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Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
MXM6200     N/A  new and original  500 



MXM6200 Datasheet

RL to VEE
Vc< =+6 1 VR_= 100l
vcc =+2 71 RL= 100
V( C=+6 5V OR + 2.7V RL=1[ )0kI


MXM6200 Price
I SANYO assumes no responsibility for equipment failures that result from using products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other parameters) listed in products specifications of any and all SANYO products described or contained herein.
MXM6200 on stock

LIMITS
SYMBOL PARAMETER TEST CONDITIONS Temp = 40YC to +85YC UNIT
MIN TYPi MAX
VIK Input clamp voltage Vcc = 3.OV; IIK = -18mA -0.85 -1.2 V
VOH High-Ievel output voltage Vcc = 3.OV; IOH = -12mA 2.0 2.5 V
VOL Low-Ievel output voltage Vcc = 3.OV; IOL = 12mA O5 0 8
Vcc = 3.6V; Vi = Vcc or GND Control pins O1 +1
Vcc = 0 0r 3.6V; Vi = 5.5V 01 10
lI Input leakage current Vcc = 3.6V; Vi = Vcc Data pins4 0.5 1
Vcc = 3.6V; Vi = OV O1 5
IOFF Off current Vcc = OV; Vi or VO = 0 t0 4.5V O1 ±100 ccA
Bus Hold current Vcc = 3V; Vi = 0.8V 75 130
IHOLD Vcc = 3V; Vi = 2.OV -75 -140 ccA
Data inputs6 Vcc = OV t0 3.6V; Vcc = 3.6V +500
IEX Current into an output in the High state when Vo > Vcc VO = 5.5V; VCC = 3.OV 10 125 o:A
IPU/PD Power up/down 3-State output current3 Vcc " 1.2V; Vo = 0.5V to Vcc; Vi = GND or Vcc OE/OE = Don't care 1 ±100 o:A
IOZH 3-State output High current Vcc = 3.6V; Vo = 3.OV; Vi = VIL or VIH O5 5 o:A
IOZL 3-State output Low current Vcc = 3.6V; Vo = 0.5V; Vi = VIL or VIH O5 -5 o:A
ICCH Vcc = 3.6V; Outputs High, Vi = GND or Vcc, lo = 0 0 05 0 1
ICCL Quiescent supply current Vcc = 3.6V; Outputs Low, Vi = GND or Vcc, 10 = 0 3.7 5 0 mA
Iccz Vcc = 3.6V; Outputs Disabled; Vi = GND or Vcc, lo = 05 0 06 0 1
Clcc Additional supply current per iHput pic12 Vcc = 3V t0 3.6V; One input at Vcc-0.6V, Other inputs at Vcc or GND 0 05 0 4 mA


BYTE READ: A byte read is initiated with a start condition followed by a 7-bit data word address and a high read bit. The AT24C11 will respond with an acknowledge and then serially output 8 data bits. The microcontroller does not respond with a zero but does generate a following stop condition (refer to Figure 3).