MB86R01PB-GSE1 Fujitsu Semiconductor America Inc, MB86R01PB-GSE1 Datasheet - Page 52

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MB86R01PB-GSE1

Manufacturer Part Number
MB86R01PB-GSE1
Description
IC SOC GRAPHIC CONTRLR 484BGA
Manufacturer
Fujitsu Semiconductor America Inc
Datasheets

Specifications of MB86R01PB-GSE1

Applications
Graphics Controller
Core Processor
ARM9
Program Memory Type
External Program Memory
Controller Series
Jade
Ram Size
64K x 8
Interface
ADC, ATA, CAN, EBI/EMI, I²C, I²S, Media LB, PWM, SD Card, UART/USART, USB
Number Of I /o
24
Voltage - Supply
1.1 V ~ 3.6 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
484-BGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
865-1110

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MB86R01PB-GSE1
Manufacturer:
Fujitsu Semiconductor America Inc
Quantity:
10 000
Part Number:
MB86R01PB-GSE1
Manufacturer:
FUJITSU/富士通
Quantity:
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FUJITSU MICROELECTRONICS
PROPRIETARY AND CONFIDENTIAL
MB86R01 DATA SHEET
8.4.3.
Table 8-16 Recommended Operating Conditions
Power supply voltage
Reference voltage (H)
Reference voltage (L)
Decoupling capacitor
Analog input voltage
Analog input frequency
Table 8-17 ADC Characteristics
Supply current
(included reference current)
Reference voltage (M)
Reference resistance
Zero transition voltage
(*2)
Full scale transition Voltage
(*2)
Integral non linearity
(*3)
Differential non linearity
(*3)
*1: VR is connected to AVS with decoupling capacitor (0.1µF).
*2: VZT and VFST are dependent on chip layout and wiring resistance.
*3: 1LSB = (VFST-VZT)/1022, INLn = ((1LSBxn + VZT) - Vn)/1LSB, DNLn = (Vn + 1 -Vn)/1LSB - 1
Note:
Unique voltage is supplied to VRH and VRL by voltage source.
*1: V
*2: In the case that VR is decoupled with AVS by decoupling capacitor, A/D outputs incorrect result at
Parameter
Parameter
immediately after power-on or at the resumption from power down mode.
Because charge current for decoupling capacitors is supplied through the reference resistance, it
takes about 2ms to get correct result (it is the case decoupling capacitor is 0.1µF.).
SS
ADC
= AD_AVS1 (analogue GND)
(VDD = 1.2V, AVD = 3.0V, FS = 100KS/s, FC = 1.4MHz, FVIN = 1 kHz, T
AD_AVD0
AD_VRH0
AD_VRH1
AD_VRL0
AD_VRL1
AD_VR0 (*2)
AD_VR1 (*2)
AD_VIN0
AD_VIN1
AD_VIN0
AD_VIN1
AD_VR0
AD_VRH0
AD_AVD0
AD_VR1
AD_VRH1
AD_VRL0
AD_VRL1
Symbol
Symbol
AD_AVD0*0.75
AD_VRL0
AD_VRL1
V
SS
Min.
2.70
0.05
Min.
Typ.
Typ.
-2.0
-1.5
46
7.3
-20
-20
0
-1
-3
(*1)
AD_VRL0+1LSB
AD_VRL1+1LSB
AD_VRH0-1LSB
AD_VRH1-1LSB
AD_AVD0/2
Value
Typ.
3.00
Value
Typ.
0.8
9
AD_AVD0*0.25
AD_VRH0
AD_VRH1
AD_AVD0
Max.
3.60
500
Max.
Typ.
Typ.
+2.0
+1.5
10.7
+20
+20
1.2
50
3
A
= 25°C (*1))
Unit
kHz
μF
V
V
V
V
Unit
LSB
LSB
mA
mV
mV
µA
kΩ
%
V

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