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BH16260DL 데이터 시트보기 (PDF) - Philips Electronics

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BH16260DL Datasheet PDF : 12 Pages
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Philips Semiconductors
12-bit to 24-bit multiplexed D-type latches (3-State)
Product specification
74ABT16260
74ABTH16260
DC ELECTRICAL CHARACTERISTICS
LIMITS
SYMBOL
PARAMETER
TEST CONDITIONS
Tamb = +25°C
Tamb = –40°C
to +85°C
Min Typ Max Min Max
VIK
Input clamp voltage
VCC = 4.5V; IIK = –18mA
–0.8 –1.2
VCC = 4.5V; IOH = –3mA; VI = VIL or VIH
2.5 2.9
2.5
VOH High-level output voltage
VCC = 5.0V; IOH = –3mA; VI = VIL or VIH
3.0 3.4
3.0
VCC = 4.5V; IOH = –32mA; VI = VIL or VIH
2.0 2.4
2.0
VOL Low-level output voltage
VCC = 4.5V; IOL = 64mA; VI = VIL or VIH
0.42 0.55
II
Input leakage current
VCC = 5.5V; VI = VCC or GND
VCC = 5.5V; VI = VCC or GND
Control
pins
Data pins
±0.01 ±1
±3
VCC = 4.5V; VI = 0.8V
A or B
75
75
IHOLD Bus Hold current
VCC = 4.5V; VI = 2.0V
ports
–75
–75
VCC = 5.5V; VI = 0 to 5.5V
±500
±500
IOFF Power-off leakage current
VCC = 0.0V; VO or VI 4.5V
±5.0 ±100
IPU/IPD
Power-up/down 3-State
output current
VCC = 2.0V; VO = 0.5V;
VI = GND or VCC; VOE = VCC
±60 ±200
IOZH 3-State output High current VCC = 5.5V; VO = 2.7V; VI = VIL or VIH
1.0
10
IOZL 3-State output Low current
VCC = 5.5V; VO = 0.5V; VI = VIL or VIH
–1.0 –10
ICEX
IO
Output high leakage current
Output current1
VCC = 5.5V; VO = 5.5V; VI = GND or VCC
VCC = 5.5V; VO = 2.5V
50
–50 –100 –225 –50
VCC = 5.5V; Outputs High, VI = GND or VCC
0.2 1.5
ICC Quiescent supply current
VCC = 5.5V; Outputs Low, VI = GND or VCC
VCC = 5.5V; Outputs 3-State;
VI = GND or VCC
8
19
0.1 1.0
ICC
Additional supply current per Outputs enabled, one input at 3.4V, other
input pin2
inputs at VCC or GND; VCC = 5.5V
0.1 1.5
NOTES:
1. Not more than one output should be tested at a time, and the duration of the test should not exceed one second.
2. This is the increase in supply current for each input that is at the specified TTL voltage level rather than VCC or GND.
3. This is the bus hold minimum overdrive current required to force the input to the opposite logic state.
–1.2
0.55
±1
±5
±100
±200
10
–10
50
–225
1.5
19
1.0
1.5
UNIT
V
V
V
V
V
µA
µA
µA
µA
µA
µA
µA
µA
mA
mA
mA
1998 Feb 10
6

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