NCN6004AFTBR2G ON Semiconductor, NCN6004AFTBR2G Datasheet - Page 10

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NCN6004AFTBR2G

Manufacturer Part Number
NCN6004AFTBR2G
Description
IC INTERFACE SAM/SIM DUAL 48TQFP
Manufacturer
ON Semiconductor
Datasheet

Specifications of NCN6004AFTBR2G

Applications
PC's, PDA's
Interface
Microcontroller
Voltage - Supply
1.8 V ~ 5.5 V
Package / Case
48-TFQFP Exposed Pad
Mounting Type
Surface Mount
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
NCN6004AFTBR2GOS
NCN6004AFTBR2GOS
NCN6004AFTBR2GOSTR

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POWER SUPPLY SECTION
V
5. Assuming ANLG_VCC and PWR_VCC pins are connected to the same power supply.
I
I
I
Output Card Supply Voltage Ripple (per CRD_VCC outputs) @ :
L
DC/DC Dynamic Inductor Peak Current @ V
C
Standby Supply Current Conditions (Note 5):
ANLG_VCC = PWR_VCC = 3.0 V
ANLG_VCC = PWR_VCC = 5.0 V
ANLG_VCC = PWR_VCC = 1.8 V
Note: This parameter is guaranteed by design, not production tested.
Operating Supply Current
ANLG_VCC = PWR_VCC = 5.5 V
ANLG_VCC = PWR_VCC = 3.3 V
PWR_ON = H, CS = H, CLK_A = CLK_B = Low, all card pins unloaded
V
V
V
Note: The voltage present in pins 28 and 33 must be equal to or
Note:
Output Continuous Current Card A or Card B (both cards can be
operating simultaneously) @ 3.0 < V
Output Over Current Limit (A or B)
Output Over Current Time Out Per Card
Output Card Supply Turn On Time @ L
out
out
out
CC
out
bat
bat
bat
out
= 2 x 65 mA (both external cards running simultaneously)
= 2 x 55 mA per pin (both external cards running)
= 2 x 35 mA per pin (both external cards running)
= 22 mH, L
= +3.0 V, CRD_VCC_A = CRD_VCC_B = +5.0 V.
Under Voltage Detection Positive Going Slope
Under Voltage Detection Negative Going Slope
Under Voltage Detection Hysteresis
= 10 mF
lower than the voltage present in pin 42.
@ 3.0 V < V
V
V
I
I
I
CRD_VCC = 1.8 V
CRD_VCC = 3.0 V
CRD_VCC = 5.0 V
PWR_ON = H, STATUS = H, CS = H
Card A and Card B CLOCK_IN = H, I/O = H, RESET = H
All Logic Inputs = H, Temperature range = 0°C to +50°C
Temperature range –25°C to +85°C
All other test conditions identical
Temperature range –25°C to +50°C
All other test conditions identical
@ CRD_VCC_A/B = 5.0 V
@ CRD_VCC_ A/B = 3.0 V
@ CRD_VCC_ A/B = 1.85 V
@ CRD_VCC_A/B = 5.0 V
@ CRD_VCC_ A/B = 3.0 V
@ CRD_VCC_ A/B = 1.85 V
Output Voltage = 1.85 V
Output Voltage = 3.0 V
Output Voltage = 5.0 V
V
V
V
out
out
out
out
out
bat
bat
CC
= 35 mA, V
= 55 mA, V
= 65 mA, V
defined @ CRD_VCC = 3.0 V @ 3.0 V < V
defined @ CRD_VCC = 1.80 V @ 3.0 V < V
ESR
= 3.3 V, CRD_VCC = 1.8 V, 3.0 V or 5.0 V
= 5.0 V, CRD_VCC = 1.8 V, 3.0 V or 5.0 V
= 2.7 V, CRD_VCC = 5.0 V (A or B)
< 2.0 W, C
CC
out
out
out
< 5.5 V
= 1.80 V
= 3.0 V
= 5.0 V
out
General test conditions, unless otherwise specified: Operating temperature: −25°C < T
Rating
= 10 mF per CRD_VCC (Note 5)
CC
out
< 5.5 V
= 22 mF, C
bat
= 5.0 V, L
out
= 10 mF Ceramic.
http://onsemi.com
out
CC
CC
NCN6004A
= 22 mH,
< 5.5 V
< 5.5 V
10
CRD_VCC
CRD_VCC
CRD_VCC
Symbol
V
V
V
V
V
V
I
CCTON
I
I
DDop
I
I
batLH
batHY
I
ccov
batLL
ccov
tdoff
ORA
ORB
DD
ccp
42, 28,
42, 28,
29, 32
29, 32
29, 32
29, 32
31, 42
31, 42
31, 42
31, 42
Pin
29
32
33
33
42
1.65
Min
4.6
2.7
2.1
2.0
35
55
65
Typ
200
280
430
100
100
150
0.7
0.7
0.7
0.2
0.2
0.2
4.0
A
Max
1.95
< +85°C,
500
5.4
3.3
5.0
2.7
2.6
50
50
50
20
50
Unit
mV
mA
mA
mV
mA
mA
ms
mA
ms
V
V
V
V
V

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