(sat) Ic=20 mA, IB=2.0 mA *** 0.75 1O V
]l Cb VCB=10 V, IE=O, f-l.0 MHz 2.3 pF
fI VCE=10 V, IE=-10 mA 120 MHz


PBL40305 on stock

Version
Parameter Symbol Test Condition -60 -75 -1H ·1L Unit Note
Operating Current (One Bank Active) lcci Burst length = 1 tRC > tRc(rliin) 10 =0 mA 75 70 70 65 mA 1
Precharge Standby Current Icc2P CKE iVIL(max), tcc = 10ns 0 5 mA
in power-down mode lcc2PS CKE & CLKiViL(max), tcc =.. 0 5
Precharge Standby Current Icc2N CKE > VIH(min), CS > VIH(rTiin), tcc = 10cis Input signals are changed one time during 20ns 10 mA
in non power-down mode lcc2NS CKE > VIH(min), CLK i ViL(max), tcc =.. Input signals are stable 7
Active Standby Current ICC3P CKE iVIL(max), tcc = 10ns 5 mA
in power-down mode ICC3PS CKE & CLKiViL(max), tcc =.. 5
Active Standby Current in non power-down mode ICC3N CKE > VIH(min), CS > VIH(rTiin), tcc = 10cis Input signals are changed one time during 20ns 20 mA
(One Bank Active) ICC3NS CKE > VIH(min), CLK i ViL(max), tcc =.. Input signals are stable 20 mA
Operating Current (Burst Mode) lcc4 10 =0 mA Page burst 4Banks Activated tCCD = 2CLKs 90 85 70 70 mA 1
Refresh Current lcc5 tRC > tRc(min) 120 115 110 100 mA 2
-E/C 1000 uA 4
-N/L 300 5
Internal TCSR Max 40 Max 85/70 oc 3
Self Refresh Current lcc6 CKE 10.2V Full Array 160 300
·G/F 1/2 0f Full Array 140 240 uA 6
1/4 0f Full Array 120 220


Symbol Parameter Value Unit
Vcc Supply Voltage 2.0 t0 12 V
VI Input Voltage (Control) 0 to Vcc V
Vl/o Input/0 utput Voltage 0 to Vcc V
Top Operating Temperature -40 to +85 OC
trtf Input Rise and Fall Time Vcc= 2V 0 t0 1000 ns
Vcc= 4.5V O t0 500
Vcc= 6V 0 t0 400
Vcc=10V O t0 250