TDE1898RDP STMicroelectronics, TDE1898RDP Datasheet - Page 7

IC IPS HISIDE DRVR 0.5A 8-DIP

TDE1898RDP

Manufacturer Part Number
TDE1898RDP
Description
IC IPS HISIDE DRVR 0.5A 8-DIP
Manufacturer
STMicroelectronics
Type
High Sider
Datasheet

Specifications of TDE1898RDP

Input Type
Differential
Number Of Outputs
1
Current - Output / Channel
500mA
Current - Peak Output
1.5A
Voltage - Supply
18 V ~ 35 V
Operating Temperature
-25°C ~ 85°C
Mounting Type
Through Hole
Package / Case
8-DIP (0.200", 5.08mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
On-state Resistance
-
Other names
497-5426-5
TDE1898RDP

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0
Therefore:
V
V
R
70°C/W (SIP9)
It follows:
I
P
Figure 5: Application Circuit.
outx
s
os
thj-amb
os
- No heat sink nor air circulation (R
- All electrical parameters of the device, con-
- Thermal shutdown threshold is at minimum
= 30V, R
= 2.5V, Lim = 135°C
= 110mW
(625mA instead of 500mA).
cerning the calculation, are at maximum val-
ues.
value.
R
= 0.625mA, R
thj-amb
= 100°C/W (Minidip); 90°C/W (SO20);
).
DSON0
P POLLING
= 0.6 , I
DSONx
DC BUS 24V +/-25%
= 1.006 , P
q
D93IN014
= 6mA, I
+IN
-IN
D1
D2
q
os
th
= 180mW,
= 4mA @
equal to
+
-
GND
From equation 4, we can find:
T
Therefore, the IPS TDE1897/1898, although
guaranteed to operate up to 85°C ambient tem-
perature, if used in the worst conditions, can meet
some limitations.
SIP9 package, which has the lowest R
work at maximum operative current over the en-
tire ambient temperature range in the worst condi-
tions too. For other packages, it is necessary to
consider some reductions.
With the aid of equation 3, we can draw a derat-
ing curve giving the maximum current allowable
versus ambient temperature. The diagrams, com-
puted using parameter values above given, are
depicted in figg. 6 to 8.
If an increase of the operating area is needed,
heat dissipation must be improved (R
e.g. by means of air cooling.
ambx
CONTROL
LOGIC
= 66.7°C (Minidip);
73.5°C (SO20);
87.2°C (SIP9).
OUTPUT STATUS
Ios
+Vs
TDE1897R - TDE1898R
OUTPUT
LOAD
th
thj-amb
reduced)
, can
7/12

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