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RX63N_15 Datasheet, PDF (133/210 Pages) Renesas Technology Corp – Renesas MCUs
RX63N Group, RX631 Group
5. Electrical Characteristics
Table 5.4 DC Characteristics (3) (for D and G Versions (-40 ≤ Ta ≤ +85°C))
Conditions: VCC = AVCC0 = VREFH = VCC_USB = VBATT = 2.7 to 3.6 V, VREFH0 = 2.7 V to AVCC0,
VSS = AVSS0 = VREFL/VREFL0 = VSS_USB = 0 V, Ta = Topr
Supply
current*1
Item
Symbol Min. Typ. Max.
Max.*2
Normal
*4
Peripheral function: clock signal
supplied*4
ICC*3
— — 100
— 52 —
Peripheral function: clock signal
stopped*4
— 40 —
Sleep mode
— 25 65
All-module-clock-stop mode (reference
value)
— 20 38
Increased by BGO operation*5
— 15 —
Low-speed operating mode 1*6
—4
—
Low-speed operating mode 2
—1
—
Software standby mode
Power supplied to RAM and USB resume
detecting unit
Power not supplied
to RAM and USB
resume detecting
unit
Power-on reset circuit
and low-power
consumption function
disabled
Power-on reset circuit
and low-power
Increase when the RTC is When a crystal
operating
oscillator for low clock
loads is in use
When a crystal
oscillator for standard
clock loads is in use
RTC operating while VCC
is off (with the battery
backup function, only the
RTC and sub-clock
oscillator operate)
When a crystal
oscillator for low clock
loads is in use
When a crystal
oscillator for standard
clock loads is in use
— 0.2 6
— 22 200
— 21 60
— 6.2 28
— 1.0 —
— 3.0 —
— 0.9 —
— 1.6 —
— 1.7 —
—
Analog power
supply
current*7
During 12-bit A/D conversion (including
temperature sensor)
During 10-bit A/D conversion
During D/A conversion (per unit)
Waiting for A/D, D/A conversion (all units)*10
A/D, D/A converter in standby mode (all units)*10
Reference
power supply
current
During 12-bit A/D conversion
Waiting for 12-bit A/D conversion (per unit)
12-bit A/D converter in standby mode (per unit)
IAVCC0
—
IVREFH*9 —
—
—
—
—
IVREFH0 —
—
—
3.3 —
2.3 3.2
1.0 1.65
0.7 1.0
25 35
0.1 4.0
0.6 0.7
0.5 0.6
0.1 2.0
Unit Test Conditions
mA ICLK = 100 MHz
PCLKA = 100MHz
PCLKB = 50 MHz
FCLK = 50 MHz
BCLK = 100MHz
ICLK = 1 MHz
ICLK = 32.768
kHz
µA
VBATT = 2.0 V,
VCC = 0V
VBATT = 3.3 V,
VCC = 0V
VBATT = 2.0 V(for
products with 100
pins or more),
VBATT = 2.3 V
(for the 64-pin
product),
VCC = 0V
VBATT = 3.3 V,
VCC = 0V
mA
mA
mA
µA
µA
mA
mA
µA
R01DS0098EJ0180 Rev.1.80
May 13, 2014
Page 133 of 208